Breast cancer postoperative rehabilitation nursing equipment integrated device
By designing an integrated device for postoperative rehabilitation and nursing equipment for breast cancer, providing multi-stage exercise functions and waist fixation, the problem that existing devices cannot perform multi-stage exercises, and improving the recovery effect and applicability of the upper limbs on the affected side.
Patent Information
- Application Number
- CN202510428880.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-08
- Publication Date
- 2025-07-04
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing postoperative rehabilitation device for breast cancer can only massage the upper limbs on the affected side, and cannot perform phased wrist rotation, flexion, grip and lift exercises, which reduces the postoperative recovery effect of the upper limbs on the affected side, is inconvenient for patients to exercise independently, and cannot perform continuous exercise while walking.
An integrated device for postoperative rehabilitation and nursing equipment for breast cancer is designed, including a load seat, a concave support frame and a longitudinal support for lifting and moving. It is equipped with a longitudinal exercise mechanism and a multi-stage exercise mechanism. It can achieve various exercises such as wrist rotation, flexion and extension, grip and lift through elastic balls, connecting rods, universal structures and stretching structures, and is fixed to the patient's waist through the wear structure, allowing exercise during walking.
It has achieved a variety of targeted upper limb exercises based on the patient's postoperative time, which promotes lymphatic reflux on the affected upper limbs and improves recovery effect. It is also suitable for patients with different body types to meet the needs of continuous exercise during walking.
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Figure CN120242415A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of upper limb postoperative rehabilitation, and particularly relates to an integrated device for postoperative rehabilitation nursing of breast cancer. Background Art
[0002] After breast cancer surgery, patients need effective nursing to assist in the rehabilitation operation. At the same time, patients also need to exercise and recover after surgery. The specific exercise methods are as follows: On the day after surgery, start doing finger extension, fist clenching, and wrist rotation exercises on the affected upper limb several times a day, each time for 3 - 5 minutes; on the 1st - 3rd day after surgery, increase the flexion and extension movement of the elbow joint, several times a day, each time for 3 - 5 minutes. Through the above movements, the upper arm muscles can be mildly exercised. To increase the fun of exercise, it can be carried out with the children's game gesture of rock - paper - scissors or by holding a stress ball and grasping and releasing a towel; on the 4th - 6th day after surgery, practice the action of touching the opposite shoulder and the ipsilateral auricle with the palm of the affected side several times a day, each time for 3 - 5 minutes; on the 7th - 8th day after surgery, use the healthy hand to help the affected upper limb do the upward lifting action until it exceeds the head, each time for 3 - 5 minutes, 3 - 5 times a day.
[0003] As disclosed in an invention with the authorization announcement number CN113679589B, a nursing device for facilitating the rehabilitation of the affected upper limb after breast cancer surgery includes a bottom plate. On both sides of the top surface of the bottom plate, a first telescopic rod and a second telescopic rod are respectively installed. Above the first telescopic rod, there is a first sheath. This solution can massage the upper limb of the patient by setting elastic telescopic rods and massage balls, thereby promoting blood circulation in the upper limb of the patient. And through the transmission device, power is provided to drive the massage ball to reciprocate on the patient's upper limb, thereby performing cyclic massage on the patient's upper limb, further promoting blood circulation in the patient's upper limb, improving the rehabilitation speed of the patient's upper limb, and at the same time reducing the discomfort of the patient. By setting the first telescopic rod and the second telescopic rod, the upper limb of the patient can be swung up and down, increasing the training degree of the patient's upper limb and ensuring the patient's rehabilitation speed.
