Health recovery auxiliary equipment used after general gastrointestinal tumor operation
By designing an auxiliary device for postoperative health recovery of gastrointestinal tumors that combines point-type and push-type kneading components, the problem of difficult intestinal function recovery has been solved, achieving efficient and convenient intestinal rehabilitation and reducing nursing costs.
Patent Information
- Application Number
- CN202510874004.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-27
- Publication Date
- 2025-11-11
AI Technical Summary
After gastrointestinal surgery, intestinal function is affected, and complications such as intestinal adhesions are prone to occur. Current technology is difficult to effectively promote intestinal recovery, and professional nursing care is expensive, with some patients unable to get out of bed.
A device for postoperative health recovery after general surgery for gastrointestinal tumors is designed, which combines point-type kneading components and push-type kneading components. By using differentiated kneading pressure and linear kneading, it simulates the massage techniques of caregivers to promote intestinal peristalsis.
It improves the efficiency of intestinal function recovery, reduces reliance on professional care, alleviates the economic burden on patients, is suitable for patients with different activity levels, and provides a convenient and efficient rehabilitation method.
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Figure CN120918927A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of postoperative care technology, specifically to an auxiliary device for health recovery after general surgery for gastrointestinal tumors. Background Technology
[0002] After gastrointestinal surgery, patients' intestinal function is often severely affected, often accompanied by complications such as intestinal adhesions and intestinal obstruction, which in turn cause symptoms such as abdominal pain, vomiting, and constipation. These complications not only increase the physical and mental burden on patients, but also seriously hinder their recovery process.
[0003] To reduce the risk of intestinal adhesions and promote the recovery of intestinal function, abdominal massage or gentle ambulation exercises can be performed on patients clinically. These measures stimulate intestinal peristalsis, which helps to facilitate the smooth expulsion of intestinal contents and reduces the formation of adhesions. However, professional massage by caregivers requires a high level of skill and is expensive, making it unaffordable for many patients. Furthermore, some patients are unable to ambulate after surgery for various reasons, making it difficult to promote the recovery of intestinal function through appropriate exercise. Summary of the Invention
[0004] To address the shortcomings of existing technologies, this invention proposes an auxiliary device for postoperative health recovery after general surgery for gastrointestinal tumors, in order to solve the problems of impaired intestinal function and the easy occurrence of complications such as intestinal adhesions during the recovery process after gastrointestinal surgery in existing technologies.
[0005] The technical solution adopted in this invention is an auxiliary device for postoperative health recovery after general surgery for gastrointestinal tumors, comprising: An arc-shaped frame, wherein the inner arc surface of the arc-shaped frame is designed to contact the abdomen; The point-type kneading component has kneading heads protruding from the inner arc surface in a dot matrix pattern. The kneading heads perform point-type kneading and the kneading force between them can be adjusted differentially. And, a push-type kneading component, which is distributed in the rows or columns of the dot matrix kneading component, and the push-type kneading component performs linear kneading.
[0006] Optionally, a kneading bladder is provided at the kneading head of the point kneading assembly, and the kneading force is adjusted by regulating the pressure and rate of the kneading bladder's inflation and deflation.
[0007] Optionally, the kneading force of each of the point kneading components is controlled by an independent pipeline; Alternatively, the point-type kneading components can be grouped by a frame, with the point-type kneading components in the same group sharing pipelines, but the kneading pressure of each point-type kneading component in the group being controlled independently.
[0008] Optionally, the assembly frame is fixedly installed on the arc-shaped frame, and a row of adjustment holes aligned with the holes on the arc-shaped frame are provided through the assembly frame; The assembly rack is also provided with an input channel that runs through each of the adjustment holes. At least two input channels are provided along the depth direction of the adjustment holes, and each channel has a different input pressure. The point-type kneading assembly includes a kneading bladder and an adjusting rod. The kneading bladder is an elastic membrane closed at the end of the adjusting hole. The adjusting rod is located inside the adjusting hole and its position along the axis can be adjusted. The regulating rod has a connecting area arranged along the circumference. The number of connecting areas is two more than the number of input channels. The distance between the connecting areas is the same as the distance between the input channels. The connecting areas are used to allow the input pressure to enter the next pressure regulating channel. The adjusting rod is provided with an axial pressure regulating channel. One end of the pressure regulating channel is connected to the inside of the kneading and pressing bag, and the other end is connected to one of the inner connecting areas.
