Pet injection support
By designing a pet injection stand, and using a base and guide rail assembly to control the angle and position of the needle, the problem of needles hitting muscles or the skin during pet injections is solved, achieving safe and accurate subcutaneous injections.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2026-03-31
AI Technical Summary
In existing technologies, it is easy to prick the muscle or skin, or prick the person giving the injection, when administering injections to pets. Furthermore, there is a lack of professional positioning guidance devices, which increases the risk of pain, infection, or death.
A pet injection stand was designed, including a base, a lifting component, and a guide rail component. The base fits snugly against the pet's body, the lifting component lifts the skin, and the guide rail component controls the angle and position of the needle to ensure accurate subcutaneous injection.
This effectively avoids needles piercing muscles and the skin, while also preventing needle pricks to the fingers, ensuring accurate injection sites and reducing the risk of pain and infection.
Smart Images

Figure CN224056136U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of veterinary instrument technology, and in particular relates to a pet injection stand. Background Technology
[0002] Vaccinations and other medications are almost a necessity for every pet, and many owners administer them at home to avoid the risk of contracting diseases at the vet and to save money. However, many owners lack professional injection training, often causing their pets pain, injury, or even death. They might also accidentally prick their own fingers. Currently, there are no specialized devices on the market designed to guide the correct injection site and improve injection effectiveness for cats and dogs.
[0003] Subcutaneous injection is the most common injection method. The professional technique involves using the middle finger and thumb to lift the skin of the cat or dog, pressing down on the middle finger and thumb with the other finger, and using the three fingers to maintain the skin's lifting position. The other hand then inserts the needle at a 45-degree angle into the subcutaneous tissue. Cats and dogs have unique skin structures; the epidermis is relatively loose, creating space underneath after lifting the skin. Injecting the medication into this space will not cause pain to the cat or dog. If the needle angle is too small, it may puncture the epidermis, causing significant pain, swelling, and increasing the risk of infection, inflammation, and even death. It may also penetrate the skin on the other side, injecting the medication outside, or even pricking the user's own finger. If the needle angle is too large, it may puncture the muscle, causing severe pain. Furthermore, if a subcutaneous injection is administered close to the spine, such as in the back of the neck, it may puncture the spinal cord, leading to death.
[0004] Therefore, there is an urgent need to design a pet injection stand to solve the problems mentioned above. Utility Model Content
[0005] The purpose of this invention is to provide a pet injection stand that avoids pricking the cat or dog's muscles and skin, while also avoiding pricking one's own fingers, thus solving the problems addressed in the background art.
[0006] To achieve the above objectives, the specific technical solution of the pet injection stand of this utility model is as follows:
[0007] The pet injection stand includes a base that fits snugly against the pet's body. The base has a lifting component that lifts the pet's skin. The base also has a guide rail component for holding the needle. The needle can slide relative to the base via the guide rail component to control whether the needle pierces the pet's skin. After the lifting component lifts the pet's skin, the needle is inserted into the lifted skin area for injection.
[0008] Furthermore, the lifting assembly includes a fixing rod that is fixedly connected to the base. A finger sleeve is connected to the end of the fixing rod away from the base. The finger sleeve is for placing fingers. When giving a pet an injection, the fingers inside the finger sleeve and the fingers outside the finger sleeve lift the pet's skin.
[0009] Furthermore, the fixing rod is equipped with an adjustment component, which controls the height between the finger sleeve and the base. After the height of the finger sleeve is adjusted, the position of the finger sleeve is fixed by the locking component.
[0010] Furthermore, the adjustment assembly includes multiple fixing holes on the fixing rod, and a connecting hole is provided on the finger sleeve. The connecting hole on the finger sleeve can coincide with any fixing hole on the fixing rod. After the connecting hole on the finger sleeve coincides with the fixing hole at the required height of the finger sleeve, the locking member passes through the coinciding connecting hole and fixing hole, and is then locked by the locking member.
[0011] Furthermore, the adjustment component includes a groove on the fixed rod and a connecting hole on the finger sleeve. The connecting hole on the finger sleeve coincides with the groove on the fixed rod. After the required height of the finger sleeve is determined, the locking member passes through the overlapping connecting hole and the groove, and then locks it in place.