[0004] However, the above - mentioned solution has the following problems: The above - mentioned solution can only massage the affected upper limb of the patient, and cannot perform staged wrist rotation, flexion and extension, grasping, and lifting exercises on the affected upper limb, greatly reducing the postoperative recovery effect of the affected upper limb, not facilitating the patient's independent exercise, and the overall use effect is not good. At the same time, it cannot be connected to the patient's body and cannot perform continuous exercise when the patient is walking. Therefore, we propose an integrated device for postoperative rehabilitation nursing of breast cancer. Summary of the Invention
[0005] The object of the present invention is to provide an integrated device for postoperative rehabilitation care of breast cancer, so as to solve the problems in the above-mentioned background technology that the existing technology can only massage the affected upper limb of the patient, and cannot perform stage-by-stage wrist rotation, flexion and extension, grasping, and lifting exercises on the affected upper limb, greatly reducing the postoperative recovery effect of the affected upper limb, being inconvenient for the patient to perform independent exercises, having poor overall use effect, and at the same time being unable to connect to the patient's body and unable to perform continuous exercises during the patient's walking.
[0006] To achieve the above object, the present invention provides the following technical solution: An integrated device for postoperative rehabilitation care of breast cancer, including a bearing seat and a concave support frame arranged on one side of the bearing seat. A longitudinally moving support is further arranged inside the concave support frame. An installation opening is arranged at the upper part of the longitudinally moving support, and a longitudinal exercise mechanism for lifting exercise of the affected upper limb is arranged inside the installation opening. A multi-stage exercise mechanism for wrist rotation, flexion and extension, and grasping of the affected upper limb is further arranged on the longitudinal exercise mechanism.
[0007] The multi-stage exercise mechanism includes an elastic ball. A connecting rod is arranged on one side of the elastic ball. The connecting rod is clamped inside an inner sleeve. The inner sleeve is rotatably arranged inside an outer sleeve. The outer sleeve is arranged on a first mounting seat. The first mounting seat is further connected to a second mounting seat through a universal structure. The second mounting seat is arranged on one side surface of a vertical frame. One end of the connecting rod is further provided with an automatically telescopic stretching structure.
[0008] Wherein, one side of the bearing seat is fixedly connected to the patient's waist through a wearing structure.
[0009] Preferably, positioning blocks are symmetrically arranged on the outer surface of the connecting rod. The positioning blocks are clamped in positioning grooves. The positioning grooves are arranged on the inner wall of the inner sleeve. Through the clamping of the positioning blocks and the positioning grooves, the connecting rod can be quickly clamped and fixed to the inner sleeve.
[0010] Preferably, an electromagnet is inlaid on one side surface inside the positioning groove. The electromagnet is used to adsorb the positioning block, which can adsorb and connect the positioning block and improve the stability when the connecting rod is fixed.
[0011] Preferably, the universal structure includes a first universal ball and a second universal ball. The first universal ball is rotatably arranged inside the first mounting seat. The second universal ball is rotatably arranged inside the second mounting seat. The first universal ball and the second universal ball are connected through a connecting pipe, which can enable the first mounting seat to rotate in all directions and is convenient for the affected upper limb to perform grasping and wrist rotation exercises.
[0012] Preferably, the stretching structure includes a pulling rope. One end of the pulling rope is connected to the connecting rod, and the other end of the pulling rope sequentially passes through the first universal ball, the second universal ball and the vertical frame, and is arranged along the longitudinal exercise mechanism and finally connected to the winding wheel. The winding wheel is rotatably arranged on the first rotating shaft, and the first rotating shaft is rotatably arranged in the installation cavity. The installation cavity is arranged in the longitudinal bracket. Through the automatic expansion and contraction of the pulling rope, the affected upper limb can be flexed and extended for exercise.
[0013] Preferably, a driving gear is arranged on one side of the first rotating shaft. The driving gear meshes with the accelerating gear. The accelerating gear is arranged on one side of the second rotating shaft. The second rotating shaft is rotatably arranged in the bearing frame. The bearing frame is arranged in the installation cavity. One end of the second rotating shaft rotates in the box body. The box body is arranged on one side of the installation cavity, and a volute spring is arranged in the box body. One end of the volute spring is connected to the second rotating shaft, which can accelerate the rotation of the volute spring, improve the winding force, and facilitate the rapid winding of the pulling rope.
