Food Bowl Kit

The food bowl assembly with a separation module and vent system enhances the palatability of various food types by separating olfactory products from the food, addressing food aversion and waste in mammals, particularly pets.

JP7723458B2Active Publication Date: 2025-08-14MARS INC
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Patent Information

Application Number
JP2022517811
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2020-05-07
Filing Date
2020-10-30
Publication Date
2025-08-14
Estimated Expiration
2040-10-30

AI Technical Summary

Technical Problem

Existing food bowl assemblies are limited to dry foods and cannot effectively enhance the palatability of moist or liquid foods, leading to food waste and aversion issues in mammals, particularly pets, due to the contamination of aroma-producing substances by wet food.

Method used

A kit comprising a food bowl assembly with a separation module and a vent system that allows odors from an olfactory product to exit without contacting the food, compatible with dry, moist, and liquid food types, enhancing palatability by targeting the mammal's olfactory bulb.

Benefits of technology

The kit effectively increases the palatability of low-palatability food compositions, encouraging consumption and reducing food waste by separating the olfactory product from the food, thus addressing food aversion and related health issues in mammals.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present disclosure relates to a kit, the kit comprising: (i) a first part including a first bowl having a sidewall and a bottom, a second feeding bowl disposed within the first bowl, the second feeding bowl having a sidewall and a solid bottom, the inner surfaces of the sidewall and the solid bottom being closed curved surfaces, a separation module adapted to hold an olfactory product, the separation module being disposed to fit between the solid bottom of the second feeding bowl and the first bowl, and a vent disposed to allow odor from the separation module to exit between the first bowl and the sidewall of the second bowl of the food bowl assembly so that the odor does not pass through the second feeding bowl; and (ii) a second part including a container containing at least one olfactory product. A second aspect of the present disclosure relates to the above-defined kit for use in a method for treating olfactory dysfunction, anorexia, or food aversion due to a disease, or a method for treating and / or preventing a disease or disorder in an animal.
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Description

[Technical Field]

[0001] The present disclosure relates to the field of food intake and / or food aversion. Specifically, the present disclosure relates to a kit including a food bowl assembly (FBA) and an olfactory product for increasing the palatability of nutritionally sensitive products. [Background technology]

[0002] Smell, along with taste, plays a role in mammals, such as the preference or aversion of an animal to a type of food. Smell is the primary cue that attracts or repels mammals to a food composition. If a mammal is not attracted to a provided food, the food may not be consumed in sufficient quantities to maintain health or well-being. The food composition may be wasted or remain unconsumed for a long period of time, causing the food to become stale or contaminated. For example, cats, in particular, may be particularly picky about food. Therefore, problems of food rejection or aversion may arise.

[0003] Food rejection or aversion is a change in eating behavior due to psychological reasons. It can manifest as psychological food intolerance when there is an adverse physical reaction associated with eating or avoiding a particular food.

[0004] Considering this, food aversion is a problem for treating mammals because mammals often refuse to eat the diet due to post-ingestion symptoms such as vomiting, diarrhea, nausea, etc., or because allergy and hypoallergenic diets do not allow the use of conventional palatable substances (due to the content of proteins that may cause allergic reactions). However, non-palatable or hypo-palatable diets cannot be modified with strict nutritional restrictions. Therefore, mammals such as these animals cannot be treated because the food is unattractive to eat.

[0005] Many mammals, particularly pets and other animals, suffer from problems or diseases caused by a loss of food attraction or aversion to food, some of which include, but are not limited to, obesity, loss of appetite, kidney disease, high blood pressure, heart disease, chronic food allergies, severe osteoarthritis, diabetes, urinary incontinence, bladder stones, chronic urinary tract infections, gastroenteritis, pancreatitis, hypothyroidism, and other disorders.

[0006] Patent document 1 describes in its specification a food bowl system designed to encourage mammals to eat a healthy diet by allowing an attractive aroma-producing material, such as cooked meat, to be placed under the food. The aroma from the material can permeate the food through perforations in the underside of the feeding bowl, thus increasing the appeal of the food composition to mammals.

[0007] Furthermore, Non-Patent Document 1 describes a method for evaluating the influence of odor on dog food selection using a false bottom bowl. Each bowl consisted of a conventional feeding bowl, with a stainless steel separator plate with drill holes placed across the entire surface. This separated the bowl into an outer and inner compartment. Different odorants were then placed in each lower compartment, and similar amounts of food composition were placed in each outer compartment. The odor from the lower compartment penetrated the drill holes and food layer, thus influencing the dog's choice of bowl to eat from.

[0008] The purpose of these documents is to mix the flavor from the odorant with the flavor of the dry food, thereby creating an attractive smell for cats and dogs without it becoming part of the food. These methods allow pets to use different tastes without consuming them.

[0009] However, in either case, such food bowl assemblies can only be used with essentially dry foods, such as kibble or treats, because liquids from wet food, milk, soup, porridge, etc., can drip or leak through the bowl's perforations and contaminate the aroma-producing substances. This limits the use of the food bowl assemblies, as some mammals may prefer the texture of moist foods. Furthermore, flavors must traverse the kibble (which can alter the overall aroma perceived by the pet) and are also involved in transformations / reactions of the aroma as it passes through the food.

[0010] Furthermore, these food bowl assemblies encourage food waste as the scented product is taken directly from the pet owner's refrigerator. [Prior art documents] [Patent documents]

[0011] [Patent Document 1] International Publication No. 2017 / 082987 [Non-patent literature]

[0012] [Non-Patent Document 1] C. Petel et al. J. Sens. Stud. 2018, 33:e12311 Summary of the Invention [Problem to be solved by the invention]

[0013] As a result, there remains a need to provide products and methods for increasing the palatability of highly nutritionally challenged foods and / or for avoiding and treating food aversions and resulting diseases or disorders.

[0014] As a result, the present disclosure aims to solve these problems.

[0015] The present disclosure is also useful for diversifying product smells and proposing new products in cases of food refusal or aversion, for example due to kidney disease. The inventors have created a range of different flavors. Adding olfactory products to food (such as in the case of pets), kibble and / or wet food, or other foods such as milk, soup, porridge, etc., is an economical and environmentally friendly way to offer variety to mammals and get them to agree to eat again. [Means for solving the problem]

[0016] A first aspect of the present disclosure relates to a kit comprising: (i) a first part having a food bowl assembly, the food bowl assembly including: a first bowl having a sidewall and a bottom; a second feeding bowl disposed within the first bowl, the second feeding bowl having a sidewall and a solid base, the inner surfaces of the sidewall and the solid base being closed curved surfaces; a separation module adapted to hold an olfactory product, the separation module being disposed to fit between the solid base of the second feeding bowl and the first bowl; and a vent disposed to allow odor from the separation module to exit between the sidewall of the first bowl and the second feeding bowl of the food bowl assembly so that the odor does not pass through the second feeding bowl; and (ii) a second part having a container containing at least one olfactory product.

[0017] A second aspect of the present disclosure relates to a kit as defined above for use in a method for stimulating appetite in a mammal, especially a senescent or elderly mammal.

[0018] A third aspect of the present disclosure relates to a kit as defined above for use in a method for treating and / or preventing food aversion in a mammal, in particular in a mammal suffering from a disease or disorder which causes food aversion, loss of attraction to food, and / or loss of appetite in said mammal. Also according to this second aspect, the present disclosure relates to a kit as defined above for use in a method for treating and / or preventing a disease or disorder in a mammal in which the disease or disorder is caused by food aversion.

[0019] A fourth aspect of the present disclosure relates to a kit as defined above for use in a method for increasing the appeal of a food composition, especially a food composition with low palatability.

[0020] Another aspect of the present disclosure relates to a method for preventing food aversion in a mammal, the method comprising the steps of: (i) providing a kit according to the present disclosure; (ii) placing an olfactory product in a separation module of a food bowl assembly; (iii) placing a food composition in a second feeding bowl of the bowl assembly; and (iv) allowing the mammal to access the food bowl assembly. [Brief explanation of the drawings]

[0021] [Figure 1] 1 is a cross-sectional view of a food bowl assembly described in the present disclosure. [Figure 2] FIG. 2 is a top view of a separation module used in the food bowl assembly of FIG. [Figure 3] 3 is a perspective view of the separation module of FIG. 2; DETAILED DESCRIPTION OF THE INVENTION

[0022] The present disclosure aims to make available a kit for use in a method for treating and / or preventing food aversion in a mammal, wherein a food composition adapted to treat and / or prevent the disease or disorder causes a loss of appeal or a food aversion in the mammal due to its reduced palatability, i.e., a hypopalatable food composition. In some embodiments, the present disclosure provides a kit for use in a method for treating and / or preventing food aversion in a mammal having a disease or disorder. The present disclosure also aims to make available a kit for use in a method for treating and / or preventing a disease or disorder in a mammal caused by food aversion.

[0023] Another advantage of the present disclosure is that it provides pet owners with a simple solution for feeding their pets olfactory products that are compatible with their pets. The use of a kit according to the present disclosure allows not only quick and easy selection of a specific olfactory product for a pet, but also the continued use of said olfactory product for the daily feeding of said pet.

[0024] We provide herein a kit comprising (i) a first part comprising a food bowl assembly, and (ii) a second part comprising a container containing at least an olfactory product.

[0025] Surprisingly, the inventors have found that the kit of the present disclosure is capable of affecting the feeding behavior of mammals.

[0026] As shown in the examples herein, such kits, when used to present a food composition to a mammal that normally refuses to eat, preferably an animal currently being treated with a low-palatability food composition, without the possibility of modifying its diet with respect to severe nutritional restrictions, will ultimately cause the mammal to eat the food composition, including ultimately eating the presented food composition completely.

[0027] Specifically, the kit according to the present disclosure can overcome food aversion by targeting the olfactory bulb of a mammal with an olfactory product in such a way that the mammal is tempted to eat the food composition, and in particular to eat the food composition without wasting food.

[0028] Furthermore, it has been shown herein that mammals significantly preferred to eat food compositions in a food bowl assembly containing an olfactory product described in the present disclosure, i.e., a low-palatability food composition, rather than the same food bowl assembly that did not contain an olfactory product according to the present disclosure.

[0029] As a result, the inventors have found that a kit according to the present disclosure provides a therapy for avoiding or treating food aversion in a mammal, such as an animal, thereby inducing said mammal to eat a food (which has reduced palatability, i.e. is a low palatability food composition) adapted to treat and / or prevent a disease or disorder.

[0030] Thus, the inventors have found that the kits of the present disclosure can overcome the drawbacks of providing a mammal, such as an animal, with a food composition that has reduced palatability. In other words, the use of a kit according to the present disclosure can, in some aspects, increase the palatability of a food composition, particularly a food composition such as a non-palatable food composition, e.g., a hypo-palatable food composition, including a hypoallergenic or allergy diet.

[0031] Thus, the present disclosure: (i) a first part including a food bowl assembly, the food bowl assembly comprising: (a) a first bowl; (b) a second feeding bowl disposed within the first bowl and intended to receive food; (c) a separation module positioned to fit between the second feeding bowl and the first bowl and intended to receive an olfactory product; and (d) a vent positioned to allow odors originating from the olfactory product in the separation module to exit the food bowl without passing through the food in the second feeding bowl; a first portion including: (ii) a second part comprising a container containing at least one olfactory product; The present invention relates to a kit comprising:

[0032] In one embodiment, the present disclosure relates to a kit, the kit comprising: (i) a first part consisting of a food bowl assembly, said food bowl assembly comprising: (a) a first bowl including a sidewall and a bottom; (b) a second feeding bowl disposed within the first bowl, the second feeding bowl including a sidewall and a solid bottom, the inner surfaces of the sidewall and the solid bottom being closed curved surfaces; (c) a separation module adapted to hold an olfactory product, the separation module being positioned to fit between the solid bottom of the second feeding bowl and the first bowl; and (d) a vent positioned to allow odors from the separation module to exit between the sidewalls of the first bowl and the second feeding bowl of the food bowl assembly, so that the odors do not pass through the second feeding bowl; a first portion including: (ii) a second part consisting of a container containing at least one olfactory product; Includes.

[0033] Part 1: Food Bowl Assembly The kit of the present disclosure includes a first part including a food bowl assembly. In one embodiment, the kit of the present disclosure includes a first part including a food bowl assembly. In one embodiment, the kit of the present disclosure includes a first part consisting of a food bowl assembly.

