A fixed-period closed-loop circulation conditioning feeding method for pet multi-category functional food
By adopting a fixed-cycle closed-loop feeding method for multi-category functional pet food, the health problems caused by long-term single-food feeding for pets have been solved. This method achieves standardized and quantifiable health conditioning effects for both cats and dogs, improving the overall health level and feeding safety of pets.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 深圳市炫喵科技有限公司
- Filing Date
- 2026-06-25
- Publication Date
- 2026-07-31
AI Technical Summary
In the current pet feeding model, long-term single-food feeding leads to health problems such as limited tolerance of pet's gastrointestinal flora, rigidity of nutritional intake dimensions, metabolic imbalance, and decreased immune level. Furthermore, there is a lack of standardized, industrially applicable multi-formula, periodic closed-loop conditioning feeding systems suitable for both cats and dogs.
Using a variety of functional pet foods, a fixed-cycle closed-loop feeding method is set up. Through daily standardized feeding sequences and quantitative feeding, a closed-loop conditioning feeding program suitable for both cats and dogs is formed. This includes selecting pet foods with different targeted functions, setting a closed-loop feeding cycle, and quantitative feeding based on parameters such as the pet's weight.
It significantly improves pet gut health homeostasis by over 40%, comprehensively improves pet health across all dimensions by over 60%, reduces the health risks of long-term pet feeding, achieves cross-category universal compatibility, and lowers the barriers to product development and production.
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Abstract
Description
Technical Field
[0001] This invention relates to the field of pet nutrition and health care technology, specifically a fixed-cycle closed-loop conditioning feeding method for multi-category functional pet food. Background Technology
[0002] Currently, most pet feeding methods for cats and dogs on the market involve feeding them a single formula of food over a long period. Long-term feeding of a single formula can easily lead to a limited range of gut microbiota tolerance and a rigid, singular nutritional intake, resulting in a series of long-term chronic health problems such as soft stools and diarrhea, dull coat condition, metabolic imbalances, and a persistent decline in immune levels.
[0003] Currently, most functional prescription foods are sold and fed individually, and the industry has not yet formed a standardized, industrially replicable multi-formula, periodic closed-loop conditioning feeding system. At the same time, most existing feeding and care programs are only suitable for cats or dogs, lacking a universal feeding methodology that can be applied to both cats and dogs.
[0004] Traditional feeding methods lack a fixed cyclical arrangement logic, leading to haphazard and unpredictable adjustments by users, resulting in uncontrollable effects. Furthermore, existing publicly available rotation feeding technologies generally remain at the basic conceptual level of sporadic food changes, lacking clear cyclical closed-loop design, functional synergy logic, and quantifiable verification of maintenance effects, resulting in high technological homogeneity.
[0005] To address this issue, we propose a fixed-cycle closed-loop conditioning feeding method using multi-category functional pet food. Summary of the Invention
[0006] (a) Technical problems to be solved
[0007] To address the shortcomings of existing technologies, this invention provides a fixed-cycle closed-loop conditioning feeding method for multi-category functional pet food, solving the problems mentioned in the background technology.
[0008] (II) Technical Solution
[0009] To achieve the above objectives, the present invention provides the following technical solution: a fixed-cycle closed-loop conditioning feeding method for multi-category functional pet food, comprising:
[0010] S1: Select two or more functional pet foods with different target functions, including functional cat food and functional dog food;
[0011] S2: Preset complete closed-loop feeding cycle;
[0012] S3: Arrange various functional pet foods according to a preset fixed sorting rule to form a standardized closed-loop feeding sequence corresponding to each day;
[0013] S4: Set the standard daily feeding amount based on the pet's weight, age, breed, and physiological stage, and feed the corresponding functional pet food separately and in fixed quantities each day within the cycle;
[0014] S5: Automatically resets after one cycle is completed, and enters the next closed-loop cycle.
[0015] Preferably, the closed-loop feeding cycle is a fixed duration or a user-defined duration, including 7 days, 30 days, and 31 days.
[0016] Preferably, the category, formula, type and quantity of the functional pet food are not limited, and the functional modules can be freely combined and replaced.
[0017] Preferably, the feeding method is not limited to packaging and repackaging carriers, and is compatible with any physical carrier form such as single bags, individual small bags, gift boxes, canned food boxes, or string packaging.
[0018] Preferably, the standardized closed-loop feeding sequence adopts an execution logic of arranging multiple differentiated functional grains in a fixed cycle, feeding them independently with precise daily quantities, and repeating the closed loop in an unlimited number of rounds.
[0019] Preferably, the feeding method is applicable to both cats and dogs, making it a universal feeding method for both species.
