Systems and methods for injecting poultry

The device addresses vaccine reflux and misplacement issues in poultry injection by using angled needles and dual injection points, improving vaccine effectiveness and reducing tissue trauma.

JP7742704B2Active Publication Date: 2025-09-22デスバック
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Patent Information

Application Number
JP2020568375
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2018-06-15
Filing Date
2019-06-14
Publication Date
2025-09-22
Estimated Expiration
2039-06-14

AI Technical Summary

Technical Problem

Existing devices for intramuscular injection in poultry fail to minimize vaccine reflux and misplacement, leading to reduced vaccine effectiveness and tissue damage.

Method used

A device with an anatomically shaped retaining member and injection needles oriented at specific angles (15°-45°) to minimize vaccine reflux and ensure precise targeting, featuring two holes for dual injections to reduce trauma and reflux.

Benefits of technology

The device effectively minimizes vaccine reflux and misplacement, enhancing vaccine efficacy and reducing tissue trauma by optimizing needle angles and positions.

✦ Generated by Eureka AI based on patent content.

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Abstract

A syringe, injection system, and method for injecting a product into fowl, the syringe including a retaining member having at least one hole formed therein, a retaining member support surface supporting the retaining member, and an injection needle movable through the hole, wherein a longitudinal axis of the injection needle and an axis perpendicular to the retaining member support surface form an apex angle α of 15° to 45°. [Selected Figure] Figure 2
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Description

[Technical Field]

[0001] The present disclosure relates to an animal medical aid device for injecting an animal product into poultry or fowl by intramuscular injection using a needle movable through a hole formed in a holding member to grasp the fowl and inject into a target muscle.

[0002] The invention also relates to processes and methods for injecting and / or vaccinating poultry using these devices. [Background technology]

[0003] In the field of poultry farming, it is customary to inject animal products, especially vaccines, into poultry. The prior art has proposed devices to assist in the injection of animal products. In particular, US2011 / 0054401A1 (the subject matter of which is incorporated herein by reference in its entirety) describes a device for injecting animal products into fowl by intramuscular injection, specifically targeting the pectoralis major muscle. The injection can be performed in a muscle region near a bone having a detectable shape in the body of the fowl. The device includes a holding member with means for reinforcing the detectable bone, a hole formed in the holding member, and an injection needle, the needle being movable through the hole. In this device, the holding member has an anatomical shape that conforms to the body of the fowl and provides a structure for supporting the fowl, the anatomical shape including a support surface for the body with muscles, and at least two contact sensors that are adapted to be activated by the fowl and are provided on the anatomical shape, at least one of which is on the support surface and a hole(s) is provided between the sensors.

[0004] US2011 / 0054401A1 focuses on the structure of the holding member, in particular the anatomical shape of the holding member to obtain a satisfactory general position of the fowl, sensors for accurate activation, and support means for correct presentation of the fowl within the device.

[0005] However, this document does not address the structure and / or method of minimizing the incidence of vaccine reflux after injection. Vaccine reflux can occur after the injection needle is inserted into the muscle and the injection channel is formed within the muscle. If the vaccine does not remain in the target area of ​​the muscle, vaccine reflux reduces the effectiveness of the vaccine response. Furthermore, the vaccine can act very aggressively in the tissue surrounding the target muscle and damage the surrounding tissue. For these reasons, vaccine reflux should be minimized as much as possible.

[0006] US2011 / 0054401A1 also does not mention structures and / or methods for minimizing misplacement of vaccine injections.

[0007] Therefore, it would be desirable to have a device and method for injecting intramuscular vaccines into animal products, particularly poultry (fowl), that can minimize the incidence of vaccine reflux and vaccine displacement to ensure effective vaccination. Summary of the Invention

[0008] An object of the present invention is to remedy the shortcomings of the prior art. More specifically, an object of the present invention is to provide a device for administering intramuscular injections of animal products into the body of fowl, which maximizes the quality of the injections performed by minimizing the incidence of vaccine reflux and increasing the hit rate within the target area.

[0009] To this end, one aspect of the present invention relates to a device for injecting an animal product into a fowl by intramuscular injection. The injection can be performed in a muscle region near a bone having a detectable shape in the body of the fowl, particularly the pectoralis major muscle. The device includes a retaining member having at least one hole formed therein, a retaining member support surface that supports the retaining member, and an injection needle that is movable through the hole. The retaining member has an anatomical shape, including a cavity, that conforms to the body of the fowl.

[0010] According to a preferred embodiment, the longitudinal axis of the injection needle and an axis perpendicular to the support surface of the holding member form an apex angle of between 15° and 45°.

[0011] According to a preferred embodiment, the holding member has two holes each forming a passage through which the injection needle is movable.