[0014] Preferably, a first central opening is arranged in the middle of the first universal ball, and a second central opening is arranged in the middle of the second universal ball. The first central opening corresponds to the second center, which can facilitate the hidden installation of the pulling rope.
[0015] Preferably, the longitudinal exercise mechanism includes a first support arm. The first support arm is rotatably arranged in the installation opening through a threaded rod. A threaded locking cap is also arranged on one side of the threaded rod. A first electric push rod is also arranged in the first support arm. One end of the piston rod of the first electric push rod is connected to the second support arm. The second support arm is connected to the vertical frame. Tensioning structures for positioning the pulling rope are arranged on the surfaces of one sides of the first support arm and the second support arm, which can lift and exercise the affected upper limb.
[0016] Preferably, the tensioning structure includes a sleeve. The sleeve is arranged on one sides of the first support arm and the second support arm. A plurality of tensioning rods are alternately arranged in the sleeve, which can tension the pulling rope and improve the stability of the pulling rope during expansion and contraction.
[0017] Preferably, the wearing structure includes two iliac positioning pads. The iliac positioning pads are arranged on the surface of one side of the bearing seat. A second electric push rod for controlling the opposite movement of the iliac positioning pads is also arranged on one side of the bearing seat, which can clamp the bearing seat on both sides of the ilium and improve the fixing stability.
[0018] Preferably, an adjusting block is arranged on one side of the iliac positioning pad. One end of the adjusting block is connected to the piston rod of the second electric push rod.
[0019] Preferably, a fixing structure for positioning the drainage tube is further provided on one side surface of the bearing seat. The fixing structure includes a pipe clamping seat which is arranged on one side surface of the bearing seat. A guiding inlet is further provided on one side of the pipe clamping seat, and the guiding inlet is communicated with the pipe placing opening. An upper air bag is arranged on one side in the pipe placing opening, and a lower air bag is arranged on the other side in the pipe placing opening.
[0020] Preferably, a hook is further provided on the bearing seat below the pipe clamping seat.
[0021] Preferably, a longitudinal lead screw is rotatably arranged on one side inside the concave support frame. A lead screw nut seat is arranged on the longitudinal lead screw, and one end of the lead screw nut seat is connected with the longitudinal support. A driven bevel gear is further arranged on one side of the longitudinal lead screw, and the driven bevel gear meshes with a driving bevel gear which is connected with a hand wheel.
[0022] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0023] (1) During the use of the present application, targeted exercises such as wrist rotation, flexion and extension, gripping, and lifting of the affected upper limb of the patient can be carried out according to the time after the patient's operation, so as to promote the lymphatic return of the affected upper limb and greatly improve the recovery effect of the function of the affected upper limb.
