Anesthesia aid and system
By designing an anesthesia aid device including an auxiliary fixation part and a support part, the problem of lack of flexibility and versatility of anesthesia aid devices in the prior art is solved, and stable fixation of patient posture and safe and efficient operation are achieved.
Patent Information
- Application Number
- CN202421307883.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-07
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-06-07
AI Technical Summary
The lack of flexibility and versatility of existing anesthesia assistive devices in intra-spinal anesthesia, resulting in unstable posture of patients, affecting comfort and surgical safety.
An anesthesia aid device including an auxiliary fixing part and a support part is designed. The auxiliary fixing part fixes the patient's body through a foot assembly, a handrail assembly and a connecting assembly. The support part can be movably connected to the medical device to adapt to different models and layouts.
Through this anesthesia aid, patients can maintain a stable and comfortable posture during surgery, reduce surgical risks, improve operational efficiency and safety, and at the same time adapt to different patient body shapes and medical equipment, increasing versatility and convenience.
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Figure CN222899597U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of medical devices, in particular to an anesthesia auxiliary device and system. Background Art
[0002] In clinical practice, some patients usually need to take the knee-chest lateral position during spinal anesthesia. In order to maintain this standard posture, patients need to curl up their bodies. For some special patients, such as pregnant women, due to the significant expansion of their abdomens, operating room nurses often need to use their own bodies to support the lower limbs of the parturients, while fixing their shoulders with their hands, so as to fully expose the L3-L4 or L4-L5 space of the lumbar spine, ensure the standardization of anesthesia operations, and improve the success rate of puncture.
[0003] However, maintaining this posture not only brings safety risks, but also has a great impact on the comfort and experience of the parturient. In addition, it also leads to unnecessary consumption of medical human resources.
[0004] Although some existing assistive devices can be adjusted according to the height and body shape of the patient to support the patient's curled posture, they lack flexibility and versatility. Utility Model Content
[0005] The purpose of the utility model is to overcome at least one of the above-mentioned deficiencies of the prior art and to provide an anesthesia auxiliary device and system that are both flexible and universal.
[0006] Additional aspects and advantages of the present invention will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the present invention.
[0007] According to one aspect of the utility model, an anesthesia auxiliary device is provided, the anesthesia auxiliary device comprising:
[0008] The auxiliary fixation part is used to assist in fixing the patient's body.
[0009] The supporting part is movably arranged on the medical device and connected to the auxiliary fixing part to support the auxiliary fixing part.
[0010] In some exemplary embodiments of the present utility model, based on the above solution, the auxiliary fixing part includes:
[0011] Footrest assembly, used to support the patient's feet
[0012] A hand support assembly, used to support the patient's hand;
[0013] The connecting assembly is located between the footrest assembly and the hand frame assembly and is used to adjust the distance between the footrest assembly and the hand frame assembly.
[0014] In some exemplary embodiments of the present utility model, based on the foregoing solution, the connection assembly includes:
[0015] A first connecting rod, connecting the pedal assembly;
[0016] A second connecting rod, connecting the handrail assembly;
[0017] Wherein, one of the first connecting rod and the second connecting rod is fixed, and the other can slide relative to the one to adjust the distance between the pedal assembly and the handrail assembly.
[0018] In some exemplary embodiments of the present utility model, based on the foregoing solution, a plurality of first through holes are provided on the first connecting rod, and the plurality of first through holes are evenly spaced;
[0019] A plurality of second through holes are provided on the second connecting rod,
[0020] The connection assembly further includes a positioning and locking member;
[0021] Wherein, the plurality of second through holes are arranged in one-to-one correspondence with the plurality of first through holes, so that the positioning and locking member can selectively pass through any first through hole and the second through hole corresponding to the first through hole.
[0022] In some exemplary embodiments of the present utility model, based on the foregoing solution, the handrail assembly has an "L" - shaped cross - section,
[0023] Wherein, the "|" part of the "L" - shaped cross - section forms a hand - grasping rod for supporting the patient's hand; the "-" part of the "L" - shaped cross - section forms a connecting rod connecting the hand - grasping rod.
[0024] In some exemplary embodiments of the present utility model, based on the foregoing solution, a connecting body is provided at one end of the "-" part away from the "|" part, and the inside of the connecting body is hollow to form a first connecting hole;
[0025] A connecting portion is provided on the second connecting rod, and the inside of the connecting portion is recessed to form a second connecting hole;
[0026] The anesthesia assistance device further includes a first fixing member,
[0027] Wherein, the first fixing member sequentially passes through the first connecting hole and the second connecting hole to connect the handrail assembly and the second connecting rod.
