Surgical position transfer and fixation device
By designing a surgical position transfer and fixation device, and using airbags and restraint straps to assist in patient position transfer, the problem of time-consuming and laborious transfer from supine to lateral position in existing technologies has been solved, achieving efficient position transfer and fixation.
Patent Information
- Application Number
- CN202522142170.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-10
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-10-10
AI Technical Summary
In existing technologies, it requires the collaboration of multiple medical staff to turn a patient from a supine position to a lateral position, which is time-consuming and labor-intensive, and the position transfer process is inefficient due to its reliance on manpower.
A surgical positioning and fixation device was designed, including a padding component, a positioning and fixation component, and a lower limb fixation component. It uses an airbag and restraint straps to assist in patient positioning and fixation, reducing the need for manpower.
The process of transferring patients to a new position has been simplified, requiring only 2-3 medical staff to complete, which improves work efficiency and reduces the number of medical staff needed.
Smart Images

Figure CN224671766U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical auxiliary device technology, specifically to a surgical position transfer and fixation device. Background Technology
[0002] Surgical position refers to the specific body posture adopted during surgery to fully expose the surgical field, ensure smooth operation, and reduce complications; common types include supine, lateral, prone, and lithotomy positions. For example, in thoracoscopic surgery, the incision is located on the lateral chest wall. During the surgery, the patient needs to be given general anesthesia in the supine position, and then the position is changed to a neutral lateral decubitus position for the surgical procedure.
[0003] Because patients completely lose their ability to move independently after general anesthesia, their muscles are relaxed. Currently, transferring a patient from a supine to a lateral position after general anesthesia requires 4-5 medical staff (e.g., 1 person to stabilize the head / airway, 2-3 people to lift the torso, and 1 person to adjust the lower limbs) to complete the repositioning. After the repositioning is completed, additional soft pillows or sandbags need to be placed beside the patient to maintain a neutral lateral position for subsequent surgery, and brute force is also required to lift the patient and place chest pads. This method relies on a large number of medical staff and is time-consuming and labor-intensive. Utility Model Content
[0004] To address the problems mentioned in the background section, this invention provides a surgical position transfer and fixation device that can assist patients in changing from a supine position to a neutral lateral position and can quickly and conveniently fix their position.
[0005] This utility model adopts the following technical solution: a surgical position transfer and fixation device, comprising:
[0006] A padding assembly, comprising a padding layer placed on an operating table and a head support airbag fixedly installed on the head end of the upper surface of the padding layer;
[0007] The body position transfer and fixation assembly includes a body position transfer sheet disposed on the top surface of the padding layer, a chest support airbag fixedly installed at the head end of the upper surface of the body position transfer sheet, and a side fixation airbag fixedly installed in the middle of the upper surface of the body position transfer sheet; the two side fixation airbags are arranged in parallel at a preset distance and are perpendicular to the head support airbag; the body position transfer sheet can slide relative to the padding layer.
[0008] The lower limb fixation component is located on the top surface of the padding layer and is used to fix the patient's lower limbs when the patient is in a neutral lateral decubitus position.
[0009] Furthermore, the lower limb fixation assembly includes a support pad disposed on the top surface of the padding layer and a restraint strap disposed on the top of the support pad; the support pad is cuboid in shape and has a through groove along its length, the through groove extending out of the bottom surface of the support pad; the restraint strap includes a restraint portion and two lower limb fixation straps fixedly connected to opposite ends of the restraint portion, the width of the restraint portion being greater than the width of the lower limb fixation straps.
[0010] Furthermore, the lower limb fixation assembly includes a pneumatic leg sleeve, which includes an airbag leg sleeve, an air tube, a controller, and leg sleeve fixing straps; two airbag leg sleeves are disposed on the top surface of the padding layer, and the air tube is connected between each airbag leg sleeve and the controller; two leg sleeve fixing straps form a set, and at least one set of leg sleeve fixing straps is fixedly connected to each airbag leg sleeve.
[0011] Furthermore, Velcro fasteners that can be adhered to each other are fixed on the opposite side of the two airbag leg sleeves.
[0012] Furthermore, the padding layer includes a flexible pad and a cover sheet, the cover sheet being fixedly wrapped around the outside of the flexible pad, and the head support airbag being fixedly installed on the head end of the upper surface of the cover sheet.
