A postoperative bladder contraction function exercise device for rectal cancer patients
By designing a bladder contraction function training device for rectal cancer patients after surgery, and utilizing a magnetic stainless steel tactile rod and a cloth restraint device, the issues of autonomy and privacy in existing training methods are solved, achieving effective training of pelvic floor muscles and isolation from infectious diseases.
Patent Information
- Application Number
- CN202311847605.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-29
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2043-12-29
AI Technical Summary
Existing methods for bladder contraction function training, such as electrical stimulation therapy and biofeedback, cannot effectively guide patients to exercise independently and require guidance from medical staff, resulting in irregular training, strong dependence, and risks to privacy and the spread of infectious diseases.
A device for exercising bladder contraction function after rectal cancer surgery was designed, including a privacy adaptation adjustment mechanism, a contamination prevention and isolation mechanism, and a contraction function stimulation mechanism. The device stimulates the anus with a magnetic stainless steel tactile rod, and combined with a covering cloth and restraint device, it enables voluntary contraction exercise of the pelvic floor muscles. A disposable perforated tape is used to isolate infectious diseases.
It enables patients to perform pelvic floor muscle contraction exercises independently, reducing the workload of medical staff, avoiding skin damage and the spread of infectious diseases, and improving the standardization and privacy protection of the exercises.
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Figure CN117679240B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of medical devices, specifically to a device for exercising bladder contraction function in rectal cancer patients after surgery. Background Technology
[0002] Patients with rectal cancer need to perform bladder contraction exercises after surgery, mainly because some surgeries may affect the function of pelvic floor nerves and muscles. Rectal cancer surgery sometimes damages the nerves that control bladder function, leading to bladder control problems. Surgery may also affect the pelvic floor muscles, which support the bladder and help control urination.
[0003] Currently, some bladder contraction function exercises are performed through electrical stimulation therapy and biofeedback. Electrical stimulation therapy usually requires inserting electrodes into the vagina or rectum to target and stimulate the pelvic floor muscles. Inserting electrodes into the vagina or rectum can cause discomfort or pain. Current electrical stimulation therapy directly transmits current through the pelvic floor muscles to stimulate muscle contraction, making it impossible for patients to consciously exercise their pelvic floor muscles through their own movements. Furthermore, electrical stimulation can damage the skin on the surface of the rectum, leading to difficulties in later recovery.
[0004] Furthermore, while biofeedback can monitor the activity of pelvic floor muscles, it cannot effectively assist patients or guide them to perform effective bladder contraction exercises on their own. Biofeedback can only monitor and cannot use the subconscious reaction of the human body to perform Kegel exercises to contract the pelvic floor muscles and perform bladder contraction exercises.
[0005] Electrical stimulation and biofeedback training, as well as other large-amplitude physical exercises, can lead to dependence and make it impossible to perform bladder contraction exercises by contracting the pelvic floor muscles through Kegel exercises anytime and anywhere.
[0006] Meanwhile, the current practice of bladder contraction function training in hospitals requires guidance and teaching from medical staff. During guidance and teaching, patients need to perform actions on medical devices or use auxiliary equipment to perform bladder contraction function training. Medical devices used by multiple patients need to be disinfected by medical staff after each use, which increases the workload of medical staff.
[0007] Some patients do not actively cooperate when performing bladder contraction exercises, resulting in ineffective exercise and incorrect exercise methods that may lead to damage to other muscle groups. Summary of the Invention
[0008] The purpose of this application is to solve or at least alleviate the problems existing in the prior art.
[0009] To achieve the above objectives, the technical solution adopted by the present invention is as follows: a bladder contraction function training device for rectal cancer patients after surgery, including a base, a lifting support frame fixedly connected to the upper end face of the base, a treatment chair provided on the right side of the lifting support frame, and an adjustment frame provided on the left side of the lifting support frame;
[0010] A privacy adjustment mechanism is provided on the left side of the raised support frame.
[0011] The privacy adaptation adjustment mechanism is used to change the angle of the spiral chute column winding rope pulling bolt bending rod and the twin inclined plate squeezing U-shaped rod so that the cover cloth covers the patient's private parts and restrains the patient;
[0012] The upper surface of the treatment chair is equipped with a dirt-proof and isolation mechanism.
[0013] The anti-fouling isolation mechanism is used to generate friction between the rubber wheel and the rubber transfer groove, so that the rubber wheel and the winding roller rotate to wind up the used disposable perforated belt, thereby reducing the spread of disease.
[0014] The lower end of the treatment chair and the upper end of the adjustment frame are both equipped with a contraction stimulation mechanism:
[0015] The contraction function stimulation mechanism is used to inject air into the air chamber through the telescopic airbag to generate pressure, which pushes the magnetic piston plate and the magnetic stainless steel tactile rod to move upward to contact and stimulate the patient to perform bladder contraction exercises.
[0016] Optionally, the privacy adaptation adjustment mechanism further includes positioning slide rods, which are symmetrically and fixedly connected to the lower end face of the treatment chair. Positioning plates are slidably connected to the lower ends of the positioning slide rods, and the positioning plates are fixedly connected to the outer right side surface of the lifting support frame. Pressure tubes are symmetrically and fixedly connected to the lower end face of the treatment chair. The lower ends of the pressure tubes are sleeved on the outer surface of the upper end of the spiral sliding groove column. A power slide rod is slidably connected inside the groove of the spiral sliding groove column. The power slide rod is fixedly connected through and to the lower end of the pressure tube. A mounting cover is sleeved on the outer surface of the spiral sliding groove column. The lower ends of the mounting covers are fixedly connected to the inner surface of the lower end of the treatment chair. A booster spring is fixedly connected to the bottom of the mounting cover, and the upper end of the booster spring is fixedly connected to the lower end face of the pressure tube.
[0017] Optionally, each of the pressure tubes has a speed control hole at its lower end for slowly discharging gas from the gas chamber.
[0018] Optionally, the privacy adaptation adjustment mechanism further includes a positioning slide rod. The lower ends of the spiral slide columns are all fitted with a protective cover and a fixed winding wheel connected to the treatment chair. A pull rope is wound around the outer surface of each winding wheel, and one end of each pull rope is fixedly connected to a bolt bend. At least three positioning plates are slidably connected to the lower end of the bolt bend, and each positioning plate is fixedly connected to the upper surface of the base. A return spring is provided between the bolt bend and the positioning plates. A threaded sleeve is threadedly connected to the upper end of the bolt bend, and the twin inclined slot plate is rotatably connected to the outer surface of the threaded sleeve. The right end of the twin inclined plate is slidably connected to a U-shaped rod. The U-shaped rod is movably connected to the adjusting frame via a universal joint. A positioning triangle plate is rotatably connected to the right outer surface of the U-shaped rod. Adjusting rods are symmetrically fixed to both the front and rear sides of the positioning triangle plate. The right side of the adjusting rod is slidably connected to the groove of the triangular plate. A skeleton rod is fixedly connected to the upper surface of the triangular plate. The right outer surface of the skeleton rod is wrapped with a protective cloth. A gas spring is symmetrically rotatably connected to the lower end of the positioning triangle plate and the middle of the adjusting frame. An arc-shaped pedal is fixedly connected to the lower right side of the adjusting frame.
[0019] Optionally, the anti-fouling isolation structure further includes limiting rods, which are symmetrically and fixedly connected to the adjusting frame. A perforated groove plate is slidably connected to the outer surface of each limiting rod. A parallel displacement groove is formed through the perforated groove plate. A rubber displacement groove is formed at the end of the perforated groove plate away from the parallel displacement groove. A lever is slidably connected within each parallel displacement groove. A rubber wheel is fixedly connected to the end of each lever away from the treatment chair. The rubber wheel is placed within the perforated groove plate. The end of each lever away from the perforated groove plate is fixedly connected to both ends of the take-up roller. Both ends of the take-up roller are rotatably connected to the inner surface of the bottom of the treatment chair. A feeding roller is rotatably connected to the inner surface of the treatment chair cavity at the end away from the take-up roller. A disposable perforated tape is wound around the outer surfaces of the take-up roller and the feeding roller. An inlet hole is formed at the left end of the treatment chair, and an outlet hole is formed at the right end of the treatment chair.
