An intestinal function recovery device for preventing intestinal adhesion after ileus operation

CN117695118BActive Publication Date: 2026-08-21JILIN UNIVERSITY
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Patent Information

Application Number
CN202410158294.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-02-04
Publication Date
2026-08-21
Estimated Expiration
2044-02-04

AI Technical Summary

Technical Problem

[0005]有鉴于此,本发明所要解决的技术问题在于,提出了一种基于肠梗阻术后防肠粘连用肠功能恢复装置,以解决现有技术中术后无法自主控制保证体位准确性;以及现有按摩设备在躺卧时贴合性较差等问题

Benefits of technology

1、通过躺卧姿势调整机构的设置,可有效做到患者术后的体位调整,且不会出现患者对躺卧方式上存在理解偏差,影响恢复效果,同时由于落脚板的设置,可在姿势调整好之后,即使患者位置发生变动,也可在落脚板的存在作为参考下,自主恢复原先符合医学的姿势,避免出现医护人员将患者姿势调整到位,但患者姿势有所改变无法自主复位的问题,医学姿势可实施性较强,有利于患者的恢复,肠粘连问题有效得到解决的同时,也会减少医护人员的工作量,提高医院接诊效率;

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an intestinal function recovery device based on postoperative intestinal adhesion prevention after intestinal obstruction, and relates to the technical field of postoperative recovery after intestinal obstruction, which comprises a bed body, and the intestinal function recovery device based on postoperative intestinal adhesion prevention after intestinal obstruction comprises a lying posture adjusting mechanism for promoting postoperative recovery body position adjustment in a supine position, a fetal position and the like, and a blood circulation stimulating mechanism for massaging the abdomen of a patient, so as to stimulate blood circulation, promote intestinal peristalsis and accelerate the recovery time of intestinal function, the lying posture adjusting mechanism is located at the right side of the blood circulation stimulating mechanism, and the design of an L-shaped supporting plate, an embedded plate and an orientation adjusting column is adopted; in specific operation, the L-shaped supporting plate can be increased or decreased to adjust various postures, the flexibility is high, and due to the shape of the orientation adjusting column, the patient can be assisted to turn over when being in a lateral position, so that the patient can avoid pain caused by large movements after the operation.
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Description

Technical Field

[0001] This invention relates to the field of postoperative recovery technology for intestinal obstruction, specifically to an intestinal function recovery device for preventing intestinal adhesions after intestinal obstruction. Background Technology

[0002] There are currently several surgical methods for intestinal obstruction, including direct exploratory laparotomy and laparoscopic minimally invasive surgery. If the cause of intestinal obstruction is clearly diagnosed, most cases can be treated with minimally invasive surgery. For example, obstruction caused by common intestinal adhesions, intussusception, or internal hernia can all be treated with laparoscopic surgery. However, if it is found during the minimally invasive surgical exploration that the minimally invasive surgery cannot achieve the surgical goal, it should be immediately switched to open surgery for treatment.

[0003] In existing techniques, to avoid postoperative intestinal adhesions after intestinal obstruction surgery, doctors usually require patients to lie in a supine or fetal position to promote intestinal peristalsis and prevent adhesions. Massage is also added to stimulate intestinal movement and blood circulation, promoting the recovery of intestinal function. However, patients often misunderstand this lying position. Even if medical staff adjust the patient's posture, the patient cannot maintain this position indefinitely, and medical staff cannot always be at the patient's bedside to supervise. Therefore, its feasibility is poor, hindering patient recovery and failing to effectively resolve intestinal adhesions. It also increases the workload of medical staff and reduces hospital efficiency. In addition, although there are some massage devices in the existing technology, patients are basically in a sitting position when receiving a massage. In this position, the massage device fits relatively well and can achieve the desired massage effect. However, when the patient is lying down, the massage device cannot ensure a proper fit to the patient's abdomen due to its own weight, which reduces the massage effect and is not conducive to stimulating blood circulation, promoting intestinal peristalsis, and shortening the recovery time of intestinal function after surgery.