[0013] Furthermore, a groove is provided in the middle of the top surface of the head support airbag, and a connecting groove is provided on the left and right sides of the head support airbag, which is connected to the groove.
[0014] Furthermore, the head support airbag is detachably fixed to the padding layer via Velcro, and the chest support airbag and the side fixation airbag are detachably fixed to the position transfer sheet via Velcro; the height of the side fixation airbag is greater than that of the head support airbag and the chest support airbag.
[0015] Furthermore, multiple handles are fixed at equal intervals along the left and right sides of the body position transfer form.
[0016] Furthermore, the width of the body position transfer sheet is greater than the width of the padding layer, and the length of the body position transfer sheet is less than the length of the padding layer.
[0017] Furthermore, the body position transfer sheet and the cover sheet are made of a sliding cloth material as a whole, or a layer of sliding cloth is fixed on the lower surface of the body position transfer sheet and the upper surface of the cover sheet.
[0018] Beneficial effects: The positioning transfer sheet in this patent is placed between the patient and the padding layer. When transferring the patient to a lateral decubitus position, simply fold one side of the transfer sheet over the patient's body and pull on the handle towards the opposite side. The transfer sheet wraps around the patient's torso and turns the patient's torso towards the opposite side, making the operation simple, time-saving, and labor-saving. Only 2-3 medical staff (e.g., 1 person to stabilize the head / airway, 1-2 people at the side of the operating table to pull the transfer sheet) are needed to complete the position transfer. After the position transfer is completed, the patient's body is supported and fixed in position using head support airbags, chest support airbags, and side fixation airbags, greatly reducing the number of medical staff required, optimizing the position transfer process, and improving work efficiency. Attached Figure Description
[0019] Appendix Figure 1 This is a schematic diagram of the surgical position transfer and fixation device in Embodiment 1 of this utility model.
[0020] Appendix Figure 2 This is a schematic diagram of the structure of the padding component 1 and the head support airbag 13 in this utility model.
[0021] Appendix Figure 3 This is a schematic diagram of the body position transfer and fixation component 2 in this utility model.
[0022] Appendix Figure 4 This is a schematic diagram of the lower limb fixation component in Embodiment 1 of this utility model.
[0023] Appendix Figure 5 This is a schematic diagram of the surgical position transfer and fixation device installed on the operating table in Embodiment 1 of this utility model.
[0024] Appendix Figure 6 This is a schematic diagram of the surgical position transfer and fixation device in Embodiment 2 of this utility model.
[0025] Appendix Figure 7 This is a schematic diagram of the lower limb fixation component in Embodiment 2 of this utility model.
[0026] Appendix Figure 8 This is a schematic diagram of the surgical position transfer and fixation device installed on the operating table in Embodiment 2 of this utility model.
[0027] The reference numerals in the attached drawings are explained as follows: Pad assembly 1, Flexible pad 11, Covering sheet 12, Head support airbag 13, Groove 131, Connecting groove 132, Body position transfer and fixation assembly 2, Body position transfer sheet 21, Handle 211, Chest support airbag 22, Side fixation airbag 23, Support pad 3, Restraint strap 4, Restraint part 41, Lower limb fixation strap 42, Pneumatic leg sleeve 5, Airbag leg sleeve 51, Air tube 52, Controller 53, Leg sleeve fixation strap 54. Detailed Implementation
[0028] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort. The content of the utility model will be further explained below in conjunction with the drawings:
[0029] Example 1
[0030] See attached document Figure 1 This embodiment provides a surgical position transfer and fixation device, including a padding component 1, a position transfer and fixation component 2, a support pad 3, and a restraint strap 4.
[0031] See attached document Figure 2 The padding component 1 includes a flexible pad 11, a covering sheet 12, and a head support airbag 13. The flexible pad 11 is placed on the operating table, the covering sheet 12 is fixedly wrapped around the outside of the flexible pad 11, and the head support airbag 13 is detachably fixed to the head end of the upper surface of the covering sheet 12 by Velcro (i.e., Velcro is installed on the contact surfaces of the head support airbag 13 and the covering sheet 12 respectively).