[0028] In some exemplary embodiments of the present utility model, based on the foregoing solution, at least a part of the region of the "|" part is set as a grasping region, and an elastic buffer body is provided on the grasping region.
[0029] In some exemplary embodiments of the present utility model, based on the above scheme, the pedal assembly includes:
[0030] a support plate body, the support plate body comprising a contact surface for contacting the patient,
[0031] Wherein, an elastic pad is arranged on the contact surface.
[0032] In some exemplary embodiments of the present invention, based on the above solution, the supporting part includes:
[0033] A support rod connected to the auxiliary fixing part,
[0034] The clamp is movably arranged on the support rod to clamp the medical device.
[0035] According to another aspect of the utility model, there is provided an anesthesia assisting system, the anesthesia assisting system comprising the above-mentioned anesthesia assisting apparatus and also comprising medical equipment;
[0036] Wherein, the anesthesia auxiliary device is movably connected to the medical device through a supporting part.
[0037] It can be seen from the above technical solution that the utility model has at least one of the following advantages and positive effects:
[0038] Through the above technical solution, that is, through the anesthesia auxiliary device provided by the utility model, the presence of the auxiliary fixing part can effectively assist in fixing the patient's body and ensure that the patient is in a stable and comfortable posture during the anesthesia operation. Considering that the patient's body is relaxed under anesthesia, effective fixation can prevent accidental movement during the operation, reduce surgical risks, and also help maintain the necessary physiological function stability. The presence of the support part can provide a flexible and stable connection mechanism, so that the auxiliary fixing part can be easily installed on the medical device. Since the support part can be movably arranged on the medical device, the anesthesia auxiliary device can adapt to medical equipment of different models and layouts, such as operating tables, anesthesia racks, etc., which increases the versatility and convenience of use. BRIEF DESCRIPTION OF THE DRAWINGS
[0039] The above and other features and advantages of the present invention will become more apparent by describing in detail example embodiments thereof with reference to the attached drawings.
[0040] Figure 1 It is a structural schematic diagram of an implementation method of the anesthesia auxiliary device of the utility model.
[0041] Description of Reference Numerals
[0042] 1. Auxiliary fixing part; 11. Pedal assembly; 111. Support plate; 112. Elastic pad; 12. Hand frame assembly; 121. "1" part; 122. "One" part; 1221. Connecting body; 13-Connecting assembly; 131. First connecting rod; 132. Second connecting rod; 133. Positioning locking member; 134. Connecting part; 2. Support part; 21. Support rod; 22. Clamp; 3. First fixing member; 4. Second fixing member. DETAILED DESCRIPTION
[0043] Example embodiments will now be described more fully with reference to the accompanying drawings. However, example embodiments can be implemented in a variety of forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided so that the present invention will be comprehensive and complete and fully convey the concepts of the example embodiments to those skilled in the art. The same reference numerals in the figures represent the same or similar structures, and thus their detailed description will be omitted.
[0044] The features, structures or characteristics described above may be combined in one or more embodiments in any suitable manner, and if possible, the features discussed in each embodiment are interchangeable. In the above description, many specific details are provided to provide a full understanding of the embodiments of the present utility model. However, those skilled in the art will appreciate that the technical solution of the present utility model can be practiced without one or more of the specific details, or other methods, components, materials, etc. may be adopted. In other cases, known structures, materials or operations are not shown or described in detail to avoid blurring the various aspects of the present utility model.
[0045] Although relative terms such as "upper" and "lower" are used in the present invention to describe the relative relationship of one component of the illustration to another component, these terms are used in the present invention only for convenience, such as the direction of the examples described in the drawings. It is understood that if the device of the illustration is turned upside down, the component described as "upper" will become the component "lower". Other relative terms, such as "high", "low", "top", "bottom", "front", "back", "left", "right", etc., also have similar meanings. When a structure is "on" other structures, it may mean that the structure is formed integrally on the other structure, or that the structure is "directly" disposed on the other structure, or that the structure is "indirectly" disposed on the other structure through another structure.
[0046] In the present invention, the terms "a", "an", "the", "said" and "at least one" are used to indicate the presence of one or more elements / components / etc.; the terms "comprising", "including" and "having" are used to express an open-ended inclusion and mean that in addition to the listed elements / components / etc., there may be additional elements / components / etc.