[0012] Furthermore, the finger sleeve includes a sleeve body for placing the finger. The end of the sleeve body away from the base is open, and the end of the sleeve body near the base is fixedly connected to a closed plate. When the finger is inserted into the sleeve body, the tip of the finger contacts the closed plate.
[0013] Furthermore, a sleeve frame is fixedly connected to the sleeve body, and the connection hole is opened on the sleeve frame.
[0014] Furthermore, the lifting assembly includes two fixed rods, which are fixedly connected to both ends of the base. Each fixed rod is connected to an elastic clip. When giving a pet an injection, the fingers pinch the two elastic clips and move them toward each other until the two elastic clips lift the pet's skin.
[0015] Furthermore, a connecting plate is fixedly connected to the base, and an injection slot is opened on the connecting plate. The position of the injection slot coincides with the injection site of the pet. When injecting into the pet's skin, the pet's skin in the injection slot is lifted by the lifting component.
[0016] Furthermore, the base is arched to fit the pet's body.
[0017] Furthermore, the base has binding holes, which can be used to bind and connect the base to the pet by passing a rope through the binding holes.
[0018] Furthermore, the guide rail assembly includes a support plate and a needle clamp. The support plate is connected to the base, and the end of the support plate away from the base is connected to the needle clamp, which is used to place the needle.
[0019] Furthermore, the syringe clamp is semi-cylindrical, and the syringe can slide relative to the syringe clamp to control whether the syringe pierces the pet's skin.
[0020] Furthermore, a first guide rail is provided on the support plate, and the needle clamp is slidably connected to the first guide rail. The needle clamp drives the needle to slide relative to the support plate to control whether the needle pierces the pet's skin.
[0021] Furthermore, the support plate includes a first connecting segment, a second connecting segment, and a third connecting segment. The first connecting segment is fixedly connected to the third connecting segment through the second connecting segment, and the first connecting segment, the second connecting segment, and the third connecting segment form a first guide rail.
[0022] Furthermore, the needle clamp includes a base plate, which is slidably connected to the first guide rail. Two guide plates are fixedly connected to the base plate, and an insertion gap is provided between the two guide plates. The insertion gap is slidably connected to the first connecting section. Each guide plate is connected to a clamping block, which clamps the needle.
[0023] Furthermore, a second guide rail is provided on the first connecting section, and the second guide rail is connected to the first guide rail.
[0024] Furthermore, the needle clamp includes a base plate, which is slidably connected to the first guide rail. A guide plate is fixedly connected to the base plate and is slidably connected to the second guide rail. Each guide plate is connected to a clamping block, which clamps the needle.
[0025] Furthermore, the base is equipped with an angle adjustment component. The output end of the angle adjustment component is connected to the support plate. The end of the support plate away from the angle adjustment component is hinged to the base via a pin. After the angle adjustment component is activated, the support plate drives the needle clamp to rotate around the pin as the center, so as to change the injection angle of the needle to the pet.
[0026] This invention has the following advantages: It lifts the pet's skin and then injects through a suitable syringe, avoiding the needle from piercing the cat's or dog's muscles and epidermis, while also avoiding piercing one's own fingers. This effectively prevents situations where novices do not know how to inject and may inject in the wrong place. Attached Figure Description
[0027] Figure 1 This is a schematic diagram of the overall structure of the injection support of this utility model;
[0028] Figure 2 This is a schematic diagram of the fixing hole of this utility model;
[0029] Figure 3 This is a schematic diagram of the slide groove of this utility model;
[0030] Figure 4 This is a schematic diagram of the structure of the two fixing rods of this utility model;
[0031] Figure 5 This is a schematic diagram of the structure of the finger sleeve of this utility model. Figure 1 ;
[0032] Figure 6 This is a schematic diagram of the structure of the finger sleeve of this utility model. Figure 2 ;
[0033] Figure 7 This is a schematic diagram of the structure of the elastic clip of this utility model;
[0034] Figure 8 This is a schematic diagram of the connecting plate and injection groove of this utility model;
[0035] Figure 9 This is a schematic diagram of the structure of the support plate and needle clamp of this utility model. Figure 1 ;