[0024] (2) The present application can also be fixed at the waist position of the patient, and exercises can be carried out during walking, and it can meet the use of patients with different body types, and the overall applicability is high. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 is the overall structural schematic diagram of the present invention;
[0026] Figure 2 is the structural schematic diagram of the longitudinal exercise mechanism in the present invention;
[0027] Figure 3 is the half-sectional structural schematic diagram of the multi-stage exercise mechanism in the present invention;
[0028] Figure 4 is the partial half-sectional structural schematic diagram of the multi-stage exercise mechanism in the present invention;
[0029] Figure 5 is Figure 4 the enlarged structural schematic diagram at A in;
[0030] Figure 6 is the partial half-sectional structural schematic diagram of the longitudinal support in the present invention;
[0031] Figure 7 is the half-sectional structural schematic diagram of the winding wheel in the present invention;
[0032] Figure 8 is Figure 7Schematic diagram of the enlarged structure at position B in [the figure];
[0033] Figure 9 Schematic diagram of the half-sectional structure of the bearing seat in the present invention;
[0034] Figure 10 Schematic diagram of the half-sectional structure of the concave support frame in the present invention;
[0035] Figure 11 is Figure 10 Schematic diagram of the enlarged structure at position C in [the figure];
[0036] Figure 12 Schematic diagram of the half-sectional structure of the fixing structure in the present invention;
[0037] In the figure: 1. Bearing seat; 2. Concave support frame; 3. Longitudinal bracket; 4. Longitudinal exercise mechanism; 5. Multistage exercise mechanism; 6. Wearing structure; 7. Fixed strap; 8. Hook; 9. Fixing structure; 11. Built-in power supply; 12. Micro air pump; 21. Longitudinal lead screw; 22. Nut seat; 23. Handwheel; 24. Driving bevel gear; 25. Driven bevel gear; 31. Installation port; 41. Threaded rod; 42. Thread locking nut; 43. First support arm; 44. First electric push rod; 45. Second support arm; 61. Adjusting block; 62. Iliac arc-shaped card slot; 63. Iliac positioning pad; 64. Second electric push rod; 91. Inlet; 92. Upper airbag; 93. Placement port; 94. Lower airbag; 501. Elastic ball; 502. First mounting seat; 503. Second mounting seat; 504. Upright frame; 505. Pulling rope; 506. Sleeve; 507. Tensioning rod; 508. First universal ball; 509. Connecting pipe; 510. Second universal ball; 511. Second central port; 512. Connecting rod; 513. Positioning card slot; 514. Inner sleeve; 515. Positioning block; 516. Electromagnet; 517. Outer sleeve; 518. Winding wheel; 519. Installation cavity; 520. First rotating shaft; 521. Driving gear; 522. Bearing frame; 523. Second rotating shaft; 524. Accelerating gear; 525. Torsion spring; 526. Box body; 527. First central port. Detailed implementation manners
[0038] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0039] Please refer to Figures 1 - 8, the present invention provides a technical solution: an integrated device for postoperative rehabilitation care of breast cancer. When this device is manufactured, it can be produced in pairs for use on the affected upper limbs on different sides. One side of the bearing seat 1 is fixedly provided with a concave support frame 2. A longitudinal support 3 that moves up and down is arranged inside the concave support frame 2. An installation opening 31 is arranged on the upper part of the longitudinal support 3. A longitudinal exercise mechanism 4 is arranged inside the installation opening 31. A multi-stage exercise mechanism 5 is also arranged on the longitudinal exercise mechanism 4;
[0040] The multi-stage exercise mechanism 5 includes an elastic ball 501. An adapter rod 512 is arranged on one side of the elastic ball 501. The adapter rod 512 is clamped inside the inner sleeve 514. The inner sleeve 514 is rotatably arranged inside the outer sleeve 517. The outer sleeve 517 is arranged on the first mounting seat 502. The first mounting seat 502 is also connected to the second mounting seat 503 through a universal structure. The second mounting seat 503 is arranged on one side surface of the vertical frame 504. One end of the adapter rod 512 is also provided with an automatically telescopic stretching structure; One side of the bearing seat 1 is fixedly connected to the patient's waist through a wearing structure 6.
[0041] First, fix the support seat on both sides of the ilium of the affected side waist through the wearing structure 6. Then, adjust the height of the longitudinal support 3 according to the position of the patient's hand, and adjust the multi-stage exercise mechanism 5 to the position of the affected side hand. On the day after the operation, the hand on the affected side can hold the elastic ball 501 and then hold it for exercise. At the same time, the elastic ball 501 can be rotated, so that the elastic ball 501 drives the inner sleeve 514 to rotate inside the outer sleeve 517. And through the universal structure, the elastic ball 501 can be rotated in any direction, and the patient can perform wrist rotation exercise. On the 1st - 3rd day after the operation, the elastic ball 501 can be removed from the inner sleeve 514, and at the same time hold the elastic ball 501 and perform elbow flexion and extension exercise. When exercising, the elastic ball 501 stretches the pull rope 505 to move. On the 4th - 6th day after the operation, hold the elastic ball 501 and lift the elastic ball 501 to the position of the auricle on the affected side. On the 7th - 8th day after the operation, fix the elastic ball 501 inside the inner sleeve 514 and perform upper limb lifting exercise through the longitudinal exercise mechanism 4.