[0004] Therefore, a device for restoring intestinal function to prevent intestinal adhesions after intestinal obstruction surgery is proposed to solve the above problems. Summary of the Invention

[0005] In view of this, the technical problem to be solved by the present invention is to propose an intestinal function recovery device for preventing intestinal adhesion after intestinal obstruction surgery, so as to solve the problems of the inability to autonomously control and ensure the accuracy of body position after surgery in the prior art; and the poor fit of the existing massage devices when lying down.

[0006] To achieve the above objectives, the present invention provides the following preferred technical solution: a device for preventing intestinal adhesions after intestinal obstruction surgery, used to prevent intestinal adhesions after intestinal obstruction surgery, comprising: a bed, wherein the device includes, preferably, a lying posture adjustment mechanism for adjusting the body position to promote postoperative recovery, such as supine or fetal position, and a blood circulation stimulation mechanism for massaging the patient's abdomen to stimulate blood circulation, promote intestinal peristalsis, and accelerate the recovery time of intestinal function; the lying posture adjustment mechanism is located to the right of the blood circulation stimulation mechanism, and both the lying posture adjustment mechanism and the blood circulation stimulation mechanism are mounted on the bed. The lying posture adjustment mechanism includes a fan-shaped ruler for distance adjustment triggering, and an orientation adjustment column and a lying board for assisting posture adjustment; The blood circulation stimulation mechanism includes a first rotating body, a second rotating body, and a massage column for adapting to massage.

[0007] Preferably, the lying posture adjustment mechanism further includes an auxiliary component fixedly connected to the bottom surface of the bed. The auxiliary component is shaped like an N, with a double-layer structure on the left and a single-layer structure on the right. The fan-shaped ruler is rotatably connected to the bottom end of the single-layer structure on the right side of the auxiliary component via a motor. The fan surface of the fan-shaped ruler has a first rotating tooth meshing with its teeth. The side of the first rotating tooth is fixedly connected to a second rotating tooth via a column rod. Both the first rotating tooth and the second rotating tooth are rotatably connected to the bottom end of the double-layer structure on the left side of the N-shaped auxiliary component.

[0008] Preferably, the upper tooth surface of the second rotating tooth is connected to a movable tooth rod for meshing transmission. The left end of the movable tooth rod is fixedly connected to a foot plate. The bottom surface of the bed is provided with a fastening groove, and a fastening plate is fixedly connected in the fastening groove.

[0009] Preferably, an L-shaped support plate is snapped onto the fastening plate, and a fitting plate is fixedly connected to the left side of the L-shaped support plate and located on the bottom surface of the bed. A square opening is provided on the bed, and an orientation adjustment column is placed in the opening above the bed. A reclining board is fixedly connected to the upper surface of the orientation adjustment column, and support strips are fixedly connected to both sides of the reclining board.

[0010] Preferably, the blood circulation stimulation mechanism further includes a sliding groove, in which magnets are fixedly connected at equal intervals. There are two sliding grooves, which are equidistantly located on the bed with respect to the central axis of the bed. Each sliding groove has a T-shaped sliding block slidably connected to it. Each T-shaped sliding block has a side cavity slidably fitted on its upper end. Each side cavity has an auxiliary cavity. Each auxiliary cavity has a first adapter spring fixedly connected to it. One end of the first adapter spring is fixedly connected to the top surface of the T-shaped sliding block, and the other end is fixedly connected to the top of the inner wall of the auxiliary cavity.

[0011] Preferably, each of the side cavities is fitted with a connecting block at its upper end, and the end of each connecting block away from the side cavity is fitted with a main cavity. A second adapter spring is fixedly connected inside the main cavity, and a fitting slider is fixedly connected to the end of the second adapter spring away from the inner cavity wall. The fitting slider is slidably connected inside the main cavity.

[0012] Preferably, the first rotating body is rotatably connected to the fitting slider, the second rotating body is rotatably connected to the first rotating body, and the massage column is rotatably connected to the second rotating body via a motor.