[0009] Optionally, the connecting area is an annular groove (220) located in the circumferential direction of the adjusting rod (22). One of the annular grooves in the middle has a transverse hole that passes through the axis of the adjusting rod. The axis of the adjusting rod has a shaft hole that passes through the kneading bladder. The shaft hole and the transverse hole are connected to form a pressure regulating channel.
[0010] Optionally, the push-type kneading assembly includes a telescopic cylinder, a telescopic frame, and massage wheels; The length of the telescopic frame matches the telescopic cylinder, the head end of the telescopic frame is fixed to the end of the telescopic shaft of the telescopic cylinder, and the tail end of the telescopic frame faces the tail of the telescopic cylinder. At least one massage roller is provided at each end of the telescopic frame, and the massage roller protrudes from the inner arc surface.
[0011] Optionally, the tail end of the telescopic frame is slidably engaged with the housing of the telescopic cylinder.
[0012] Optionally, the group of racks are arranged in an array at intervals along the arc direction of the arc frame, and the push-type kneading component is distributed between two adjacent group racks; The inner arc surface of the arc frame is provided with a through hole and a groove. The hole allows the point kneading component on the assembly frame to protrude, and the groove allows the massage roller of the push kneading component to protrude. The groove is also filled and sealed with a flexible separator membrane.
[0013] Optionally, the outer shells of two adjacent sets of frames, the partition membrane, and the rear plate of the arc-shaped frame form a closed area, and the push-type kneading assembly is located within the closed area; The enclosed section is equipped with an inlet and an outlet for introducing heat exchange fluid.
[0014] Optionally, straps are provided on both sides of the arc-shaped frame.
[0015] As can be seen from the above technical solution, the beneficial technical effects of the present invention are at least as follows: By combining point-type and push-type kneading components, multi-point, differentiated kneading massage of the abdomen is achieved. The point-type kneading component's matrix-shaped kneading heads can precisely apply pressure to specific areas of the abdomen. The pressure intensity and rate can be flexibly controlled by adjusting the inflation and deflation of the kneading bag to meet the individualized rehabilitation needs of patients. Simultaneously, the push-type kneading component applies kneading pressure in a linear direction, helping to further promote intestinal peristalsis and reduce the risk of intestinal adhesions. This device not only improves the efficiency of intestinal function recovery but also reduces reliance on professional caregivers, alleviating the economic burden on patients and providing an efficient, convenient, and economical rehabilitation aid for patients after gastrointestinal tumor surgery. Attached Figure Description
[0016] To more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the accompanying drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. In all the drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, the elements or parts are not necessarily drawn to scale.
[0017] Figure 1 This is a schematic diagram of the outer side of the present invention; Figure 2 This is a schematic diagram of the massage side of the present invention; Figure 3 This is a schematic diagram of the massage side of the present invention without an outer shell frame; Figure 4 This is a schematic diagram of the outside of the present invention without an outer shell frame; Figure 5 This is a schematic diagram of the push-type kneading component of the present invention; Figure 6 This is a schematic diagram of the assembly of the point-type kneading component of the present invention; Figure 7 For the present invention Figure 6 Enlarged view of a portion of point A in the middle; Figure 8 This is a schematic diagram of the cross-section of the present invention; Figure 9 For the present invention Figure 8 A magnified view of a portion of point B in the middle.
[0018] The components include: arc frame 1, separator membrane 10, strap 11, point kneading component 2, kneading bladder 20, group frame 21, adjustment hole 210, input channel 212, outer shell 213, adjustment rod 22, annular groove 220, pressure regulating channel 221, push kneading component 3, telescopic cylinder 30, telescopic frame 31, and massage wheel 32. Detailed Implementation
[0019] The embodiments of the technical solution of the present invention will now be described in detail with reference to the accompanying drawings. These embodiments are merely illustrative of the technical solution of the present invention and are therefore intended to limit the scope of protection of the present invention.