[0020] Preferably, the single-day feeding refers to feeding only the single functional pet food corresponding to the daily sequence.
[0021] Preferably, the closed-loop cycle is executed periodically and repeatedly, without a fixed number of cycles.
[0022] (III) Beneficial Effects
[0023] Compared with existing technologies, this invention provides a fixed-cycle closed-loop conditioning feeding method for multi-category functional pet food, which has the following beneficial effects:
[0024] 1. This invention breaks away from the industry's long-term, single, and constant feeding model. Through the core logic of multi-dimensional, differentiated, and alternating nutrient intake, it fundamentally solves three common industry pain points caused by long-term feeding with a single diet: hardening of pets' gastrointestinal tolerance, nutritional imbalance, and continuous decline in nutrient absorption efficiency. Experimental data verifies that using this feeding method can improve the long-term health homeostasis of pets' intestines by more than 40%, significantly improving the safety and adaptability of long-term feeding at a core level, and avoiding the hidden health losses caused by traditional feeding methods.
[0025] 2. This invention relies on a systematic approach of alternating targeted functional diets to provide comprehensive and progressive closed-loop care for pets across four core health dimensions: gastrointestinal health, coat condition, metabolic function, and immune stress resistance. All care effects have been verified through real-world testing; the data is quantifiable, the results are reproducible, and the plan is feasible. After completing three or more full feeding cycles, the overall improvement rate of common core health issues in pets exceeds 60%. Compared to traditional single-feeding and haphazard diet switching methods, the health benefits are significant and stable.
[0026] 3. This invention establishes a unified underlying cycle-based feeding logic, eliminating the need to develop and build separate feeding systems for the two trillion-dollar pet markets of cats and dogs. It can fully cover both cat and dog breeding scenarios, achieving cross-category universal adaptability. This greatly reduces the barriers to product development, system construction, and industrial production, and its commercial application scenarios are limitless. Detailed Implementation
[0027] The technical solutions of the present invention will be clearly and completely described below with reference to the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0028] Example 1: 31-day standard closed-loop cycle, 8 functional pet food brands
[0029] This example illustrates the use of eight different functional pet foods that are suitable for both cats and dogs.
[0030] Step 1: Select functional pet food
[0031] The following eight functional pet foods have been selected, each with different targeted conditioning functions:
[0032] Digestive health food
[0033] Fur care functional grain
[0034] Urinary protection function grain
[0035] Immune-enhancing functional grains
[0036] Weight management functional food
[0037] Oral care functional food
[0038] Tear stain management function grain
[0039] Antioxidant and nourishing functional grains
[0040] The above-mentioned functional pet food can be cat food or dog food; choose the appropriate category according to the type of animal being fed.
[0041] Step 2: Set the closed-loop cycle period
[0042] A complete closed-loop feeding cycle is defined as 31 days.
[0043] Step 3: Construct a daily feeding sequence
[0044] The above eight functional pet foods were arranged in a fixed order according to a preset care logic to form a standardized daily feeding sequence for 31 days. Some functional foods can be repeated within the cycle. An example of the sequence is as follows:
[0045] Day 1: Dietary supplements for gastrointestinal health
[0046] Day 2: Fur and fur conditioning supplement
[0047] Day 3: Urinary tract protection food
[0048] ... (and so on, until the 31st day)
[0049] Step 4: Set the daily feeding amount
[0050] Calculate the standard daily feeding amount based on the pet's weight, age, breed, and physiological stage. For example:
[0051] Adult cat (weight 4kg): Daily feed intake is 60g;
[0052] Adult dog (weight 10kg): Daily feed intake is 200g;
[0053] Feed only the single functional pet food corresponding to the daily sequence, without mixing with other food categories.
[0054] Step 5: Execute the closed-loop cycle
[0055] After completing the daily feeding from day 1 to day 31, it automatically resets to day 1 of the cycle and starts the next closed-loop cycle again according to the same sequence, achieving unlimited repeated conditioning and feeding.
[0056] Example 2: 7-day short-cycle closed loop, 3 functional pet food products
[0057] This embodiment is suitable for users who need short-term treatment or are using this method for the first time.
[0058] Step 1: Select functional pet food
[0059] Select the following 3 functional pet food products:
[0060] Digestive health food
[0061] Immune-enhancing functional grains
[0062] Fur care functional grain
[0063] Step 2: Set the closed-loop cycle period
[0064] A complete closed-loop cycle is defined as 7 days.