[0042] Further, positioning blocks 515 are symmetrically arranged on the outer surface of the adapter rod 512. The positioning blocks 515 are clamped in the positioning slots 513. The positioning slots 513 are arranged on the inner wall of the inner sleeve 514. When the elastic ball 501 is installed, through the clamping of the positioning blocks 515 and the positioning slots 513, the adapter rod 512 can be quickly clamped and fixed to the inner sleeve 514.
[0043] Further, an electromagnet 516 is inlaid on one side surface inside the positioning slot 513. The electromagnet 516 is used to adsorb the positioning block 515, which can adsorb and connect the positioning block 515, improve the stability when the adapter rod 512 is fixed, and at the same time quickly release the positioning block 515, facilitating the removal of the elastic ball 501 from the inner sleeve 514.
[0044] Specifically, the universal structure includes a first universal ball 508 and a second universal ball 510. The first universal ball 508 is rotatably arranged in the first mounting seat 502, and the second universal ball 510 is rotatably arranged in the second mounting seat 503. The first universal ball 508 and the second universal ball 510 are connected by a connecting pipe 509, which enables the first mounting seat 502 to rotate in all directions, facilitating the grasping and wrist-rotating exercises of the affected upper limb.
[0045] When the patient performs wrist-rotating exercises, the elastic ball 501 can drive the first mounting seat 502 to rotate on the first universal ball 508. At the same time, the connecting pipe 509 also drives the second universal ball 510 to rotate on the second mounting seat 503. Through the universal rotation of the first universal ball 508 and the second universal ball 510, it is convenient for the patient to perform wrist-rotating exercises.
[0046] Please refer to Figures 3 - 8 , the stretching structure includes a pull rope 505. One end of the pull rope 505 is connected to the connecting rod 512, and the other end of the pull rope 505 sequentially passes through the first universal ball 508, the second universal ball 510, and the vertical frame 504, and is arranged along the longitudinal exercise mechanism 4, and finally is connected to the winding wheel 518. The winding wheel 518 is rotatably arranged on the first rotating shaft 520, and the first rotating shaft 520 is rotatably arranged in the installation cavity 519. The installation cavity 519 is arranged in the longitudinal bracket 3. Through the automatic stretching of the pull rope 505, the flexion and extension exercises of the affected upper limb can be performed.
[0047] When the patient performs elbow flexion and extension and elastic ball 501 lifting exercises, the elastic ball 501 drives the pull rope 505 to move through the connecting rod 512. The pull rope 505 pulls the winding wheel 518 to rotate, and the winding wheel 518 drives the first rotating shaft 520 to rotate in the installation cavity 519, enabling the pull rope 505 to automatically stretch, facilitating elbow flexion and extension and elastic ball 501 lifting exercises.
[0048] A driving gear 521 is arranged on one side of the first rotating shaft 520. The driving gear 521 meshes with an accelerating gear 524. The accelerating gear 524 is arranged on one side of the second rotating shaft 523. Specifically, the diameter of the driving gear 521 is larger than the diameter of the accelerating gear 524. The second rotating shaft 523 is rotatably arranged in the bearing frame 522. The bearing frame 522 is arranged in the installation cavity 519. One end of the second rotating shaft 523 rotates in the box body 526. The box body 526 is arranged on one side in the installation cavity 519, and a volute spring 525 is arranged in the box body 526. One end of the volute spring 525 is connected to the second rotating shaft 523, which can accelerate the rotation of the volute spring 525, improve the winding force, and facilitate the rapid winding of the pull rope 505.