[0047] According to one aspect of the present invention, an anesthesia auxiliary device is provided, referring to Figure 1 As shown, the anesthesia auxiliary device includes:
[0048] The auxiliary fixing part 1 is used to assist in fixing the patient's body.
[0049] The supporting part 2 is movably arranged on the medical device and connected to the auxiliary fixing part 1 to support the auxiliary fixing part 1 .
[0050] Through the above technical solution, that is, through the anesthesia auxiliary device provided by the utility model, the presence of the auxiliary fixing part 1 can effectively assist in fixing the patient's body and ensure that the patient is in a stable and comfortable posture during the anesthesia operation. Considering that the patient's body is relaxed under anesthesia, effective fixation can prevent accidental movement during the operation, reduce surgical risks, and also help maintain the necessary physiological function stability. The presence of the support part 2 can provide a flexible and stable connection mechanism, so that the auxiliary fixing part 1 can be easily installed on the medical device. Since the support part 2 can be movably arranged on the medical device, the anesthesia auxiliary device can adapt to medical equipment of different models and layouts, such as operating tables, anesthesia racks, etc., which increases the versatility and convenience of use. Therefore, through the clever cooperation of the auxiliary fixing part 1 and the support part 2, not only the efficiency and safety of the surgical operation are improved, but also the safety and comfort of the patient are fully considered.
[0051] The present invention does not limit the specific structure of the auxiliary fixing part 1. In some embodiments, the auxiliary fixing part 1 may include but is not limited to an adjustable buckle, a cushion support, and a special fixing device designed according to different body parts (such as the head, limbs), to ensure that it can be firmly fixed without causing pressure or discomfort.
[0052] In order to further enhance the safety and comfort of the patient, as a specific embodiment, the auxiliary fixing part 1 provided by the utility model includes:
[0053] A footrest assembly 11, used for supporting the patient's feet;
[0054] A hand support assembly 12, used to support the patient's hand;
[0055] The connecting assembly 13 is located between the footrest assembly 11 and the hand frame assembly 12 to connect the footrest assembly 11 and the hand frame assembly 12 .
[0056] Thus, during the anesthesia process, the patient can place or lean his feet on the footrest assembly 11, while holding the hand support assembly 12 with his hands. In this way, the footrest assembly 11 helps to maintain the patient's body position during the operation, reduce the surgical risks caused by the movement of the limbs, and can also reduce the burden on the patient's legs through appropriate support, thereby improving the comfort during the anesthesia process. By holding the hand support assembly 12 with the hand, on the one hand, the stability of the patient's anesthesia process can be enhanced, and on the other hand, it can prevent the hand from accidentally contacting the surgical area and causing surgical accidents, thereby ensuring the safe and smooth progress of the operation. The connecting assembly 13, as a bridge between the footrest assembly 11 and the hand support assembly 12, can not only provide the patient with a certain body curling space to ensure the patient's comfort when curling up, but also optimize the stability and practicality of the overall structure of the auxiliary fixing part 1, and comprehensively guarantee the correct maintenance of the anesthesia posture and the smooth progress of the operation.
[0057] In order to accommodate patients of different heights and body shapes at the same time, on this basis, the distance between the footrest assembly 11 and the hand frame assembly 12 can also be designed to be adjustable. The utility model does not impose specific restrictions on the way in which the distance between the footrest assembly 11 and the hand frame assembly 12 can be adjusted. For example, in some embodiments, the connecting assembly 13 can be constructed as a slide rail mechanism to slide and adjust the distance between the footrest assembly 11 and the hand frame assembly 12, and fix it through a locking mechanism to ensure stability and safety during the anesthesia operation. In other embodiments, a telescopic rod with a scale and a quick lock system may also be used to intuitively adjust to a suitable position according to the scale indication and quickly lock it.
[0058] As an implementation mode, the connection assembly 13 provided by the present utility model includes:
[0059] A first connecting rod 131 connected to the pedal assembly 11;
[0060] A second connecting rod 132 connected to the hand frame assembly 12;
[0061] One of the first connecting rod 131 and the second connecting rod 132 is fixed, and the other one can slide relative to the other one to adjust the distance between the footrest assembly 11 and the hand frame assembly 12 .