[0065] Step 3: Construct a daily feeding sequence
[0066] Arrange the three functional food products in the following order:
[0067] Day 1: Dietary supplements for gastrointestinal health
[0068] Day 2: Immune-boosting food
[0069] Day 3: Fur Care Nutritional Food
[0070] Day 4: Dietary Therapy Food
[0071] Day 5: Immune-boosting food
[0072] Day 6: Fur and fur conditioning supplement
[0073] Day 7: Dietary Therapy Food
[0074] Step 4: Set the daily feeding amount
[0075] Set daily feeding amounts based on parameters such as the pet's weight and age, and feed only the corresponding functional food each day.
[0076] Step 5: Execute the closed-loop cycle
[0077] After the 7-day cycle ends, it automatically resets to day 1 and repeats the above closed-loop sequence.
[0078] Experimental example: 180-day parallel control feeding experiment
[0079] To verify the technical effect of the present invention, the inventors designed a standardized parallel control feeding experiment, as follows:
[0080] Experimental subjects:
[0081] 30 cats in the experimental group and 30 cats in the control group
[0082] 30 dogs in the experimental group and 30 dogs in the control group
[0083] The female-to-male ratio was 1:1, the age stratification was uniform (childhood, adulthood, and old age), and there were no statistically significant differences in initial health indicators (P > 0.05).
[0084] Experimental Groups:
[0085] Experimental group: The 31-day closed-loop rotation feeding method of Example 1 of this invention was adopted.
[0086] Control group: fed a commercially available single general-purpose staple food at a constant rate.
[0087] All other aspects of the rearing environment, water supply, exercise, and care conditions were completely identical, eliminating irrelevant variables.
[0088] Experiment duration: 180 days
[0089] Key observation indicators and results:
[0090]
[0091] Experimental conclusion:
[0092] The method of this invention is significantly superior to the traditional single-grain feeding mode in multiple dimensions such as intestinal health, immunity, coat condition, and nutrient absorption. Moreover, the maintenance effect shows a positive additive gain with the increase of the number of cycles, proving that the method of this invention has outstanding long-term conditioning advantages and reproducible technical effects.
[0093] Body morphology description
[0094] This invention does not limit any packaging or repackaging carrier form. The functional pet food in the above embodiments can be combined, packaged, and sold using any of the following physical carrier forms:
[0095] Individually packaged
[0096] Individually packaged daily
[0097] Gift box jar
[0098] Compartmentalized grain box
[0099] Skewered or individually packaged (e.g., one skewer per day)
[0100] All of the above-mentioned carrier forms fall within the protection scope of this invention.
[0101] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A pet multi-category functional grain fixed cycle closed loop circulation conditioning feeding method, characterized in that, include: S1: Select two or more functional pet foods with different target functions, including functional cat food and functional dog food; S2: Preset complete closed-loop feeding cycle; S3: Arrange various functional pet foods according to a preset fixed sorting rule to form a standardized closed-loop feeding sequence corresponding to each day; S4: Set the standard daily feeding amount based on the pet's weight, age, breed, and physiological stage, and feed the corresponding functional pet food separately and in fixed quantities each day within the cycle. S5: Automatically resets after one cycle is completed, and enters the next closed-loop cycle.
2. The method according to claim 1, wherein the method is characterized by, The closed-loop feeding cycle is a fixed duration or a user-defined duration, including 7 days, 30 days, and 31 days.
3. The method according to claim 1, wherein the method is characterized by, The types, formulas, varieties, and quantities of the functional pet food are not limited, and the functional modules can be freely combined and replaced.
4. The method of claim 1, wherein the method is a method of feeding a pet with a multi-category functional food in a fixed cycle closed loop. The feeding method is not limited to packaging and repackaging carriers, and is suitable for any physical carrier form such as single bags, individual small bags, gift boxes, canned food boxes, or string packaging.
5. The method of claim 1, wherein the method is a method of feeding a pet with a multi-category functional food in a fixed cycle closed loop. The standardized closed-loop feeding sequence adopts the execution logic of arranging multiple differentiated functional grains in a fixed cycle, feeding them independently with precise daily quantities, and repeating the closed loop in an unlimited number of rounds.
6. The method of claim 1, wherein the method is a method of feeding a pet with a multi-category functional food in a fixed cycle closed loop. The feeding method described is applicable to both cats and dogs, making it a universal feeding method for both species.
7. The method of claim 1, wherein the method is a method of feeding a pet with a multi-category functional food in a fixed cycle closed loop. The term "single-day feeding" refers to feeding only the single functional pet food corresponding to the daily sequence.
8. The method of claim 1, wherein the method is a method of feeding a pet with a multi-category functional food in a fixed cycle closed loop. The closed-loop cycle is executed periodically and repeatedly, with no fixed number of iterations.