Anti-falling clothes suitable for rehabilitation training of lower limb insufficiency
By designing a segmented fall protection suit, using interconnected components and PVC material, the problems of high cost and insufficient protection of existing fall protection suits are solved, achieving all-round protection and efficient rehabilitation training.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- XIAMEN THIRD HOSPITAL
- Filing Date
- 2025-04-11
- Publication Date
- 2026-05-12
AI Technical Summary
Existing protective suits are costly and provide insufficient protection for the face, chest, and knee joints when protecting patients with incomplete lower limb paralysis, thus affecting the efficiency of rehabilitation training.
A segmented protective suit was designed, comprising an upper body and a trouser body, each containing airbags for the torso, upper limbs, hips, and lower limbs. These airbags are connected by a component to achieve synchronous inflation. The suit is made of PVC material and features adjustable drawstrings to accommodate different body types.
It provides comprehensive protection, reduces the risk of falls, improves the efficiency of rehabilitation training, reduces usage costs, and extends product lifespan.
Smart Images

Figure CN224219560U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of safety protective clothing technology, and in particular to a fall-proof suit suitable for rehabilitation training of lower limb incomplete paralysis. Background Technology
[0002] Many patients who have suffered stroke or spinal cord injury currently experience incomplete lower limb paralysis and require further training to improve their walking ability. Whether walking with assistance or holding onto a fixed object, it is time-consuming, strenuous, and carries the risk of falls. The fear of injury after a fall further reduces the efficiency of walking training. This fall protection suit can ensure the patient's safety after a fall, help reduce their fear of walking training, and improve the efficiency of training.
[0003] Most commercially available fall protection suits inflate instantly upon sensing a fall, providing protection for the head, neck, back, lumbar region, and hips. However, they are expensive and offer insufficient protection for the face, chest, and knees. Utility Model Content
[0004] In view of the problems in the prior art, this utility model proposes a fall protection suit suitable for rehabilitation training of lower limb incomplete paralysis, in order to solve the above problems.
[0005] This application proposes a fall-resistant garment suitable for rehabilitation training of lower limb incomplete paralysis, comprising an upper garment and trousers. Its distinguishing feature is the inclusion of segmented trunk airbag groups, upper limb airbag groups, hip and buttock airbag groups, and lower limb airbag groups. The trunk airbag groups cover the front and back of the upper garment, extending upwards from the neckline to form a curve conforming to the shape of the human head. The upper limb airbag groups cover the surface of the upper garment from the shoulders to the wrists. The hip and buttock airbag groups cover the sides of the hips and the back of the buttocks of the trousers. The lower limb airbag groups cover the surface of the trousers from the thighs to the ankles. The trunk airbag groups and upper limb airbag groups, as well as the hip and buttock airbag groups and lower limb airbag groups, are connected by a first connecting component and a second connecting component, respectively. The first and second connecting components each have a first inflation port and a second inflation port. Furthermore, the surfaces of both the upper garment and trousers are wrapped with several adjustable cords for adjusting tightness.
[0006] By adopting the above technical solution, the fall protection suit is divided into a wearable upper body and a trouser body. When a user wears this fall protection suit for rehabilitation training, the torso airbag group not only provides cushioning protection for the user's chest, abdomen, back, and lower back, but its upward extension and bending effectively protect the user's face and back of the head. The upper limb airbag group protects the user's shoulder joints, elbow joints, and wrists; the hip and buttock airbag group protects the user's buttocks and both sides of the hips; and the lower limb airbag group protects the thighs, calves, knee joints, and ankle joints. All of these airbag groups adopt a segmented structure, providing protection while also... It will not affect the user's walking movements. During rehabilitation training, falls such as leaning forward, leaning backward, or rolling to the side are common. The fall protection suit of this application can adapt to the cushioning needs of various situations. At the same time, the upper body and the pants body are inflated independently, with gas injected through the first inflation port and the second inflation port, respectively. Due to the presence of the first and second connecting components, all airbags on the upper body and the pants body can be inflated synchronously when the first inflation port / second inflation port is inflated, without the need to set up additional inflation ports for individual airbag groups. The presence of adjustable buckles allows the user to adjust the tightness of the fall protection suit according to their own body shape after wearing it.