[0013] Preferably, the L-shaped support plate has a slot at the top, which is adapted to the fastening plate.

[0014] Preferably, the sliding groove and the T-shaped sliding block are slidably adapted to each other, and the T-shaped sliding block is made of magnetic material, specifically iron.

[0015] Compared with the prior art, the present invention provides an intestinal function recovery device for preventing intestinal adhesions after intestinal obstruction surgery, which has the following beneficial effects: 1. The lying posture adjustment mechanism effectively adjusts the patient's postoperative position without causing misunderstandings about the lying posture, which could affect the recovery. Furthermore, the footrest allows the patient to automatically return to a medically correct posture even if their position changes after adjustment, avoiding the problem of the patient being unable to return to their original position after medical staff have adjusted it. The medical posture is highly feasible, which is beneficial for the patient's recovery. It effectively resolves intestinal adhesions, reduces the workload of medical staff, and improves hospital efficiency. 2. With the addition of L-shaped support plate, interlocking plate and orientation adjustment column, the L-shaped support plate can be added or removed during operation to adjust various postures, which is highly flexible. In addition, due to the shape of the orientation adjustment column, it can assist in turning over when in the lateral position, avoiding pain caused by large movements after surgery. 3. During use, the postoperative patient lies on the reclining board, slides the T-shaped sliding block into the sliding groove, and then assembles the side cavity and the main cavity with the help of the connecting block. Finally, the massage column on the second rotating body is placed against the patient's abdomen. Then, the motor that drives the massage column is started to massage the patient's abdomen. Through the blood circulation stimulation mechanism, blood circulation can be effectively stimulated, intestinal peristalsis can be promoted, the recovery time of intestinal function can be accelerated, which is beneficial to the patient's recovery and avoids the occurrence of intestinal adhesions. 4. The first and second adapter springs, along with the first and second rotating bodies, provide a stronger fit and, with their detachable design, a wider range of applications. Furthermore, the fit is better when the patient is lying down. Unlike some existing massage devices, this design effectively prevents the massage device from failing to maintain a proper fit to the patient's abdomen while lying down due to its own weight, thus reducing the massage effect. This is beneficial for stimulating blood circulation, promoting intestinal peristalsis, and shortening the recovery time of intestinal function after surgery. 5. The design of the lying posture adjustment mechanism and the blood circulation stimulation mechanism is superior to existing technologies, enabling massage to be performed simultaneously with the correct lying posture. This dual approach is more conducive to recovery and prevention of postoperative intestinal adhesions. Attached Figure Description

[0016] Figure 1 This is a three-dimensional schematic diagram of the main structure of the present invention; Figure 2 This is a top view of the main structure of the present invention; Figure 3 This is a front view of the main structure of the present invention; Figure 4 This is a bottom view of the main structure of the present invention; Figure 5 For the present invention Figure 4 Enlarged view of a portion of the structure at point A; Figure 6 This is a structural diagram of the lying posture adjustment mechanism in this invention; Figure 7 This is a structural diagram of the L-shaped support plate and the interlocking plate in this invention, as well as related structural diagrams of the interlocking plate; Figure 8 The diagram shows the relevant structures of the fetal orientation adjustment column, lying board, and support strip in the lying posture adjustment mechanism of the present invention. Figure 9 This is a diagram showing the location distribution of relevant components in the lying posture adjustment mechanism and the blood circulation stimulation mechanism of the present invention; Figure 10 This is a structural diagram of the blood circulation stimulation mechanism in this invention; Figure 11 These are structural diagrams of the second adapter spring, the fitting slider, the first rotating body, and the second rotating body in this invention. Figure 12 The diagram shows the structure of the connecting block, main cavity, fitting slider, first rotating body, second rotating body, and massage column in this invention.