[0036] Figure 10 This is a schematic diagram of the structure of the support plate of this utility model. Figure 1 ;
[0037] Figure 11 This is a schematic diagram of the structure of the needle clamp of this utility model. Figure 1 ;
[0038] Figure 12 This is a schematic diagram of the structure of the support plate and needle clamp of this utility model. Figure 2 ;
[0039] Figure 13 This is a schematic diagram of the structure of the support plate of this utility model. Figure 2 ;
[0040] Figure 14 This is a schematic diagram of the structure of the needle clamp of this utility model. Figure 2 ;
[0041] The markings in the diagram are as follows: 1. Base; 11. Binding hole; 12. Connecting plate; 13. Injection groove; 2. Lifting assembly; 21. Fixing rod; 22. Finger sleeve; 221. Sleeve body; 222. Sleeve frame; 223. Connecting hole; 224. Sealing plate; 23. Fixing hole; 24. Slide groove; 25. Reinforcing rib; 26. Elastic clip; 3. Needle clamp; 31. Base plate; 32. Guide plate; 321. First rounded corner; 33. Clamping block; 34. Connecting block; 35. Insertion gap; 4. Needle; 5. Support plate; 51. First connecting section; 511. Second guide rail; 512. Third rounded corner; 52. Second connecting section; 53. Third connecting section; 531. Second rounded corner; 54. First guide rail; 6. Angle adjustment assembly. Detailed Implementation
[0042] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0043] Those skilled in the art will understand that although some embodiments herein include certain features included in other embodiments but not others, combinations of features from different embodiments are intended to be within the scope of this invention and form different embodiments. For example, in the claims, any of the claimed embodiments can be used in any combination.
[0044] The following is a reference to the appendix. Figure 1 To be continued Figure 14 This invention describes a pet injection stand.
[0045] Cats and dogs have unique skin; their epidermis is relatively loose. When the needle is pulled up, there is some space underneath, allowing medication to be injected without pain. If the needle is tilted too small, it may puncture the epidermis, causing significant pain, swelling, infection, and even death. It may also penetrate the skin on the other side, injecting the medication outside, or even pricking the user's finger. If the needle is tilted too large, it may puncture the muscle, causing severe pain. If injected subcutaneously, in locations close to the spine, such as the back of the neck, it may puncture the spinal cord, leading to death.
[0046] Therefore, this pet injection stand includes a base 1, which fits snugly against the pet's body. The base 1 is equipped with a lifting component 2, which lifts the pet's skin. The base 1 is also equipped with a guide rail component for placing the needle 4. The needle 4 can slide relative to the base 1 via the guide rail component to control whether the needle 4 is inserted into the pet's skin. After the lifting component 2 lifts the pet's skin, the needle 4 is inserted into the lifted skin area for injection.
[0047] Preferably, the base 1 is arched to better fit the pet's body. In other embodiments of this invention, other shapes are also possible, as long as the base 1 can fit the pet's body better.
[0048] In special cases where the pet is moving around a lot, the base 1 has a binding hole 11. By passing a rope through the binding hole 11, the base 1 can be bound to the pet, thus binding the bracket to the pet. In other embodiments of this utility model, other methods can also be used, as long as the base 1 can be fixed to the pet.
[0049] In the first embodiment of the lifting assembly 2, the lifting assembly 2 includes a fixing rod 21, which is fixedly connected to the base 1. A finger sleeve 22 is connected to the end of the fixing rod 21 away from the base 1. The finger sleeve 22 is for placing fingers. When giving a pet an injection, the fingers inside the finger sleeve 22 and the fingers outside the finger sleeve 22 lift the pet's skin.
[0050] Preferably, the index finger is inserted into the finger sleeve 22, and then the pet's skin is lifted up to the height of the finger sleeve 22 by the thumb and middle finger or the thumb, middle finger, ring finger and little finger. Then, the index finger works together to maintain the skin in a lifted state. In other embodiments of this utility model regarding the placement of fingers in the finger sleeve 22, other fingers may also be placed in the finger sleeve 22, as long as they can cooperate with the fingers outside the finger sleeve 22 to lift the pet's skin.
[0051] The fixing rod 21 is equipped with an adjustment component, which controls the height between the finger sleeve 22 and the base 1. After the height of the finger sleeve 22 is adjusted, the position of the finger sleeve 22 is fixed by the locking component.