[0032] The cover sheet 12 can be either fully enclosed or semi-enclosed. A fully enclosed cover sheet 12 is a closed structure with an internal cavity and an opening on one side. A zipper or strap is provided on the opening to close it. The flexible pad 11 is inserted into the cavity of the cover sheet 12 through the opening for fixation. A semi-enclosed cover sheet 12 is composed of a single piece of fabric with a folded edge and an elastic band or drawstring along the edge. The cover sheet 12 covers the top of the flexible pad 11, and the folded edge is folded to the bottom of the flexible pad 11. The elastic band or drawstring is used to tighten the cover sheet and fix it to the flexible pad 11.
[0033] To prevent pressure injury to the patient's ear from the head support airbag 13 when the patient is in the lateral decubitus position, a groove 131 is provided in the center of the top surface of the head support airbag 13 to accommodate the patient's ear. Since the patient will have endotracheal tubes or other tubes in place under general anesthesia, to prevent the head support airbag 13 from compressing the tubes when the patient is in the lateral decubitus position, connecting grooves 132 are provided on the left and right sides of the head support airbag 13, which are connected to the grooves 131.
[0034] See attached document Figure 3 The body position transfer and fixation component 2 includes a body position transfer sheet 21, a chest support airbag 22 and a side fixation airbag 23. Three handles 211 are fixed at equal intervals on the left and right sides of the body position transfer sheet 21, which facilitates pulling the body position transfer sheet 21.
[0035] The position transfer sheet 21 is located on the top surface of the cover sheet 12. The position transfer sheet 21 and the cover sheet 12 are made of a sliding fabric material, or a layer of sliding fabric is fixed to the lower surface of the position transfer sheet 21 and the upper surface of the cover sheet 12, allowing the position transfer sheet 21 to slide relative to the cover sheet 12. The patient's position on the hospital bed can be easily adjusted by pulling the position transfer sheet 21.
[0036] The chest support airbag 22 is detachably and securely attached to the head end of the upper surface of the position transfer sheet 21 via Velcro (i.e., Velcro is installed on the contact surfaces of the chest support airbag 22 and the position transfer sheet 21 respectively). The side fixation airbag 23 is detachably and securely attached to the middle of the upper surface of the position transfer sheet 21 via Velcro (i.e., Velcro is installed on the contact surfaces of the side fixation airbag 23 and the position transfer sheet 21 respectively). The two side fixation airbags 23 are arranged parallel to each other at a preset distance and are perpendicular to the head support airbag 13.
[0037] The chest support airbag 22, together with the head support airbag 13, is used to elevate the patient's shoulders to prevent pressure on the arm under the body when lying on the side.
[0038] Since the side fixation airbag 23 is used to fix the patient's sacrum, coccyx and pubic symphysis on the front and back sides of the body, while the head support airbag 13 and chest support airbag 22 are used to support the patient's head and chest, the height of the side fixation airbag 23 is greater than that of the head support airbag 13 and chest support airbag 22.
[0039] The width of the position transfer sheet 21 is greater than the width of the cover sheet 12. After the position transfer sheet 21 is folded upward, it can wrap around the patient's torso, making it easier to pull the patient's torso to turn around using the position transfer sheet 21. The length of the position transfer sheet 21 is less than the length of the cover sheet 12. The position transfer sheet 21 is set in the middle and at the foot of the cover sheet 12 so that the position transfer sheet 21 will not cover the head support airbag 13.
[0040] The head support airbag 13, chest support airbag 22, and side fixation airbag 23 are all equipped with inflation / deflation connectors similar to those on car tires. These connectors can be detachably and fixedly connected to the air supply pipe of an electric air pump. The electric air pump inflates and deflates the head support airbag 13, chest support airbag 22, and side fixation airbag 23 through the air supply pipe and the inflation / deflation connectors. The inflation / deflation connectors are located on the side of the head support airbag 13 away from the chest support airbag 22, on the left or right side of the chest support airbag 22, and on the side of the side fixation airbag 23 facing the chest support airbag 22 or on the side of the two side fixation airbags 23 that is far from each other. The positions of these inflation / deflation connectors facilitate the inflation and deflation of the airbags.
[0041] See attached document Figure 4The restraint strap 4 is located on the top of the support pad 3. The support pad 3 is rectangular and has a through groove 31 along its length, which extends out of the bottom surface of the support pad 3. The restraint strap 4 includes a restraint part 41 and two lower limb fixing straps 42 fixedly connected to opposite ends of the restraint part 41. The width of the restraint part 41 is greater than the width of the lower limb fixing straps 42.