[0017] In the picture: 1. Bed frame; 2. Reclining posture adjustment mechanism; 201. Auxiliary component; 202. Sector-shaped ruler; 203. First rotating gear; 204. Second rotating gear; 205. Moving gear; 206. Footrest; 207. Fastening groove; 208. Fastening plate; 209. L-shaped support plate; 210. Fitting plate; 211. Orientation adjustment column; 212. Reclining board; 213. Support strip; 3. Blood circulation stimulation mechanism; 301. Sliding groove; 302. Magnet; 303. T-shaped sliding block; 304. Side cavity; 305. Auxiliary cavity; 306. First adapter spring; 307. Connecting block; 308. Main cavity; 309. Second adapter spring; 310. Fitting slider; 311. First rotating body; 312. Second rotating body; 313. Massage column. Detailed Implementation

[0018] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0019] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments. Example

[0020] Please refer to Figures 1 to 8 As shown: To address the problems mentioned in the technical solutions, this application provides an intestinal function recovery device for preventing intestinal adhesions after intestinal obstruction surgery. The device includes a bed 1. Preferably, it includes a lying position adjustment mechanism 2 for adjusting the patient's posture to promote postoperative recovery, such as a supine or fetal position. It also includes a blood circulation stimulation mechanism 3 for massaging the patient's abdomen to stimulate blood circulation, promote intestinal peristalsis, and accelerate the recovery time of intestinal function. The lying position adjustment mechanism 2 is located to the right of the blood circulation stimulation mechanism 3, and both the lying position adjustment mechanism 2 and the blood circulation stimulation mechanism 3 are mounted on the bed 1. The reclining posture adjustment mechanism 2 includes a sector-shaped ruler 202 for distance adjustment triggering, and an orientation adjustment column 211 and a reclining board 212 for auxiliary posture adjustment. The reclining posture adjustment mechanism 2 also includes an auxiliary component 201 fixedly connected to the bottom surface of the bed frame 1. The auxiliary component 201 is N-shaped, with a double-layer structure on the left and a single-layer structure on the right. The sector-shaped ruler 202 is rotatably connected to the bottom end of the single-layer structure on the right side of the auxiliary component 201 via a motor. The sector surface of the sector-shaped ruler 202 has a first rotating tooth 203 meshing with its teeth. A second rotating tooth 204 is fixedly connected to the side of the first rotating tooth 203 via a column rod. Both the first rotating tooth 203 and the second rotating tooth 204 are rotatably connected to the left side of the N-shaped auxiliary component 201. At the bottom of the double-layer structure, the upper tooth surface of the second rotating tooth 204 is meshed with a moving tooth bar 205. The moving tooth bar 205 slides on the auxiliary component 201. The left end of the moving tooth bar 205 is fixedly connected to a foot plate 206. The bottom surface of the bed body 1 is provided with a fastening groove 207. A fastening plate 208 is fixedly connected in the fastening groove 207. An L-shaped support plate 209 is snapped onto the fastening plate 208. A fitting plate 210 is fixedly connected to the left side of the L-shaped support plate 209 and located on the bottom surface of the bed body 1. A square opening is provided on the bed body 1. An orientation adjustment column 211 is placed in the opening above the bed body 1. A reclining plate 212 is fixedly connected to the upper surface of the orientation adjustment column 211. Support strips 213 are fixedly connected to both sides of the reclining plate 212. in: The lying position adjustment mechanism 2 is mainly used for adjusting body positions such as supine and fetal positions to promote postoperative recovery.

[0021] The sector ruler 202 is driven by a motor. The sector ruler 202 meshes with the first rotating tooth 203, and the second rotating tooth 204 meshes with the moving toothed rod 205.

[0022] The 206 footboard is mainly used for placing the feet of postoperative patients.

[0023] The snap-fit ​​plate 208 is mainly used in conjunction with the L-shaped support plate 209.

[0024] The L-shaped support plate 209 has a slot at the top, which is adapted to the fastening plate 208.

[0025] When the L-shaped support plate 209 is engaged with the fitting plate 210, it can provide support for the position adjustment column 211.

[0026] The curved surface of the orientation adjustment column 211 can be attached to and rotated on the fitting plate 210.

[0027] The support strip 213 mainly provides support to the orientation adjustment column 211 when it rotates on the curved surface of the orientation adjustment column 211 attached to the fitting plate 210, and at the same time, it keeps the column rotating but not moving due to the restriction of the square through hole.