[0034] A food bowl assembly according to the present disclosure comprises: (a) a first bowl having a sidewall and a bottom; (b) a second feeding bowl disposed within the first bowl, the second feeding bowl having a sidewall and a solid bottom, the inner surfaces of the sidewall and the solid bottom being closed curved surfaces; (c) a separation module adapted to hold an olfactory product, the separation module being positioned to fit between the solid bottom of the second feeding bowl and the first bowl; and (d) a vent positioned to allow odors from the olfactory product in the separation module to exit between the sidewalls of the first bowl and the second feeding bowl of the food bowl assembly, so that the odors do not pass into the second feeding bowl; Includes.

[0035] The second feeding bowl includes a wall having an inner surface and an outer surface. The inner surface of the wall of the second feeding bowl is intended to contain the food composition. The outer surface of the wall of the second feeding bowl in the food bowl assembly faces the wall of the first bowl. In some embodiments, the wall of the second feeding bowl includes a horizontal bottom wall and vertical side walls, as shown in the figures of the present disclosure.

[0036] The food bowl assembly of the kit of the present disclosure can be used with all types of food compositions, including, more specifically, pet food, liquid, moist, semi-moist, and dry food compositions, because the second feeding bowl has a solid bottom and therefore does not leak any food composition placed therein. In particular, the inner surface of the bottom of the second feeding bowl intended to receive the food composition is a closed curved surface, i.e., the bottom surface does not include any holes or openings that would allow the contents of the second feeding bowl to come into contact with the contents of the first bowl or separation module.

[0037] The separation module is positioned above the first bowl and separates (i) the second feeding bowl from (ii) the first bowl (dedicated to receiving the olfactory product). For clarity, in a food bowl assembly according to the present disclosure, the second feeding bowl dedicated to receiving the food composition is positioned above the separation module.

[0038] In embodiments of the first bowl, the first bowl includes a wall having an inner surface and an outer surface. The inner surface of the wall of the first bowl is intended to contain the olfactory product. In some preferred embodiments, the outer surface of the wall of the first bowl may comprise the outer surface of the food bowl assembly. In some embodiments, the wall of the first bowl includes a horizontal bottom wall and vertical side walls, as shown in the figures of the present disclosure.

[0039] In a preferred embodiment of the food bowl assembly of the kit according to the present disclosure, the separation module includes a wall having an inner surface and an outer surface, the inner surface facing the bottom of the first bowl and the outer surface facing the bottom of the second feeding bowl.

[0040] In a most preferred embodiment, the inner surface of the bottom of the first bowl, together with the inner surface of the separation module, defines a volume in which the olfactory product can evaporate and then exit toward a vent port having a proximal zone and a distal zone. The volume forming the cavity can be referred to herein as an "odor chamber." The proximal zone of the vent port is defined by the outer surface of the separation module and the outer surface of the bottom of the second feeding bowl. The distal zone of the vent port is defined by the inner surface of the side wall of the first bowl and the outer surface of the side wall of the second feeding bowl. When the olfactory product evaporates from the odor chamber containing it, the olfactory aroma substance leaves the odor chamber, then circulates from the proximal end of the vent port to the distal end of the vent port, and finally exits through the vent port in an environment outside the second feeding bowl that is close to the opening.

[0041] In some embodiments, the first bowl, or alternatively the separation module, comprises heating means intended to heat the olfactory product.

[0042] As used herein, the term "heating means" refers to a means capable of heating the olfactory product placed in the first bowl. The heating means may be adapted to heat the olfactory product contained in the first bowl so that the olfactory product is heated to a temperature ranging from 25°C to 45°C, for example, from 30°C to 40°C, and in some embodiments, at 37°C. Heating the olfactory product contained in the first bowl aims to maximize the release of aroma from the olfactory product. Therefore, the heating means may be located at the bottom of the first bowl or alternatively in a separation module. One type of heating means according to the present disclosure may be a heating resistor, a radiator, hot water, a candle, or any other heat source.

[0043] As mentioned above, the food bowl assembly of the kit includes a vent positioned so that when an olfactory product is contained in the first bowl, preferably in the separation module, the odor of the olfactory product can exit the separation module or odor chamber and then exit the food bowl assembly, i.e., through the distal end of the vent, without contacting the food composition in the second feeding bowl.

[0044] As used herein, the term "vent" generally refers to any form of cavity, gap, channel, passageway, or combination of two or more thereof, that allows the flow of gases, particularly odors. In particular, a vent consists of a combination between a cavity, a channel, and a gap.

[0045] The vent preferably provides fluid communication between the odor chamber, which is a cavity in the separation module, and the odor outlet defined by the space between the sidewalls of the first bowl and the second feeding bowl, allowing odor to travel therethrough.

[0046] Furthermore, the vents are positioned so that the odors of the olfactory product do not pass through the food composition, i.e., the low-palatability food composition, but rather are directed outside the feeding bowl. As a result, they are not intimately mixed with the aroma or other ingredients from the food composition itself. Thus, when using the food bowl assembly according to the present disclosure, the aroma or odor generated by the olfactory product and then circulating along the vents does not come into contact with the food composition contained in the second feeding bowl and therefore does not cause physical or chemical changes to said food composition.

[0047] In some embodiments, the vent comprises a combination between a cavity, one or more channels, and a gap.

[0048] In particular, the food bowl assembly of the kit includes a gap disposed between the sidewalls of the first bowl and the second feeding bowl, the gap extending around the entire rim of the second feeding bowl.

[0049] In some embodiments, the first bowl and the second bowl are similarly shaped. By "similarly shaped," it is intended that one shape can become the other shape after resizing, flipping, sliding, or rotating. The term "similarly shaped" includes the same shape. In particular, the cross-sectional area of the second bowl is smaller than that of the first bowl so that the second bowl can be concentrically disposed within the first bowl and a gap remains between the outer surface of the wall of the first bowl and the inner surface of the wall of the second bowl.

[0050] In some embodiments, the gaps are of a constant width that exist between them.

[0051] The size of the gap is large enough to allow odors to freely emanate from the vent. However, it should not be too wide, as mammals such as cats may try to obstruct the food bowl assembly by inserting their claws, noses, or paws into the vent. Furthermore, if the gap between the first and second bowls is too large, the second bowl may move relative to the first bowl during use, potentially disturbing the mammal. Suitably, the gap between the second bowl and the first bowl in the food bowl assembly is 1 to 12 millimeters (mm), for example, 2 to 10 mm, e.g., approximately 7 mm.

[0052] The first bowl and second feeding bowl may be of any convenient cross-sectional shape, so for example they may be circular, square or rectangular in cross-section.

[0053] According to one embodiment of the present disclosure, a circular shape, such as, but not limited to, a circular or oval, is preferred for the second feeding bowl. According to another embodiment of the present disclosure, a circular shape, such as, but not limited to, a circular or oval, is preferred for the second feeding bowl and the first bowl.

[0054] In another embodiment, more specifically for cats, the second feeding bowl according to the present disclosure can be shallow and / or not very deep. Cats generally use their whiskers to sense danger in their surroundings, so a cat that is unsure of its surroundings or is nervous may prefer its whiskers to be free and not touch the sides of the bowl while eating. It has been suggested that deep bowls can be stressful for some cats, as they experience constant irritation from the sides of the bowl brushing against their whiskers. This is sometimes referred to as "whisker fatigue" or "whisker stress." In another alternative, the second feeding bowl can be wide and flat.

[0055] In another alternative, both the second feeding bowl and the first bowl are shallow and / or not very deep.

[0056] In another embodiment, the first bowl is designed to be at the same height as the second bowl, while the second bowl is only shallow and / or not very deep. Some mammals benefit from using elevated feeders. Elevating the food can help improve digestion, and many older mammals can benefit from having their food elevated off the floor, making it easier for them to eat and helping them get the most out of their food.

[0057] According to further embodiments, the height of the first bowl and the height of the second bowl are at the same level when positioned within the food bowl assembly of the present disclosure, particularly taking into account the presence of the odor chamber. Thus, in some embodiments of the food bowl assembly of the present disclosure, the top end of the wall of the first bowl and the top sidewall of the second bowl are at substantially the same level in a horizontal plane. In some of these embodiments, the top end of the wall of the second bowl may be lower in a horizontal plane than the top end of the wall of the first bowl. These embodiments ensure that the first bowl does not act as a barrier that discourages the mammal from feeding from the second bowl and also ensure that odors emanating from the gap are concentrated in the area of the mammal's head and are not excessively dispersed.

[0058] In some embodiments, the separation module is configured to fit between the solid bottom of the second feeding bowl and the bottom of the first bowl, and in particular between the bottom outer surface of the wall of the second feeding bowl and the bottom inner surface of the first bowl.

[0059] The separation module may have side walls, an outer surface, and an inner surface that define an odor chamber or cavity that may enclose an olfactory product, with at least one opening provided therein to allow the odor to escape from the cavity to the vent. This embodiment is particularly effective as the opening has the effect of concentrating upwardly moving odors and directing them towards the vent.

[0060] The vent may include one or more channels extending between the opening of the cavity and the gap between the sidewalls of the first bowl and the second feeding bowl.

[0061] In particular, one or more channels may be provided on the outer surface of the separation module, whereby the outer surfaces of the separation module and the bottom of the second feed bowl together define one or more channels, each of which may lead to a different point around the edge of the separation module.

[0062] In some embodiments, one or more channels provide odor communication between the odor chamber and the gap.

[0063] The channels may be arranged to allow for uniform distribution of odors from the cavity of the separation module to the vent substantially around the entire circumference of the vent.

[0064] Therefore, the separation module is (a) an odor chamber or cavity containing an olfactory product; (b) external surface; (c) at least one edge; (d) an opening located on the outer surface of the separation module; and (e) one or more channels on the outer surface of the separation module from the opening to the edge; Includes:

[0065] In particular, the separation module: (f) at least one support leg that elevates the opening and the channel above the floor of the first bowl; and (g) at least one support region defining an upper portion of the cavity and including an opening and one or more channels; Further includes:

[0066] In embodiments where the vent includes one or more channels extending between the odor cavity and the gap, the one or more channels may extend from such opening(s) into or between such support regions.

[0067] Suitably, a plurality of channels are provided on the outer surface of the separation module, each channel being positioned to be directed to a different point around the edge of the separation module. In particular, 2 to 12 channels, for example, about 8 channels, are provided on the outer surface of the separation module. These are suitably positioned to allow odor to be evenly distributed in the gap around the entire periphery of the second feeding bowl and the first bowl.

[0068] The food bowl assembly of the present disclosure may be modular in nature, such that the second feeding bowl, the first bowl, and the separation module can be assembled for use in situ and easily disassembled for cleaning after use.

[0069] In other embodiments, one or more of the second feeding bowl, the first bowl, and the separation module may be integrally formed with one another such that they provide a single component. For example, the second feeding bowl and the separation module may be integrally formed with one another.

[0070] In some embodiments, the separation module further includes a bottom wall to provide a separate holder for the olfactory product. In this embodiment, the olfactory product can be placed in the separation module, for example, by adding it through the opening on the outer surface before the separation module is placed in the first bowl. Then, a second feeding bowl is placed on the separation module to cover the outer surface of the separation module and close the opening located on the outer surface of the separation module, ensuring that the odor is directed along the channel.

[0071] In another embodiment, the separation module does not have a bottom wall or has an opening in its bottom wall. According to these embodiments, the olfactory product is placed in the central area of the bottom of the first bowl, and then the separation module is placed on top of it so that the olfactory product is enclosed in the cavity of the separation module. In this embodiment, the second feeding bowl is appropriately fixed in place on top of the separation module using fixing means such as tacks, nails, screws, or adhesive.

[0072] Alternatively, the separation module may be integrally formed with the second feeding bowl.

[0073] The opening on the exterior surface of the separation module must be of an appropriate size to allow odors to escape through it. If the separation module also forms a separate container as described above, it must be large enough to allow odorants to be introduced into the separation module. However, it must be small enough to ensure that it can be completely covered and effectively closed by adding a second feeding bowl to its surface. Typically, the opening is 1 to 10 centimeters (cm) in diameter, especially 2 to 6 cm.