[0042] When the patient is in a neutral lateral decubitus position, the lower limb is located in the through groove 31, the upper limb is supported on the top of the support pad 3, the restraint part 41 covers the upper limb, and the two lower limb fixation straps 42 are respectively tied to the bed rails on both sides of the operating table to achieve support and fixation of the lower limb.
[0043] In this embodiment, the method of using the surgical position transfer and fixation device is as follows (taking the patient's transfer from a supine position to a left lateral position as an example): Refer to the attached document. Figure 5 The flexible pad 11, wrapped in the covering drape 12, is placed on the operating table. The position transfer drape 21 is laid on top of the covering drape 12, allowing both sides of the position transfer drape 21 to hang naturally along the sides of the operating table. The head support airbag 13 and the left-side fixation airbag 23 are inflated, while the chest support airbag 22 is installed in its corresponding position without inflation. The patient lies supine on the operating table with their head resting on the head support airbag 13, the chest support airbag 22 pressed under the patient's chest, and the left side of the body resting against the left-side fixation airbag 23. The anesthesiologist administers general anesthesia to the patient via intravenous injection or inhalation of anesthetic drugs, and the position transfer is performed after anesthesia.
[0044] One medical staff member stabilizes the head / airway, while two other medical staff members stand on either side of the operating table. The medical staff member on the right side of the operating table folds the right edge of the position transfer sheet 21 towards the patient's torso. The medical staff member on the left side of the operating table grasps the handle 211 on the right edge of the position transfer sheet 21 and pulls the handle 211 forcefully, causing the position transfer sheet 21 to roll the patient's torso to the left. At the same time, the medical staff member stabilizing the head / airway applies force to turn the patient's head to the left, causing the patient's pubic symphysis to come into contact with the left-side fixation airbag 23, and the patient stops rolling to the left. At this time, after the right side fixation airbag 23 is inflated, it is fixed to the patient's sacral and coccygeal position transfer sheet 21 by Velcro. The patient's torso is clamped and fixed by the two side fixation airbags 23. The left ear is in the groove 131, which can prevent the ear from being pressured and causing inevitable pressure sores. The function of the connecting groove 132 is to facilitate the extension of tubes such as endotracheal tubes from the connecting groove 132.
[0045] Inflate the chest support airbag 22 so that the arm under the body is positioned between the chest support airbag 22 and the head support airbag 13, preventing it from being injured by pressure from the body.
[0046] Finally, the support pad 3 is placed at the end of the position transfer sheet 21, so that the lower limb is positioned in the groove 31, and the upper limb is supported on top of the support pad 3. The restraint part 41 covers the upper limb, and the two lower limb fixation straps 42 are tied to the bed rails on both sides of the operating table. After the patient's arm is abducted and opened, it is fixed to the armrest provided with the operating table, thus completing the position transfer and fixation operation from the supine position to the left lateral decubitus position.
[0047] Example 2
[0048] The intraoperative period is considered the most critical time for preventing thrombosis. The core reason is that the surgical environment simultaneously presents the three major risk factors for thrombosis (Virchow's three elements: slow blood flow, endothelial injury, and hypercoagulability), and these risks peak during surgery. Without timely intervention, the probability of thrombosis is significantly higher than before or after surgery. This is to simultaneously immobilize the lower limb and prevent thrombosis.
[0049] See attached document Figure 6 This embodiment provides a surgical position transfer and fixation device, including a padding component 1, a position transfer and fixation component 2, and a pneumatic leg sleeve 5.
[0050] The only difference between this embodiment 2 and embodiment 1 is the lower limb fixation component used. In embodiment 1, a support pad 3 and a restraint strap 4 are used, while in embodiment 2, a pneumatic leg sleeve 5 is used, which combines lower limb fixation and thrombosis prevention. The structure and function of other components of the surgical position transfer and fixation device are the same. Therefore, this embodiment 2 specifically describes the structure and function of the pneumatic leg sleeve 5, and other components that are the same as those in embodiment 1 will not be repeated.
[0051] See attached document Figure 7 The pneumatic leg sleeve 5 includes an airbag leg sleeve 51, an air tube 52, a controller 53, and leg sleeve fixing straps 54; two airbag leg sleeves 51 are disposed on the top surface of the padding layer, and the air tube 52 is connected between each airbag leg sleeve 51 and the controller 53 for supplying air; two leg sleeve fixing straps 54 form a set, and a set of leg sleeve fixing straps 54 is fixedly connected to the front and rear ends of each airbag leg sleeve 51.