[0020] It should be noted that, unless otherwise stated, the technical or scientific terms used in this application should have the ordinary meaning as understood by one of ordinary skill in the art to which this invention pertains.
[0021] This embodiment provides a health recovery aid device after general surgery for gastrointestinal tumors, one possible implementation of which is as follows: Please see Figures 1-4 ,include: The arc-shaped frame 1 has an inner arc surface that contacts the abdomen, and an outer arc surface that has a back plate, but the back plate is not shown in the attached drawing to illustrate its internal structure. The point-type kneading component 2 has kneading heads that protrude from the inner arc surface in a dot-matrix pattern. These kneading heads provide point-type kneading pressure, and the kneading pressure between them can be adjusted differentially to suit the patient's needs. For example, a smaller kneading pressure should be used for surgical wounds, while the kneading pressure should be gradually increased according to the distance from the wound area. Of course, the kneading pressure of each point-type kneading component 2 can also be adjusted according to the patient's own sensation and actual needs. In addition, there is a push-type kneading component 3, which is distributed between the rows or columns of the dot-matrix kneading component 2. The push-type kneading component 3 performs linear kneading, that is, it applies straight-line pressure along the abdomen. Unlike the single-point kneading of the dot-matrix kneading component 2, the push-type kneading component 3 can apply pressure to the abdomen along a straight line, simulating the massage techniques of a caregiver, to promote bowel movement and gas expulsion.
[0022] Combining the point-pressure kneading component 2 with the linear massage of the push-pressure component 3, this device can increase gastrointestinal motility, aiding in food digestion and absorption, and reducing the likelihood of postoperative gastrointestinal complications. The process also stimulates corresponding acupoints and meridians, promoting blood circulation and harmonizing Qi and blood, thus helping patients relax both physically and mentally.
[0023] Specifically, this device can be used by patients while lying down or standing. Straps can be installed on both sides of the device. When the patient is lying down, the inner curved surface of the arc-shaped frame 1 contacts the patient's abdomen, and the straps secure it to the bed or the patient's abdomen. When standing, two straps are connected end-to-end to form a loop and secured to the patient's abdomen. The tightness of the straps should be adjusted appropriately to maintain comfort and avoid excessive constriction.
[0024] Once fixed in place, the point-pressure component 2 and the push-pressure component 3 can begin operation. The point-pressure component 2 has multiple pressure points, working by applying pressure to specific points. Patients can adjust the pressure at each point according to their own comfort, including the pressure applied, the duration of pressure application, and the frequency of pressure application. The pressure applied is controlled by the input air pressure, the duration of pressure application is controlled by the holding time of the input air pressure, and the frequency of pressure application is controlled by the time interval between input and release of air pressure. Patients can differentiate the pressure applied to each point-pressure component 2 according to their own needs. The push-pressure component 3 also has multiple sets. Unlike the point-pressure component 2, which operates by applying pressure to specific points, the push-pressure component 3 operates by pressing and moving, simulating massage techniques.
[0025] This device uses a combination of point-pressure and push-pressure to aid in the recovery of the gastrointestinal tract, significantly reducing the financial burden on patients. Patients do not need to pay the high costs of skilled caregivers, yet can enjoy a more sustained and convenient massage service. This service is not only long-lasting but also precisely targets the abdomen, allowing patients to adjust the pressure and location themselves to promote intestinal function recovery. More importantly, this device is particularly suitable for patients who are unable to get out of bed due to physical limitations, providing them with a convenient and effective rehabilitation method.