[0020] Optionally, the contraction function stimulation mechanism further includes a constraint cylinder, which is symmetrically and fixedly connected to the outer surface of the skeleton rod. A base plate is fixedly connected to the middle of the inner surface of the constraint cylinder. A telescopic airbag is fixedly connected to the end of the base plate away from the treatment chair. A finger groove push plate is sleeved on the end of the telescopic airbag away from the base plate. Arc-shaped spring rods are slidably connected to both ends of the base plate. Both ends of the finger groove push plate are fixedly connected to the outer surface of the arc-shaped spring rods. A scale push plate is fixedly connected to the end of the arc-shaped spring rod away from the finger groove push plate.
[0021] Optionally, a multi-rod extrusion column is fixedly connected to one end face of the scale push plate near the finger groove push plate. An extrusion groove cylinder is slidably connected to the multi-rod extrusion column. A serrated groove is formed on the inner surface of the end of the extrusion groove cylinder away from the multi-rod extrusion column. A ramp block is fixedly connected to the inner surface of the end of the extrusion groove cylinder away from the serrated groove. A drive spring is fixedly connected to the end face of the multi-rod extrusion column near the serrated groove. Helical teeth are fixedly connected at equal intervals around the outer surface of the extrusion groove cylinder. An inner ring is fitted onto the outer surface of the extrusion groove cylinder, and a convex-concave retainer is formed through the inner ring. The groove, the convex and concave groove, is rotatably connected to a torsion spring protrusion rod. The outer surface of the end of the torsion spring protrusion rod away from the convex and concave groove is rotatably connected to a limiting component. The limiting component is fixedly connected to the outer surfaces of both sides of the inner ring. The outer surface of the middle end of the torsion spring protrusion rod is fixedly connected to an inclined block. The inner ring is slidably connected to a positioning spring rod. The outer surface of the end of the positioning spring rod away from the constraint cylinder is fixedly connected to a knob sleeve. The lower outer surface of the knob sleeve is fitted with a spring telescopic semi-circular groove support. The spring telescopic semi-circular groove support is fixedly connected to the outer surface of the skeleton rod.
[0022] Optionally, the end of the telescopic airbag away from the base plate is connected to an air supply pipe, and the end of the air supply pipe away from the telescopic airbag is connected to a T-junction pipe. The lower end of the T-junction pipe is connected to an air collection pipe, and the end of the air collection pipe away from the T-junction pipe is connected to an air chamber. A magnetic piston plate is slidably connected to the inner surface of the air chamber. An installation plate is fixedly connected to the upper end of the air chamber. The installation plate is fixedly connected to the lower chamber of the treatment chair. An internal threaded hole is fixedly connected to the middle of the installation plate. A protective tube is threadedly connected to the internal threaded hole. A magnetic stainless steel tactile rod is movably connected to the upper surface of the magnetic piston plate. The protective tube is sleeved on the outer surface of the magnetic stainless steel tactile rod. A cooling and positioning ball is sleeved on the outer surface of the protective tube. The cooling and positioning ball is fixedly connected to the middle of the lower end of the treatment chair.
[0023] Optionally, the cooling positioning ball is electrically connected to an external control panel, the magnetic stainless steel tactile rod is magnetically connected to the magnetic piston plate, and the scale push plate is symmetrically fixedly connected to a push rod for moving the knob sleeve on one end near the constraint cylinder.
[0024] Optionally, a partition strip is fixedly connected to one end face of the knob sleeve near the constraint cylinder, and a sliding plate is provided on the end face of the partition strip away from the knob sleeve. The lower edge of the sliding plate is fixedly connected to the left end of the spring telescopic semi-circular groove support. A one-way limiting double-opening plate is rotatably connected to the sliding plate at the position corresponding to the filing strip. The lower end of the scale push plate is provided as a spring telescopic plate for the left and right movement of the scale push plate.
[0025] Compared with the prior art, the beneficial effects of the present invention are:
[0026] (1) The magnetic stainless steel touch rod touches the patient's anus, causing the patient's anus to vasoconstrict and nerve endings stimulated by the cold magnetic stainless steel touch rod. The process of vasoconstriction involves the activation of the sympathetic nervous system. At the same time, the cold stimulation can also activate the nerve endings around the muscles, causing the muscles to tighten. Meanwhile, the patient's hands and forearms are restrained by restraint tubes, and the lower body is restrained by the skeleton rod and the covering cloth. When the patient is stimulated by the magnetic stainless steel touch rod, the patient feels uncomfortable from the cold magnetic stainless steel touch rod. In this way, the pelvic floor muscles can be contracted through the action of lifting the anus, thereby exercising the bladder contraction function.
[0027] (2) By using the pointer on the knob sleeve to point to the corresponding scale value and the coordination between other structures, the patient is effectively restricted. In order to recover faster, the patient is repeatedly stimulated by the magnetic stainless steel touch rod of the cooling ball in a single exercise to make him perform anal contraction. This generates pelvic floor muscle contraction and exercises bladder contraction function. This avoids the frequent use of objects with a temperature lower than the body surface to stimulate the anal skin, which would cause frostbite and decreased stimulation perception of the anal skin, and damage to the surrounding tissues, leading to irritation reactions, which may cause inflammation or other discomfort. By limiting the number of exercises, the patient can have a certain rest and relief time when adjusting the knob sleeve, and at the same time, it is beneficial to limit the frequency of the patient's exercise.
[0028] (3) The disposable perforated tape isolates some patients’ infectious diseases and bacteria, and can be changed as soon as they leave. This solves the problem of medical staff having to clean and disinfect after each patient’s use, and also isolates the risk of patients with infectious diseases from transmitting their bacteria and infectious diseases to others.
[0029] (4) Secondly, the speed at which the pressure tube moves downward within the protective cover will decrease slowly, thus avoiding the rapid descent of heavier patients sitting on the treatment chair, which would increase the patient's psychological pressure and prevent them from performing the correct movements effectively in subsequent bladder contraction exercises, thus failing to achieve the expected improvement in bladder contraction function. This also prevents the inability to perform the correct movements effectively in subsequent bladder contraction exercises, and prevents incorrect Kegel exercises from causing overuse or tension of certain muscles, leading to muscle fatigue. In the long run, this will affect the persistence and effectiveness of the exercise. In the wrong situation, it will lead to the incorrect distribution of abdominal pressure, increasing abnormal pressure on the pelvic floor and abdominal structures, which can reduce the additional pressure on the bladder and other organs.
[0030] (5) After covering the patient's private parts with a large amount of cloth, the area covered by the cloth can be adjusted slightly to further increase the coverage of the patient's private parts and effectively increase the patient's privacy and safety. At the same time, the frame rod and the cloth covering the patient's body effectively increase the feeling of being wrapped up. The feeling of being wrapped up can make people feel safe and comfortable. This feeling is usually related to a warm environment, warm clothing or a comfortable space, which helps to reduce anxiety and stress. Moreover, the feeling of being wrapped up can be used as a soothing method. When facing tension, anxiety or stress, the feeling of being wrapped up may help to relieve physical and psychological tension, thereby effectively relieving the patient's tension when exercising and treating, making it easier to concentrate on exercising bladder contraction. At the same time, the frame rod and the cloth covering the patient's body help to restrain the patient when exercising bladder contraction. When using the magnetic stainless steel tactile rod to stimulate the anus, it avoids the patient subconsciously getting up and moving their body a lot, which can lead to problems such as improper bladder contraction exercise. Attached Figure Description
[0031] The disclosure of this application will become more readily understood with reference to the accompanying drawings. It will be readily understood by those skilled in the art that these drawings are for illustrative purposes only and are not intended to limit the scope of protection of this application. Furthermore, similar numbers in the drawings are used to denote similar components, wherein:
[0032] Figure 1 This is a schematic diagram of the main three-dimensional structure of the present invention;
[0033] Figure 2 This is a three-dimensional structural diagram of the main body of the present invention viewed from below;
[0034] Figure 3 This is a cross-sectional three-dimensional structural diagram of the main body of the present invention;
[0035] Figure 4 for Figure 1 Enlarged view of the structure at point A in the middle;
[0036] Figure 5 This is a three-dimensional structural diagram of the pressure tube, mounting cover, and speed control hole of the present invention.