[0052] In this embodiment 2, the pneumatic leg sleeve 5 is a known medical device. The controller 53 is the "control center" of the pneumatic leg sleeve, responsible for providing power, adjusting parameters, and ensuring the safety and regularity of the pressurization process. It includes a pneumatic pump, a pressure sensor, a control panel, a power module, and an alarm system.
[0053] The system includes an air pump as the power source; a pressure sensor for pressure monitoring and feedback; a control panel for parameter adjustment and logic control; a power module for power supply; and an alarm system for safety protection.
[0054] The airbag leg sleeve 51 is the actuator that comes into direct contact with the human body to achieve "physical pressure." It includes a multi-layer airbag structure, an outer fixing sleeve, and a skin contact layer. The multi-layer airbag structure is used for graded pressure application, simulating a muscle pump. The outer fixing sleeve is used to secure the airbag and enhance comfort. The skin contact layer is used to protect the skin and reduce irritation. The aforementioned airbag leg sleeve 51 can be directly selected from those manufactured by companies such as Kefu Medical Technology Co., Ltd., Xi'an New Hope Medical Device Co., Ltd., and Mylek Medical Supplies (Shijiazhuang) Co., Ltd., and then leg sleeve fixing straps 54 can be added to the outside of the airbag leg sleeve 51.
[0055] Velcro straps that can be stuck together are fixed on the opposite side of the two airbag leg sleeves 51, which facilitates the detachable connection and fixation between the two airbag leg sleeves 51 and better fixes the lower limbs.
[0056] In this embodiment, the method of using the surgical position transfer and fixation device is as follows (taking the patient's transfer from a supine position to a left lateral position as an example): Refer to the attached document. Figure 8 The flexible pad 11, wrapped in the covering drape 12, is placed on the operating table. The position transfer drape 21 is laid on top of the covering drape 12, allowing both sides of the position transfer drape 21 to hang naturally along the sides of the operating table. The head support airbag 13 and the left-side fixation airbag 23 are inflated, while the chest support airbag 22 is installed in its corresponding position without inflation. The patient lies supine on the operating table with their head resting on the head support airbag 13, the chest support airbag 22 pressed under the patient's chest, and the left side of the body resting against the left-side fixation airbag 23. The anesthesiologist administers general anesthesia to the patient via intravenous injection or inhalation of anesthetic drugs, and the position transfer is performed after anesthesia.
[0057] One medical staff member stabilizes the head / airway, while two other medical staff members stand on either side of the operating table. The medical staff member on the right side of the operating table folds the right edge of the position transfer sheet 21 towards the patient's torso. The medical staff member on the left side of the operating table grasps the handle 211 on the right edge of the position transfer sheet 21 and pulls the handle 211 forcefully, causing the position transfer sheet 21 to roll the patient's torso to the left. At the same time, the medical staff member stabilizing the head / airway applies force to turn the patient's head to the left, causing the patient's pubic symphysis to come into contact with the left-side fixation airbag 23, and the patient stops rolling to the left. At this time, after the right side fixation airbag 23 is inflated, it is fixed to the patient's sacral and coccygeal position transfer sheet 21 by Velcro. The patient's torso is clamped and fixed by the two side fixation airbags 23. The left ear is in the groove 131, which can prevent the ear from being pressured and causing inevitable pressure sores. The function of the connecting groove 132 is to facilitate the extension of tubes such as endotracheal tubes from the connecting groove 132.
[0058] Inflate the chest support airbag 22 so that the arm under the body is positioned between the chest support airbag 22 and the head support airbag 13, preventing it from being injured by pressure from the body.
[0059] Finally, two air-cushioned leg sleeves 51 are placed on the patient's legs, and the leg sleeve fixing straps 54 on the air-cushioned leg sleeves 51 are tied to the bed rails on both sides of the operating table. Parameter adjustment and logic control are performed via the controller 53 to activate the air-cushioned leg sleeves 5, simulating the muscle pump function of the patient's lower limbs, promoting venous blood return, and allowing the lateral ankle of the leg being pressed down to be suspended in the air, preventing unavoidable pressure sores caused by the lateral decubitus position during surgery. After the patient's arms are abducted and opened, they are fixed to the armrests provided with the operating table, thus completing the patient's position transfer and fixation operation from a supine position to a left lateral decubitus position.