[0026] This embodiment can be referred to. Figure 2 The point-type kneading and pressing component 2 has a kneading and pressing bladder 20 at its kneading and pressing head. The kneading force is adjusted by regulating the pressure and rate of inflation and deflation of the kneading and pressing bladder 20. Specifically, during operation, the inner arc surface of the device is the contact surface with the patient's abdomen. At this time, each kneading and pressing bladder 20 on the inner arc surface is in contact with the patient's abdomen. When gas or liquid is filled into the kneading and pressing bladder 20, the kneading and pressing bladder 20 will inflate accordingly, thereby pressing the contact surface of the patient's abdomen. The pressing force can be controlled according to the inflation pressure; the greater the pressure, the greater the pressing force. In this embodiment, the pressing effect is achieved by the fluid in conjunction with the kneading and pressing bladder 20. The pressing is flexible rather than rigid. During the pressing process, the contact surface of the patient's abdomen will be deformed by the pressure, and the kneading and pressing bladder 20 will also deform due to the reaction force of the abdomen. The non-rigid design makes the pressing process more comfortable and can effectively avoid squeezing injuries.
[0027] In this embodiment, the kneading pressure of each point kneading component 2 is controlled by an independent pipeline, thereby enabling differentiated control of the pressing pressure, pressing time, pressing frequency, etc. of each point kneading component 2, and even aligning the kneading points with meridian nodes to provide the best pressing mode for different parts.
[0028] Although the above-described embodiments offer the greatest degree of control freedom, they involve more piping and require more complex hydraulic systems, making them more suitable for patients who are lying down and recuperating in the ward, and not suitable for patients who are able to walk and go out.
[0029] In a lighter implementation: the point kneading components 2 are grouped by the group frame 21, and the point kneading components 2 in the same group share the pipeline, but the kneading pressure of each point kneading component 2 in the group is independently controlled.
[0030] Specifically, please combine Figure 4 , Figure 6 and Figure 7 The group frame 21 is fixedly installed on the arc-shaped frame 1, and multiple groups are arrayed along the frame. For the structure of the group frame 21, please refer to [link / reference]. Figure 6 , Figure 6 The cross-sectional view of the assembly frame 21 shows that a row of adjustment holes 210 aligned with the holes on the arc frame 1 are provided through the assembly frame 21. The axial direction of the adjustment holes 210 is towards the inner arc surface. The assembly frame 21 is also provided with an input channel 212 that runs through each adjustment hole 210. At least two input channels 212 are provided along the depth direction of the adjustment hole 210. The input channels 212 are used to input fluid pressure, and each input channel 212 can input different pressure levels. The point-type kneading component 2 includes a kneading bladder 20 and an adjusting rod 22. The kneading bladder 20 is an elastic membrane closed at the end of the adjusting hole 210. When pressure is applied, it inflates and contacts the patient's abdomen. The adjusting rod 22 is located inside the adjusting hole 210 and its position along the axis can be adjusted. When it is in different positions, the kneading bladder 20 can be connected to different input channels 212, thereby causing the corresponding kneading bladder 20 to inflate to a corresponding degree. The adjusting rod 22 has two more connecting zones along its circumference than the number of input channels 212. The distance between the connecting zones is the same as the distance between the input channels 212. The connecting zones are used to allow input pressure to enter the next pressure regulating channel 221. The adjusting rod 22 also has an axial pressure regulating channel 221. One end of the pressure regulating channel 221 is connected to the inside of the kneading bladder 20, and the other end is connected to one of the connecting zones located on the inner side. The annular groove 220 and the pressure regulating channel 221 cooperate to form a connecting path between the input channel 212 and the kneading bladder 20. The change in the position of the adjusting rod 22 in the depth direction of the adjusting hole 210 determines which pressure regulating channel 221 is connected to which kneading bladder 20, thereby adjusting the pressure of the corresponding kneading bladder 20.