[0052] In the first embodiment of the adjustment assembly, the adjustment assembly includes a plurality of fixing holes 23 formed on the fixing rod 21, and a connecting hole 223 formed on the finger sleeve 22. The connecting hole 223 on the finger sleeve 22 can coincide with any fixing hole 23 on the fixing rod 21. After the connecting hole 223 on the finger sleeve 22 coincides with the fixing hole 23 of the required height of the finger sleeve 22, the locking member passes through the overlapping connecting hole 223 and the fixing hole 23, and is then locked by the locking member.
[0053] In a second embodiment of the adjustment assembly, the adjustment assembly includes a groove 24 on the fixed rod 21 and a connecting hole 223 on the finger sleeve 22. The connecting hole 223 on the finger sleeve 22 coincides with the groove 24 on the fixed rod 21. After the required height of the finger sleeve 22 is determined, the locking member passes through the overlapping connecting hole 223 and the groove 24, and is then locked by the locking member.
[0054] In addition to the two embodiments of the adjustment component described above, in other embodiments of the adjustment component of this utility model, other methods can be used, such as sliding the finger sleeve 22 on the fixed rod 21, as long as the height of the finger sleeve 22 from the base 1 can be adjusted by means of the adjustment component.
[0055] Regarding the locking assembly, a combination of bolt and nut is preferred. The bolt passes through the overlapping connecting hole 223 and fixing hole 23 or the overlapping connecting hole 223 and sliding groove 24, and then the nut is screwed onto the bolt and tightened to lock the finger sleeve 22 and fixing rod 21. In other embodiments of the locking assembly of this utility model, other components can also be used, as long as they can satisfy the locking of the finger sleeve 22 and fixing rod 21.
[0056] By pre-setting and adjusting the height of the finger sleeve 22, the height of the finger sleeve 22 is guaranteed because the thumb and middle finger or the thumb, middle finger, ring finger and little finger lift the pet's skin to the height of the finger sleeve 22. However, when giving injections by hand, for inexperienced people, the skin lifting height is often insufficient, which makes it easy to inject into the muscle or epidermis.
[0057] Specifically, the finger sleeve 22 is perpendicular to the base 1. The index finger and other fingers work together to lift the skin. The finger sleeve 22 can adjust the fit between the base 1 and the skin, so it can ensure that the lifted skin is perpendicular to the skin under the base 1.
[0058] The finger sleeve 22 includes a sleeve body 221 for placing the finger. The end of the sleeve body 221 away from the base 1 is open for inserting the finger. The end of the sleeve body 221 near the base 1 is fixedly connected to a closing plate 224. When the finger is inserted into the sleeve body 221, the tip of the finger contacts the closing plate 224, so that the finger inside the finger sleeve 22 is blocked by the closing plate 224 and cannot extend out of the finger sleeve 22, thereby preventing the needle tip from pricking the finger.
[0059] Regarding the form of the sleeve 221, it is preferably an annular sleeve with the ends connected to each other, so as to prevent the needle tip from pricking the finger when giving an injection. In other embodiments of the present invention regarding the form of the sleeve 221, the sleeve 221 can also be a semi-annular plate. When the sleeve 221 is a semi-annular plate, the end of the sleeve 221 near the fixing rod 21 is a notch of the semi-annular plate.
[0060] A sleeve frame 222 is fixedly connected to the sleeve body 221, and a connecting hole 223 is opened on the sleeve frame 222. Specifically, the number of sleeve frames 222 is the same as the number of fixing rods 21. Preferably, the number of fixing rods 21 is one, and the number of sleeve frames 222 is also one, which facilitates locking. In other embodiments of this utility model regarding the number of sleeve frames 222 and fixing rods 21, the number of fixing rods 21 is two, and the number of sleeve frames 222 is also two, which ensures the fixing effect of the finger sleeve 22.
[0061] Regarding the second embodiment of the lifting assembly 2, the lifting assembly 2 includes two fixing rods 21, which are fixedly connected to both ends of the base 1 respectively. Each fixing rod 21 is connected to an elastic clip 26. When injecting a pet, the finger clamps the two elastic clips 26 and moves them towards each other until the two elastic clips 26 lift the pet's skin. After releasing the elastic clips 26, the elastic clips 26 automatically return to their original position.
[0062] Preferably, elastic clips 26 are provided on both fixing rods 21. In other embodiments of this utility model regarding the setting position of the elastic clips 26, only one fixing rod 21 is connected to the elastic clip 26, and the other fixing rod 21 is connected to a straight plate made of ordinary material. When a finger is pinched, one elastic clip 26 is brought closer to the straight plate made of ordinary material until the pet's skin is lifted.