[0037] Figure 6 This is a cross-sectional view of the mounting cover and a three-dimensional structural diagram of the spiral sliding column of the present invention;
[0038] Figure 7 This is a three-dimensional cross-sectional view of the treatment chair and disposable perforated structure of the present invention.
[0039] Figure 8 for Figure 7 Enlarged view of the structure at point B in the middle;
[0040] Figure 9 for Figure 7 Enlarged view of the structure at point C;
[0041] Figure 10 This is a three-dimensional structural diagram of the hollowed-out groove plate, parallel displacement groove, and rubber wheel of the present invention;
[0042] Figure 11 This is a cross-sectional view of the hollow groove plate and a three-dimensional structural diagram of the rubber transfer groove of the present invention;
[0043] Figure 12 This is a schematic diagram of the three-dimensional structure of the constraint cylinder of the present invention;
[0044] Figure 13 This is a cross-sectional perspective view of the three-dimensional structure of the constraint tube of the present invention;
[0045] Figure 14 for Figure 13 Enlarged view of the structure at point D;
[0046] Figure 15 This is a three-dimensional structural diagram of the base plate and telescopic airbag of the present invention;
[0047] Figure 16 for Figure 15 Enlarged view of the structure at point E in the middle;
[0048] Figure 17 This is an exploded three-dimensional structural diagram of the multi-rod extrusion column, drive spring, and extrusion groove cylinder of the present invention.
[0049] Figure 18 This is a three-dimensional structural diagram of the inner ring and knob sleeve of the present invention;
[0050] Figure 19 for Figure 18 Enlarged view of the structure at point F in the middle;
[0051] Figure 20 This is a cross-sectional schematic diagram of the three-dimensional structure of the air chamber, magnetic piston plate, protective tube, and cooling positioning sphere of the present invention.
[0052] The diagram is labeled as follows: 1. Base; 2. Elevating support frame; 3. Treatment chair; 4. Adjustable frame;
[0053] Privacy adaptation adjustment mechanism; 501, positioning slide bar; 502, positioning plate; 503, pressure tube; 504, spiral slide column; 505, power slide bar; 506, mounting cover; 507, assist spring; 508, speed control hole; 509, winding wheel; 510, pull rope; 511, bolt bent rod; 512, positioning support plate; 513, rebound spring; 514, threaded sleeve; 515, double inclined slot plate; 516, U-shaped rod; 517, positioning triangle plate; 518, adjusting rod; 519, triangle slot plate; 520, frame rod; 521, cover cloth; 522, gas spring; 523, arc-shaped pedal;
[0054] Anti-pollution isolation mechanism; 601, limit rod; 602, hollow groove plate; 603, parallel displacement groove; 604, rubber displacement groove; 605, lever; 606, rubber wheel; 607, take-up roller; 608, feed roller; 609, disposable perforated strip; 610, inlet hole; 611, outlet hole;
[0055] Contraction-function stimulation mechanism; 701, constraint cylinder; 702, base plate; 703, telescopic airbag; 704, finger groove push plate; 705, arc-shaped spring rod; 706, graduated push plate; 707, multi-rod extrusion column; 708, extrusion groove cylinder; 709, serrated groove; 710, ramp groove block; 711, drive spring; 712, helical tooth; 713, inner ring; 714, convex and concave groove; 715, torsion spring protrusion rod; 716, limiting component; 717. 718. Inclined block; 719. Positioning spring rod; 720. Knob sleeve; 721. Spring telescopic semi-circular groove support; 722. Gas supply pipe; 723. T-pipe; 724. Gas collection pipe; 725. Gas chamber; 726. Magnetic piston plate; 727. Mounting plate; 728. Internal threaded hole; 729. Magnetic stainless steel tactile rod; 730. Protective tube; 731. Cooling positioning ball; 732. Spacing strip; 733. Slotting plate; 74. One-way limit double opening plate. Detailed Implementation
[0056] 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.
[0057] refer to Figure 1 The illustration shows a device for exercising bladder contraction function in rectal cancer patients after surgery, according to an embodiment of the present invention.
[0058] According to an embodiment of the present invention, a bladder contraction function training device for rectal cancer patients after surgery includes a base 1, a lifting support frame 2 fixedly connected to the upper end surface of the base 1, a treatment chair 3 arranged on the right side of the lifting support frame 2, and an adjustment frame 4 arranged on the left side of the lifting support frame 2.
[0059] In some embodiments:
[0060] A privacy adjustment mechanism is provided on the left side of the raised support frame 2.
[0061] The privacy adaptation adjustment mechanism is used to rewind the spiral chute column 504, pull the rope 510, pull the bolt bending rod 511, and squeeze the U-shaped rod 516 to change the angle so that the covering cloth 521 can cover the patient's private parts and restrain the patient.
[0062] Specifically, the privacy adjustment mechanism also includes positioning slide rods 501, which are symmetrically fixedly connected to the lower end face of the treatment chair 3. Positioning plates 502 are slidably connected to the lower end of each positioning slide rod 501, and each positioning plate 502 is fixedly connected to the outer right side surface of the lifting support frame 2. The purpose of the symmetrical arrangement of the positioning slide rods 501 is to stabilize the treatment chair 3 during its vertical descent when pressed down by the weight of the patient sitting down, preventing swaying and tilting. The lower end face of the treatment chair 3 is symmetrically fixedly connected to… A pressure tube 503 is fitted at its lower end onto the outer surface of the upper end of a spiral groove column 504. A power slide rod 505 is slidably connected inside the groove of the spiral groove column 504. The power slide rod 505 is fixedly connected to the lower end of the pressure tube 503. A mounting cover 506 is fitted on the outer surface of the spiral groove column 504. The lower end of the mounting cover 506 is fixedly connected to the inner surface of the lower end of the treatment chair 3. A booster spring 507 is fixedly connected to the bottom of the mounting cover 506. The upper end of the booster spring 507 is fixedly connected to the lower end face of the pressure tube 503.
[0063] Each pressure tube 503 has a speed control hole 508 at its lower end for slowly discharging gas from the air chamber 724. The purpose is that, since the protective cover 506 and the pressure tube 503 are sealed together, when the pressure tube 503 moves downwards, the gas in the air chamber 724 will be discharged more slowly due to the speed control hole 508, causing the pressure tube 503 to descend slowly, and consequently, the treatment chair 3 will also descend slowly, thus buffering the descent of the treatment chair 3 as the patient sits down. The privacy adjustment mechanism also includes a positioning slide rod 519. Each spiral slide column 504 has a winding wheel 509 fixedly connected to the protective cover 506 and the treatment chair 3 at its lower end. A pull rope 510 is wound around the outer surface of each winding wheel 509, and one end of each pull rope 510 is fixedly connected to a bolt. On the bent rod 511, at least three positioning plates 512 are slidably connected to the lower end of the bolt bent rod 511. All positioning plates 512 are fixedly connected to the upper surface of the base 1. A return spring 513 is provided between the bolt bent rod 511 and the positioning plates 512. A threaded sleeve 514 is threadedly connected to the upper end of the bolt bent rod 511. A double inclined slot plate 515 is rotatably limited and connected to the outer surface of the threaded sleeve 514. The purpose is to prevent the double inclined slot plate 515 from moving up and down on the outer surface of the threaded sleeve 514. By rotating the threaded sleeve 514, one end of the double inclined slot plate 515 will move downwards, causing the tilt angle of the double inclined slot plate 515 to change, facilitating adjustment of U according to the tilt angle of the double inclined slot plate 515. The folding angle of the U-shaped rod 516 adapts to patients of different body shapes. The right end of the double-sloping groove plate 515 is slidably connected to the U-shaped rod 516. The U-shaped rod 516 is movably connected to the adjusting frame 4 via a universal joint. A positioning triangle plate 517 is securely and rotatably connected to the outer right side of the U-shaped rod 516. Adjusting rods 518 are symmetrically and fixedly connected to both sides of the positioning triangle plate 517. The right side of the adjusting rod 518 is slidably connected to the groove of the triangular groove plate 519. The purpose is that if the folding of the U-shaped rod 516 causes the covering cloth 521 to be in the wrong position, the triangular groove plate 519 can be pulled towards the patient by force. Because the connection between the triangular groove plate 519 and the adjusting rod 518 is relatively tight, it effectively prevents slight pulling of the triangular groove plate 519 from causing the covering cloth 521 to be in the wrong position. Regarding the issue of movement of the corner groove plate 519, a skeleton rod 520 is fixedly connected to the upper end of the corner groove plate 519. The outer right side surface of the skeleton rod 520 is wrapped and connected to the cover cloth 521. A gas spring 522 is symmetrically and rotatably connected to the lower end of the positioning triangle plate 517 and the middle of the adjusting frame 4. The purpose is that when the right end of the U-shaped rod 516 moves downward, it can support the positioning triangle plate 517 in a horizontal and straight state. When the positioning triangle plate 517 is manually pushed so that the cover cloth 521 is in an upward and vertical state, it can support the positioning triangle plate 517 and prevent the positioning triangle plate 517 from rotating due to an unstable connection with the U-shaped rod 516. An arc-shaped pedal 523 is fixedly connected to the lower right side of the adjusting frame 4.