[0007] In some specific embodiments, the torso airbag assembly includes a chest airbag, an abdominal airbag, a back airbag, and a waist airbag covering the chest, abdomen, back, and waist of the garment body. The abdominal airbag extends downward to the hip of the human body, and the waist airbag has an arc-shaped curve adapted to the shape of the human lumbosacral region.
[0008] By adopting the above technical solution, the torso airbag assembly has a segmented structure on both the front and back of the upper garment. The chest airbag and abdominal airbag are responsible for protecting the user's chest and abdomen, respectively. At the same time, the abdominal airbag extends downward to further protect the user's hips. The back airbag and waist airbag protect the user's lower back, respectively. In addition, the curved shape of the waist airbag can better fit the shape of the human waist, which can improve the cushioning effect when falling.
[0009] In some specific embodiments, the trunk airbag assembly also includes a face airbag and a occipital airbag. The face airbag is located above the chest airbag and extends upward to form a curve that conforms to the shape of the front neck and jaw of the human body. The occipital airbag is located above the back airbag and extends upward to form a curve that conforms to the shape of the back of the neck and the back of the head of the human body.
[0010] By adopting the above technical solution, face airbags and back airbags are respectively set at the neckline on the front and back of the garment. The shape of the face airbag can effectively support the user's neck and chin. At the same time, the face airbag extends upward to the user's mouth and nose, enhancing the face protection effect without completely fitting the user's face to avoid affecting breathing. The shape of the back airbag can effectively protect the back of the user's neck and the back of the head. If the back of the neck or the back of the head is injured when falling backward, it may cause paralysis of the user's torso, upper limbs and other parts, which may endanger life in severe cases. Therefore, the back airbag should fit closely to the back of the neck and the back of the head and completely cover the back of the head.
[0011] In some specific embodiments, the front of the torso of the garment body is a cardigan structure, and the chest airbags, abdominal airbags and facial airbags are symmetrically distributed relative to the cardigan dividing line, and the chest airbags, abdominal airbags and facial airbags on both sides are connected by adjustable cord buckles.
[0012] By adopting the above technical solution, when the main body of the garment is a cardigan structure, the chest airbag, abdominal airbag, and facial airbag are divided into left and right parts. In order to ensure the cushioning effect and wrapping performance after the airbags are divided into two parts, adjustable cord buckles are set on the surface of the chest airbag / abdominal airbag / facial airbag on both sides. The airbags on both sides are connected by the adjustable cord buckles, and the tightness of the adjustable cord buckles is further adjusted to adjust the wrapping performance of the airbags (especially the facial airbag).
[0013] In some specific embodiments, the upper limb airbag group includes shoulder airbags, elbow airbags and wrist airbags located at the shoulder, elbow and wrist of the upper garment body. The shoulder airbags are located on the front, back and outer sides of the shoulder of the upper garment body, and the elbow airbags and wrist airbags are located on the outer side of the elbow and the outer side of the wrist of the upper garment body, respectively.
[0014] By adopting the above technical solution, the main joints of the human upper limbs are protected. For the human shoulder joint, it is necessary to consider three types of falls: forward tilting, backward tilting, and side roll. Therefore, shoulder airbags are set on the front, back, and outside of the shoulder joint. For the human elbow and wrist joints, the outside of the two are relatively easy to be injured. Therefore, elbow airbags and wrist airbags are set on the outside of the elbow and outside of the wrist of the upper body, respectively, corresponding to the human elbow and wrist joints.
[0015] In some specific embodiments, the first connecting component includes several first tracheas, and the chest airbag, abdominal airbag, back airbag, waist airbag, face airbag, occipital airbag, shoulder airbag, elbow airbag and wrist airbag are connected to each other through the first tracheas, and the first inflation port is located on the surface of any of the first tracheas.
[0016] By adopting the above technical solution, various airbags on the surface of the garment body are connected through several first air tubes. At the same time, a first inflation port is set on any of the first air tubes. The first inflation port and the first air tube work together to inflate all the airbags of the garment body by inflating one part.
[0017] In some specific embodiments, the hip and buttock airbag assembly includes hip airbags and buttock airbags located on both sides of the hip and the back of the buttocks of the pants body, respectively, and the lower limb airbags include leg airbags, ankle airbags and knee airbags located on the outer side of the thigh and calf, the outer side of the ankle, and the front and outer side of the knee of the pants body.