[0028] A further embodiment: Please refer to Figure 1 , Figures 9 to 12 As shown: The blood circulation stimulation mechanism 3 includes a first rotating body 311, a second rotating body 312, and a massage column 313 for massage adaptation. The blood circulation stimulation mechanism 3 also includes a sliding groove 301, in which magnets 302 are fixedly connected at equal intervals. Two sliding grooves 301 are provided, equidistantly located on the bed 1 along the central axis. T-shaped sliding blocks 303 are slidably connected within each sliding groove 301. Side cavities 304 are slidably fitted onto the upper ends of each T-shaped sliding block 303. Each side cavity 304 has an auxiliary cavity 305, and a first adaptation spring 306 is fixedly connected within each auxiliary cavity 305. One end of the first adaptation spring 306 is fixedly connected to the T-shaped sliding block. The top surface of the moving block 303 is fixedly connected to the top of the inner wall of the auxiliary cavity 305. The upper end of the side cavity 304 is provided with a connecting block 307. The end of the connecting block 307 away from the side cavity 304 is provided with a main cavity 308. The main cavity 308 is fixedly connected with a second adapter spring 309. The end of the second adapter spring 309 away from the inner cavity fixed wall is fixedly connected with a fitting slider 310. The fitting slider 310 is slidably connected in the main cavity 308. The first rotating body 311 is rotatably connected to the fitting slider 310. The second rotating body 312 is rotatably connected to the first rotating body 311. The massage column 313 is rotatably connected to the second rotating body 312 through a motor.

[0029] in: The blood circulation stimulation mechanism 3 is mainly used to massage the patient's abdomen to stimulate blood circulation, promote intestinal peristalsis, and accelerate the recovery time of intestinal function.

[0030] The sliding groove 301 and the T-shaped sliding block 303 are adapted to slide together.

[0031] The T-shaped slider 303 is made of a magnetic material, specifically iron.

[0032] The side cavity 304 has the same components as the main cavity 308. Since the working conditions are the same, only the components on the main cavity 308 will be described below.

[0033] The first adapter spring 306 and the second adapter spring 309 are mainly used to adapt to the waist circumference of different people.

[0034] The connecting block 307 can be used with the first adapter spring 306 and the second adapter spring 309 to further adapt to the waist circumference of different people, and can be added or removed according to specific circumstances.

[0035] In this embodiment, only the first rotating body 311 and the second rotating body 312 are provided, but they can be added or removed according to specific circumstances.

[0036] The massage column 313 is driven by a motor.

[0037] It should be noted that a heat source can be installed in the main cavity 308, which can be implemented as an electric heating device or moxibustion stick, etc., and heat source flow holes are opened on the first rotating body 311 and the second rotating body 312 to transfer heat and increase the patient's comfort during massage.

[0038] The working principle of all the content in the above embodiments is as follows: In the initial state: The initial state of the components in the reclining posture adjustment mechanism 2: the footboard 206 slides at the rightmost end of the square opening on the bed frame 1, that is, the position furthest from the main cavity 308. The support strip 213 is attached to the upper surface of the bed frame 1. At this time, the support strip 213 supports the fixedly connected reclining board 212. Furthermore, in this state, the orientation adjustment column 211 is not in contact with the L-shaped support plate 209.

[0039] The initial state of the components in the blood circulation stimulation mechanism 3: the T-shaped sliding block 303 slides on the sliding groove 301, and the first adapter spring 306 and the second adapter spring 309 are not compressed.

[0040] The following describes the working process of the lying posture adjustment mechanism 2, which is used for adjusting body positions such as supine and fetal positions to promote postoperative recovery: The change in the contact surface of the orientation adjustment column 211, and the influence of the patient's weight, cause the orientation adjustment column 211 to roll on the L-shaped support plate 209.