[0074] The or each channel is suitably shaped into the outer surface of the separation module and is deep enough to allow gases, particularly odors, to travel along the channel into the gap between the second feeding bowl and the first bowl. The depth is constrained by the thickness of the outer surface of the separation module. Typically, each channel is 0.5 to 1.5 cm wide, for example about 1 cm wide, and up to 1 cm deep, for example up to 0.5 cm deep.

[0075] Although only one opening is required in the exterior surface of the separation module, additional openings can be provided if desired, in which case channels can extend from each of these to the edge of the separation module, provided, however, that the placement of the openings is such that all of the openings are effectively covered by the second feeding bowl when the second feeding bowl is in position on the separation module of the food bowl assembly of the present disclosure.

[0076] The size of the bowl will vary depending on the type of mammal being evaluated. For example, for a domestic cat, the bowl may be 8-20 cm wide, while a larger bowl, e.g., 10-30 cm wide, may be more suitable for a dog. In other embodiments, the food bowl assembly may have any shape suitable for the particular mammal.

[0077] As used herein, the term "bowl" encompasses the first bowl and the second feeding bowl.

[0078] The first bowl, the second bowl, and, if present, the separation module, can be made of any suitable rigid material. According to the present disclosure, the first bowl and / or the second bowl and / or the separation module, if present, can be made from, but not limited to, plastic, metal, glass, ceramic, or any other equivalent material. This includes plastics such as polyethylene, polypropylene, polyoxymethylene, or acetal-containing copolymers, such as natural acetal, or metal or metal alloys such as stainless steel. However, the material must not react with the food composition or any olfactory products or odors that it may come into contact with and must be relatively chemically inert. Furthermore, it must be easy to clean, non-toxic, and safe for chewing by mammals, such as babies, cats, or dogs, that use it. In some embodiments, the first bowl and / or the second bowl and / or the separation module, if present, can be made from stainless steel for hygienic and bacterial-resistant reasons, since bacteria cannot penetrate hard, non-porous surfaces. Such stainless steel bowls are resistant, easy to clean and chemically inert with respect to contact with food, since they do not emit or absorb. According to another embodiment, the first bowl and / or the second feeding bowl and / or the separation module, if present, can be made of ceramic or glass, since they are chemically inert with respect to contact with food or aromatic substances and exhibit good behavior with respect to inertia and chemical resistance.

[0079] It should be understood that both bowls can be made of different materials: by way of non-limiting example, the first bowl can be plastic for cost considerations or ceramic for aesthetics / design considerations, while the second feeding bowl can be stainless steel for hygiene and / or resistance considerations.

[0080] Furthermore, the weight of the food bowl assembly, particularly its size-to-weight ratio, should be such that it cannot be easily overturned or destroyed by a mammal. Typically, for cats, the total weight of the food bowl assembly should be in the range of 200 grams (g) to 2 kilograms (kg), e.g., 200 g to 300 g, with a size-to-weight ratio of 1:25 to 1:2.5. For dogs, the total weight of the food bowl assembly is suitably in the range of 1 to 5 kg, with a size-to-weight ratio of 1:20 to 1:4.

[0081] As used herein, the term "mammal"(s) includes a human or animal.

[0082] As used herein, the term "animal"(s) refers to a ruminant, poultry, pig, horse, mouse, rat, rabbit, guinea pig, hamster, cow, cat, or dog, preferably a pet. In a preferred embodiment, an animal according to the present disclosure is a feline or canine, e.g., a dog, cat, puppy, or kitten.

[0083] One embodiment of a food bowl assembly (100) of a kit according to the present disclosure is shown in FIG. 1, more specifically as a separation module (200) in FIGS.

[0084] The kit of the present disclosure includes a food bowl assembly as shown in FIG. 1, which includes a first bowl (101) capable of accommodating a second feeding bowl (102). The first bowl (101) includes an inner surface (1011), an outer surface (1012), and an upper end (1013). The second feeding bowl (102) includes a solid bottom (103) consisting of its bottom, a sidewall, an inner surface (1021), an outer surface (1022), and an upper end (1023). The second feeding bowl (102) has an inner surface (2001), an outer surface (2002), and is disposed on the upper surface of a separation module (200) defining an odor chamber or cavity (108) capable of containing an olfactory product (105). In the kit according to the present disclosure, the olfactory product (105) is presented separately from the food bowl assembly (100). Typically, in the kit according to the present disclosure, the olfactory product (105) is contained in a suitable container such as a can, pouch, flask, or tube, or any similar container known to those skilled in the art. Such a container may be steamed or sealed, and may also be sterilized. The olfactory product (105) is the second part of the kit of the present disclosure.

[0085] The outer surface (2002) of the separation module has openings (109). Additionally, the outer surface (2002) of the separation module has a plurality of channels (110) that radiate outward toward the edge (303) of the separation module (FIG. 3). The channels (110) are separated by support regions (302). Furthermore, the channels (110) include regions of reduced thickness compared to the support regions (302).

[0086] The second feeding bowl (102) is positioned on the outer surface (2002) of the separation module such that the outer surface (1022) of the second feeding bowl covers the opening (109) of the separation module. In this position, a gap (106) exists between the side wall (102) of the second feeding bowl and the side wall (101) of the first bowl, specifically between the outer surface (1022) of the second feeding bowl and the inner surface (1011) of the first bowl. The upper end (1013) of the first bowl wall and the upper end (1023) of the second feeding bowl wall are substantially at the same level according to a horizontal plane. Each channel (110) extends from the opening (109) of the separation module to the gap (106), providing fluid communication between the cavity (108) and the gap (106).

[0087] The combination of the openings (109), channels (110), and gaps (106) provides vents (113) that allow the olfactory product odor (107) formed within the cavity (108) to emanate from around the outer edge of the food bowl assembly. Thus, the olfactory product odor (107) can diffuse from the cavity through the vents (113) to the surface of the food bowl assembly (100) and blend with the odor of the food composition (112), if present. Illustratively, the olfactory product odor (107) can travel from the cavity (108) to the openings (109), from there to the channels (110), to the edge (303) of the separation module, and up through the gaps (106) to the top of the food bowl assembly (1013+1023) where it can be inhaled by the animal.

[0088] In the illustrated embodiment, the separation module (200) has support legs (301) that elevate the opening (109) and the channel (110) above the floor of the first bowl (101). However, in other embodiments, the separation module (200) may not have support legs, but instead may be supported directly on the support area (302). In such embodiments, the cavity (108) is defined by the opening (109).

[0089] In the illustrated embodiment of the kit, a user, e.g., a pet owner, adopts the food bowl assembly (100) and the olfactory product (105). The user then places the separation module (200) into the first bowl (101). The user places the desired olfactory product, such as methional or 2,5-dimethylpyrazine, into the cavity (108). The solid bottom (103) of the second feeding bowl (102) then engages or attaches to the outer surface (2002) of the separation module, joining them together, and the separation module is positioned between the bottom (104) of the first bowl and the solid bottom (103) of the second feeding bowl. The desired animal food composition (111), i.e., a low-palatability food composition, can then be placed into the second feeding bowl (102) for consumption by the animal, such as a dog or cat. After use, the food bowl assembly (100) can be disassembled for cleaning and reuse. In another embodiment, it can be developed as a disposable bowl.

[0090] According to the inventors, one of the important advantages of the food bowl assembly (100) of the present disclosure is that the separation module has no perforations on its outer surface, so that the olfactory product (105) is not in contact with the food composition (111) in the second feeding bowl (102). In this way, the user can use a moist or semi-moist food composition (111) without contaminating the aroma production of the olfactory product (105).

[0091] Second part: container containing olfactory product(s) The kit of the present disclosure comprises a second part comprising an olfactory product. In one embodiment, the kit of the present disclosure comprises a second part comprising a container comprising at least one olfactory product. In one embodiment, the kit of the present disclosure comprises a second part consisting of a container comprising at least one olfactory product.

[0092] The term "olfactory product" refers to any compound, composition, formulation, or other material useful for enhancing the appeal and palatability of edible compositions, such as food compositions, supplements, and pharmaceuticals. Thus, such olfactory products may contribute to initial appeal, continued consumption, or repeated presentation of palatability, or any combination thereof. Such products may include liquid and / or powdered palatable substances. Olfactory products may include fats and oils (poultry fat, tallow, etc.), flavors, chemical molecules, aroma substances, extracts (yeast, etc.), digests, hydrolysates (poultry liver, etc.), protein components (poultry flour, etc.), carbohydrate foods (e.g., poultry flour), carbohydrate foods (rice flour, etc.), powders, etc. For example, olfactory products may include flavorings, such as food flavorings, odor masking agents, and mixtures thereof (e.g., flavor compounds), as well as precursors of the above. Olfactory products do not consist of food or nutritional products.

[0093] In one embodiment, "olfactory product" refers to an odor product presented as a liquid, jelly, foam, oil, gel, solid form, fragrance cocktail, patch, powder, alcohol, fat, tab, or other suitable expression. In some embodiments, the olfactory product is in a liquid form, such as in the form of a solution or suspension. In other embodiments, the olfactory product may be in a solid form, such as in powder form.

[0094] According to certain embodiments of the present disclosure, the olfactory product may be, but is not limited to, a liquid, a paste, a powder, an encapsulated substance, a scratch and sniff pad, or any other equivalent.

[0095] The kits of the present disclosure may contain acetic acid, propanoic acid, butyric acid, 3-methylbutyric acid, hexanoic acid, citric acid, tartaric acid, fumaric acid, lactic acid, hexamic acid, butyl hexanoate, heptyl formate, ethyl decanoate, ethyl caprylate, acetaldehyde, 3-methylbutanal, pentanal, heptanal, octanal, benzaldehyde, anisole, pentanol, 2-ethylhexanol, 2,3-butanediol, thymol, carvacrol, 1,5-octadiene- 3-ol;Acetone;2,3-Pentanedione;2-Piperidione;2-Heptanone;1,5-Octadien-3-one;Ethyl vanillin;Vanillin;Pyrazine;Methylpyrazine;Methylpyrazine;2,5-Dimethylpyrazine;2,6-Dimethylpyrazine;2-Methyl-6-(methio)-pyrazine;2-Ethyl-3,5-dimethylpyrazine;2-Ethyl-5-methylpyrazine;2-Ethyl-6-methylpyrazine;Ethylpyrazine;2-Pentylfuran; The second portion comprises an olfactory product which may be selected from 2-ethylfuran; 2,5-dimethylfuran; 2-[(methyldithio)methyl]-furan; 2-(2-propenyl)-furan; 2-furanmethanol; 4-hydroxy-3(2H)-furanone and alkyl-substituted 4-hydroxy-3(2H)-furanone compounds; indole; furfural; sulfurol; 2-acetylpyridine; 2,3-dihydrothiophene; 2-methylthiophene; 3-methylthiophene; 2,5-dimethylthiophene; dihydro-2-methyl-3(2H)-thiophene; benzo[b]thiophen-4-ol; 5-methyl-2-thiophenecarboxaldehyde; methyl ethyl disulfide; dimethyl trisulfide; methyl-2-methyl-3-furyl disulfide; 2-methyl-1-ethylpyrrolidine; 2-acetylthiazole; 4-methylthiazole; 2-ethylthiazole; theanine; glutamine; tea; and mixtures thereof.

[0096] In one embodiment of the present disclosure, the kit comprises a second part consisting of a container containing at least one olfactory product selected from fats, oils, flavors, fragrances, chemical molecules, aroma substances, extracts, digestates, hydrolysates, protein ingredients, carbohydrate foods or powders.