[0049] During elbow flexion and extension and when lifting the elastic ball 501, the pull rope 505 drives the winding wheel 518 to rotate. The winding wheel 518 drives the first rotating shaft 520 to rotate. The first rotating shaft 520 drives the driving gear 521 to rotate. The driving gear 521 drives the acceleration gear 524 to rotate. The acceleration gear 524 drives the second rotating shaft 523 to rotate at an accelerated speed. The second rotating shaft 523 drives the scroll spring 525 to rotate, thereby enabling the scroll spring 525 to provide a large winding elastic force. When the patient's hand drops and relaxes, the scroll spring 525 drives the second rotating shaft 523 to quickly rotate back. Through the transmission of the acceleration gear 524 and the driving gear 521, the first rotating shaft 520 can be quickly rotated back, and the pull rope 505 can be quickly wound up to provide assistance for the patient's descent.
[0050] Further, a first central opening 527 is provided in the middle of the first universal ball 508, and a second central opening 511 is provided in the middle of the second universal ball 510. The first central opening 527 corresponds to the second center, which is convenient for the hidden installation of the pull rope 505.
[0051] Please refer to Figure 2 , the longitudinal exercise mechanism 4 includes a first support arm 43. The first support arm 43 is rotatably arranged in the installation opening 31 through a threaded rod 41. A threaded locking cap 42 is also provided on one side of the threaded rod 41. A first electric push rod 44 is further provided in the first support arm 43. One end of the piston rod of the first electric push rod 44 is connected to the second support arm 45. The second support arm 45 is connected to the stand 504. Tensioning structures for positioning the pull rope 505 are provided on the surfaces of one side of the first support arm 43 and the second support arm 45, which can perform lifting exercises on the affected upper limb.
[0052] 7-8 days after the operation, loosen the threaded locking cap 42. The patient holds the elastic ball 501 with the affected hand, and then lifts the elastic ball 501. The elastic ball 501 drives the second support arm 45 and the first support arm 43 to move. The first support arm 43 drives the threaded rod 41 to rotate in the installation opening 31, thereby completing the lifting exercise. When in use, the distance between the second support arm 45 and the first support arm 43 can be adjusted by the telescopic movement of the first electric push rod 44, which can meet the needs of patients with different arm spans.
[0053] Further, the tensioning structure includes a sleeve 506. The sleeve 506 is arranged on one side of the first support arm 43 and the second support arm 45. A number of tensioning rods 507 are staggered in the sleeve 506, which can tension the pull rope 505 and improve the stability of the pull rope 505 during telescopic movement.
[0054] Please refer to Figure 9, the wearing structure 6 includes two groups of iliac positioning pads 63. The iliac positioning pads 63 are arranged on one side surface of the bearing seat 1. On one side of the bearing seat 1, a second electric push rod 64 for controlling the opposite movement of the iliac positioning pads 63 is also arranged, which can clamp the bearing seat 1 on both sides of the ilium, improving the fixing stability. On one side of the iliac positioning pad 63, an adjusting block 61 is arranged, and one end of the adjusting block 61 is connected to the piston rod of the second electric push rod 64.
[0055] According to the iliac position of the patient, the two groups of second electric push rods 64 are telescoped to drive the adjusting block 61 to move. The adjusting block 61 adjusts the distance between the two groups of iliac positioning pads 63, and makes the two groups of iliac positioning pads 63 clamp on both sides of the ilium. Then, the fixing strap 7 is wound around the patient's waist and bypasses from both sides of the ilium on the opposite side and is fixed to the bearing seat 1 to wear this device.
[0056] Furthermore, an iliac arc-shaped card slot 62 is also arranged on one side surface of the iliac positioning pad 63, which can fit with the ilium of the patient, improving the fixing stability.