[0031] To facilitate understanding of the above scheme, the following will be combined with... Figure 6 The relevant principles are described. Figure 6 In this diagram, assume R1 is the high-pressure input, R2 is the medium-pressure input, and R3 is the low-pressure input. For the adjusting rod 22 at position T1, its position connects the kneading bladder 20 to the medium-pressure input R2, resulting in a medium degree of bulging during kneading. At position T1, the high-pressure input R1 and the low-pressure input R3 circle half a turn around the annular groove 220 on the adjusting rod 22 before entering position T2. At position T2, the adjusting rod 22 is pulled back by one annular groove 220 interval. At this time, the kneading bladder 20 connects to the high-pressure input R1, resulting in a high degree of bulging during kneading. At T2, the medium-pressure input R2 and the low-pressure input R3 circle half a turn around the annular groove 220 on the adjusting rod 22 before entering position T3. At position T3, the adjusting rod 22 is pushed forward by two annular groove 220 intervals. At this time, the kneading bladder 20 connects to the low-pressure input R3, resulting in a low degree of bulging during kneading. At position T3, the high-pressure input R1 and the medium-pressure input R2 rotate half a turn around the annular groove 220 on the adjusting rod 22 before entering position T4. This process continues, with T4 representing a medium bulge, T5 a small bulge, T6 a medium bulge, T7 a small bulge, and T8 a small bulge.
[0032] In the above embodiments, by inputting three pressures, R1, R2, and R3, and coordinating the depth position of each adjusting rod 22, it is possible to determine which input pipeline each adjusting rod 22 is connected to, thereby achieving differentiated adjustment of the degree of inflation of the kneading bladder 20 within the group. Please refer to... Figure 4 The input pipelines of each group rack 21 are connected in parallel, and the input of each group rack 21 is the same. Therefore, the entire equipment only needs a few pressure outputs. The specific number of pressure outputs depends on the number of pressure levels required.
[0033] In the above embodiments, each kneading pad 20 on the group frame 21 can be individually set to a certain degree of bulging, and the multiple group frames 21 can be combined to form a single kneading pad. Figure 4 In the kneading pad dot matrix shown, each kneading pad 20 can be independently adjusted for its degree of inflation for user convenience. Specifically, in a simple embodiment, the tail of the adjusting rod 22 and the tail of the adjusting hole 210 are connected by a thread, and the axial position of the adjusting rod 22 in the adjusting hole 210 can be adjusted by turning the adjusting rod 22. To avoid accidental operation, the tail of the adjusting rod 22 uses a special groove that can only be turned with a specific wrench.
[0034] As a more specific embodiment of the above, there are three input channels 212 (corresponding to three degrees of bulging), five annular grooves 220, and the connecting area is the annular groove 220 located in the circumferential direction of the adjusting rod 22. One of the annular grooves 220 located in the middle is provided with a transverse hole that passes through the axis of the adjusting rod 22. A shaft hole is provided on the axis of the adjusting rod 22, and the shaft hole passes through the side facing the kneading bladder 20. The shaft hole and the transverse hole are connected to form a pressure regulating channel 221.
[0035] Please refer to this embodiment. Figure 1 and Figure 5 The push-type kneading component 3 includes a telescopic cylinder 30, a telescopic frame 31, and massage rollers 32. The tail end of the housing of the telescopic cylinder 30 is fixed to the inner side of the frame, and the output shaft end faces the other side of the housing. The length of the telescopic frame 31 matches that of the telescopic cylinder 30. The head end of the telescopic frame 31 is fixed to the end of the telescopic shaft of the telescopic cylinder 30, and the tail end of the telescopic frame 31 faces the tail of the telescopic cylinder 30. When in the minimum extended state, the tail end of the telescopic frame 31 is close to the fixed connection between the housing and the frame. At least one massage roller 32 is provided at each end of the telescopic frame 31, and the massage roller 32 protrudes from the inner arc surface.
[0036] The working principle of the above embodiment is as follows: Initially, the telescopic cylinder 30 is in its minimum extended state, at which time the two massage rollers are located on one side and the middle of the arc frame, respectively; as the telescopic cylinder 30 gradually extends, the massage roller located in the middle gradually moves to the side of the frame, and the massage roller located on the side gradually moves to the middle of the frame, thereby using one stroke of the telescopic cylinder 30 to complete a massage range twice the length of the telescopic cylinder 30, that is, covering the width of the frame.
[0037] The push-kneading component 3 provides linear pressure, with the massage rollers both rolling and translating during the pressing process. This simultaneous in-situ rolling massage and linear massage delivers significant benefits for intestinal recovery. In-situ rolling massage stimulates the intestines and promotes peristalsis, while linear massage helps to clear gas and food residue from the intestines, reducing congestion and further facilitating the movement of intestinal contents, accelerating bowel emptying. The combination of these two techniques not only enhances intestinal vitality but also improves the intestines' self-repair capabilities, contributing to improved intestinal health and reducing the occurrence of intestinal problems.