[0097] In another embodiment of the present disclosure, the kit includes any of acetic acid; propanoic acid; butyric acid; 3-methylbutyric acid; hexanoic acid; citric acid; tartaric acid; fumaric acid; lactic acid; hexamic acid; butyl hexanoate; heptyl formate; ethyl decanoate; ethyl caprylate; acetaldehyde; 3-methylbutanal; pentanal; heptanal; octanal; benzaldehyde; anisole; pentanol; 2-ethylhexanol; 2,3-butanediol; thymol; carvacrol; 1,5-octanol; Dien-3-ol;Acetone;2,3-Pentanedione;2-Piperidione;2-Heptanone;1,5-Octadien-3-one;Ethyl vanillin;Vanillin;Pyrazine;Methylpyrazine;Methylpyrazine;2,5-Dimethylpyrazine;2,6-Dimethylpyrazine;2-Methyl-6-(methio)-pyrazine;2-Ethyl-3,5-dimethylpyrazine;2-Ethyl-5-methylpyrazine;2-Ethyl-6-methylpyrazine;Ethylpyrazine;2-Pentylfuran;2 and a second portion comprising a container containing at least one chemical molecule selected from the group consisting of 4-ethylfuran; 2,5-dimethylfuran; 2-[(methyldithio)methyl]-furan; 2-(2-propenyl)-furan; 2-furanmethanol; 4-hydroxy-3(2H)-furanone and alkyl-substituted 4-hydroxy-3(2H)-furanone compounds; indole; furfural; sulfurol; 2-acetylpyridine; 2,3-dihydrothiophene; 2-methylthiophene; 3-methylthiophene; 2,5-dimethylthiophene; dihydro-2-methyl-3(2H)-thiophene; benzo[b]thiophen-4-ol; 5-methyl-2-thiophenecarboxaldehyde; methyl ethyl disulfide; dimethyl trisulfide; methyl-2-methyl-3-furyl disulfide; 2-methyl-1-ethylpyrrolidine; 2-acetylthiazole; 4-methylthiazole; 2-ethylthiazole; theanine; glutamine; tea; and mixtures thereof.

[0098] In an embodiment, an olfactory product suitable for the present invention may have an odor or smell similar to or similar to one or more of meat, poultry, fish, marine life, mollusks, shellfish, cheese, bacon, butter, cream, game, gravy, rabbit, turkey, poultry, rodents, mice, birds, plants, yeast, seafood, and / or extracts of any one or more thereof.

[0099] In an embodiment, the olfactory product suitable for the kit of the present invention may comprise the olfactory compound as defined above, formulated with at least one formulation ingredient (liquid, solid, powder, or paste) to provide a suitable consistency. Suitable formulation ingredients may be water, oil, flour, starch, or carbohydrates such as maltodextrin.

[0100] An olfactory product may comprise at least one olfactory compound as defined above.

[0101] In an embodiment, the olfactory product comprises a compound selected from the above list or a mixture thereof as the only olfactory compound.

[0102] In an embodiment, the olfactory product comprises one olfactory compound selected from the list defined above, including mixtures thereof, and at least one formulation ingredient.

[0103] Within the present disclosure, the term "alkyl" refers to a C1-C6, preferably C1-C4, more preferably C1-C3, more preferably C1-C2 linear or branched saturated alkyl moiety.

[0104] In embodiments, the alkyl substituted 4-hydroxy-3(2H)-furanone compound may be selected from: 5-methyl-4-hydroxy-3(2H)-furanone; 2,5-dimethyl-4-hydroxy-3(2H)-furanone; 5-methyl-2-ethyl-4-hydroxy-3(2H)-furanone; 5-ethyl-2-methyl-4-hydroxy-3(2H)-furanone; and 2,5-diethyl-4-hydroxy-3(2H)-furanone, and mixtures thereof.

[0105] In other embodiments, olfactory products suitable for the present invention can be formulated as described in WO 2010 / 018365 A1, the contents of which are incorporated herein by reference. In another embodiment, the olfactory product can be selected from commercially available products such as, but not limited to, palatability solutions named D'TECH PALATABILITY ENHANCER (for dogs) or C'SENS PALATABILITY ENHANCER (for cats).

[0106] In another embodiment, the olfactory product may be chosen from 2,5-dimethylpyrazine, 4-hydroxy-3-methoxy-benzaldehyde (=vanillin) and methional.

[0107] Other possible olfactory products useful for the disclosure include beef flavor OF9137, chicken flavor (OF6320), and mackerel flavor (OF2257) available from Aromco Ltd, Bellfarm Industrial Park, Nutthamstead, Hertfordshire, UK, which have been found to provide excellent attractant properties when used in amounts ranging from 0.25% to 3% by weight of the total weight of the olfactory product.

[0108] In other embodiments, an olfactory product suitable for the present disclosure may be one of the exemplary compositions of Examples 1 to 4 described in WO 2010 / 018365 A1, the contents of which are incorporated herein by reference.

[0109] Olfactory compounds: hexanoic acid; acetaldehyde; 2-heptanone; butyl hexanoate; heptyl formate; methylpyrazine; 2,5-dimethylpyrazine; pentanal; ethyl decanoate; heptanal; octanal; pentanol; acetone; ethyl caprylate; 3-methylbutanal; anisole; 2-ethylhexanol; 2-pentylfuran; 2,3-butanediol; benzaldehyde; ethyl vanillin; and vanillin, as described in Maoshen et al. 2016 (Optimization of key aroma compounds for dog food attractant in Animal Feed Science and Technology ) is described in

[0110] The olfactory compounds: butyric acid; 3-methylbutyric acid; 2-piperidione; 2,3-pentanedione; 2-ethyl-3,5-dimethylpyrazine; furfural; sulfurol; and indole are described in WO 2010 / 138372, the entire contents of which are incorporated herein by reference.

[0111] The olfactory compounds: 2-acetylpyridine; 2-acetylthiazole and 4-hydroxy-5-methyl-3(2H)-furanone are described in Hautala J. Improving the Palatability of Minitablets for Feline Medication. Helsinki: University of Helsinki, 2017. 72 p. (Dissertationes Scholae Doctoralis Ad Sanitatem Investigandam Universitatis Helsinkiensis; 2017 / 23).

[0112] The olfactory compounds: thymol (also known as "5-methyl-2-isopropylphenol") and carvacrol (also known as "2-methyl-5-isopropylphenol") are described in U.S. Patent Application Publication No. 2005 / 0112259, the entire contents of which are incorporated herein by reference.

[0113] Olfactory compounds:2-Ethylfuran;2,3-Dihydrothiophene;Methylpyrazine;2-Furanmethanol;Ethylpyrazine;2-Ethyl-5-methylpyrazine;2-Methyl-6-(methio)-pyrazine;2.5-Dimethylfuran;2-Methylthiophene;Methylethyl disulfide;2,5-Dimethylpyrazine;2-Methyl-1-ethylpyrrolidine;2-Ethyl-6-methylpyrazine;2-[(methyldithio)methyl]-furan;Pyrazine;3-Methylthiophene;2-(2-Propenyl)-furan ; 2,6-dimethylpyrazine; dimethyl trisulfide (DMTS); 5-methyl-2-thiophenecarboxaldehyde; benzo[b]thiophen-4-ol; propanoic acid; 4-methylthiazole; 2,5-dimethylthiophene; ethyl thiazone; dihydro-2-methyl-3(2H)-thiophene; and methyl-2-methyl-3-furyl disulfide are described in U.S. Pat. No. 6,660,319 (B1), the entire contents of which are incorporated herein by reference.

[0114] The olfactory compounds: theanine; glutamine; tea; 1,5-octadien-3-one; and 1,5-octadien-3-ol are described in U.S. Patent Application Publication No. 2008 / 0299286 A1, the entire contents of which are incorporated herein by reference.

[0115] The olfactory compounds: citric acid; tartaric acid; fumaric acid; lactic acid; acetic acid; and hexamic acid are described in U.S. Pat. No. 3,679,429, the entire contents of which are incorporated herein by reference.

[0116] Olfactory compounds: alkyl-substituted 4-hydroxy-3(2H)-furanone compounds, as well as selected compounds 5-methyl-4-hydroxy-3(2H)-furanone; 2,5-dimethyl-4-hydroxy-3(2H)-furanone; 5-methyl-2-ethyl-4-hydroxy-3(2H)-furanone; 5-ethyl-2-methyl-4-hydroxy-3(2H)-furanone; and 2,5-diethyl-4-hydroxy-3(2H)-furanone, are described in WO 2005 / 053421 A2, the entire contents of which are incorporated herein by reference.

[0117] The olfactory product contains acetic acid as an olfactory compound. The olfactory product contains propanoic acid as an olfactory compound. The olfactory product contains butyric acid as an olfactory compound. The olfactory product contains 3-methylbutyric acid as an olfactory compound. The olfactory product contains hexanoic acid as an olfactory compound. The olfactory product contains citric acid as an olfactory compound. The olfactory product contains tartaric acid as an olfactory compound. The olfactory product contains fumaric acid as an olfactory compound. The olfactory product contains lactic acid as an olfactory compound. The olfactory product contains hexamic acid as an olfactory compound. The olfactory product contains butyl hexanoate as an olfactory compound. The olfactory product contains heptyl formate as an olfactory compound. The olfactory product contains ethyl decanoate as an olfactory compound. The olfactory product contains ethyl caprylate as an olfactory compound. The olfactory product contains acetaldehyde as an olfactory compound. The olfactory product contains 3-methylbutanal as an olfactory compound. The olfactory product contains pentanal as an olfactory compound. The olfactory product contains heptanal as an olfactory compound. The olfactory product contains octanal as an olfactory compound. The olfactory product contains benzaldehyde as an olfactory compound. The olfactory product contains anisole as an olfactory compound. The olfactory product contains pentanol as an olfactory compound. The olfactory product contains 2-ethylhexanol as an olfactory compound. The olfactory product contains 2,3-butanediol as an olfactory compound. The olfactory product contains thymol as an olfactory compound. The olfactory product contains carvacrol as an olfactory compound. The olfactory product contains 1,5-octadien-3-ol as an olfactory compound. The olfactory product contains acetone as an olfactory compound. The olfactory product contains 2,3-pentanedione as an olfactory compound. The olfactory product contains 2-piperidione as an olfactory compound. The olfactory product contains 2-heptanone as an olfactory compound. The olfactory product contains 1,5-octadien-3-one as an olfactory compound. The olfactory product contains ethyl vanillin as an olfactory compound. The olfactory product contains vanillin as an olfactory compound. The olfactory product contains pyrazine as an olfactory compound. The olfactory product contains methylpyrazine as an olfactory compound. The olfactory product contains 2,5-dimethylpyrazine as an olfactory compound.The olfactory product contains 2,6-dimethylpyrazine as an olfactory compound. The olfactory product contains 2-methyl-6-(methio)-pyrazine as an olfactory compound. The olfactory product contains 2-ethyl-3,5-dimethylpyrazine as an olfactory compound. The olfactory product contains 2-ethyl-5-methylpyrazine as an olfactory compound. The olfactory product contains 2-ethyl-6-methylpyrazine as an olfactory compound. The olfactory product contains ethylpyrazine as an olfactory compound. The olfactory product contains 2-pentylfuran as an olfactory compound. The olfactory product contains 2-ethylfuran as an olfactory compound. The olfactory product contains 2,5-dimethylfuran as an olfactory compound. The olfactory product contains 2-[(methyldithio)methyl]-furan as an olfactory compound. The olfactory product contains 2-(2-propenyl)-furan as an olfactory compound. The olfactory product contains 2-furanmethanol as an olfactory compound. The olfactory product contains 4-hydroxy-3(2H)-furanone as an olfactory compound. The olfactory product contains an alkyl-substituted 4-hydroxy-3(2H)-furanone compound as an olfactory compound. The olfactory product contains indole as an olfactory compound. The olfactory product contains furfural as an olfactory compound. The olfactory product contains sulfurol as an olfactory compound. The olfactory product contains 2-acetylpyridine as an olfactory compound. The olfactory product contains 2,3-dihydrothiophene as an olfactory compound. The olfactory product contains 2-methylthiophene as an olfactory compound. The olfactory product contains 3-methylthiophene as an olfactory compound. The olfactory product contains 2,5-dimethylthiophene as an olfactory compound. The olfactory product contains dihydro-2-methyl-3(2H)-thiophene as an olfactory compound. The olfactory product contains benzo[b]thiophen-4-ol as an olfactory compound. The olfactory product contains 5-methyl-2-thiophenecarboxaldehyde as an olfactory compound. The olfactory product contains methyl ethyl disulfide as an olfactory compound. The olfactory product contains dimethyl trisulfide as an olfactory compound. The olfactory product contains methyl-2-methyl-3-furyl disulfide as an olfactory compound. The olfactory product contains 2-methyl-1-ethylpyrrolidine as an olfactory compound.The olfactory product contains 2-acetylthiazole as an olfactory compound. The olfactory product contains 4-methylthiazole as an olfactory compound. The olfactory product contains 2-ethylthiazole as an olfactory compound. The olfactory product contains theanine as an olfactory compound. The olfactory product contains glutamine as an olfactory compound. The olfactory product contains tea as an olfactory compound.