[0060] Obviously, modifications and / or additions can be made to the above-mentioned surgical position transfer and fixation device and corresponding method without departing from the field and scope of this utility model.
[0061] It is equally clear that, although the present invention has described the surgical position transfer and fixation device in detail, those skilled in the art will certainly be able to obtain many other equivalent forms of surgical position transfer and fixation devices and corresponding methods that have the features described in the claims and are therefore within the scope of protection defined herein.
Claims
1. A surgical position transfer and fixation device, characterized in that: include: The padding assembly (1) includes a padding layer placed on the operating table and a head support airbag (13) fixedly installed on the head end of the upper surface of the padding layer. The body position transfer and fixation assembly (2) includes a body position transfer sheet (21) disposed on the top surface of the padding layer, a chest support airbag (22) fixedly installed on the head end of the upper surface of the body position transfer sheet (21), and a side fixation airbag (23) fixedly installed on the middle part of the upper surface of the body position transfer sheet (21); the two side fixation airbags (23) are arranged parallel to each other at a preset distance and are perpendicular to the head support airbag (13); the body position transfer sheet (21) can slide relative to the padding layer; The lower limb fixation component is located on the top surface of the padding layer and is used to fix the patient's lower limbs when the patient is in a neutral lateral decubitus position.
2. The surgical position transfer and fixation device according to claim 1, characterized in that: The lower limb fixation assembly includes a support pad (3) disposed on the top surface of the padding layer and a restraint strap (4) disposed on the top of the support pad (3); the support pad (3) is rectangular and has a through groove (31) along the length of the support pad (3), the through groove (31) extending out of the bottom surface of the support pad (3); the restraint strap (4) includes a restraint part (41) and two lower limb fixation straps (42) fixedly connected to opposite ends of the restraint part (41), the width of the restraint part (41) is greater than the width of the lower limb fixation straps (42).
3. The surgical position transfer and fixation device according to claim 1, characterized in that: The lower limb fixation assembly includes a pneumatic leg sleeve (5), which includes an airbag leg sleeve (51), an air tube (52), a controller (53), and a leg sleeve fixing strap (54). Two airbag leg sleeves (51) are disposed on the top surface of the padding layer, and the air tube (52) is connected between each airbag leg sleeve (51) and the controller (53). Two leg sleeve fixing straps (54) form a set, and at least one set of leg sleeve fixing straps (54) is fixedly connected to each airbag leg sleeve (51).
4. The surgical position transfer and fixation device according to claim 3, characterized in that: Velcro fasteners that can be adhered to each other are fixed on the opposite side of the two airbag leg sleeves (51).
5. The surgical position transfer and fixation device according to claim 1, characterized in that: The padding layer includes a flexible pad (11) and a cover sheet (12). The cover sheet (12) is fixedly wrapped around the outside of the flexible pad (11), and the head support airbag (13) is fixedly installed on the head end of the upper surface of the cover sheet (12).
6. The surgical position transfer and fixation device according to claim 1, characterized in that: A groove (131) is provided in the middle of the top surface of the head support airbag (13), and a connecting groove (132) connected to the groove (131) is provided on the left and right sides of the head support airbag (13).
7. The surgical position transfer and fixation device according to claim 1, characterized in that: The head support airbag (13) is detachably fixed to the padding layer by Velcro, and the chest support airbag (22) and the side fixation airbag (23) are detachably fixed to the body position transfer sheet (21) by Velcro; the height of the side fixation airbag (23) is greater than that of the head support airbag (13) and the chest support airbag (22).
8. The surgical position transfer and fixation device according to claim 1, characterized in that: Multiple handles (211) are fixed at equal intervals along the left and right sides of the body position transfer form (21).
9. The surgical position transfer and fixation device according to claim 1, characterized in that: The width of the body position transfer sheet (21) is greater than the width of the padding layer, and the length of the body position transfer sheet (21) is less than the length of the padding layer.
10. The surgical position transfer and fixation device according to claim 5, characterized in that: The body position transfer sheet (21) and the cover sheet (12) are made of a slip fabric material, or a slip fabric is fixed on the lower surface of the body position transfer sheet (21) and the upper surface of the cover sheet (12).