[0038] Please refer to this embodiment. Figure 5 The tail end of the telescopic frame 31 slides into the housing of the telescopic cylinder 30. This is achieved through a ring structure on the telescopic frame 31 that engages with the housing of the telescopic cylinder 30. The sliding structure improves the stability of the telescopic frame 31.
[0039] Please refer to this embodiment. Figures 1-4 Each component frame 21 is arranged in an array at intervals along the arc direction of the arc frame 1, and the push-type kneading component 3 is distributed between two adjacent component frames 21. A through-hole and a groove are provided on one side of the inner arc surface of the arc frame 1. The hole allows the point kneading component 2 on the assembly frame 21 to protrude, and the groove allows the massage roller 32 of the push kneading component 3 to protrude. The groove is also filled and sealed with a flexible separator membrane 10. After the auxiliary equipment is adjusted along the arc direction, the area corresponding to the origin-type kneading component 2 becomes the area corresponding to the push-type kneading component 3.
[0040] In the above embodiments, the ingenious arrangement of the grouped frames spaced apart along the arc of the curved frame and the push-kneading components achieves comprehensive intestinal massage. The design of the round holes and grooves not only ensures the effective protrusion of the massage components but also guarantees the comfort and sealing of the massage through the flexible separator membrane. After adjusting the angle of the auxiliary equipment, the massage mode can be flexibly switched, with point-type and push-type massages alternating to deeply promote intestinal peristalsis, effectively straighten the intestines, accelerate intestinal recovery, and significantly improve the efficiency and effectiveness of intestinal health maintenance.
[0041] Furthermore, in combination Figure 8 and Figure 9 The outer shell 213 of two adjacent frame groups 21, the partition membrane 10 and the rear plate of the arc frame 1 form a closed section, and the push-type kneading assembly 3 is located in the closed section; the closed section is provided with an inlet and an outlet for introducing heat exchange fluid.
[0042] In the above embodiments, when fluid is introduced into the closed area, the separator membrane 10 of the closed area can bulge under pressure, forming a surface compression contact with the abdomen, which also has a massage effect. Moreover, the separator membrane 10 can separate the massage roller from the abdomen, so the massage roller will not directly contact the abdomen. The massage force is transmitted and dispersed through the separator membrane 10, resulting in a more even and stable force without local pressure, providing a better experience for the patient. In addition, the fluid introduced into the closed area can be a hot fluid. When the separator membrane 10 bulges and adheres tightly to the patient's abdomen, it can transfer heat to the patient's abdomen, keeping it warm, promoting blood circulation, and accelerating the recovery of intestinal function.
[0043] In addition, in the above embodiments, since the push-kneading component 3 is located within the closed area, when the input fluid pressure within the closed area remains constant, the degree of compression of the closed area by the telescopic rod varies due to the extension and retraction of the push-kneading component 3. Therefore, during its extension and retraction, the pressure within the closed area will also change alternately, which manifests as alternating changes in the pressure on the patient's abdomen, indirectly creating a massage effect.
[0044] Finally, to facilitate the fixation of this device to the patient's waist and abdomen, straps 11 are provided on both sides of the arc-shaped frame 1, which can be referred to. Figure 1 .
[0045] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention, and they should all be covered within the scope of the claims and specification of the present invention.
Claims
1. A postoperative recovery aid device for gastrointestinal tumors, characterized in that, include: An arc-shaped frame (1), the inner arc surface of which is used to contact the abdomen; The point kneading component (2) has kneading heads protruding from the inner arc surface in a dot matrix pattern. The kneading heads perform point kneading and the kneading pressure between them can be adjusted differentially. And, a push-type kneading component (3), which is distributed in the rows or columns of the dot matrix kneading component (2), and the push-type kneading component (3) performs linear kneading.