[0041] It should be noted that there are specific medical requirements for lying down: Supine position: Lie flat on your back with your knees bent and feet flat on the bed. (This position relaxes the muscles and makes it easier for the abdominal muscles to contract.) Fetal position: Lie on your side and bring your knees towards your chest. (This position can stimulate intestinal peristalsis and promote digestion.) Note: The following descriptions will focus on the supine and fetal positions separately: Adjustment prerequisites: The prerequisites for all three posture adjustments are that the blood circulation stimulation mechanism 3 on the patient's body has been set up, the patient lies flat on the lying board 212 on the bed 1, and the patient's feet are placed on the footrest 206.

[0042] Supine position: When using, the patient lies flat on bed 1 and starts the motor that drives the sector ruler 202 to rotate. (Refer to...) Figure 3 and Figure 5Driven by the motor, the rotating sector ruler 202 will rotate with the meshing first rotating tooth 203. Since the first rotating tooth 203 and the second rotating tooth 204 are connected by a connecting column, the second rotating tooth 204 will also rotate at this time. Furthermore, as the second rotating tooth 204 rotates, the moving tooth 205 meshing with the second rotating tooth 204 will move the footboard 206 in the groove of the square side wall of the bed 1 towards the lying board 212. At this time, the patient's legs, which were originally straight on the footboard 206, will be pushed by the lateral movement of 206, causing the patient's legs to bend. At this time, medical staff can ensure the accuracy of medical bending by observing the degree of bending of the patient's legs and stop the motor driving the sector ruler 202 in real time, thereby completing the supine posture adjustment. Fetal type: When using and adjusting the fetal type, with the drive moving rack 205 moving the foot plate 206 towards the reclining plate 212, first fasten the L-shaped support plate 209 into the fitting plate 210 on the fastening groove 207. (Refer to...) Figure 5 and Figure 7 Specifically, the L-shaped support plate 209 is manually placed in the fastening groove 207 and the L-shaped support plate 209 is moved to the right so that the slot at the upper end of the L-shaped support plate 209 and the fastening plate 208 are engaged. Furthermore, after the card connection is completed, you can refer to... Figure 3 As the L-shaped support plate 209 moves closer to the lying board 212 along with the footboard 206, it gradually approaches and eventually lifts the orientation adjustment column 211 with the assistance of the curved surface of its side end. At this point, the orientation adjustment column 211 moves upward. Furthermore, as the L-shaped support plate 209 moves to the left, it eventually inserts into the fitting plate 210, thus completing its own fixation. At this time, the orientation adjustment column 211 will deflect due to the patient lying on the lying board 212 and, with the assistance of the side support strips 213 of the lying board 212, will be firmly abutted against the bed frame 1. Figure 8 As shown, the patient changes from lying flat to lying on their side, with their legs bent, and the fetal position adjustment is complete. The lying posture adjustment mechanism 2 effectively adjusts the patient's postoperative position without causing misunderstandings about the lying posture, which could affect the recovery. Furthermore, the footrest 206 allows the patient to automatically return to a medically correct posture even if their position changes after the initial adjustment, preventing issues where medical staff adjust the patient's position only to find they cannot return to it on their own. This ensures greater feasibility of the medical posture adjustment, promoting patient recovery, effectively resolving intestinal adhesions, reducing the workload of medical staff, and improving hospital efficiency. Furthermore, with the addition of the L-shaped support plate 209, the fitting plate 210, and the orientation adjustment column 211, the L-shaped support plate 209 can be added or removed during operation to adjust to two different postures, which is highly flexible. Moreover, due to the shape of the orientation adjustment column 211, it can assist in turning over when in the lateral position, making it more flexible for the patient to turn over and avoiding pain caused by large movements after surgery. Please refer to the above work process. Figures 1 to 8 .

[0043] The following describes the working process of the blood circulation stimulation mechanism 3, which is used to massage the patient's abdomen to stimulate blood circulation, promote intestinal peristalsis, and accelerate the recovery time of intestinal function: Under the premise of the inherent spring characteristics of the first adapter spring 306 and the second adapter spring 309, the first rotating body 311 and the second rotating body 312 can be fitted to the human body surface to ensure the effectiveness of massage in promoting blood circulation.