[0062] Therefore, through the presence of the first connecting rod 131 and the second connecting rod 132, on the one hand, it can easily adapt to patients of different body shapes, ensuring that adults and children, as well as tall, short, fat and thin people, can find the most suitable fixed position, thereby improving the versatility and patient comfort of the anesthesia auxiliary device; on the other hand, the adjustment mechanism is simple. When in use, medical staff only need simple operations to quickly adjust the distance between the footrest assembly 11 and the hand frame assembly 12, without the need for complex tools or professional knowledge, thus saving surgical preparation time and improving the operating efficiency of the operating room; moreover, due to the simple structure, it can also save production costs, thereby increasing the economy and practicality of the anesthesia auxiliary device.
[0063] On this basis, in order to ensure safety and stability, the first connecting rod 131 and the second connecting rod 132 can also be locked and fixed by a locking mechanism. In some embodiments, the locking mechanism can be set as a hydraulic locking or a mechanical locking. When a mechanical locking is used, a push-pull locking or a rotary locking can be set. The utility model does not make specific restrictions to ensure that after adjusting the ideal distance between the footrest assembly 11 and the hand frame assembly 12, the relative position between the first connecting rod 131 and the second connecting rod 132 is stable and unchanged.
[0064] As a specific implementation, optionally, it can be designed that the first connecting rod 131 is provided with a plurality of first through holes, and the plurality of first through holes are evenly spaced;
[0065] The second connecting rod 132 is provided with a plurality of second through holes.
[0066] The connecting assembly 13 further includes a positioning locking member 133;
[0067] The plurality of second through holes are arranged in a one-to-one matching correspondence with the plurality of first through holes, so that the positioning locking member 133 can selectively pass through any first through hole and the second through hole corresponding to the first through hole.
[0068] In this way, by providing a plurality of evenly distributed through holes on the first connecting rod 131 and the second connecting rod 132, the adjustment is no longer a continuous sliding, but becomes an optional fixed position point, so that more precise distance adjustment can be achieved to meet the subtle differences in different surgical needs and patient body shapes; the positioning locking member 133 can firmly lock the first connecting rod 131 and the second connecting rod 132 at the selected through hole position to avoid accidental sliding due to external force during the operation, thereby ensuring the absolute stability of the patient's position and increasing the safety of the operation; in addition, such a design facilitates repeated adjustment and locking, and is suitable for long-term use and multiple operations. At the same time, by selecting suitable locking member materials and designs, its durability and reliability can be ensured and maintenance costs can be reduced.
[0069] As an implementation method, refer to Figure 1As shown, the positioning locking member 133 can be designed to include a positioning portion and a locking portion. The positioning portion can be sleeved on the connection between the first connecting rod 131 and the second connecting rod 132, and has a hole for the locking portion to pass through. The positioning portion can slide relative to the first connecting rod 131 and the second connecting rod 132. After the fixed positions of the first connecting rod 131 and the second connecting rod 132 are determined, the positioning portion is slid to the hole thereon to align with the first through hole and the second through hole at the same time, and is sequentially penetrated and locked by the locking portion.
[0070] The locking part can be a bolt, a pin or any component that can achieve locking, and the utility model does not make any specific limitation.
[0071] In order to maintain the comfort of the patient's hand, the hand support assembly 12 can be designed to facilitate the natural placement of the patient's arm, and may have soft pads or ergonomic contours to reduce the pressure and discomfort on the arm when placed for a long time. For example, it can be designed as an angle-adjustable platform to allow the patient to adjust the support angle according to their comfort needs. The edge of the hand support adopts a gentle slope design to reduce the pressure when contacting the limbs and increase the comfort and smoothness during use.
[0072] Taking into account the operational convenience and structural simplicity, as an implementation method, the hand support assembly 12 provided by the present invention has an "L"-shaped cross-section, wherein the "1" portion 121 of the "L"-shaped cross-section is formed as a hand grab bar, which is used to support the patient's hand; the "one" portion 122 of the "L"-shaped cross-section is formed as a connecting rod, which connects the hand grab bar.
[0073] Through the connecting rod of the "one" part 122, the hand support assembly 12 can be more flexibly connected to the connecting assembly 13 of the auxiliary fixing part 1, especially the second connecting rod 132 mentioned above, so as to conveniently adjust the position of the hand support, adapt to the requirements of different surgical positions, and improve the flexibility of surgical operations and the comfort of patients. In addition, the "L"-shaped design is relatively simple and occupies little space, so it is easy to use in a compact surgical environment. At the same time, this design simplifies the operating procedures of medical staff, facilitates quick installation and adjustment, and can improve the efficiency of surgical preparation.