[0057] Please refer to Figure 12 , a fixing structure 9 is also arranged on one side surface of the bearing seat 1. The fixing structure 9 includes a pipeline clamping seat. The pipeline clamping seat is arranged on one side surface of the bearing seat 1. On one side of the pipeline clamping seat, a guiding inlet 91 is also arranged. The guiding inlet 91 is communicated with a pipeline placing port 93. On one side inside the pipeline placing port 93, an upper airbag 92 is arranged, and on the other side inside the pipeline placing port 93, a lower airbag 94 is arranged. Both the upper airbag 92 and the lower airbag 94 are connected to a micro air pump 12 through air pipes, and the micro air pump 12 is arranged inside the bearing seat 1.
[0058] During use, the drainage tube is placed in the placing port 93 through the guiding inlet 91, and then the micro air pump 12 conveys air flow into the upper airbag 92 and the lower airbag 94. The two sides of the drainage tube are clamped and fixed by the inflation of the upper airbag 92 and the lower airbag 94.
[0059] Furthermore, a hook 8 is also arranged on the bearing seat 1 below the pipeline clamping seat, which can be used to hang and place the drainage bottle.
[0060] Please refer to Figure 11 , a longitudinal lead screw 21 is rotatably arranged on one side inside the concave support frame 2. A lead screw nut seat 22 is arranged on the longitudinal lead screw 21. One end of the lead screw nut seat 22 is connected to the longitudinal support 3. On one side of the longitudinal lead screw 21, a driven bevel gear 25 is also arranged. The driven bevel gear 25 meshes with a driving bevel gear 24, and the driving bevel gear 24 is connected to a hand wheel 23.
[0061] The rotation of the driving bevel gear 24 is driven by the handwheel 23. The driving bevel gear 24 drives the driven bevel gear 25 to rotate. The driven bevel gear 25 drives the longitudinal lead screw 21 to rotate. The nut seat 22 drives the longitudinal bracket 3 to move within the concave support frame 2. The movement of the longitudinal bracket 3 drives the adjustment of the height of the longitudinal exercise mechanism 4 and the multi-stage exercise mechanism 5 to meet the use requirements of patients with different heights.
[0062] A control switch for controlling the first electric push rod 44, the second electric push rod 64 and the micro air pump 12 is further provided on the bearing seat 1 of the present application. At the same time, a built-in power supply 11 is provided inside the bearing seat 1. The built-in power supply 11 provides electrical energy support for the first electric push rod 44, the second electric push rod 64 and the micro air pump 12. The built-in power supply 11 is a rechargeable lithium battery, which is convenient for charging and use.
[0063] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An integrated device for postoperative rehabilitation nursing equipment for breast cancer, comprising a bearing seat (1) and a concave support frame (2) arranged on one side of the bearing seat (1), characterized in that: A longitudinal support (3) that moves up and down is further provided inside the concave support frame (2). An installation opening (31) is provided at the upper part of the longitudinal support (3). A longitudinal exercise mechanism (4) for lifting and exercising the affected upper limb is provided inside the installation opening (31). A multi-stage exercise mechanism (5) for wrist rotation, flexion and extension, and grasping of the affected upper limb is further provided on the longitudinal exercise mechanism (4). The multi-stage exercise mechanism (5) includes an elastic ball (501). A connecting rod (512) is provided on one side of the elastic ball (501). The connecting rod (512) is clamped inside an inner sleeve (514). The inner sleeve (514) is rotatably arranged inside an outer sleeve (517). The outer sleeve (517) is arranged on a first mounting seat (502). The first mounting seat (502) is also connected to a second mounting seat (503) through a universal structure. The second mounting seat (503) is arranged on one side surface of a vertical frame (504). A stretchable structure that can automatically expand and contract is further provided at one end of the connecting rod (512). Wherein, one side of the bearing seat (1) is fixedly connected to the waist of the patient through a wearing structure (6).