[0064] The technical problem addressed is that, as is well known, pelvic floor muscles are contracted through Kegel exercises to improve bladder contraction function. These pelvic floor muscles are a group of muscles that support the bladder and other abdominal organs, surrounding the bottom of the bladder and rectum. These muscles help maintain urethral tension, preventing accidental urine leakage, and are also related to the coordination and control of urination. Through Kegel exercises, patients can consciously strengthen their pelvic floor muscles, improving bladder support and control. This is especially important for patients with bladder control problems due to surgery, nerve damage, or other reasons. Further stimulation of the pelvic floor muscles with other instruments to improve bladder contraction function requires removing pants and exposing the anus. During the exercise, patient privacy must be ensured. The weight of the patient sitting on the treatment chair 3 causes the U-shaped bar 516 to move the covering cloth 521 to cover the patient's private parts, reducing psychological pressure due to privacy issues and preventing improper form during exercise. When the patient is not sitting on the treatment chair 3, the adjustment frame 4 and U-shaped bar 516 are in their initial state to facilitate easy getting on and off the chair, reducing difficulties for the patient.
[0065] Please refer to Figure 1 , Figure 4 As shown, preferably, the twin inclined slot plate 515 is composed of two straight slot plates that are far apart from each other on the adjusting frame 4 and a straight rod connecting the two straight slot plates. The straight slot plates are placed at an inclination of 45 to 65 degrees. The purpose is to use the inclination to compress and fold the U-shaped rod 516 that slides in the straight slot plates. At the same time, the straight rod used to connect the two straight slot plates has a threaded sleeve 514 at its middle end for limiting connection. In the engagement state, the straight rod can only rotate on the outer surface of the threaded sleeve 514 and cannot move up and down. The purpose is to rotate the threaded rod 514 so that the straight rod can drive one end of the two straight slot plates to be raised and lowered to adjust the inclination angle of the straight slot plates.
[0066] In some embodiments, the upper surface of the treatment chair 3 is provided with a dirt-proof and barrier mechanism:
[0067] A contamination prevention and isolation mechanism is used to generate friction between the rubber wheel 606 and the rubber transfer groove 604, so that the rubber wheel 606 and the winding roller 607 rotate to wind up the used disposable perforated belt 609, thereby reducing the spread of disease.
[0068] Specifically, the anti-fouling isolation structure also includes a limiting rod 601, which is symmetrically and fixedly connected to the adjusting frame 4. A perforated groove plate 602 is slidably connected to the outer surface of the limiting rod 601. A parallel displacement groove 603 is formed through the perforated groove plate 602. A rubber displacement groove 604 is formed at the end of the perforated groove plate 602 away from the parallel displacement groove 603. A lever 605 is slidably connected within each parallel displacement groove 603. A rubber wheel 606 is fixedly connected to the end of the lever 605 away from the treatment chair 3. The purpose is to allow the rubber wheel 606 to move downwards without rotating when it is located to the right of the parallel displacement groove 603, and to rotate when it moves upwards to the left of the parallel displacement groove 604 due to friction, thereby controlling the winding roller 607. The frequency of winding disposable perforated tape 609, the rubber wheel 606 is placed in the hollow groove plate 602, the end of the lever 605 away from the hollow groove plate 602 is fixedly connected to the front and rear ends of the take-up roller 607, the front and rear ends of the take-up roller 607 are rotatably connected to the inner surface of the bottom of the treatment chair 3, the inner surface of the end of the treatment chair 3 away from the take-up roller 607 is rotatably connected to the feed roller 608, the outer surface of the take-up roller 607 and the feed roller 608 is wrapped with disposable perforated tape 609, the purpose is that the disposable perforated tape 609 has a hole in the middle that matches the magnetic stainless steel touch rod 728, so that the magnetic stainless steel touch rod 728 can be extended. The left end of the treatment chair 3 has an inlet hole 610 and the right end of the treatment chair 3 has an outlet hole 611.
[0069] The technical problem addressed is that, as is well known, some treatment instruments used in patient care come into direct contact with the patient's private parts during treatment. If disinfection is inadequate, there is a risk of transmitting other bacteria and infectious diseases, which can lead to patient infection, especially when in direct contact with surfaces like chairs. Bacteria and viruses can enter the body through the anus or minor wounds. To avoid these problems, some medical institutions regularly disinfect to ensure no bacteria remain on the surface and reduce the spread of bacteria and infectious diseases. However, when there are many patients using the equipment, medical staff need to disinfect frequently. To prevent patients from contracting bacteria and infectious diseases and to reduce the frequency of disinfection for medical staff, the used disposable perforated tape 609 is automatically wound up by the winding roller 607. During winding, the unused disposable perforated tape 609 on the unloading roller 608 is pulled and laid flat on the seat cushion of the treatment chair 3.
[0070] Please refer to Figure 10 , Figure 11As shown, preferably, the perforated groove plate 602 consists of a parallel displacement groove 603 in the shape of a parallelogram and a rubber transfer groove 604 made of semi-circular rubber material. The main effect is that when the treatment chair 3 moves downward, it drives the lever 605 to move downward from the upper end of the right groove of the parallel displacement groove 603 to the inclined groove that tilts to the left at the lower end of the parallel displacement groove 603. The lever 605 can squeeze the inclined groove that tilts to the left, so that the right side of the entire perforated groove plate 602 moves. The lever 605 drives the rubber wheel 606 to contact the rubber transfer groove 604 to generate friction. When the treatment chair 3 rises, it will cause the lever and the rubber wheel 606 to move upward. The rubber wheel 606 rotates due to friction with the rubber transfer groove 604. The purpose is to control the intermittent rotation of the rubber wheel 606.
[0071] In some embodiments, the lower end of the treatment chair 3 and the upper end of the adjustment frame 4 are jointly provided with a contraction function stimulation mechanism:
[0072] The contraction function stimulation mechanism is used to inject air into the air chamber 724 through the telescopic airbag 703 to generate pressure, thereby pushing the magnetic piston plate 725 and the magnetic stainless steel tactile rod 728 to move upward to contact and stimulate the patient to perform bladder contraction exercises.
[0073] Specifically, the contraction function stimulation mechanism also includes a restraint cylinder 701, which is symmetrically fixedly connected to the outer surface of the skeleton rod 520. A base plate 702 is fixedly connected to the middle of the inner surface of the restraint cylinder 701. A telescopic airbag 703 is fixedly connected to the end of the base plate 702 away from the treatment chair 3. A finger groove push plate 704 is sleeved on the end of the telescopic airbag 703 away from the base plate 702. The purpose is that when the patient exercises, both the forearm and hand are placed inside the restraint cylinder 701, thereby preventing the magnetic stainless steel tactile rod 728 from stimulating the patient's anus and causing the patient to perform Kegel exercises to promote the contraction of the pelvic floor muscles and exercise the bladder contraction function. When the anus is stimulated by touch in a reflexive state, arc-shaped spring rods 705 are slidably connected to both ends of the base plate 702. The finger groove push plate 704 is fixedly connected to the outer surface of the arc-shaped spring rods 705 at both ends. A scale push plate 706 is fixedly connected to the end of the arc-shaped spring rod 705 away from the finger groove push plate 704. The purpose of the scale push plate 706 is to mark the scale value so that medical staff can observe the number of times the anus is stimulated by the magnetic stainless steel tactile rod 728. At the same time, two push rods are symmetrically arranged on the end of the scale push plate 706 near the base plate 702 so that the knob sleeve 719 can be moved in the same direction after the multi-rod squeezing column 707 moves.