[0074] The present invention does not specifically limit the connection method between the hand support assembly 12 and the second connecting rod 132. Those skilled in the art can design a threaded connection, a quick locking mechanism connection or a mortise and tenon structure connection.
[0075] Considering structural stability and flexibility, in some exemplary embodiments of the present utility model, based on the foregoing solution, a connecting body 1221 is provided at one end of the "one" part 122 away from the "1" part 121. The inside of the connecting body 1221 is hollow to form a first connection hole; a connecting part 134 is provided on the second connecting rod 132, and the inside of the connecting part 134 is recessed to form a second connection hole; the anesthesia assistance device further includes a first fixing member 3. Among them, the first fixing member 3 sequentially passes through the first connection hole and the second connection hole to connect the handrest assembly 12 and the second connecting rod 132.
[0076] In this way, by providing the connecting body 1221 at the distal end of the "one" part 122 and the connecting part 134 on the second connecting rod 132, a stable connection mechanism is formed. The first fixing member 3 (such as a screw, a pin, etc.) penetrates into the first connection hole and the second connection hole, ensuring a rigid connection between the handrest assembly 12 and the second connecting rod 132, and improving the stability and durability of the entire assistance device. In addition, when connecting the connecting body 1221 and the connecting part 134, the relative distance between the "1" part grasped by the patient and the patient can be changed by adjusting the angle of the connecting body 1221 relative to the connecting part 134, so as to change the spatial direction of the "one" part 122, thereby adapting to patients with different arm lengths and increasing the flexibility of the anesthesia assistance device.
[0077] Based on the foregoing solution, a part of the area on the "1" part 121 can be designed as a grasping area. In order to ensure that the grasping needs of different patients can be met, the entire "1" part 121 can also be designed as a grasping area. And in order to ensure the comfort of the patient's grasping, in some exemplary embodiments of the present utility model, based on the foregoing solution, an elastic buffer body can be provided on the grasping area. The elastic buffer body can fill the entire area of the grasping area or a part of the area of the grasping area, and the present utility model does not make specific limitations.
[0078] As for the elastic buffer body, it can be set as a sponge material with good air permeability, or some rubber materials with good wear resistance and elasticity, or an air cushion or foaming material, which can be selected and set according to the actual situation.
[0079] Based on the foregoing solution, in order to further improve the comfort of the patient, in some exemplary embodiments of the present utility model, based on the foregoing solution, the footrest assembly 11 includes:
[0080] A support plate body 111, and the support plate body 111 includes a contact surface that contacts the patient.
[0081] Among them, an elastic pad 112 is provided on the contact surface.
[0082] In this way, the support plate 111 can provide support for the patient's feet, and the elastic pad 112 can effectively absorb the pressure of the patient's feet and reduce the discomfort caused by hard contact, especially during long-term surgery, to keep the feet comfortable and reduce the risk of poor blood circulation or skin pressure sores caused by compression. In addition, since the elastic pad 112 often has a certain friction force, it can increase the friction coefficient between the foot and the support plate 111, effectively preventing the patient's feet from sliding when they move unconsciously under anesthesia, thereby improving safety during surgery.
[0083] The elastic pad 112 can also be set to a sponge material with good air permeability, or to some rubber materials with good wear resistance and elasticity, or to an air cushion or foam material, which can be selected and set according to actual conditions.
[0084] The supporting part 2 may adopt an adjustable bracket, clamp or hook mechanism to ensure that the auxiliary fixing part 1 can be firmly supported and the position or angle can be quickly adjusted when necessary to meet various needs during the operation.
[0085] In order to further improve the flexibility, versatility and ease of operation of the anesthesia auxiliary device of the utility model, in some exemplary embodiments of the utility model, based on the above scheme, the support part 2 includes:
[0086] Support rod 21, connected to auxiliary fixing part 1,
[0087] The clamp 22 is movably disposed on the support rod 21 to clamp the medical device.
[0088] The clamp 22 can be set to slide relative to the support rod 21, or can be set to rotate relative to the support rod 21. When the clamp 22 is set to slide relative to the support rod 21, the height of the entire auxiliary fixing part 1 relative to the medical device can be adjusted; when the clamp 22 is set to rotate relative to the support rod 21, the entire auxiliary fixing part 1 can be clamped at any angle of the medical device to facilitate the execution of the operation. Of course, the clamp 22 can also be set to slide and rotate at the same time. This flexibility allows the anesthesia auxiliary device to be widely used in a variety of medical scenarios, improving the versatility and practicality of the equipment.