[0063] In addition to the two embodiments of the lifting component 2 described above, other embodiments of the lifting component 2 in this utility model can also be achieved through other means.
[0064] Regarding the connection between the fixing rod 21 and the base 1, a reinforcing rib 25 can also be connected to ensure the fixing quality of the fixing rod 21 and the base 1.
[0065] A connecting plate 12 is fixedly connected to the base 1. An injection groove 13 is provided on the connecting plate 12. The position of the injection groove 13 coincides with the injection site of the pet. When injecting into the pet's skin, the pet's skin is lifted in the injection groove 13 by the lifting component 2. The injection groove 13 is set to lift the pet's skin at this point. Specifically, the finger cot 22 or the elastic splint lifts the pet's skin in the injection groove 13.
[0066] The guide rail assembly includes a support plate 5 and a needle clamp 3. The support plate 5 is connected to the base 1, and the end of the support plate 5 away from the base 1 is connected to the needle clamp 3. The needle clamp 3 is for placing the needle 4.
[0067] In the first embodiment of the sliding method between the needle tube 4 and the needle tube clamp 3, the needle tube clamp 3 is semi-cylindrical, and the needle tube 4 can slide relative to the needle tube clamp 3 to control whether the needle tube 4 pierces the pet's skin. Specifically, the needle tube clamp 3 is a semi-cylindrical shape with an opening at the top. The semi-cylindrical shape limits the needle tube 4 so that the needle tube 4 can only slide axially relative to the needle tube clamp 3.
[0068] In the second embodiment of the sliding method between the needle tube 4 and the needle clamp 3, a first guide rail 54 is provided on the support plate 5. The needle clamp 3 is slidably connected to the first guide rail 54. The needle clamp 3 clamps and limits the needle tube 4. The needle clamp 3 drives the needle tube 4 to slide relative to the support plate 5 to control whether the needle tube 4 is inserted into the pet's skin. Specifically, the support plate 5 includes a first connecting segment 51, a second connecting segment 52 and a third connecting segment 53. The first connecting segment 51 is fixedly connected to the third connecting segment 53 through the second connecting segment 52. The first guide rail 54 is formed by the first connecting segment 51, the second connecting segment 52 and the third connecting segment 53. The second connecting segment 52 is located between the first connecting segment 51 and the third connecting segment 53. Thus, the first guide rail 54 is formed by the first connecting segment 51, the second connecting segment 52 and the third connecting segment 53. The first guide rail 54 guides the needle tube 4, and the needle tube 4 is inserted into the skin at the correct angle along the direction of the first guide rail 54. The base 1, finger sleeve 22, and first guide rail 54 serve as a positioning and protractor, ensuring that the needle does not pierce the muscle, the epidermis, or the finger, but is accurately inserted under the pet's skin for injection.
[0069] It should also be noted that the first connecting section 51, the second connecting section 52, and the third connecting section 53 are used for the convenience of describing the support plate 5. In actual production, the first connecting section 51, the second connecting section 52, and the third connecting section 53 are integrally formed, that is, the support plate 5 is a whole sheet material.
[0070] In the first embodiment of the needle clamp 3 driving the needle tube 4 to slide relative to the support plate 5, the needle clamp 3 includes a base plate 31, which is slidably connected to the first guide rail 54. Two guide plates 32 are fixedly connected to the base plate 31, and an insertion gap 35 is provided between the two guide plates 32. The insertion gap 35 is slidably connected to the first connecting section 51. Each guide plate 32 is connected to a clamping block 33, which clamps the needle tube 4. The sliding of the needle clamp 3 is limited by the sliding connection between the base plate 31 and the first guide rail 54, and the sliding connection between the insertion gap 35 and the first connecting section 51, so that the needle clamp 3 can only slide along the direction of the first guide rail 54.
[0071] Preferably, in order to facilitate the insertion of the needle clamp 3 into the support plate 5, the third connecting segment 53 and / or the first connecting segment 51 are provided with a second rounded corner 531 at the end near the first guide rail 54, so that the base plate 31 can be inserted into the first guide rail 54. Both guide plates 32 are provided with a first rounded corner 321, so that the first connecting segment 51 can be inserted into the insertion gap 35.