[0074] A multi-rod extrusion column 707 is fixedly connected to one end face of the scale push plate 706 near the finger groove push plate 704. An extrusion groove cylinder 708 is slidably connected to the multi-rod extrusion column 707. A serrated groove 709 is formed on the inner surface of the end of the extrusion groove cylinder 708 away from the multi-rod extrusion column 707. A ramp block 710 is fixedly connected to the inner surface of the end of the extrusion groove cylinder 708 away from the serrated groove 709. A drive spring 711 is fixedly connected to the end face of the multi-rod extrusion column 707 near the serrated groove 709. Helical teeth 712 are fixedly connected at equal intervals around the outer surface of the extrusion groove cylinder 708. An inner ring 713 is fitted onto the outer surface of the extrusion groove cylinder 708. A convex-concave groove 713 is formed around and through the inner ring 713. 14. A torsion spring protrusion rod 715 is rotatably connected through the convex and concave groove 714. The outer surface of the end of the torsion spring protrusion rod 715 away from the convex and concave groove 714 is rotatably connected to a limiting member 716. The limiting member 716 is fixedly connected to the outer surfaces of both sides of the inner ring 713. An inclined block 717 is fixedly connected to the outer surface of the middle end of the torsion spring protrusion rod 715. A positioning spring rod 718 is slidably connected around the inner ring 713. A knob sleeve 719 is fixedly connected to the outer surface of the end of the positioning spring rod 718 away from the constraint cylinder 701. A spring telescopic semi-circular groove support 720 is sleeved on the lower outer surface of the knob sleeve 719. The spring telescopic semi-circular groove support 720 is fixedly connected to the outer surface of the skeleton rod 520.
[0075] The end of the telescopic airbag 703 away from the base plate 702 is connected to an air supply pipe 721. The ends of the air supply pipes 721 away from the telescopic airbag 703 are each connected to a three-way pipe 722. The lower end of the three-way pipe 722 is connected to an air collecting pipe 723. The end of the air collecting pipe 723 away from the three-way pipe 722 is connected to an air chamber 724. A magnetic piston plate 725 is slidably connected to the inner surface of the air chamber 724. A mounting plate 726 is fixedly connected to the upper end of the air chamber 724. The mounting plate 726 is fixedly connected to the lower chamber of the treatment chair 3. An internal threaded hole 727 is fixedly connected to the middle of the mounting plate 726. A protective tube 729 is threadedly connected to the internal threaded hole 727. A magnetic piston plate 725 is movably connected to the upper surface of the magnetic piston plate 725. A magnetic stainless steel tactile rod 728 is attached to a protective tube 729, which is fitted onto the outer surface of the magnetic stainless steel tactile rod 728. A cooling positioning ball 730 is fitted onto the outer surface of the protective tube 729. The purpose is that the cooling positioning ball 730 and the upper part of the protective tube 729 combine to form a hemispherical shape. When the patient sits on the treatment chair 3, in order to facilitate the patient's accurate alignment of the anus with the hole opened on the disposable perforated tape 609, the patient can effectively perceive whether he is sitting in the correct position. At the same time, a cooling ring is provided on the inner ring surface of the cooling positioning ball 730 to facilitate the cooling of the magnetic stainless steel tactile rod 728. The cooling positioning ball 730 is fixedly connected to the middle of the lower end of the treatment chair 3.
[0076] The cooling positioning ball 730 is electrically connected to the external control panel. The magnetic stainless steel tactile rod 728 is magnetically connected to the magnetic piston plate 725. A push rod for moving the knob sleeve 719 is symmetrically fixed to one end of the scale push plate 706 near the constraint cylinder 701. A partition strip 731 is fixedly connected to one end of the knob sleeve 719 near the constraint cylinder 701. A sliding groove plate 732 is provided on the end of the partition strip 731 away from the knob sleeve 719. The sliding groove plate 732 is located below... The end edge is fixedly connected to the left end of the spring telescopic semi-circular groove support 720. The unidirectional limiting double opening plate 733 is rotatably connected to the corresponding position of the sliding groove plate 732 and the filing bar 731. The lower end of the scale push plate 706 is set as a spring telescopic plate for the scale push plate 706 to move left and right. The purpose is that the unidirectional limiting double opening plate 733 can only rotate in one direction towards the partition bar 731 and cannot rotate away from the partition bar 731 in order to control the number of times the telescopic airbag 703 is squeezed.
[0077] The technical problem addressed is that, as is well known, Kegel exercises can stimulate the contraction of the pelvic floor muscles and thus train bladder contraction. However, some patients are unable to perform Kegel exercises voluntarily or do not know how to perform them. To better assist patients in performing Kegel exercises, a magnetic stainless steel tactile rod 728, cooled by a cooling positioning ball 730, is placed on the patient's anus. Because the anus has relatively sensitive nerve endings, it generates sensation. When the cool magnetic stainless steel tactile rod 728 comes into contact with the warm skin of the anus, the body may react to this temperature difference. This reaction may include nerve impulses, which are transmitted to the brain, causing corresponding sensations, thus prompting the patient to perform Kegel exercises to relieve discomfort in the anal skin.
[0078] Please refer to Figure 16 , Figure 15 As shown, preferably, the sliding plate 732 is configured with a slot corresponding to the inclined block, and the partition strip 731 is offset forward at the edge of the inner wall of the slot of the sliding plate 732. The purpose is that when the scale push plate 706 moves towards the constraint cylinder 701, the push rod provided on the scale push plate 706 will push the knob sleeve 719 to move in the same direction. When the knob sleeve 719 moves, it passes through the slots opened on the sliding plate 732 one by one and then passes through the next slot. After the partition strip 731 passes through the one-way limiting double opening plate 733, the partition strip 731 cannot pass out of the slot of the sliding plate 732 due to the one-way opening principle of the one-way limiting double opening plate 733. This can effectively limit the number of times the magnetic stainless steel tactile rod 728 stimulates the patient, and at the same time limit the degree of rotation of the inner ring 713.
[0079] Working principle:
[0080] Reference Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 Gravity-driven body positioning restrictions and privacy obstruction
[0081] First, the patient removes all lower garments in an empty treatment room to allow the magnetic stainless steel tactile rod 728 to stimulate the anus, causing the patient to perform anal sphincter contractions, which in turn strengthens the pelvic floor muscles and exercises the bladder. Then, the patient enters the device in the easy-entry mode while seated on the treatment chair 3. Using the patient's weight, the device moves vertically downwards on the positioning plate 502 via the positioning slide rod 501. Simultaneously, the pressure tube 503 moves downwards with the patient. As the tube 503 moves downward, the pressure tube 503 slides through the power slide rod 505 and presses the spiral groove on the outer ring surface of the spiral groove column 504. When the pressure tube 503 drives the power slide rod 505 to press the spiral groove downward, the spiral groove column 504 rotates. Simultaneously, as the pressure tube 503 slides downward within the mounting cover 506, it compresses the assist spring 507, facilitating the patient's removal from the treatment chair 3 after treatment. The assist spring rebound 507 pushes the pressure tube 503 upward to return to its original state. The pressure tube 503, within the mounting cover 506... During the downward movement of the device 6, the gas inside the protective cover 506 is squeezed downward by the pressure tube 503 and slowly discharged from the speed control hole 508. The speed control hole 508 is relatively small, which limits the flow rate and speed of the gas. At the same time, the gas inside the protective cover 506 cannot be discharged quickly due to the small opening of the speed control hole 508, resulting in a pressure difference between the inside and outside. The pressure tube 503 then generates a certain resistance, increasing the difficulty for the gas to pass through the speed control hole 508. As a result, the downward movement speed of the pressure tube 503 inside the protective cover 506 will decrease slowly. This avoids the rapid descent of heavier patients sitting on the treatment chair 3, which would increase the patient's psychological pressure and prevent them from being unable to perform the correct movements in subsequent bladder contraction exercises. It also prevents incorrect Kegel exercises from causing overuse or tension of certain muscles, leading to muscle fatigue. In the long run, this will affect the persistence and effectiveness of the exercises. Furthermore, it prevents incorrect abdominal pressure distribution under incorrect conditions, which would increase abnormal pressure on the pelvic floor and abdominal structures. This can reduce the additional pressure on the bladder and other organs.