[0044] Furthermore, during use, the postoperative patient lies on the reclining board 212, slides the T-shaped sliding block 303 into the sliding groove 301, and then assembles the side cavity 304 and the main cavity 308 with the assistance of the connecting block 307. Finally, the massage column 313 set on the second rotating body 312 is pressed against and adhered to the patient's abdomen. Then, the motor that drives the massage column 313 is started to massage the patient's abdomen. That is, through the setting of the blood circulation stimulation mechanism 3, blood circulation can be effectively stimulated, intestinal peristalsis can be promoted, the recovery time of intestinal function can be accelerated, which is beneficial to the patient's recovery and avoids the occurrence of intestinal adhesions. Furthermore, the first adapter spring 306, the second adapter spring 309, the first rotating body 311, and the second rotating body 312 provide a stronger fit and, combined with the detachable design, a wider range of applications. They also offer a higher degree of fit when the patient is lying down. Unlike some existing massage devices, this design effectively prevents the massage device from failing to maintain a proper fit to the patient's abdomen while lying down due to its own weight, thus reducing the massage effect. This is beneficial for stimulating blood circulation, promoting intestinal peristalsis, and shortening the recovery time of intestinal function after surgery. Please refer to the above work process. Figure 1 , Figures 9 to 12 .

[0045] The lying posture adjustment mechanism 2 effectively adjusts the patient's postoperative position without causing misunderstandings about the correct lying posture, thus preventing any impact on recovery. Furthermore, the footrest 206 allows the patient to automatically return to a medically correct posture even if their position changes after adjustment, avoiding the problem of the patient being unable to return to their original position after medical staff have adjusted it. This ensures greater feasibility of the medical posture adjustment, promoting patient recovery, effectively resolving intestinal adhesions, reducing the workload of medical staff, and improving hospital efficiency. Further, the blood circulation stimulation mechanism 3 utilizes the first adapter spring 306 and the... The design of the two adapter springs 309, the first rotating body 311, and the second rotating body 312 provides a stronger fit and, with their detachable design, a wider range of applications. Furthermore, it offers a higher degree of fit when the patient is lying down. Unlike some existing massage devices, this design effectively prevents the massage device from failing to maintain a proper fit to the patient's abdomen while lying down due to its own weight, thus reducing the massage's effectiveness. This is beneficial for stimulating blood circulation after surgery, promoting intestinal peristalsis, and shortening the recovery time of intestinal function. Moreover, the superior design of the lying posture adjustment mechanism 2 and the blood circulation stimulation mechanism 3 allows for massage to be performed simultaneously with the correct lying posture, providing a dual effect that is more conducive to recovery and prevents postoperative intestinal adhesions.

[0046] It should be noted that, in this document, relational terms such as "first" and "second" are used merely to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