[0118] The olfactory products include mixtures of the compounds listed above as olfactory compounds, in particular mixtures containing two, three, four, five, six or more, up to 11, 12, 13, 14 or 15 of any of the compounds listed above.

[0119] According to an embodiment, the kit according to the present disclosure comprises a container containing one olfactory product specific to the mammal to be fed.

[0120] According to another embodiment, a kit according to the present disclosure includes a container containing several different olfactory products.

[0121] According to another embodiment, the kit according to the present disclosure comprises several containers each containing a different olfactory product, where "different olfactory products" should be understood to mean chemically different olfactory products or the same olfactory product but in different concentrations.

[0122] Having different olfactory products in a kit, whether in the same or separate containers, can be useful because it allows pet owners to i) choose the olfactory product that is best suited to their pet and / or ii) adapt the olfactory product to their particular situation.

[0123] It is to be noted that those skilled in the art can find lists of active ingredients that can be used in olfactory products suitable for implementing the present disclosure in databases provided by various specialized pet food associations, such as AAFCO (American Feed Control Association) or FEDIAF (Federation of European Pet Food Industry Associations).

[0124] According to another embodiment of the present disclosure, the kit may further comprise a food composition. Thus, the present disclosure relates to a kit comprising: (i) a first part having a food bowl assembly, the food bowl assembly comprising: (a) The first bowl described; (b) a second feeding bowl, as described, disposed within the first bowl and intended to receive food; (c) a separation module, as described, arranged to fit between the second feeding bowl and the first bowl and intended to receive an olfactory product; and (d) a vent positioned to allow odors from the olfactory product in the separation module to exit the food bowl without passing through the food in the second feeding bowl, as described. a first portion including: (ii) a second part having a first container containing at least one olfactory product; and (iii) a third part consisting of a second container containing a food composition; The present invention relates to a kit comprising:

[0125] As used herein, the term "food composition" or "diet" extends to all foods, diets, dietary supplements, liquids, or materials that may contain protein, carbohydrates, and / or crude fat. Food compositions may also include supplemental substances or additives, such as, for example, minerals, vitamins, and flavorings (see Merriam-Webster's Collegiate Dictionary, 10th Edition, 1993).

[0126] The food composition may be a dry, moist or semi-moist food composition, a liquid, a gel, a gravy, a congee, a soup, and in particular a wet food composition.

[0127] As used herein, the term "wet food" or "wet food composition" generally refers to a food composition having a moisture content of 30% or more, or more than 40% by weight, relative to the total weight of the food composition. Preferably, the wet food composition has a moisture content of less than 90% by weight, relative to the total weight of the food composition. Generally, it is the end product of a process that includes a final step of sterilization (instead of a drying step). In a preferred embodiment, the wet food consists of chunks in chunk form, more specifically in gravy form. Preferably, the wet food consists of chunks and chunks in the form of gravy, jelly, loaf, mousse, terrine, or bites. "Chunk and gravy" products include preformed meat particles prepared by making a meat emulsion, forcing the meat emulsion through a muzzle under pressure, and then cooking. The cooked meat product is diced into chunks and finally mixed with gravy or sauce. The two ingredients are then filled into a container, usually a can or pouch, seamed or sealed, and sterilized. In contrast to a ground loaf, a chunk and gravy composition has physically separated, individual chunks (i.e., pieces of ground meat and grain) during preparation. These individual particles reside in a gravy-type liquid in the final container. Upon serving, the chunk and gravy product flows out of the can and can be easily mixed with other dry products. While chunk and gravy products allow for better integrity of the individual ingredients, the uneven blending of chunk and gravy products may not be preferred by consumers. Wet food compositions are generally packaged in containers such as cans and are considered "wet" in appearance due to the moisture contained therein. Two types of wet compositions are commonly known in the art. The first is known in the art as a "ground loaf." Loaf products are typically prepared by contacting a mixture of ingredients under heat to produce a substantially homogenous, intracellular honeycomb-type mass or "ground loaf." The ground loaf mass is then filled into cylindrical containers such as cans.When packaged, the ground loaf takes the shape of the container, and when feeding the pet, the ground loaf needs to be cut. The wet food composition is preferably packaged. In this way, the consumer can identify the ingredients of the food from the packaging and confirm that it is suitable for the particular pet in question. The packaging can be metal, plastic, paper, or card.

[0128] As used herein, the term "dry food" or "dry food composition" generally refers to a food or composition having a moisture content of less than 12% by weight relative to the total weight of the food composition, and generally less than 7% by weight relative to the total weight of the food composition. In a preferred embodiment, a dry food according to the present disclosure has a moisture content of up to 12% by weight. In some embodiments, the dry food has a moisture content of 7% or less, e.g., 5% by weight. In a preferred embodiment, the dry food has a moisture content of more than 3% by weight relative to the total weight of the food composition. For example, the examples provided herein show a dry food having a moisture content of 9.5% by weight relative to the total weight of the food composition. In a preferred embodiment, the dry food comprises kibble. Preferably, for example and without limitation, kibble includes granules; pellets; pieces of pet food, dehydrated meat, meat analogs, vegetables, and the like, and combinations thereof; and pet snacks such as meat or vegetable jerky, rawhide, and biscuits. Dry food compositions can be produced by mixing and kneading ingredients to create a consistent dough that can be cooked. Generally, this may be the end product of a process that includes an extrusion step followed by a drying step.

[0129] The process of producing dry food is typically carried out by baking and / or extrusion. The dough is typically fed into a machine called an expander and / or extruder, which uses pressurized steam or hot water to cook the ingredients. While in the extruder, the dough is subjected to extreme pressure and high temperature. The dough is then forced through a die (holes of a specific size and shape) and then cut using a knife. The expanded dough pieces are passed through a dryer to form kibble, reducing the moisture content to a specified target and ensuring food stability until consumption. The kibble can then be sprayed with a cocktail of fats, oils, minerals, vitamins, and natural extracts and optionally sealed in a sealed package. The dry food composition is preferably packaged. In this way, consumers can identify the food's ingredients from the packaging and confirm that it is suitable for the particular pet in question, i.e., dog. The packaging can be metal, plastic, paper, or card.

[0130] As used herein, the terms "semi-moist food" or "semi-moist food composition" generally refer to a food composition having an intermediate moisture content of about 12% to about 30% relative to the total weight of the food composition. Therefore, such semi-moist food compositions are generally the end product of a process that can achieve a moisture content value intermediate between dry food and wet food. In some embodiments, the process may include adding a humectant. In some embodiments, the process includes an extrusion step followed by a superheated steam (SHS) treatment step. In some embodiments, semi-moist food products according to the present disclosure contain more than 12% and up to 30% moisture by weight relative to the total weight of the food composition. Illustratively, semi-moist food compositions have a moisture content of 11% to 25% by weight relative to the total weight of the food composition and / or a water activity of 0.64 to 0.75, preferably both, relative to the total weight of the food composition.

[0131] The second container can be selected from, by way of non-limiting example, a can, a pouch, a tube, or a bag.

[0132] Methods and Therapeutic Uses A further aspect of the present disclosure relates to a method of use for the treatment and / or prevention of food aversion in a mammal, such as a cat or dog.

[0133] In particular, the present disclosure relates to a method of stimulating appetite in a mammal, the method comprising: (i) providing a kit as described throughout this disclosure; (ii) placing the second portion of olfactory product in the separation module of the food bowl assembly (in the odor chamber, if present); (iii) placing a food composition within a second feeding bowl to provide an operable food bowl assembly; and (iv) allowing a mammal to access the operable food bowl assembly obtained in step (iii). Includes:

[0134] In another embodiment of the present disclosure, the mammal for which appetite is intended to be stimulated is a mammal suffering from a food aversion disease or disorder.

[0135] In another embodiment, the present disclosure relates to a method of treating and / or preventing food aversion in a mammal, the method comprising: (i) providing a food bowl assembly as described throughout this disclosure; (ii) placing the second portion of olfactory product in the separation module of the food bowl assembly (in the odor chamber, if present); (iii) placing a food composition within a second feeding bowl to provide an operable food bowl assembly; and (iv) allowing a mammal to access the operable food bowl assembly obtained in step (iii). As used herein, "food aversion" refers to an eating disorder that compromises an animal's health and causes undesirable effects in the animal, such as kidney damage, nutritional deficiencies, energy deficiencies, or ineffective therapeutic treatments associated with the ingestion of a food composition. Food aversion can occur when a mammal associates the taste of a food composition with symptoms caused by an addictive, spoiled, or toxic substance. Generally, food aversion develops after ingestion of a food composition that causes nausea, retching, or vomiting.

[0136] A further aspect of the present disclosure relates to a method of use for the treatment and / or prevention of anorexia in a mammal, such as a cat or dog, suffering from a disease or disorder.

[0137] In particular, the present disclosure relates to a method for treating and / or preventing anorexia in a mammal suffering from a disease or disorder, the method comprising: (i) providing a kit as described throughout this disclosure; (ii) placing the second portion of olfactory product in the separation module of the food bowl assembly (in the odor chamber, if present); (iii) placing a food composition within a second feeding bowl to provide an operable food bowl assembly; and (iv) allowing a mammal to access the operable food bowl assembly obtained in step (iii). Includes:

[0138] Furthermore, refusal of a hypopalatable diet can occur when the mammal dislikes the smell of the food composition or when the food composition has no smell, i.e., a hypopalatable food composition, including a non-palatable food composition, such as a hypoallergenic or allergenic diet.

[0139] In one embodiment, the food composition may be a low-palatability food composition. Such low-palatability food compositions thus include non-palatable food compositions, such as allergenic and / or hypoallergenic foods.

[0140] As used herein, the term "low palatability" relates to products that do not produce a pleasant sensation when consumed or that are unappealing in terms of smell, including non-palatable food compositions, such as hypoallergenic or allergy foods.

[0141] As used herein, the term "hypoallergenic diet" or "allergy diet" refers to a food composition that is compatible with an allergen-restricted diet. These hypoallergenic diets may be non-palatable or inappropriate for certain animals, causing the animal to develop an aversion to the food composition. Hypoallergenic diets encompass therapeutic food compositions.

[0142] Illustratively, the therapeutic or dietary food may be a urinary health food composition, such as, for example, Renal Select Feline or Instinctive, manufactured by Royal Canin®.

[0143] In particular embodiments, the food composition comprises a dry, moist or semi-moist food composition, a liquid, a gel, a gravy, a congee, a soup, and in particular a wet food composition.

[0144] Thus, in some embodiments, the kits of the present disclosure make available wet food compositions, i.e., wet food compositions with reduced palatability.

[0145] In another embodiment, the food composition comprises a urinary health food.

[0146] Thus, the present disclosure relates to a method for making a mammal that is reluctant to eat a food composition reluctant to eat the food composition. In particular, the method is useful for a mammal that is reluctant to eat a non-palatable food composition.

[0147] A further aspect of the present disclosure relates to a kit as described above for use in a method of treating and / or preventing a disease or disorder in a mammal.

[0148] A further aspect of the present disclosure relates to a kit as described above for use in a method for treating and / or preventing a disease or disorder caused by food aversion in a mammal.

[0149] In particular, the present disclosure relates to a kit comprising: (i) a first part comprising a food bowl assembly having a first bowl, a second feeding bowl disposed within the first bowl, and a separation module, and (ii) a second part comprising an olfactory product, for use in a method of treating and / or preventing a disease or disorder in a mammal, wherein a food product adapted to treat and / or prevent said disease or disorder causes said mammal to have a food aversion.

[0150] The disease or disorder causes hyposmia, partial anosmia, loss of appetite, and food aversion, which leads to weight loss and increased suffering in the mammal.

[0151] As used herein, the disease or disorder according to the present disclosure can be selected from the group consisting of obesity, anorexia, high blood pressure, heart disease, chronic food allergies, severe osteoarthritis, kidney disease, diabetes, urinary incontinence, bladder stones, chronic urinary tract infections, gastroenteritis, pancreatitis, depression, hypothyroidism, cancer, heart disease, aging, immunosuppressive diseases.

[0152] As detailed elsewhere herein and shown in the Examples, the kits described herein act positively against food aversion in mammals, namely cats and / or dogs.