[0082] When the spiral chute column 504 rotates, it synchronously drives the winding wheel 509 to rotate. The winding wheel 509 winds up the unwound pull rope 510. As the pull rope 510 is wound up, its length continuously shortens. During this shortening process, the pull rope 510 continuously pulls the bolt bend 511 to slide to the right on the positioning plate 512. During the movement, it compresses the rebound spring 513 on the bolt bend 511. When the bolt bend 511 is pulled to the right, it synchronously drives the twin inclined chute plate 515 to move in the same direction. During the movement of the twin inclined chute plate 515, it compresses the sliding rods on both sides of the U-shaped rod 516 by tilting downward on the left and upward on the right, so that the U-shaped rod 516... The U-shaped rod 516 rotates downwards to the right around the universal joint connecting it to the adjusting frame 4, reaching a horizontal position. Simultaneously, the U-shaped rod 516 moves the frame rod 520 and the covering cloth 521 together, covering the patient's private parts and other areas. If the angle and length of the covering cloth 521 are unsatisfactory, the patient and medical staff can manually pull the triangular groove plate 519 to increase the distance between the positioning triangular plate 517 and the triangular groove plate 519. This further moves the frame rod 520 and the covering cloth 521 towards the patient. To adjust the vertical angle of the frame rod 520 and the covering cloth 521, the positioning triangular plate 517 can be forcefully bent. 17. Rotation occurs on the outer wall of the U-shaped rod 516. Because the positioning triangular rod and the U-shaped rod 516 are tightly connected, the force of the tight fit between the positioning triangular rod and the U-shaped rod 516 after rotation, along with the support of the air spring 522, allows the patient's hands to rest completely on the skeleton rod 520. Therefore, after the covering cloth 521 is extensively covered over the patient's private parts, the area covered by the covering cloth 521 can be slightly adjusted, further increasing the coverage of the patient's private parts and effectively increasing the patient's privacy and security. At the same time, the skeleton rod 520 and the covering cloth 521 effectively increase the feeling of being enveloped, which makes people feel safe and comfortable. Feelings are often associated with a warm environment, warm clothing, or a comfortable space, which helps reduce anxiety and stress. The feeling of being wrapped up can also serve as a soothing tool. When facing tension, anxiety, or stress, the feeling of being wrapped up may help relieve physical and psychological tension, thereby effectively alleviating the patient's anxiety during exercise therapy. This makes it easier to focus on bladder contraction exercises. At the same time, the frame rod 520 and the covering cloth 521 covering the patient help restrain the patient when using the magnetic stainless steel tactile rod 728 to stimulate the anus during bladder contraction exercises, preventing the patient from subconsciously getting up and moving their body significantly, which could lead to problems such as improper bladder contraction exercises.
[0083] Reference Figure 7 , Figure 8 , Figure 9 , Figure 10 , Figure 11Infectious disease isolation and disposable perforated tape 609 self-recycling
[0084] As the patient sits down and the treatment chair 3 descends, the levers 605, which are rotatably connected to the front and rear sides of the left end of the treatment chair 3, simultaneously move downwards within the right groove of the parallel displacement groove 603. After the levers 605 reach the bottom within the right groove of the parallel displacement groove 603, they press the entire hollowed-out groove plate 602 to the right on the outer surface of the limiting rod 601, thus moving the levers 605 to the left through the leftward tilt of the bottom of the parallel displacement groove 603. At this point, the levers 605 move into the left groove of the parallel displacement groove 603. The rubber wheel 606 then engages with the set... The rubber sliding groove 604 on the left side of the hollowed-out groove plate 602 contacts the rubber sliding groove 604. When the lever 605 slides downward from the right side of the parallel displacement groove 603, the surface of the lever 605 is too slippery to rotate due to friction. When the patient gets up from the treatment chair 3 and removes the treatment chair 3 from the pressure of the patient's weight, the treatment chair 3 pushes the pressure tube 503 upward through the rebound force of the assist spring 507. The pressure tube 503 drives the treatment chair 3 to return to its original position. At the same time as the treatment chair 3 returns to its original position, the rubber wheel 606 contacts the rubber sliding groove 604. Friction is generated between 04, causing the rubber wheel 606 to rotate. The rotation of the rubber wheel 606 drives the lever 605 to rotate. When the rubber wheel 606 and the lever 605 move from the left to the uppermost end of the parallel displacement groove 603, they will squeeze the rightward-sloping groove at the uppermost end of the parallel displacement groove 603. This causes the hollow groove plate 602 to shift to the left on the outer surface of the limiting rod 601, causing the rubber wheel 606 to disengage from the rubber displacement groove 604 and return the lever 605 to its original position. The lever 605 then drives the take-up roller 607. As the take-up roller 607 rotates, the disposable perforated tape 609 used by the previous patient is passed through the inlet hole 610 and rotated and wound up. At the same time, the unused disposable perforated tape 609 is pulled out from the feed roller 608 and the outlet hole 611 and covered on the surface of the treatment chair 3 seat cushion, so as to achieve the purpose of changing it as soon as the patient leaves. This solves the tedious problem of medical staff having to clean and disinfect after each patient's use, and at the same time isolates the risk of patients with infectious diseases transmitting their bacteria and infectious diseases to others.
[0085] Reference Figure 12 , Figure 13 , Figure 14 , Figure 15 , Figure 16 , Figure 17 , Figure 18 , Figure 19 Repetition limits and prevention of overtraining:
[0086] After the skeleton rod 520 and the covering cloth 521 cover the patient's private parts, the patient places their hands and forearms into the restraint cylinder 701. After insertion, any fingers are engaged in the finger grooves provided on both sides of the finger groove push plate 704. Then, the medical staff manually rotates and adjusts the knob sleeves 719 provided on both sides of the skeleton rod 520. The rotation of the knob sleeves 719 drives the inner ring 713 provided on the inner side to simultaneously drive the inclined block 717 to rotate and move. When the inclined block 717 rotates and moves, it does not collide with the inclined teeth 712, and the inclined teeth 712 and the inclined surface of the inclined block 717 are in contact with each other. Because the inclined teeth 712 are fixed to the outer surface of the compression groove cylinder 708 and cannot move, the inclined block 717 is rotatably connected to the inner ring 713. When the inclined block 717 rotates and moves, the inclined block 717 is engaged by the inclined teeth 712. 12. The contact causes rotation. When rotating, the torsion spring protrusion rod 715 rotates in the same direction in the convex and concave groove 714. When the inclined block 717 rotates, it is contacted by the inclined tooth 712 and rotates away from the inclined tooth 712 so that the knob sleeve 719 can adjust the number of times the magnetic stainless steel tactile rod 728 stimulates the anus to perform anal contraction. When the knob sleeve 719 is adjusted to the appropriate value marked on the scale push plate 706, the knob sleeve 719 simultaneously drives the partition strip 731 to be simultaneously adjusted to the hole opened by the sliding groove plate 732 that is consistent with the scale set on the scale push plate 706. Note: The scale set on the scale push plate 706 and the hole opened by the sliding groove plate 732 are both corresponding to the position of the inclined tooth 712 set on the outer surface of the extrusion groove cylinder 708.