[0012] According to a preferred embodiment, the device further comprises a base having a height of between 130 mm and 190 mm, or most preferably or exactly 160 mm.

[0013] According to a preferred embodiment, the holding member is removably mounted on a casing which contains means for driving the injection needle.

[0014] According to a preferred embodiment, the length of the injection needle is between 8 mm and 20 mm.

[0015] According to a preferred embodiment, the casing has a rear hatch for accessing the drive means.

[0016] According to a preferred embodiment, the device comprises two holes and two injection needles, each movable through the holes, wherein the apex angle between the longitudinal axis of each injection needle and an axis perpendicular to the support surface of the holding member is between 15° and 45°, and the longitudinal axes of the two injection needles form a horizontal angle of between 15° and 25° with respect to each other.

[0017] According to a preferred embodiment, the injection time is between 0.25 and 0.5 seconds.

[0018] The device according to the invention may be used for the injection, vaccination and / or treatment of all kinds of birds, such as conventional poultry, hens, ducks, turkeys, guinea fowl, quail, geese, pigeons or parrots.

[0019] Other characteristics and advantages of the present invention will become more clearly apparent on reading the following description of preferred embodiments of the invention, given by way of illustrative and non-limiting example, and the accompanying drawings, in which: [Brief explanation of the drawings]

[0020] [Figure 1] FIG. 1 is a perspective view of the known device from the holding member side; [Figure 2] 1 is a perspective view of a device according to the invention; [Figure 3] 1 is a cross-sectional view of a device according to the present invention; [Figure 4] FIG. 1 is a perspective view of the rear hatch side of a device according to the present invention. DETAILED DESCRIPTION OF THE INVENTION

[0021] As noted above, the systems and methods of the present invention relate to devices for injecting avian animal products, particularly vaccines, into the wing muscles that extend along the sternum of a fowl.

[0022] Figure 1 shows a known device for injecting animal products into poultry. As shown in Figure 1, the device 1 comprises a casing 2 including a rear hatch 6 that provides access to components mounted inside the casing 2.

[0023] According to one feature of the device, a retention member 4 is removably mounted on a retention member support surface 3. The retention member in Figure 1 may be used in the present invention as further described in US2011 / 504401A1.

[0024] 2 and 3, a perspective view of a device according to the present invention and a cross-sectional view of a device according to the present invention are respectively described.

[0025] According to one embodiment, the retaining member 4 is a part manufactured by molding using a mold specially manufactured according to the imprint of the body of the target fowl.

[0026] As shown, a hole 5 is formed in the retaining member 4, and the hole 5 forms a passage at the rear of the retaining member 4 through which the injection needle 7 can be moved from a non-injection position to an injection position, with the needle moving through the hole, or vice versa.

[0027] According to a further feature, the holes 5 have a rectangular shape such that the position of the needles 7 can be adjusted by the length of the corresponding holes 5. In this way, it is possible to modify the position of the needles 7 according to the target area of ​​the bird's body without having to modify or replace the holding member 4.

[0028] As shown, the longitudinal axis I of the injection needle 7 is movable through the bore 5. The axis Y is perpendicular to the plane formed by the retainer support surface 3. The longitudinal axis I and axis Y of the needle 7 form an apex angle α of 15° to 45°, preferably 20° to 40°. In more preferred embodiments, the apex angle α is 25° to 35°, 28° to 32°, 29° to 31°, or most preferably approximately or exactly 30°. Injecting fowl with an injection needle with an apex angle α of 15° to 45°, 25° to 35°, 28° to 32°, 29° to 31°, or most preferably 30° into the muscle creates an injection channel into the muscle in a different way than when the apex angle α is 0°. Without being bound by theory, it is believed that when the muscle fibers of a fowl are obliquely pierced by the injection needle 7 at a particular angle, the fibers are automatically closed by the natural pressure activity forces of the muscle after injection. Thus, the incidence of vaccine reflux is minimized compared to known injection devices in which the injection needle is oriented with its longitudinal axis at an apex angle α of 0° from the axis Y.

[0029] Although the angle α is shown such that the longitudinal axis I of the injection needle is positioned below the axis Y, in principle the longitudinal axis I of the injection needle can also be oriented above the axis Y forming the angle α.

[0030] According to a preferred embodiment, the holding member support surface 3 is located on a base 9 having a height h of between 130 mm and 190 mm, preferably about 160 mm.

[0031] Devices according to some embodiments of the present invention may be conveniently placed on a table or other elevated surface. Because the process of vaccinating birds may involve many repetitive movements by a person manually lifting each bird into the holding member 4, having a base 9 with a height h of 130 mm to 190 mm is also ergonomically beneficial to the user.