[0153] In particular, the mammal is fed an allergenic diet or a hypo-palatable food composition, such as a hypoallergenic diet or food composition.

[0154] According to a further embodiment, the kit is used in a method for preventing and / or treating a mammal suffering from a disease or disorder caused by food aversion, more preferably a mammal suffering from a renal disease.

[0155] As used herein, the term "prevention" can also include reducing the likelihood of the occurrence or recurrence of a given condition in a mammal.

[0156] The duration of feeding using the kits described herein can range from a few weeks to several years, depending in particular on the duration of treatment for the disease being treated.

[0157] According to the inventors, in the case of wet foods, the kit of the present disclosure allows for avoiding food waste since the mammalian food composition is consumed immediately after it is provided. Indeed, food compositions that are left in the air for too long can dry out, become oxidized, or become contaminated and be wasted.

[0158] In a further embodiment, the kit of the present disclosure is used to increase the palatability of a food composition, in particular the palatability of a low-palatability food composition, i.e. a hypoallergenic or allergen-free diet.

[0159] Methods and Other Non-Therapeutic Uses In one embodiment, the present disclosure relates to a method of stimulating appetite in a mammal, the method comprising: (i) providing a kit as described throughout this disclosure; (ii) placing the second portion of olfactory product in the separation module of the food bowl assembly (in the odor chamber, if present); (iii) placing a food composition within a second feeding bowl to provide an operable food bowl assembly; and (iv) allowing a mammal to access the operable food bowl assembly obtained in step (iii). Includes:

[0160] In certain embodiments of the present disclosure, the mammal for which appetite is intended to be stimulated is a senescent or elderly mammal.

[0161] The present invention also relates to kits for use in methods for stimulating appetite in a mammal, increasing food attractiveness, compensating for lack of fat in food, aromatizing the environment of a food bowl assembly to increase water intake, increasing flavor and / or odor intensity, stimulating the sense of smell, limiting the effect of monotony with the same food, and treating olfactory dysfunction, anorexia, or food aversion due to disease in a mammal.

[0162] A further aspect of the present disclosure relates to methods for stimulating appetite and / or attractiveness of a food to increase its palatability and enable a mammal to eat its recommended daily caloric intake, which may be useful for low palatability food compositions or in situations of stress.

[0163] A further aspect of the present disclosure relates to methods for compensating for dietary fat deficiencies using aromatic allure to stimulate appetite for healthier (but less palatable) diets, which may motivate or assist a mammal to, for example, complete a weight management program.

[0164] A further aspect of the present disclosure relates to a method for scenting the environment of a food bowl assembly to enhance water intake, which may be of particular interest to mammals such as cats that are known not to drink enough water.

[0165] A further aspect of the present disclosure relates to a method of enhancing the odor of a food composition to increase the appeal of the diet (natural, pathological, etc.) to mammals with limited olfactory acuity, which may be useful for brachycephalic breeds such as dogs, which have reduced olfactory acuity due to narrow nostrils and / or reduced airflow.

[0166] A further aspect of the present disclosure relates to methods for maximizing the likelihood that a mammal will accept a new food composition, which may, for example, help breeders facilitate the transition of kittens or puppies from mother's milk to solid food compositions, i.e., dry, moist, or semi-moist food compositions.

[0167] It can also be used in food transitions: for example, to maximize the likelihood that a pet will accept a new food composition, a kit according to the present disclosure can be used before, during, and / or after transition to ensure that the two foods have a common odor that the pet recognizes, aiding in the transition, such as odor imprinting.

[0168] A further aspect of the present disclosure relates to methods for increasing flavor and / or odor concentration to enhance attractiveness during extreme weather conditions, which can be very useful, for example, for sled dogs that need to be fed during travel and extreme weather conditions where flavor release is poor due to low temperatures.

[0169] As senescent or elderly mammals age, they lose their major senses, including their sense of smell. As a result, their appetite may decrease.

[0170] Another aspect of the present disclosure can consist of a method for stimulating the sense of smell to enhance the eating experience and caloric intake of an aging mammalian population.

[0171] A further aspect of the present disclosure relates to a method for limiting the monotony effect in some food compositions, more particularly dry food compositions. The food bowl assembly according to the present disclosure can be used as a tool to provide a variety of flavors to stimulate mammalian consumption and allow the parent / owner to emotionally participate in the mammalian eating event. This can be particularly applicable to babies, kittens / puppies, miniature dogs or cats.

[0172] Another particularly preferred embodiment of the present disclosure is a method for screening and identifying flavors or olfactory products preferred by mammals. For example, by way of non-limiting example, it can be useful in the process of personalization programs. A kit according to the present disclosure can be used as a tool to provide mammals with olfactory transduction mechanisms to suit their individual preferences. A kit according to the present disclosure can be used as a diagnostic tool to assist in screening and identifying suitable compounds for individual mammals that switch between different families of transduction mechanisms.

[0173] Another embodiment of the present disclosure relates to a method for screening and identifying mammalian preferred olfactory products, the method comprising: (i) providing a kit according to the present disclosure; (ii) placing the second portion of the olfactory product to be tested in the separation module of the food bowl assembly (in the odor chamber, if present); (iii) placing a food composition within a second feeding bowl to provide an operable food bowl assembly; and (iv) providing a mammal with access to the operable food bowl assembly obtained in step (iii); (v) repeating steps (i) to (iv) for each olfactory product to be tested; (vi) selecting an olfactory product for which the mammal has shown preference for the food in the second feeding bowl; Includes:

[0174] A particular advantage of this method is that it can be performed directly at home by pet owners. Another advantage is that it can be repeated to take into account potential evolution of mammal preferences.

[0175] Another potential use or application of the present disclosure is to aid in the diagnosis or prognosis of neurodegenerative diseases. For example, a decreased sense of smell is often an early sign of diseases such as neurodegenerative diseases. The food bowl assembly of the present disclosure can be used to diagnose olfactory thresholds, which can provide a new method for predicting the onset of these degenerative diseases.

[0176] Another advantage of the present disclosure is that it maintains palatability and helps stimulate appetite in food compositions with reduced palatability levels, which may be the case in food compositions with reduced levels of palatability substances, or in products where the palatability performance of the palatability substances has decreased over their shelf life. [Example]

[0177] 1 / Materials and Methods 1.1 The following Examples 1 and 6 were conducted according to the protocol "ranking wet cats" described below.

[0178] A rank test can be used to evaluate product intake by pets after monadic (single) product presentation. A crossover design is employed to ensure all products are tested on each test day. Each product is ranked alongside the others based on intake. A standard rank test is typically used to evaluate two to four products. The following assumptions are used: The expected results of the test should be clearly stated before the test begins.

[0179] ● Null hypothesis The cats do not discriminate between the products offered, i.e. the difference in mean intake between the products is not significant (p-value > 0.05, mixed model ANOVA).

[0180] A minimum of 30 healthy adult cats must be used in a cattery trial.

[0181] Wet: All products must be offered to the cat for 20 minutes.

[0182] Dry: All products must be offered to the cat for 16 hours.

[0183] Food is provided in excess so that differences in feeding capacity can be assessed.

[0184] The morning feeding in the wet test is classified as the test meal. The overnight dry feeding is classified as the test meal in the dry test.

[0185] Table 1 below details the amounts that need to be provided for wet or dry cat rank testing in the cattery:

[0186] [Table 1]

[0187] A consistent feeding regime should be maintained during rest days to ensure consistency.

[0188] For cats around 5% of ideal body weight, the non-test diet can be adjusted accordingly to maintain ideal body weight. An overnight dry diet on the day before the wet test can be adjusted to help maintain body weight. Must not .

[0189] Appropriate product rotation is used to ensure there is no bias due to product presentation order or day effect.

[0190] One product is offered each day and the pets are tested on all products during the feeding trial.

[0191] With 30 cats, the minimum number of exposures per product in the study is two. A 5% significance level is used in the standard analysis, and this significance level is the default option for the analysis. A mixed model analysis is performed on intake (g). This is used to assess the difference in mean intake between the test products at a 5% significance level. Pairwise comparisons between products are performed using Tukey HSD tests. The mean intake for each product is reported at the 95% Tukey HSD comparison interval. The results of the mixed model ANOVA should be interpreted as follows: ■α is the "critical p-value" set before the test (e.g., α=<0.05 or α=<0.1, depending on the purpose of the test).

[0192] ■ p-value > α - there is no significant difference in the feeding ability of one or more products (no significant difference is not the same as parity. Parity can only be specified if it needs to be ensured for use; equivalence or non-inferiority trials are performed). It is important to note here that this does not mean that the products are "the same" and that a non-inferiority trial needs to be constructed to draw this conclusion.

[0193] ■ p-value ≤ α - the feeding capacity of one or more products is significantly higher.

[0194] 1.2 The following Examples 2, 3, 4, 5, 9 and 10 were carried out according to the protocol "Wet for Cats" described below.

[0195] The discrimination test involves simultaneous presentation of two products. A crossover design is used to ensure that the location of the FBA does not bias the results of the test.

[0196] Use the following assumptions: An advance statement of the expected results of the test must be made.

[0197] Null hypothesis: There are no differences in intake between products, i.e. the weighted mean differences between intakes are not significant.

[0198] A minimum of 30 healthy adult cats must be used in the cattery trial.

[0199] ●The number of products for the identification test is 2.

[0200] ● Wet formula: All products must be offered to the cat for 20 minutes.

[0201] • Dry method: All products must be offered to the cat for 16 hours.

[0202] • Food is provided in excess so that differences in feeding capacity can be assessed.

[0203] • If the discrimination test is conducted over two days, the morning feeding should be the test feeding.

[0204] Table 1 below details the amounts that should be provided for wet or dry cat identification testing in the cattery:

[0205] [Table 2]

[0206] • For cats around 5% of ideal body weight, the non-test diet can be adjusted accordingly to maintain ideal body weight.

[0207] Pets should be placed in groups (i.e., Group A, Group B, etc.) so that study documentation will have a reference indicating the order in which cats were exposed to the products. Appropriate product rotation should be used to ensure there is no bias by product order or day.

[0208] • A significance level of 5% should be used for all tests unless the research intent has specific requirements.

[0209] A mixed model analysis was performed on the intake difference (g), including cat as a factor and weighted by grouped cat-specific variability, to assess the mean difference in intake between the two diets at a 5% significance level. Mean intake differences are reported with 95% confidence intervals.

[0210] The output includes: Weighted Mean Difference and 95% Confidence Interval - Shows the standardized weighted mean difference between products.

[0211] ○Average Product Difference by Pet - Shows the average difference for each pet.

[0212] Hurdle analysis - reporting data as if product A was eaten twice for product B, or vice versa.

[0213] Box plot of mean intake by product - showing the median and mean for each product. Box plots show data that fall outside the mean, with 95% confidence intervals shown.

[0214] The results of the mixed-model ANOVA should be interpreted as follows: p-value > 0.05 - there is no significant difference in the feeding ability of both products (i.e. for the evaluated product, no differential effect is demonstrated / shown in the test conditions).

[0215] p-value ≤ 0.05 - the feeding capacity of one product is significantly different.

[0216] 1.3 The following Examples 7 and 8 were carried out according to the "versus dry dog" protocol described below.

[0217] The discrimination test involves the simultaneous presentation of two products. A crossover design is used to ensure that the location of the FBA does not bias the results of the test. Kennel data is collected and analyzed in a binary fashion based on which diet is consumed first.

[0218] The expected results of the study should be clearly stated before the study begins.

[0219] The following assumptions are used:

[0220] ● Null hypothesis Kennel There is no significant difference in the percentage of meals eaten / consumed when product "A" is finished first versus when product "B" is finished first (p-value > 0.05 in a permutation test performed using the Feeding Methods Statistical Toolkit).

[0221] A minimum of 30 healthy adult dogs must be used in the kennel trial.

[0222] ●The number of products for the identification test is 2.

[0223] • Food is provided to the dog's metabolic energy requirements (MER) on test and rest days.

[0224] ● During the trial, you will need to provide 25% of your MER to each FBA (100% of your total MER per day).

[0225] Dogs should be weighed weekly and their MER adjusted accordingly to maintain their ideal weight.

[0226] • Any uneaten food must not be offered to the dog again on the day of the test.