[0072] Preferably, the clamping block 33 itself is elastic, so that when clamping the needle tube 4, the clamping block 33 is pushed outward, and after the needle tube 4 is inserted, the clamping block 33 returns to its original position and clamps the needle tube 4. In other embodiments of the present invention regarding the clamping block 33, each clamping block 33 is fixedly connected to a connecting block 34, and a spring is provided in the guide plate 32. The two ends of the spring are fixed to the guide plate 32 and the connecting block 34 respectively, so that when clamping the needle tube 4, the clamping block 33 is pushed outward, and after the needle tube 4 is inserted, the elastic force of the spring is released, and the clamping block 33 clamps the needle tube 4.
[0073] In the second embodiment of the needle clamp 3 driving the needle tube 4 to slide relative to the support plate 5, a second guide rail 511 is provided on the first connecting section 51. The second guide rail 511 is connected to the first guide rail 54. The needle clamp 3 includes a base plate 31, which is slidably connected to the first guide rail 54. A guide plate 32 is fixedly connected to the base plate 31 and is slidably connected to the second guide rail 511. Each guide plate 32 is connected to a clamping block 33, which clamps the needle tube 4. The sliding of the needle clamp 3 is limited by the sliding connection between the base plate 31 and the first guide rail 54, and the sliding connection between the guide plate 32 and the second guide rail 511, so that the needle clamp 3 can only slide along the direction of the first guide rail 54.
[0074] Preferably, in order to facilitate the insertion of the needle clamp 3 into the support plate 5, the third connecting section 53 is provided with a second rounded corner 531 at the end near the first guide rail 54, so that the base plate 31 can be inserted into the first guide rail 54. The open end of the second guide rail 511 is provided with a third rounded corner 512, so that the guide plate 32 can be inserted into the second guide rail 511.
[0075] Preferably, the clamping block 33 itself is elastic, so that when clamping the needle tube 4, the clamping block 33 is pushed outward, and after the needle tube 4 is inserted, the clamping block 33 returns to its original position and clamps the needle tube 4. In other embodiments of the present invention regarding the clamping block 33, each clamping block 33 is fixedly connected to a connecting block 34, and a spring is provided in the guide plate 32. The two ends of the spring are fixed to the guide plate 32 and the connecting block 34 respectively, so that when clamping the needle tube 4, the clamping block 33 is pushed outward, and after the needle tube 4 is inserted, the elastic force of the spring is released, and the clamping block 33 clamps the needle tube 4.
[0076] Preferably, the injection angle is 45°. Other embodiments regarding the injection angle can also be set according to the actual injection situation.
[0077] An angle adjustment component 6 is provided on the base 1. The output end of the angle adjustment component 6 is connected to the support plate 5. The end of the support plate 5 away from the angle adjustment component 6 is hinged to the base 1 through a pin. When the angle adjustment component 6 is activated, the support plate 5 drives the needle clamp 3 to rotate around the pin, thereby changing the injection angle of the needle 4 to the pet. The angle adjustment component 6 can be an arc-shaped electric push rod to ensure that when the support plate 5 is pushed, the support plate 5 still rotates around the pin and there is no interference. In other embodiments of the angle adjustment component 6 of this utility model, the angle adjustment component 6 can also be other components, as long as they can meet the requirement of changing the angle of the support plate 5.
[0078] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating the present utility model, and are not intended to limit the implementation of the present utility model. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of the claims of this utility model.
Claims
1. A pet injection support characterized by, The base is provided with a lifting assembly for lifting the skin of the pet, a guide rail assembly for placing a needle tube, and the needle tube is slidable relative to the base through the guide rail assembly to control whether the needle tube pierces the skin of the pet, and the needle tube pierces the skin of the pet lifted by the lifting assembly to inject.
2. The pet injection support of claim 1, wherein, The lifting assembly comprises a fixed rod fixedly connected with the base, and a finger sleeve connected with one end of the fixed rod away from the base, and the finger sleeve is provided for placing fingers, and the fingers in the finger sleeve and the fingers outside the finger sleeve lift the skin of the pet when the pet is injected.
3. The pet injection support of claim 2, wherein, The fixed rod is provided with an adjusting assembly for controlling the height between the finger sleeve and the base, and the position of the finger sleeve is fixed by a locking member after the height of the finger sleeve is adjusted.