[0047] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A device for restoring intestinal function after intestinal obstruction surgery to prevent intestinal adhesions, comprising: The bed (1) is characterized in that the intestinal function recovery device for preventing intestinal adhesion after intestinal obstruction includes: a lying posture adjustment mechanism (2) for adjusting the body position for supine and fetal positions to promote postoperative recovery, and a blood circulation stimulation mechanism (3) for massaging the patient's abdomen to stimulate blood circulation, promote intestinal peristalsis, and accelerate the recovery time of intestinal function. The lying posture adjustment mechanism (2) is located on the right side of the blood circulation stimulation mechanism (3), and both the lying posture adjustment mechanism (2) and the blood circulation stimulation mechanism (3) are set on the bed (1). The lying posture adjustment mechanism (2) includes a fan-shaped ruler (202) for distance adjustment triggering, and an orientation adjustment column (211) and a lying board (212) for auxiliary posture adjustment. The blood circulation stimulation mechanism (3) includes a first rotating body (311), a second rotating body (312), and a massage column (313) for adapting to massage. The lying posture adjustment mechanism (2) also includes an auxiliary component (201) fixedly connected to the bottom surface of the bed (1). The auxiliary component (201) is shaped like an N, with a double-layer structure on the left and a single-layer structure on the right. The fan-shaped ruler (202) is rotatably connected to the bottom end of the single-layer structure on the right side of the auxiliary component (201) by a motor. The fan surface of the fan-shaped ruler (202) is meshed with a first rotating tooth (203). The side of the first rotating tooth (203) is fixedly connected to a second rotating tooth (204) by a column rod. The first rotating tooth (203) and the second rotating tooth (204) are both rotatably connected to the bottom end of the double-layer structure on the left side of the N-shaped auxiliary component (201). The upper tooth surface of the second rotating tooth (204) is connected to a moving tooth bar (205) for meshing transmission. The left end of the moving tooth bar (205) is fixedly connected to a foot plate (206). The bottom surface of the bed (1) is provided with a fastening groove (207), and a fastening plate (208) is fixedly connected in the fastening groove (207). An L-shaped support plate (209) is snapped onto the fastening plate (208). A fitting plate (210) is fixedly connected to the left side of the L-shaped support plate (209) and to the bottom surface of the bed (1). A square opening is provided on the bed (1). An orientation adjustment column (211) is placed in the square opening of the bed (1). A reclining board (212) is fixedly connected to the upper surface of the orientation adjustment column (211). Support strips (213) are fixedly connected to both sides of the reclining board (212). After the snap-fit ​​work is completed, as the L-shaped support plate (209) moves with the foot plate (206), the L-shaped support plate (209) will gradually approach and lift the azimuth adjustment column (211) with the assistance of the arc surface on the side end of the azimuth adjustment column (211). As the L-shaped support plate (209) moves to the left, the L-shaped support plate (209) will eventually be inserted into the interlocking plate (210) to complete the fixing work of the L-shaped support plate (209).

2. The intestinal function recovery device for preventing intestinal adhesions after intestinal obstruction surgery according to claim 1, characterized in that: The blood circulation stimulation mechanism (3) also includes a sliding groove (301). Magnets (302) are fixedly connected at equal intervals in the sliding groove (301). There are two sliding grooves (301) and they are equidistantly connected on the bed (1) with the central axis of the bed (1). T-shaped sliding blocks (303) are slidably connected in the sliding groove (301). A side cavity (304) is slidably sleeved on the upper end of the T-shaped sliding block (303). An auxiliary cavity (305) is opened in the side cavity (304). A first adapter spring (306) is fixedly connected in the auxiliary cavity (305). One end of the first adapter spring (306) is fixedly connected to the top surface of the T-shaped sliding block (303), and the other end is fixedly connected to the top of the inner wall of the auxiliary cavity (305).

3. The intestinal function recovery device for preventing intestinal adhesions after intestinal obstruction surgery according to claim 2, characterized in that: Each of the side cavities (304) is fitted with a connecting block (307) at its upper end. Each of the connecting blocks (307) is fitted with a main cavity (308) at the end away from the side cavity (304). A second adapter spring (309) is fixedly connected inside the main cavity (308). A fitting slider (310) is fixedly connected at the end of the second adapter spring (309) away from the inner cavity wall. The fitting slider (310) is slidably connected inside the main cavity (308).

4. The intestinal function recovery device for preventing intestinal adhesions after intestinal obstruction surgery according to claim 1, characterized in that: The first rotating body (311) is rotatably connected to the fitting slider (310), the second rotating body (312) is rotatably connected to the first rotating body (311), and the massage column (313) is rotatably connected to the second rotating body (312) via a motor.

5. The intestinal function recovery device for preventing intestinal adhesions after intestinal obstruction surgery according to claim 1, characterized in that: The L-shaped support plate (209) has a slot at the top, which is adapted to the fastening plate (208).

6. The intestinal function recovery device for preventing intestinal adhesions after intestinal obstruction surgery according to claim 2, characterized in that: The sliding groove (301) and the T-shaped sliding block (303) are slidably adapted to each other, and the T-shaped sliding block (303) is made of magnetic material.

Citation Information

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