2. The postoperative health recovery support device for gastrointestinal tumors as described in claim 1, characterized in that: The kneading assembly (2) is provided with a kneading bladder (20) at the kneading head. The kneading pressure is adjusted by regulating the pressure and rate of the kneading bladder (20) during inflation and deflation.
3. The postoperative health recovery support device for gastrointestinal tumors as described in claim 2, characterized in that: The kneading force of each of the point kneading components (2) is controlled by an independent pipeline; Alternatively, the point kneading components (2) are grouped by a group frame (21), and the point kneading components (2) in the same group share the pipeline, but the kneading pressure of each point kneading component (2) in the group is independently controlled.
4. The postoperative health recovery support device for gastrointestinal tumors as described in claim 3, characterized in that: The assembly frame (21) is fixedly installed on the arc frame (1), and a row of adjustment holes (210) aligned with the holes on the arc frame (1) are provided through the assembly frame (21). The assembly frame (21) is also provided with an input channel (212) that passes through each of the adjustment holes (210). At least two input channels (212) are provided along the depth direction of the adjustment hole (210), and each channel has a different input pressure. The point kneading assembly (2) includes a kneading bladder (20) and an adjusting rod (22). The kneading bladder (20) is an elastic membrane closed at the end of the adjusting hole (210). The adjusting rod (22) is located inside the adjusting hole (210) and its position along the axis can be adjusted. The regulating rod (22) has a connecting area along the circumference. The number of the connecting areas is two more than the number of the input channels (212). The distance between the connecting areas is the same as the distance between the input channels (212). The connecting area is used to allow the input pressure to enter the next pressure regulating channel (221). The adjusting rod (22) is provided with an axial pressure regulating channel (221). One end of the pressure regulating channel (221) is connected to the inside of the kneading bladder (20), and the other end is connected to one of the inner connecting areas.
5. The postoperative health recovery aid device for gastrointestinal tumors as described in claim 4, characterized in that: The connecting area is an annular groove (220) located in the circumferential direction of the adjusting rod (22); One of the annular grooves (220) in the middle is provided with a transverse hole that passes through the axis of the adjusting rod (22). The axis of the adjusting rod (22) is provided with a shaft hole that passes through the kneading bladder (20). The shaft hole and the transverse hole are connected to form a pressure regulating channel (221).
6. The postoperative health recovery aid device for general gastrointestinal tumor surgery as described in claim 1, characterized in that: The push-type kneading component (3) includes a telescopic cylinder (30), a telescopic frame (31), and a massage wheel (32). The length of the telescopic frame (31) matches that of the telescopic cylinder (30). The head end of the telescopic frame (31) is fixed to the end of the telescopic shaft of the telescopic cylinder (30), and the tail end of the telescopic frame (31) faces the tail of the telescopic cylinder (30). At least one massage roller (32) is provided at each end of the telescopic frame (31), and the massage roller (32) protrudes from the inner arc surface.
7. The postoperative health recovery support device for gastrointestinal tumors as described in claim 6, characterized in that: The tail end of the telescopic frame (31) is slidably engaged with the housing of the telescopic cylinder (30).
8. The postoperative health recovery support device for gastrointestinal tumors as described in claim 3, characterized in that: Each group of frame (21) is arranged in an array at intervals along the arc direction of the arc frame (1), and the push-type kneading component (3) is distributed between two adjacent frames (21); The arc frame (1) has a through hole and a groove on one side of the inner arc surface. The hole is for the point kneading component (2) on the assembly frame (21) to protrude, and the groove is for the massage wheel (32) of the push kneading component (3) to protrude. The groove is also filled and sealed with a flexible separator membrane (10).
9. The postoperative health recovery support device for general gastrointestinal tumor surgery as described in claim 8, characterized in that: The outer shells (213) of two adjacent group frames (21), the separator (10) and the rear plate of the arc frame (1) form a closed area, and the push-type kneading assembly (3) is located within the closed area; The enclosed section is equipped with an inlet and an outlet for introducing heat exchange fluid.
10. A postoperative health recovery aid device for general gastrointestinal tumor surgery as described in any one of claims 1-9, characterized in that: The curved frame (1) has straps (11) on both sides.