4. The pet injection support of claim 3, wherein, The adjusting assembly comprises a plurality of fixed holes formed in the fixed rod, and the finger sleeve is provided with a connecting hole, and the connecting hole of the finger sleeve is coincided with any fixed hole of the fixed rod, and the locking member is passed through the coincided connecting hole and fixed hole, and then locked by the locking member after the connecting hole of the finger sleeve is coincided with the fixed hole at the required height of the finger sleeve.
5. The pet injection support of claim 3, wherein, The adjusting assembly comprises a sliding groove formed in the fixed rod, and the finger sleeve is provided with a connecting hole, and the connecting hole of the finger sleeve is coincided with the sliding groove of the fixed rod, and the locking member is passed through the coincided connecting hole and sliding groove after the required height of the finger sleeve is determined, and then locked by the locking member.
6. The pet injection support of claim 2, wherein, The finger sleeve comprises a sleeve body for placing fingers, and one end of the sleeve body away from the base is an opening, and one end of the sleeve body close to the base is fixedly connected with a closing plate, and the end of the finger is contacted with the closing plate when the finger is inserted into the sleeve body.
7. The pet injection support of claim 6, wherein, The sleeve body is fixedly connected with a sleeve frame, and the connecting hole is formed in the sleeve frame.
8. The pet injection support of claim 1, wherein, The lifting assembly comprises two fixed rods fixedly connected with two ends of the base respectively, and each fixed rod is connected with an elastic clamping piece, and the fingers clamping the two elastic clamping pieces move towards each other until the two elastic clamping pieces lift the skin of the pet when the pet is injected.
9. The pet injection support of claim 1, wherein, The base is fixedly connected with a connecting plate, and the connecting plate is provided with an injection groove, and the position of the injection groove is coincided with the part of the pet to be injected, and the skin of the pet in the injection groove is lifted by the lifting assembly when the skin of the pet is injected.
10. The pet injection support of claim 1, wherein, The base is arched and matched with the body of the pet.
11. The pet injection support of claim 1 or 10, wherein, The base is provided with a binding hole, and the base and the pet are connected by passing the binding rope through the binding hole.
12. The pet injection support of claim 1, wherein, The guide rail assembly comprises a support plate and a needle tube clamp, and the support plate is connected with the base, and one end of the support plate away from the base is connected with the needle tube clamp, and the needle tube clamp is provided for placing the needle tube.
13. The pet injection support of claim 12, wherein, The needle tube clamp is semicircular cylindrical, and the needle tube is slidable relative to the needle tube clamp to control whether the needle tube pierces the skin of the pet.
14. The pet injection support of claim 12, wherein, The support plate is provided with a first guide rail, and the needle tube clamp is slidably connected with the first guide rail, and the needle tube clamp drives the needle tube to slide relative to the support plate to control whether the needle tube pierces the skin of the pet.
15. The pet injection support of claim 14, wherein, The support plate comprises a first connecting section, a second connecting section and a third connecting section, and the first connecting section is fixedly connected with the third connecting section through the second connecting section, and the first guide rail is formed by the first connecting section, the second connecting section and the third connecting section.
16. The pet injection support of claim 15, wherein, The needle tube clamp comprises a bottom plate, the bottom plate is in sliding connection with a first guide rail, two guide plates are fixedly connected on the bottom plate, an insertion gap is arranged between the two guide plates, the insertion gap is in sliding connection with a first connecting section, a clamping block is connected on each guide plate, and the needle tube is clamped through the clamping block.
17. The pet injection support of claim 15, wherein, A second guide rail is arranged on the first connecting section and is in communication with the first guide rail.
18. The pet injection support of claim 17, wherein, The needle tube clamp comprises a bottom plate, the bottom plate is in sliding connection with a first guide rail, a guide plate is fixedly connected on the bottom plate, the guide plate is in sliding connection with a second guide rail, a clamping block is connected on each guide plate, and the needle tube is clamped through the clamping block.
19. The pet injection support of claim 12, wherein, An angle adjusting assembly is arranged on the base, an output end of the angle adjusting assembly is connected with a supporting plate, one end of the supporting plate away from the angle adjusting assembly is hinged to the base through a pin shaft, and after the angle adjusting assembly is started, the supporting plate drives the needle tube clamp to rotate with the pin shaft as the center to change the injection angle of the needle tube to the pet.