[0032] The retaining member support surface 3 also forms an angle γ with respect to the longitudinal axis relative to the base 9, as shown in Figure 3. The angle γ can be in the range of 5° to 45°, preferably 10° to 40°, more preferably 20° to 30°, and most preferably 25°. The angle γ of the retaining member support surface 3 serves both to maximize syringe efficiency and for ergonomic reasons for the user.

[0033] According to a further feature, the length of the injection needle 7 is between 8 mm and 20 mm. The depth of injection must be controlled so that the needle does not penetrate the sternum. If the apex angle α is modified, the depth of injection can be controlled by modifying the length of the injection needle 7 to compensate for the change in the angle of injection.

[0034] FIG. 4 shows the device according to the invention on the rear hatch side.

[0035] According to a preferred embodiment, the device has two holes 5, each forming a passage through which an injection needle 7 can move, and support means extending between the holes 5. In this way, the device allows for double injections of animal products. It should be noted that the presence of two holes 5 makes it possible to use the device according to the invention to carry out injections of two separate products, or two injections of the same product. Preferably, each needle 7 creates an injection in a different location in the muscle of the fowl. In this way, trauma to the fowl and to the tissue surrounding the injection site can be minimized compared to both needles 7 injecting the vaccine in the same location.

[0036] According to a preferred embodiment, the longitudinal axes I1 and I2 of the two injection needles 7 form a horizontal angle β of 15° to 25°, preferably 20° to 25°, relative to each other. More preferably, the horizontal angle β is 18° to 22°, and most preferably, the horizontal angle β is approximately or exactly 20°. It should be noted that intramuscular injection of animal products, particularly vaccines into the body of poultry, must be performed precisely to avoid injecting organs or bones near the target muscle. If the horizontal angle between the two injection needles is too large, there is a risk that the injection will be delivered to the sternum. Another risk when the horizontal angle formed by the two longitudinal axes of the two injection needles is too large is that both needles will inject into the same place on the bird. Both situations are undesirable, causing trauma to the bird and reducing the effectiveness of the vaccine. On the other hand, if the horizontal angle β is too small, the rate of vaccine reflux may increase significantly. Therefore, controlling the horizontal angle β to 15°-25°, preferably 20°-25°, minimizes the risk of injection into the sternum, stress on the fowl, and the incidence of vaccine reflux.

[0037] In a preferred embodiment, two injection needles 7 are used, with longitudinal axes I1 and I2 forming an apex angle α of 15° to 45° with respect to axis Y and a horizontal angle β of 15° to 25° with respect to each other. By orienting the needles at oblique angles in two dimensions, the occurrence of reflux is reduced across the widest range of fowl sizes. For example, different sizes and breeds of fowl, such as breeders, layers, and broilers, often need to be vaccinated in the same facility. As described, orienting the needles at both α and β is believed to be a particularly effective approach, especially when used with a device having a support member surface oriented at an angle γ of 5° to 45°.

[0038] As shown in Figure 4, the device comprises a casing 2 which notably includes drive means 8 for translating each needle 7. Furthermore, the casing 2 has a rear hatch 6 which gives access to the components mounted inside the casing 2, notably the drive means 8. The drive means 8 may be mounted on a plate 10 which is removably attached to the casing 2, and which needs to be moved to allow access to the syringes.

[0039] Furthermore, the drive means 8 may be mounted on the plate 10 by means of a support member which may modify its position on the plate 10 so as to modify the position of the needle 7 with respect to the rectangular hole 5 .

[0040] The movement of the needle 7 may be driven by a pneumatic cylinder. The movement of the cylinder and needle 7 may be controlled by any system with automatic, electronic, programmable operation, or any other operation known to those skilled in the art, to provide a predetermined injection range and adjust the needle penetration distance within the muscle depending on the size of the muscle to be injected and the target fowl. The device is controlled by an automatic controller, which can be configured so that the device can be used to perform two injections or one injection. In this way, during any maintenance work, access to the interior of the casing 2 is obtained from the rear, which limits the risk of injury to the technician due to the injection needle 7 being aimed at the front of the device.

[0041] According to one particular embodiment, the injection time is between 0.25 and 0.5 seconds, preferably 0.25 seconds, thus making it possible to reduce the incidence of vaccine reflux, especially in the case of layering.

[0042] The device of the present invention is particularly suitable for intramuscular injection of inactivated vaccines against avian influenza, in particular against various diseases such as Newcastle Disease Virus (NDV), Infectious Bursal Disease (IBD), Infectious Bronchitis (IBV), Avian Influenza, Marek's Disease, Avian Encephalomyelitis, Chicken Anemia Virus, Egg Drop Syndrome, Laryngotracheitis, Reovirus infections.