[0087] After adjusting the corresponding scale and the number of repetitions required per set, the patient pushes the finger groove push plate 704 towards the patient with both hands. Simultaneously, the finger groove push plate 704 compresses the telescopic airbag 703. The finger groove push plate 704 also moves the arc-shaped spring rod 705 in the same direction, causing it to slide closer to the patient on the base plate 72. This motion simultaneously moves the scale push plate 706 in the same direction, which in turn moves the multi-rod compression column 707 towards the patient. During this movement, the sliding rod on the outer ring surface of the multi-rod compression column 707 slowly enters the straight groove formed between the inclined groove blocks 710, continuing until it reaches the middle and bottom. The sliding rod on the outer ring surface of the multi-rod compression column 707 then compresses... The pressure of the serrated groove 709 causes the compression cylinder 708 to rotate. This rotation drives the inclined groove to rotate and move, its vertical plane contacting and pushing the inclined block 717. The inclined block 717 then rotates the inner ring 713. After the multi-rod compression column 707 has completely moved to the bottom of the compression cylinder 708, the inner ring 713 drives the knob sleeve 719 to rotate, causing the pointer on the knob sleeve 719 to move back one graduation, corresponding to the scale push plate 706. Simultaneously, as the multi-rod compression column 707 slides into the inclined groove block 710, the scale push plate 706 pushes the knob sleeve 719 and the positioning spring rod 718, located towards one end of the knob sleeve 719, to slide on the inner ring 713 and move towards the patient. At this time, the spacer on the knob sleeve 719... The stop bar 731 passes through the corresponding slot on the shifting plate 732. When the multi-rod compression column 707 contacts the serrated groove 709, because the serrated groove 709 is sloped, the multi-rod compression column 707 moves into the compression cylinder 708 and compresses the serrated groove 709, causing the compression cylinder 708 to rotate. The rotation of the compression cylinder 708 will drive the inner ring 713 to rotate through the helical teeth 712 and the helical block 717. The rotation of the inner ring 713 will simultaneously drive the stop bar 731 to the slot of the next shifting plate 732 at the other end that passes through the shifting plate 732. Then, the patient releases the finger groove push plate 704. Through the spring on the arc-shaped spring rod 705 and the rebound of the drive spring 711, the multi-rod compression column 707 and the scale push plate 706 are moved away from the patient. Returning to its original position, as the scale push plate 706 moves towards the patient, the arc-shaped spring rod 705 simultaneously drives the finger groove push plate 704 to move. The telescopic airbag 703, due to its internal spring, rebounds to its original state. Simultaneously, as the multi-rod compression column 707 is pushed away from the patient by the driving spring 711, the spring on the outer surface of the positioning spring rod 718, compressed, rebounds and pushes the knob sleeve 719 back to its original position. The partition strip 731 on the knob sleeve 719, located at the slot of the next sliding plate 732, passes through the slot, positioning the partition strip 731 between the sliding plate 732 and the knob sleeve 719. Following these steps, the finger groove push plate 704 is pushed a set number of times to cause the telescopic airbag 703 to extend and retract.The set number of exercise repetitions can be completed. When the partition bar 731 is located at the middle of the upper end of the sliding plate 732, it represents the end of the exercise set by rotating the knob sleeve 719. As the patient continues to exercise, the partition bar 731 will move to the middle of the upper end of the sliding plate 732 after rotating the knob sleeve 719 to the set number. At this time, the partition bar 731 is located between the sliding plate 732 and the knob sleeve 719. When the patient pushes the finger groove push plate 704 inward, causing the push rod on the scale push plate 706 to push the knob sleeve 719, the partition bar 731 on the knob sleeve 719 is blocked by the one-way limiting double opening plate 733, preventing the partition bar 731 from being pushed open and moving out. If the partition bar 731 needs to pass through the sliding plate 732... To adjust the position of the knob sleeve 719, rotate it until the pointer on the knob sleeve 719 points to the corresponding scale value. This effectively limits the patient's movement. For faster recovery, during a single set of exercises, the cooling magnetic stainless steel tactile rod 728, used to cool the positioning ball 730, repeatedly stimulates the anus, causing the patient to perform Kegel exercises. This generates pelvic floor muscle contraction and exercises bladder contraction function. This avoids the risk of frostbite and decreased stimulation sensitivity caused by frequently stimulating the anal skin with objects that are lower than the body surface temperature, which could damage the surrounding tissues. It also avoids excessive training that could lead to irritation, inflammation, or other discomfort. This allows the patient time to rest and recover while adjusting the knob sleeve 719, and helps limit the frequency of the patient's exercises.
[0088] When the patient pushes the finger groove push plate 704, causing its telescopic airbag 703 to retract, the gas inside the retracted airbag is discharged from the gas delivery pipe 721 to the three-way pipe 722 and collected in the gas collection pipe 723. After being transported from the gas collection pipe 723 to the air chamber 724, the air pressure inside the air chamber 724 gradually increases. This increase in gas pressure causes the magnetic piston plate 725 to move upwards within the air chamber 724. During this upward movement, the magnetic stainless steel tactile rod 728, magnetically attached to the magnetic piston plate 725, is pushed upwards through the holes in the protective tube 729 and the disposable perforated strip 609 until it touches the patient's anus, causing the patient's anus to feel cool. The cool magnetic stainless steel tactile rod 728 causes vasoconstriction and stimulation of nerve endings. The process of vasoconstriction involves the activation of the sympathetic nervous system. At the same time, the cold stimulation can also activate the nerve endings around the muscles, causing the muscles to tighten. Meanwhile, the patient's hands and forearms are restrained by the restraint cylinder 701, and the lower body is restrained by the frame rod 520 and the covering cloth 521. When the patient is stimulated by the magnetic stainless steel tactile rod 728, the patient will feel discomfort from the cold magnetic stainless steel tactile rod 728 by performing anal sphincter contraction. This can achieve the goal of exercising the bladder contraction function by contracting the pelvic floor muscles through the anal sphincter contraction.
[0089] Reference Figure 20 Cooling and stimulating anal sphincter contraction and detachable disinfection function
[0090] After the patient has finished using the device, since the magnetic stainless steel touch stick 728 directly contacts the patient's private parts, and the magnetic stainless steel touch stick 728 is also in direct contact with the protective tube 729, after the patient has finished using it, the medical staff will push the disposable opening tape 609 to one side, and then twist the protective tube 729 mounted on the cooling positioning ball 730 to remove the protective tube 729 from the internal threaded hole 727 on the mounting plate 726. Then the magnetic stainless steel touch stick 728 will be removed from the magnetic piston plate 725 so that the medical staff can remove the magnetic stainless steel touch stick 728 and the protective tube 729 for disinfection after use, in order to prevent the risk of infectious disease infection from multiple patients directly using it.
[0091] 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 training bladder contraction function in rectal cancer patients after surgery, characterized in that: Includes a base (1), a lifting support frame (2) is fixedly connected to the upper end of the base (1), a treatment chair (3) is provided on the right side of the lifting support frame (2), and an adjustment frame (4) is provided on the left side of the lifting support frame (2). A privacy adjustment mechanism is provided on the left side of the raised support frame (2); The privacy adaptation adjustment mechanism is used to spiral chute column (504) wind up pull rope (510) to pull bolt bend rod (511) and twin inclined chute plate (515) to squeeze U-shaped rod (516) to change angle, so that cover cloth (521) covers the patient's private parts and restrains the patient; The upper surface of the treatment chair (3) is provided with a pollution-proof and isolation mechanism; The anti-fouling isolation mechanism is used to generate friction between the rubber wheel (606) and the rubber transfer groove (604) to realize the rotation of the rubber wheel (606) and the winding roller (607) to wind up the disposable perforated belt (609) after use. The lower end of the treatment chair (3) and the upper end of the adjustment frame (4) are both equipped with a contraction function stimulation mechanism; The contraction function stimulation mechanism includes a constraint cylinder (701), which is symmetrically fixedly connected to the outer surface of the skeleton rod (520). A base plate (702) is fixedly connected to the middle of the inner surface of the constraint cylinder (701). A telescopic airbag (703) is fixedly connected to one end of the base plate (702) away from the treatment chair (3). A finger groove push plate (704) is sleeved on one end of the telescopic airbag (703) away from the base plate (702). An arc-shaped spring rod (705) is slidably connected to both ends of the base plate (702). The two ends of the finger groove push plate (704) are fixedly connected to the outer surface of the arc-shaped spring rod (705). A scale push plate (706) is fixedly connected to one end of the arc-shaped spring rod (705) away from the finger groove push plate (704). The telescopic airbag (703) injects air into the air chamber (724) to generate pressure, which pushes the magnetic piston plate (725) and the magnetic stainless steel tactile rod (728) to move upward to stimulate the patient to perform bladder contraction exercises.