[0227] See the table below for the feeding regime during the study:

[0228] [Table 3]

[0229] Pets should be placed in groups (i.e., Group A, Group B, etc.) so that study documentation has a reference to the order in which dogs were exposed to the products. Use appropriate product rotation to ensure there is no bias due to product order or day effects.

[0230] ●Dogs should be calm before being offered food.

[0231] • The food bowl assembly must be located in a position that allows the pet caregiver to observe the meal while feeding.

[0232] Pet caregivers must record the first FBA sampled during the study.

[0233] • During the trial, caregivers should observe each dog until one FBA has been completely consumed (i.e., until at least 90% of the diet has been consumed).

[0234] • Caregivers may observe multiple dogs simultaneously within a study, as long as they have the ability to clearly assess the initial choice and first product consumed for each dog being observed.

[0235] If the dog does not sample from either FBA after 5 minutes, this can be classified as a refusal.

[0236] Caregivers should record which meal is completed first. If the FBA of either food is not completely consumed in 10 minutes, this should be recorded as "both products performing equally, or TIE."

[0237] If a dog makes more than two "head turns" during a meal, i.e., changes product choice more than twice after the initial choice (before eating 90% of one FBA), this is classified as a TIE.

[0238] • Any food that has not been consumed after 20 minutes should be weighed and recorded.

[0239] • Once one of the food bowl assemblies has been consumed, there is no need to observe the food during the meal.

[0240] • A meal is defined as completely consumed when the dog has eaten all or nearly all (>90%) of the products within one FBA.

[0241] Permutation tests should be used to analyze binary data for first termination and first selection.

[0242] The results of a permutation test or ANOVA should be interpreted as follows: p-value > 0.05 - Both products are not significantly different on the performance variable of interest (i.e., no differential effect is demonstrated / shown for the evaluated product in the test conditions). It is important to note that this does not mean that the products are "the same" and that a non-inferiority trial must be constructed to draw this conclusion.

[0243] ■ p-value ≤ 0.05 - the variables of interest for one product are significantly different.

[0244] Only animals eating more than 5 g / meal during the study were included in the analysis (number verified).

[0245] The composition of the food composition used in this example is: - Instinctive gravy composition: meat and animal derivatives, fish and fish derivatives, vegetable protein extracts, cereals, vegetable derivatives, minerals, various sugars. Vitamin D3: 35 IU, E1 (iron): 3 mg, E2 (iodine): 0.35 mg, E4 (copper): 2.8 mg, E5 (manganese): 0.9 mg, E6 (zinc): 9 mg.

[0246] - Renal Select Feline Dry Composition: Animal fat, rice, cooked wheat flour, dehydrated pork protein*, wheat flour, vegetable fiber, corn gluten, wheat gluten*, hydrolyzed animal protein, dried fish, minerals, chicory pulp, fish oil, soybean oil, fructooligosaccharides, psyllium husks and seeds, marigold extract (source of lutein). Additives (per kg): Nutritional additives: Vitamin A 20800 IU, Vitamin D3 800 IU, E1 (iron): 44 mg, E2 (iodine): 4.5 mg, E4 (copper): 14 mg, E5 (manganese): 58 mg, E6 (zinc): 173 mg, E8 (selenium): 0.08 mg - Technical additives: Clinoptilolite of sedimentary origin: 10 g - Preservative - Antioxidant. Analysis: Protein 24.5% - Fat 21.5% - Crude ash 6.4% - Crude fiber 4.6% - Calcium 0.7% - Phosphorus 0.41% - Potassium 0.9% - Sodium 0.45% - Magnesium 0.08% - Chlorine 0.91% - Sulfur 0.4% - Vitamin D (total): 800 IU / kg - Hydroxyproline: 0.42% - Essential fatty acids: 3.53% - EPA and DHA: 0.41%.

[0247] - Dry formula for a medium adult: Brewers rice, chicken by-product meal, oat flour, wheat, corn gluten meal, chicken fat, natural flavors, dried plain beet pulp, fish oil, calcium carbonate, vegetable oil, potassium chloride, salt, monocalcium phosphate, choline chloride, hydrolyzed yeast, vitamins [DL-alpha tocopheryl acetate (a source of vitamin E), L-ascorbyl-2-polyphosphate (a source of vitamin C), biotin, d-calcium pantothenate, vitamin A acetate, niacin supplement, pyridoxine hydrochloride (vitamin B6), thiamine mononitrate (vitamin B1), vitamin B12 supplement, riboflavin supplement, vitamin D3 supplement, folic acid], L-lysine, trace minerals [zinc proteinate, zinc oxide, ferrous sulfate, manganese proteinate, manganese oxide, copper sulfate, calcium iodate, sodium selenate, copper proteinate], magnesium oxide, rosemary extract (preserved with mixed tocopherols and citric acid).

[0248] - Hypoallergenic dry composition: rice, hydrolyzed soy protein isolate, animal fat, minerals, hydrolyzed poultry liver, beet pulp, soybean oil, fructooligosaccharides, fish oil, borage oil, marigold extract (source of lutein). Ingredients (per kg): Vitamin A 24,800 IU, Vitamin D3 800 IU, E1 (iron) 40 mg, E2 (iodine) 3 mg, E4 (copper) 11 mg, E5 (manganese) 53 mg, E6 (zinc) 202 mg. - Preservatives - Antioxidants. Analysis: Protein 21% - Fat 19% - Crude Ash 8.4% - Crude Fiber 1% - Per kg: EPA / DHA 3.4 g - Essential Fatty Acids 47 g.

[0249] A food bowl assembly (FBA) according to the present disclosure was used in all examples. In the following examples, the food composition was placed in the second feeding bowl and the olfactory product was placed in the cavity of the separation module.

[0250] 2 / Results Example 1: Preference for Instinctive+ Olfactory Product 1 versus Instinctive+ Water and Instinctive+ Lemon Juice Thirty-six cats were enrolled and 36 were verified.

[0251] The study was conducted for 11 days. Exposure lasted 20 minutes.

[0252] The cats were fed once daily in the morning. The cats were exposed to the two products simultaneously.

[0253] The same amount of food was provided in the second feeding bowl.

[0254] Olfactory product 1 consists of an internal palatability enhancer for cats (not disclosed herein).

[0255] [Table 4]

[0256] [Table 5]

[0257] This study shows highly significant differences in consumption between the products.

[0258] There is no significant difference between Product D (Instinctive + Olfactory Product 1) and Product B (Instinctive + Tuna). There is no significant difference between Product B (Instinctive + Tuna) and Product A (Instinctive + Water). There is no significant difference between Product B (Instinctive + Tuna) and Product C (Instinctive + Lemon Juice). There is no significant difference between Product A (Instinctive + Water) and Product C (Instinctive + Lemon Juice).

[0259] However, Product D (Instinctive + Olfactory Product 1) was significantly better than Product C (Instinctive + Lemon Juice). Very significantly Product D (Instinctive + Olfactory Product 1) was consumed more than Product A (Instinctive + Water) (p=0.048). Significantly more be consumed.

[0260] Example 2: Preference for Renal+ Olfactory Product 1 over Renal+ Water Thirty-six cats were enrolled and 33 were verified.

[0261] The study took place over one day. Cats were fed twice a day (once in the morning and once in the afternoon). Exposure lasted 20 minutes.

[0262] The same amount of food was provided in the second feeding bowl.

[0263] [Table 6]

[0264] [Table 7]

[0265] [Table 8]

[0266] The first choice has no significant probability. However, the preference choice Highly significant There is a probability.

[0267] As a result, product F (Renal + olfactory product 1) is consumed significantly more than product E (Renal + water).

[0268] Example 3: Preference of Instinctive to Renal Thirty-six cats were enrolled and 34 were verified.

[0269] The test was conducted on one day. Exposure lasted 20 minutes.

[0270] The cats were fed twice daily and were exposed to the two products simultaneously.

[0271] The same amount of food was provided in the second feeding bowl.

[0272] [Table 9]

[0273] [Table 10]

[0274] [Table 11]

[0275] The first choice has no significant probability. However, the preferred choice has a high significant probability.

[0276] As a result, Product A (Instinctive) is more popular than Product E (Renal). Significantly morebe consumed.

[0277] Example 4: Renal + Olfactory Product 1 has the same palatability as Instinctive, but Instinctive performs better than Renal in Example 3.

[0278] Thirty-five cats were enrolled and 32 were verified.

[0279] The test was conducted on one day. Exposure lasted 20 minutes.

[0280] The cats were fed twice daily and were exposed to the two products simultaneously.

[0281] The same amount of food was provided in the second feeding bowl.

[0282] [Table 12]

[0283] [Table 13]

[0284] [Table 14]

[0285] There is no significant difference between product A (Instinctive + water) and product F (Renal + olfactory product 1).

[0286] Thus, product F (Renal + olfactory product 1) achieves the same performance as Instinctive, but the attractiveness of Renal is significantly reduced in Example 3. Consequently, olfactory product 1 increases the palatability of Renal.

[0287] Example 5: Preference of Renal+ Olfactory Product 2 to Renal Thirty-five cats were enrolled and 30 were verified.

[0288] The test was conducted on one day. Exposure lasted 20 minutes.

[0289] The cats were fed twice daily and were exposed to the two products simultaneously.

[0290] The same amount of food was provided in the second feeding bowl.

[0291] Olfactory Compound 2 comprises liquid palatability enhancers for pets derived from the aldehyde chemical family.

[0292] [Table 15]

[0293] [Table 16]

[0294] [Table 17]

[0295] There is no significant difference between product L (Renal + olfactory product 2) and product E (Renal + water). Nevertheless, it maintains a trend towards product L.

[0296] Example 6: Preference for Instinctive + Compound Po + Compound Pe Thirty-six cats were enrolled and 36 were verified.

[0297] The study was conducted over 8 days. Exposure lasted 20 minutes.

[0298] The cats were fed once daily in the morning. The cats were exposed to the two products simultaneously.

[0299] The same amount of food was provided in the second feeding bowl.

[0300] [Table 18]

[0301] [Table 19]

[0302] [Table 20]

[0303] In this test, the consumption between the products Very significant The difference is visible.

[0304] There is no significant difference between product M (Instinctive + Compound Po) and product A (Instinctive + Water).

[0305] There is no significant difference between product M (Instinctive + compound Po) and product O (Instinctive + compound Pe).

[0306] Product M (Instinctive + Compound Po) was significantly more effective than product N (Instinctive + Vanillin) (p=0.0068). Very significantly It is consumed in large quantities.

[0307] There is no significant difference between product A (Instinctive + water) and product O (Instinctive + compound Pe).

[0308] Product A (Instinctive + Water) is more effective than Product B (Instinctive + Vanillin) Significantly more consumed) (p=0.0425).

[0309] There is no significant difference between product C (Instinctive + compound Pe) and product N (Instinctive + vanillin).

[0310] Example 7: Preference of Medium Adults + Olfactory Product 3 to Medium Adults Twenty-three dogs were enrolled and 23 were examined.

[0311] The test took place in one day.

[0312] The dogs were fed once daily. The dogs were exposed to the two products simultaneously.

[0313] The same amount of product was given to FBA.

[0314] Olfactory product 3 consists of an internal liquid palatability enhancer for dogs (not disclosed herein).

[0315] [Table 21]

[0316] [Table 22]

[0317] [Table 23]

[0318] Product P (medium adult + LX1) is significantly preferable compared to product Q (medium adult + water).

[0319] Example 8: Palatability of dry product hypo + olfactory product 3 for medium-sized adults Thirty dogs were enrolled and 30 were studied.

[0320] The test took place in one day.

[0321] The dogs were exposed to the two products simultaneously, twice daily.

[0322] Olfactory product 3 consists of a liquid palatability enhancer for pets (not disclosed).

[0323] [Table 24]

[0324] [Table 25]

[0325] Product S (Hypo + Olfactory Product 3) compared to Product Q (medium adult + water) Extremely, very significantly preferable.

[0326] Example 9: Preference of Instinctive + Olfactory Blend 1 over Instinctive Thirty-four cats were enrolled and 33 were verified.

[0327] The test was conducted on one day. Exposure lasted 20 minutes.

[0328] The same amount of product was given to FBA.

[0329] The olfactory mixture 1 product consists of a combination of three different compounds Po+Re+Sm.