[0043] The present invention also relates to a method for injecting and / or vaccinating poultry, comprising the steps of grasping the fowl, placing the fowl on a device 1, and pressing the fowl so placed against the device 1. The device 1 comprises a holding member 4 with a hole 5 formed in the holding member 4, a holding member support surface 3, and an injection needle 7 movable through the hole 5.

[0044] According to one particular embodiment, the longitudinal axis I of the injection needle 7 and the axis Y perpendicular to the support surface 3 of the holding member of the device used in the present method form an apex angle of 15° to 45°, preferably 20° to 40°. In more preferred methods, the apex angle α is 25° to 35°, 28° to 32°, 29° to 31°, or most preferably approximately or exactly 30°. Injecting into the muscle at an apex angle α of 15° to 45°, 25° to 35°, 28° to 32°, 29° to 31°, or most preferably approximately or exactly 30° creates an injection channel into the muscle in a different way than when the apex angle α is 0°, so the incidence of vaccine reflux is minimized in the present method compared to known injection methods in which the injection needle is oriented with its longitudinal axis at an apex angle α of 0° from the axis Y.

[0045] According to a preferred embodiment, the longitudinal axes I1 and I2 of the two injection needles 7 of the device used in the present method form with each other a horizontal angle β of 15° to 25°, preferably 20° to 25°. More preferably, the horizontal angle β is 18° to 22°, and most preferably, the horizontal angle β is approximately or exactly 20°.

[0046] In a preferred embodiment of this method, the longitudinal axes I1 and I2 of the two injection needles 7 of the device form an apex angle α of 15° to 45° and a horizontal angle β of 15° to 25° with respect to each other. As described, the method of injecting fowl using a device having the longitudinal axes of both needles 7 oriented at both α and β is believed to be particularly effective, especially when used with a device having a retaining support member surface 4 oriented at an angle γ of 5° to 45°.

[0047] As described above, all kinds of fowl can be vaccinated and / or treated in this way, in particular poultry such as chickens, turkeys, hens, ducks, guinea fowl, quail, partridges, geese, pigeons or parrots.

[0048] Numerous modifications and variations of the present invention are possible in light of the above teachings. It is therefore to be understood that, within the scope of the appended claims, the invention may be practiced otherwise than as specifically described herein.

Claims

1. A device for injecting a product into fowl, comprising: a retaining member having an anatomical shape, including a cavity, that conforms to the body of the fowl; a holding member support surface that supports the holding member; two injection needles; the holding member has two holes each forming a passage through which the injection needle is movable; the longitudinal axis of each needle and an axis perpendicular to the support surface of the holding member form an apex angle α of between 15° and 45°; the longitudinal axes of the two injection needles form an angle β of 15° to 25° with respect to each other in order to minimize the occurrence of backflow of the injected product; the two injection needles are configured to inject the product into wing muscles extending along the sternum of the fowl held in the holding member; The length of each of the two injection needles is 8 mm to 20 mm; The support surface of the holding member forms an angle γ of 5° to 45° with respect to a line perpendicular to the ground. device.

2. The device of claim 1 , wherein the device further comprises a base having a height of between 130 mm and 190 mm.

3. The device of claim 1 or 2, wherein the retaining member is removably mounted on the retaining member support surface.

4. The device according to any one of claims 1 to 3, further comprising means for driving the injection needle.

5. The device according to any one of claims 1 to 4, further comprising a casing having a rear hatch for accessing the means for driving the injection needle.

6. The device according to any one of claims 1 to 5, wherein the longitudinal axis of the injection needle and the axis perpendicular to the support surface of the holding member form an apex angle α of between 25° and 35°.

7. The device according to any one of claims 1 to 6, wherein the longitudinal axis of the injection needle and the axis perpendicular to the support surface of the holding member form an apex angle α of between 28° and 32°.

8. The device according to any one of claims 1 to 7, wherein the longitudinal axis of the injection needle and the axis perpendicular to the support surface of the holding member form an apex angle α of between 29° and 31°.

9. The device according to any one of claims 1 to 8, wherein the longitudinal axis of the injection needle and the axis perpendicular to the support surface of the retaining member form an apex angle α of 30°.

10. the longitudinal axes of the two injection needles form a horizontal angle β of 20° to 25° with respect to each other; A device according to any one of claims 1 to 9.

11. The device according to any one of claims 1 to 10, wherein the longitudinal axes of the two injection needles form a horizontal angle β of between 18° and 22° with respect to each other.

12. The device according to any one of claims 1 to 11, wherein the longitudinal axes of the two injection needles form a horizontal angle β of 20° with respect to each other.

Citation Information

Patent Citations

  • Automatic continuous injection device for drug injection of adult chicken

    CN103222901A

  • A device for injecting animal drugs into poultry, comprising a restraining member having an anatomical shape with means for fixing detectable bones.

    JP2010537756A