2. The device for training bladder contraction function in rectal cancer patients after surgery according to claim 1, characterized in that: The privacy adaptation adjustment mechanism also includes a positioning slide rod (501), which is symmetrically fixedly connected to the lower end face of the treatment chair (3). A positioning plate (502) is slidably connected to the lower end of each positioning slide rod (501). The positioning plates (502) are fixedly connected to the outer right side surface of the lifting support frame (2). A pressure tube (503) is symmetrically fixedly connected to the lower end face of the treatment chair (3). The lower end of each pressure tube (503) is sleeved on the outer upper surface of the spiral groove column (504). A power slide rod (505) is slidably connected inside the groove of the slide column (504). The power slide rod (505) is fixedly connected to the lower end of the pressure tube (503). The outer surface of the spiral slide column (504) is covered with a mounting cover (506). The lower end of the mounting cover (506) is fixedly connected to the inner surface of the lower end of the treatment chair (3). A booster spring (507) is fixedly connected to the bottom of the mounting cover (506). The upper end of the booster spring (507) is fixedly connected to the lower end face of the pressure tube (503).
3. The device for training bladder contraction function in rectal cancer patients after surgery according to claim 2, characterized in that: Each pressure pipe (503) has a speed control hole (508) at its lower end for slowly discharging gas from the gas chamber (724).
4. The device for training bladder contraction function in rectal cancer patients after surgery according to claim 2, characterized in that: The privacy adaptation adjustment mechanism also includes a triangular groove plate (519). The lower end of the spiral slide column (504) is installed through the protective cover (506) and the treatment chair (3) and is fixedly connected to a winding wheel (509). The outer surface of the winding wheel (509) is wound with a pull rope (510). One end of the pull rope (510) is fixedly connected to the bolt bend rod (511). The lower end of the bolt bend rod (511) is slidably connected to at least three positioning plates (512). The positioning plates (512) are all fixedly connected to the upper surface of the base (1). A rebound spring (513) is provided between the bolt bend rod (511) and the positioning plates (512). The upper end of the bolt bend rod (511) is threadedly connected to a threaded sleeve (514). The twin inclined groove plate (515) is limited to rotate and connected to the outer surface of the threaded sleeve (514). The right end slot of the twin inclined plate (515) is slidably connected to the U-shaped rod (516). The U-shaped rod (516) is movably connected to the adjusting frame (4) through a universal joint. The right outer surface of the U-shaped rod (516) is fixedly and rotatably connected to a positioning triangle plate (517). The front and rear sides of the positioning triangle plate (517) are symmetrically and fixedly connected to adjusting rods (518). The right side of the adjusting rod (518) is slidably connected to the slot of the triangular plate (519). The upper end face of the triangular plate (519) is fixedly connected to a skeleton rod (520). The right outer surface of the skeleton rod (520) is wrapped and connected to the cover cloth (521). The lower end face of the positioning triangle plate (517) is symmetrically and rotatably connected to the middle of the adjusting frame (4) with a gas spring (522). The lower right side of the adjusting frame (4) is fixedly connected to an arc-shaped pedal (523).
5. The device for training bladder contraction function in rectal cancer patients after surgery according to claim 1, characterized in that: The anti-fouling isolation mechanism also includes a limiting rod (601), which is symmetrically and fixedly connected to the adjusting frame (4). A perforated groove plate (602) is slidably connected to the outer surface of the limiting rod (601). A parallel displacement groove (603) is formed through the perforated groove plate (602). A rubber displacement groove (604) is formed at the end of the perforated groove plate (602) away from the parallel displacement groove (603). A lever (605) is slidably connected within each parallel displacement groove (603). A rubber wheel (606) is fixedly connected to the end of the lever (605) away from the treatment chair (3). The lever (605) is placed inside the hollowed-out groove plate (602). The end of the lever (605) away from the hollowed-out groove plate (602) is fixedly connected to the front and rear ends of the take-up roller (607). The front and rear ends of the take-up roller (607) are rotatably connected to the inner surface of the bottom of the treatment chair (3). The inner surface of the treatment chair (3) away from the take-up roller (607) is rotatably connected to the feed roller (608). The outer surfaces of the take-up roller (607) and the feed roller (608) are wrapped with a disposable perforated tape (609). The left end of the treatment chair (3) has an inlet hole (610), and the right end of the treatment chair (3) has an outlet hole (611).
6. The device for training bladder contraction function in rectal cancer patients after surgery according to claim 1, characterized in that: The scale push plate (706) is fixedly connected to a multi-rod extrusion column (707) near the end face of the finger groove push plate (704). The multi-rod extrusion column (707) is slidably connected to an extrusion groove cylinder (708). A serrated groove (709) is formed on the inner surface of the end of the extrusion groove cylinder (708) away from the multi-rod extrusion column (707). A ramp groove block (710) is fixedly connected to the inner surface of the end of the extrusion groove cylinder (708) away from the serrated groove (709). A drive spring (711) is fixedly connected to the end face of the multi-rod extrusion column (707) near the serrated groove (709). Helical teeth (712) are fixedly connected at equal intervals around the outer surface of the extrusion groove cylinder (708). An inner ring (713) is sleeved on the outer surface of the extrusion groove cylinder (708). A convex and concave groove is formed around the inner ring (713). 714), the convex and concave groove (714) is rotatably connected to a torsion spring protrusion rod (715), the outer surface of the torsion spring protrusion rod (715) away from the convex and concave groove (714) is rotatably connected to a limiting member (716), the limiting member (716) is fixedly connected to the outer surfaces of both sides of the inner ring (713), the outer surface of the middle end of the torsion spring protrusion rod (715) is fixedly connected to a wedge (717), the inner ring (713) is slidably connected to a positioning spring rod (718), the outer surface of the positioning spring rod (718) away from the constraint cylinder (701) is fixedly connected to a knob sleeve (719), the lower outer surface of the knob sleeve (719) is fitted with a spring telescopic semi-circular groove support (720), the spring telescopic semi-circular groove support (720) is fixedly connected to the outer surface of the skeleton rod (520).
7. A device for training bladder contraction function in rectal cancer patients after surgery, as described in claim 6, characterized in that: The telescopic airbag (703) is connected to an air supply pipe (721) at one end away from the base plate (702). Each end of the air supply pipe (721) away from the telescopic airbag (703) is connected to a three-way pipe (722). The lower end of the three-way pipe (722) is connected to an air collecting pipe (723). The end of the air collecting pipe (723) away from the three-way pipe (722) is connected to an air chamber (724). A magnetic piston plate (725) is slidably connected to the inner surface of the air chamber (724). An mounting plate (726) is fixedly connected to the upper end of the air chamber (724). 6) The mounting plate (726) is fixedly connected to the lower end of the treatment chair (3). The middle part of the mounting plate (726) is fixedly connected to an internal threaded hole (727). The internal threaded hole (727) is threadedly connected to a protective tube (729). The upper end face of the magnetic piston plate (725) is movably connected to a magnetic stainless steel tactile rod (728). The protective tube (729) is sleeved on the outer surface of the magnetic stainless steel tactile rod (728). The outer surface of the protective tube (729) is sleeved with a cooling positioning ball (730). The cooling positioning ball (730) is fixedly connected to the middle part of the lower end of the treatment chair (3).
8. A device for training bladder contraction function in rectal cancer patients after surgery, as described in claim 7, characterized in that: The cooling positioning ball (730) is electrically connected to the external control panel, the magnetic stainless steel tactile rod (728) is magnetically connected to the magnetic piston plate (725), and the scale push plate (706) is symmetrically fixedly connected to a push rod for moving the knob sleeve (719) on one end near the constraint cylinder (701).
9. A device for training bladder contraction function in rectal cancer patients after surgery, as described in claim 8, characterized in that: A partition strip (731) is fixedly connected to one end face of the knob sleeve (719) near the constraint cylinder (701). A sliding groove plate (732) is provided on the end face of the partition strip (731) away from the knob sleeve (719). The lower edge of the sliding groove plate (732) is fixedly connected to the left end of the spring telescopic semi-circular groove support (720). A one-way limiting double-opening plate (733) is unidirectionally connected to the sliding groove plate (732) and the partition strip (731) respectively. The lower end of the scale push plate (706) is set as a spring telescopic plate for the left and right movement of the scale push plate (706).
Citation Information
Patent Citations
Multifunctional pulse magnetic treatment seat
CN112023270A
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