[0330] [Table 26]

[0331] [Table 27]

[0332] [Table 28]

[0333] There is a significant difference between product 1 (Instinctive) and product 2 (Instinctive + Olfactory Mixture 1) in terms of first choice. Product 2 is consumed significantly more than product 1.

[0334] Olfactory Mix 1 is a solution that has not been optimized with respect to compound concentration. Nevertheless, it is demonstrated herein that this kit significantly improves product performance when combined with Olfactory Mix 1.

[0335] Example 10: Preference of Instinctive + Olfactory Blend 2 over Instinctive Thirty-four cats were enrolled and 32 were verified.

[0336] The test took place in one day.

[0337] Cats were fed twice daily (once in the morning and once in the afternoon). Exposure lasted 20 minutes.

[0338] The same amount of product was given to FBA.

[0339] The product of olfactory mixture 2 consists of a combination of several compounds: compound Po + compound Re + compound Sm + compound Pe.

[0340] [Table 29]

[0341] [Table 30]

[0342] [Table 31]

[0343] There is no significant difference between product 3 (Instinctive) and product 4 (Instinctive + olfactory mixture 2) in terms of first choice. However, there is a clear trend towards increased consumption of product 4.

[0344] Olfactory Mix 2 is a solution that has not been optimized with respect to compound concentration. Nevertheless, it is demonstrated herein that when combined with Olfactory Mix 2 using this kit, product consumption is significantly improved.

[0345] Example 11: Palatability Performance of Sterilized Olfactory Stimulants A kit according to the present disclosure was tested on one sick cat. The animal (a domestic shorthair) had an autoimmune disease. At the onset of the disease, the cat had a loss of appetite. At the beginning of the disease, dietary changes helped the cat eat. However, after one exposure, the cat refused to eat.

[0346] The test was continued for the duration of the episode until its completion, after which the cat was able to resume normal diet without any aversion.

[0347] The cats were fed with the moist finished product twice a day. The exposure lasted for the duration of the meal (approximately 20 minutes). A Royal Canin Sterilised® diet, called "Sterilized RC", was placed in a second feeding bowl either alone (product A) or with different olfactory compounds in a separate module (products B, C, and D). The same amount of food, i.e., 85 g, was provided in the second feeding bowl of the kit at each meal.

[0348] [Table 32]

[0349] [Table 33]

[0350] During the illness, the sick animals were unable to eat their normal diet, making it difficult to manage their health. With the help of the kit of the present disclosure, the cat regained its appetite and began to eat again.

[0351] Example 12: Palatability Performance of Renal+ Olfactory Stimulants A kit according to the present disclosure was tested on a sick elderly dog. This animal (a beagle) had severe CKD (chronic kidney disease). At each episode, there was anorexia accompanied by aversion. At the end of CKD (stage 4), the pet stopped eating. Dietary changes did not help the dog eat.

[0352] The study was conducted in the late stage of CKD. Dogs were fed dry finished products twice daily. Exposure lasted for the duration of mealtimes (no time limit). Royal Canin Canine Renal® food, also known as RC Canine Renal, was placed in the second feeding bowl alone (product A) or together with olfactory compounds in a separate module (product B). The same amount of food, i.e., 100 g, was provided in the second feeding bowl of the kit at each meal.

[0353] [Table 34]

[0354] [Table 35]

[0355] The sick animals had an aversion to food and were unable to eat. The kit of the present disclosure showed encouraging signs and worked for the first three days of testing. After that, the dogs stopped eating and the disease progressed too far.

[0356] Example 13: Efficacy Protocol in Target Cat and Dog Populations The purpose of the protocol is to measure the effectiveness of the disclosed kit in the target pet population. 30 cats and 30 dogs will be recruited. Inclusion criteria are aging and / or underlying medical conditions (i.e., kidney disease, poor appetite, anorexia, etc.). A daily intake of recommended products (wet food and dry food) adapted to the target pet population (life stage, medical condition, etc.) will be administered in an odor bowl with or without fragrance. The amount eaten will be measured (daily for dry food and twice daily for wet food). Measurements will be performed in a crossover format. In addition to the amount eaten, pet owner satisfaction and veterinarian feedback on the dietary recommendations will be collected. The duration of the study will be 2 weeks. [Explanation of symbols]

[0357] Below is a list of the diagram's major elements in numerical order.

[0358] 100 Food Bowl Assembly 101 First Bowl 1011 Inner surface of first bowl 1012 Outer surface of first bowl 1013 Top edge of the first bowl wall 102 Second Feeding Bowl 1021 Inner surface of second feeding bowl 1022 Outer surface of second feeding bowl 1023 Upper edge of wall of second feeding bowl 103 Second feeding bowl solid bottom 104 Bottom of the first bowl 105 Olfactory Products 106 Gap 107 Odor of Olfactory Products 108 Odor chamber or cavity 109 Separation module opening 110 channels 111 Food Compositions 112 Food odor 113 Ventilation hole (106+109+110) 200 Separation Module 2001 Inner surface of separation module 2002 Separation module exterior 301 Separation module support legs 302 Separation module support area 303 Separation module edge

Claims

1. In the kit, (i) a first portion including a food bowl assembly, said food bowl assembly comprising: (a) a first bowl including a sidewall and a bottom; (b) a second feeding bowl disposed within the first bowl, the second feeding bowl including a sidewall and a solid bottom, the inner surfaces of the sidewall and the solid bottom being closed curved surfaces; (c) a separation module adapted to hold an olfactory product, the separation module being positioned to fit between the solid bottom of the second feeding bowl and the first bowl; and (d) a vent positioned to allow odors from the separation module to exit between the first bowl and the sidewall of the second feeding bowl of the food bowl assembly so that the odors do not pass through the second feeding bowl; a first portion comprising: (ii) a second part comprising a container containing at least one olfactory product; Including, The separation module comprises: (a) an odor chamber containing the olfactory product; (b) a top surface having an opening; (c) at least one outer periphery; (d) one or more channels in the top surface extending from the opening to the outer circumferential surface; The kit further comprises:

2. 10. The kit of claim 1, wherein the first bowl further comprises a heating means.

3. 3. The kit of claim 1, wherein the height of the first bowl and the height of the second feeding bowl are at the same level.

4. 4. The kit of claim 1, wherein the first bowl and the second feeding bowl are similarly shaped.

5. the food bowl assembly includes a gap disposed between a sidewall of the first bowl and a sidewall of the second feeding bowl; The kit of claim 1 , wherein the channel provides odor communication between the odor chamber and the gap.

6. 10. The kit of claim 1, wherein a plurality of channels are provided on an outer surface of the separation module, each channel connecting to a different point around the edge of the separation module.

7. 7. The kit according to any one of claims 1 to 6, wherein the container containing the at least one olfactory product is selected from a can, a pouch, a flask, and a tube.

8. 8. The kit according to any one of claims 1 to 7, wherein the container contains one olfactory product specific for the mammal to be fed.

9. 9. The kit according to any one of claims 1 to 8, wherein the containers contain several different olfactory products.

10. 10. The kit according to any one of claims 1 to 9, wherein the olfactory product is selected from fats, oils, flavors, fragrances, chemical molecules, aroma substances, extracts, digestates, hydrolysates, protein ingredients, and carbohydrate foods.

11. 11. The kit according to any one of claims 1 to 10, wherein the olfactory product can be in a form selected from a liquid, a jelly, a foam, an oil, a gel, a solid, an aroma cocktail, a patch, a powder, an alcohol, a fat, or a tab.

12. The olfactory product may be selected from the group consisting of acetic acid, propanoic acid, butyric acid, 3-methylbutyric acid, hexanoic acid, citric acid, tartaric acid, fumaric acid, lactic acid, hexamic acid, Butyl hexanoate; Heptyl formate; Ethyl decanoate; Ethyl caprylate; Acetaldehyde; 3-methylbutanal; Pentanal; Heptanal; Octanal; Benzaldehyde; Anisole; Pentanol; 2-Ethylhexanol; 2,3-butanediol; Thymol; Carvacrol; 1,5-Octadien-3-ol; acetone; 2,3-Pentanedione; 2-Piperidione; 2-Heptanone; 1,5-Octadien-3-one; Ethyl vanillin; Vanillin; Pyrazine; Methylpyrazine; Methylpyrazine; 2,5-Dimethylpyrazine; 2,6-Dimethylpyrazine; 2-Methyl-6-(methio)-pyrazine; 2-Ethyl-3,5-dimethylpyrazine; 2-Ethyl-5-methylpyrazine; 2-ethyl-6-methylpyrazine; ethylpyrazine; 2-Pentylfuran; 2-Ethylfuran; 2,5-Dimethylfuran; 2-[(methyldithio)methyl]-furan; 2-(2-propenyl)-furan; 2-Furanmethanol; 4-Hydroxy-3(2H)-furanone and alkyl-substituted 4-hydroxy-3(2H)-furanone compounds; Indole; Furfural; Sulfurol; 2-acetylpyridine; 2,3-dihydrothiophene; 2-methylthiophene; 3-methylthiophene; 2,5-dimethylthiophene; Dihydro-2-methyl-3(2H)-thiophene; Benzo[b]thiophen-4-ol; 5-methyl-2-thiophenecarboxaldehyde; Methyl ethyl disulfide; Dimethyl trisulfide; 12. The kit of any one of claims 1 to 11, wherein the chemical molecule is selected from methyl-2-methyl-3-furyl disulfide; 2-methyl-1-ethylpyrrolidine; 2-acetylthiazole; 4-methylthiazole; 2-ethylthiazole; theanine; glutamine; tea; and mixtures thereof.

13. 1. A method of stimulating appetite in a mammal, comprising: (i) providing a kit according to any one of claims 1 to 12; (ii) placing the second portion of the olfactory product in the separation module of the food bowl assembly; (iii) placing a food composition within the second feeding bowl to provide an operable food bowl assembly; and (iv) allowing said mammal access to said operable food bowl assembly obtained in step (iii). A method comprising:

14. 14. The method of claim 13, wherein the mammal is a senescent or elderly mammal.

15. 1. A method for treating and / or preventing food aversion in a mammal, comprising: (i) providing a kit according to any one of claims 1 to 12; (ii) placing the second portion of the olfactory product in the separation module of the food bowl assembly; (iii) placing a food composition within the second feeding bowl to provide an operable food bowl assembly; and (iv) allowing a mammal to access the operable food bowl assembly obtained in step (iii). A method comprising:

16. 1. A method for treating and / or preventing anorexia in a mammal suffering from a disease or disorder, comprising: (i) providing a kit according to any one of claims 1 to 12; (ii) placing the second portion of the olfactory product in the separation module of the food bowl assembly; (iii) placing a food composition within a second feeding bowl to provide an operable food bowl assembly; and (iv) allowing a mammal to access the operable food bowl assembly obtained in step (iii). A method comprising:

17. 17. The method of claim 16, wherein the disease or disorder is selected from the group consisting of obesity, anorexia, high blood pressure, heart disease, chronic food allergies, severe osteoarthritis, diabetes, urinary incontinence, bladder stones, chronic urinary tract infections, gastroenteritis, pancreatitis, hypothyroidism, cancer, heart disease, aging, and immunosuppressive diseases.

18. 1. A method for enhancing the attractiveness of a food composition, comprising: (i) providing a kit according to any one of claims 1 to 12; (ii) placing the second portion of the olfactory product in the separation module of the food bowl assembly; (iii) placing the food composition in the second feeding bowl to provide an operable food bowl assembly; and (iv) allowing a mammal to access the operable food bowl assembly obtained in step (iii). A method comprising:

19. 19. The method of claim 18, wherein the food composition is a low palatability food composition.

20. 1. A method for screening and identifying olfactory products preferred by a mammal, comprising: (i) providing a kit according to any one of claims 1 to 12; (ii) placing the second portion of the olfactory product to be tested in the separation module included in the food bowl assembly; (iii) placing a food composition within the second feeding bowl to provide an operable food bowl assembly; (iv) providing a mammal with access to the operable food bowl assembly obtained in step (iii); (v) repeating steps (i) to (iv) for each olfactory product to be tested; (vi) selecting the olfactory product for which the mammal showed preference for the food in the second feeding bowl; A method comprising:

21. 21. The method of any one of claims 13 to 20, wherein the food composition is a liquid, moist, or semi-moist food composition.

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