2. The integrated device for postoperative rehabilitation nursing equipment for breast cancer according to claim 1, characterized in that: Positioning blocks (515) are symmetrically arranged on the outer surface of the connecting rod (512). The positioning blocks (515) are clamped in positioning grooves (513). The positioning grooves (513) are arranged on the inner wall of the inner sleeve (514).
3. The integrated device for postoperative rehabilitation nursing equipment for breast cancer according to claim 2, characterized in that: An electromagnet (516) is inlaid on one side surface inside the positioning groove (513). The electromagnet (516) is used to adsorb the positioning block (515).
4. An integrated device for postoperative rehabilitation care equipment for breast cancer, characterized in that: The universal structure includes a first universal ball (508) and a second universal ball (510). The first universal ball (508) is rotatably arranged inside the first mounting seat (502). The second universal ball (510) is rotatably arranged inside the second mounting seat (503). The first universal ball (508) and the second universal ball (510) are connected through a connecting pipe (509).
5. An integrated device for postoperative rehabilitation nursing of breast cancer, according to claim 1, characterized in that: The stretchable structure includes a pull rope (505). One end of the pull rope (505) is connected to the connecting rod (512). The other end of the pull rope (505) sequentially passes through the first universal ball (508), the second universal ball (510), and the vertical frame (504), and is arranged along the longitudinal exercise mechanism (4), and is finally connected to a winding wheel (518). The winding wheel (518) is rotatably arranged on a first rotating shaft (520). The first rotating shaft (520) is rotatably arranged inside an installation cavity (519). The installation cavity (519) is arranged inside the longitudinal support (3).
6. The integrated device for postoperative rehabilitation nursing equipment for breast cancer according to claim 5, characterized in that: On one side of the first rotating shaft (520), a driving gear (521) is provided. The driving gear (521) meshes with an accelerating gear (524). The accelerating gear (524) is provided on one side of the second rotating shaft (523). The second rotating shaft (523) is rotatably arranged in a carrier (522). The carrier (522) is arranged in an installation cavity (519). One end of the second rotating shaft (523) rotates in a box body (526). The box body (526) is arranged on one side in the installation cavity (519). And a volute spring (525) is arranged in the box body (526). One end of the volute spring (525) is connected to the second rotating shaft (523).
7. An integrated device for postoperative rehabilitation nursing of breast cancer according to claim 5, characterized in that: A first central opening (527) is arranged in the middle of the first universal ball (508). A second central opening (511) is arranged in the middle of the second universal ball (510). The first central opening (527) corresponds to the second center.
8. An integrated device for postoperative rehabilitation nursing of breast cancer according to claim 1, characterized in that: The longitudinal exercise mechanism (4) includes a first support arm (43). The first support arm (41) is rotatably arranged in an installation opening (31) through a threaded rod (41). A threaded locking cap (42) is also arranged on one side of the threaded rod (41). A first electric push rod (44) is further arranged in the first support arm (43). One end of the piston rod of the first electric push rod (44) is connected to a second support arm (45). The second support arm (45) is connected to a vertical frame (504). Tensioning structures for positioning a pull rope (505) are arranged on one side surfaces of the first support arm (43) and the second support arm (45).
9. The integrated device for postoperative rehabilitation nursing equipment for breast cancer according to claim 8, characterized in that: The tensioning structure includes a sleeve (506). The sleeve (506) is arranged on one side of the first support arm (43) and the second support arm (45). A plurality of tensioning rods (507) are alternately arranged in the sleeve (506).
10. The integrated device for postoperative rehabilitation nursing equipment for breast cancer according to claim 1, characterized in that: The wearing structure (6) includes two groups of iliac positioning pads (63). The iliac positioning pads (63) are arranged on one side surface of a bearing seat (1). A second electric push rod (64) for controlling the opposite movement of the iliac positioning pads (63) is also arranged on one side of the bearing seat (1).
Citation Information
Patent Citations
A nursing device that facilitates rehabilitation of the affected upper limb after breast cancer surgery
CN113679589B