[0089] The support rod 21 and the pedal assembly 11 may also be connected via a connection mechanism to provide a pulling force on the pedal assembly 11 to ensure the stability of the pedal assembly 11. Figure 1The pedal assembly 11 and the support rod 21 can be connected by a connecting rod, and the connection method between the support rod 21 and the pedal assembly 11 can be the same as the connection method between the hand frame assembly 12 and the second connecting rod 132, that is, the top end of the support rod 21 can be provided with a connecting portion 134, and a connecting body 1221 is provided on the connecting rod. The connecting body 1221 is hollow inside to form a first connecting hole, and the connecting portion 134 is recessed inside to form a second connecting hole; the anesthesia auxiliary device also includes a second fixing member 4, wherein the second fixing member 4 sequentially passes through the first connecting hole and the second connecting hole to connect the connecting rod and the support rod 21.
[0090] According to another aspect of the utility model, an anesthesia assisting system is provided, the anesthesia assisting system comprising the above-mentioned anesthesia assisting apparatus and also comprising medical equipment;
[0091] The anesthesia auxiliary device is movably connected to the medical device via the supporting part 2 .
[0092] It should be understood that the utility model does not limit its application to the detailed structure and arrangement of the components proposed in the utility model. The utility model can have other embodiments and can be implemented and executed in a variety of ways. The aforementioned deformation forms and modified forms fall within the scope of the utility model. It should be understood that the utility model disclosed and defined in the utility model extends to all alternative combinations of two or more individual features mentioned or evident in the text and / or the drawings. All these different combinations constitute multiple alternative aspects of the utility model. The embodiments described in the utility model illustrate the best known methods for implementing the utility model and will enable those skilled in the art to utilize the utility model.
Claims
1. An anesthesia assisting device, characterized in that: The anesthesia assistance device includes: An auxiliary fixation part for assisting in fixing the patient's body. A support part movably arranged on a medical device and connected to the auxiliary fixation part (1) for supporting the auxiliary fixation part. The auxiliary fixation part includes: A footrest assembly for supporting the patient's feet. A handrest assembly for supporting the patient's hands. A connection assembly located between the footrest assembly and the handrest assembly for adjusting the distance between the footrest assembly and the handrest assembly. The connection assembly includes: A first connecting rod connecting the footrest assembly. A second connecting rod connecting the handrest assembly. Wherein, one of the first connecting rod and the second connecting rod is fixed and the other can slide relative to the one to adjust the distance between the footrest assembly and the handrest assembly. A plurality of first through holes are provided on the first connecting rod, and the plurality of first through holes are arranged at equal intervals. A plurality of second through holes are provided on the second connecting rod. The connection assembly further includes a positioning and locking member. Wherein, the plurality of second through holes are arranged in one-to-one correspondence with the plurality of first through holes so that the positioning and locking member can selectively pass through any first through hole and the second through hole corresponding to the first through hole.
2. The anesthesia assistance device according to claim 1, wherein The handrest assembly has an "L"-shaped cross-section. Wherein, the "|"-shaped part of the "L"-shaped cross-section forms a handgrip rod for supporting the patient's hand; the "-"-shaped part of the "L"-shaped cross-section forms a connecting rod connecting the handgrip rod.
3. The anesthesia assistance device according to claim 2, wherein A connecting body is provided at one end of the "-"-shaped part away from the "|"-shaped part, and the inside of the connecting body is hollow to form a first connection hole. A connecting part is provided on the second connecting rod, and the inside of the connecting part is recessed to form a second connection hole. The anesthesia assistance device further includes a first fixing member. Wherein, the first fixing member sequentially passes through the first connection hole and the second connection hole to connect the handrest assembly and the second connecting rod.
4. The anesthesia assisting device according to claim 2, characterized in that: At least a part of the region of the "|"-shaped part is set as a gripping region, and an elastic buffer body is provided on the gripping region.
5. The anesthesia assisting device according to any one of claims 2 to 4, characterized in that: The footrest assembly includes: A support plate body, and the support plate body includes a contact surface in contact with the patient. Wherein, an elastic pad is provided on the contact surface.
6. The anesthesia assisting device according to claim 1, characterized in that: The support part includes: A support rod connecting the auxiliary fixation part. A clamp movably arranged on the support rod for clamping the medical device.
7. An anesthesia assistance system, characterized in that: The anesthesia assistance system includes the anesthesia assistance device according to any one of claims 1-6, and further includes a medical device. Wherein, the anesthesia assistance device is movably connected to the medical device through the support part.