[0018] By adopting the above technical solutions, the hip airbag is responsible for protecting the user's hips on both sides, adapting to side roll scenarios, the buttock airbag is responsible for protecting the buttocks, adapting to backward tilt scenarios, and the two, together with the downward extension structure of the abdominal airbag, can provide all-round cushioning protection for the human hips. The leg airbag is responsible for protecting the outer sides of the human thighs and calves. The front and outer sides of the human knee joint are more easily injured, so the knee airbag is placed on both the front and outer sides of the knee of the pants body. The outer side of the ankle joint is more easily injured, so the ankle airbag is placed on the outer side of the ankle of the pants body.
[0019] In some specific embodiments, the second communication component includes a plurality of second air tubes, and the hip airbag, buttock airbag, leg airbag, knee airbag and ankle airbag are connected through the second air tubes, and the second inflation port is located on the surface of any of the second air tubes.
[0020] By adopting the above technical solution, various airbags on the surface of the pants are connected through several second air tubes. At the same time, a second inflation port is set on any of the second air tubes. The second inflation port and the second air tube work together to inflate all the airbags of the pants by inflating one part.
[0021] In some specific embodiments, adjustable cords are attached to the collar, cuffs, and hem of the garment and the waistband and cuffs of the trousers.
[0022] By adopting the above technical solution, users can adjust the tightness of the collar, cuffs, hem, waistband, and leg openings after wearing the protective clothing, avoiding the protective clothing being too loose and hindering the user's movement. At the same time, the protective clothing that is too loose has a poor protective effect against falls.
[0023] In some specific embodiments, the upper garment body, the pants body, the torso airbag group, the upper limb airbag group, the hip and buttock airbag group, and the lower limb airbag group are all made of PVC material, and the surface of the upper garment body and the pants body is also evenly provided with a number of breathable small holes.
[0024] By adopting the above technical solution, the entire protective suit is made of PVC material, which is low in cost and avoids the problem of high prices of various automatic sensing protective suits on the market. At the same time, PVC material has high strength and good wear resistance, and can withstand frequent friction and pulling, which can significantly extend the product's service life. It has good waterproof properties, which can resist water splashes and moisture, and prevent the airbags from being damaged by water. The surface is smooth and easy to clean, simply by wiping with a damp cloth, reducing maintenance costs. The design of small ventilation holes ensures that the protective suit has good breathability, avoiding the problem of insufficient breathability of the upper body and pants body materials. In addition, users tend to sweat during rehabilitation training, and the design of small ventilation holes can further improve the user's wearing comfort.
[0025] Compared with the prior art, the beneficial effects of this application are as follows:
[0026] This application presents a fall protection suit for rehabilitation training of lower limb incomplete paralysis, featuring a separate, wearable upper garment and lower garment design. Airbags in various areas provide comprehensive protection for the user. The trunk airbag group protects the chest, abdomen, back, and lower back, with its upward curve protecting the face and back of the head. The upper limb airbag group protects the shoulder, elbow, and wrist joints. The hip and buttock airbag group targets the buttocks and sides of the hips. The lower limb airbag group protects the thighs, calves, knees, and ankles, and the segmented structure does not impede walking. The upper garment and lower garment inflate independently, through the first and second inflation ports of the first and second connecting components, respectively, enabling simultaneous inflation of multiple airbags without the need for multiple inflation ports for individual airbag groups. Adjustable drawstrings are located at the collar, cuffs, and hem of the upper garment, and the waistband and cuffs of the lower garment, allowing the user to adjust the tightness according to their body shape, improving wearing comfort and fall protection. In addition, the protective suit is made entirely of PVC material, which is low in cost and avoids the drawbacks of expensive automatic sensor protective suits. PVC material is also strong, wear-resistant, waterproof, and easy to clean. It can withstand frequent friction and pulling, extending its service life and reducing maintenance costs. It provides practical, economical, and durable protection against falls for the rehabilitation training of patients with incomplete lower limb paralysis. Attached Figure Description
[0027] The accompanying drawings are included to provide a further understanding of the embodiments and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments and, together with the description, serve to explain the principles of the present invention. Other embodiments and many anticipated advantages of the embodiments will be readily recognized as they become better understood through reference to the following detailed description. Elements in the drawings are not necessarily to scale. The same reference numerals refer to corresponding similar parts.
[0028] Figure 1 This is a front view of the protective suit according to an embodiment of the present utility model;
[0029] Figure 2This is a side view of a user wearing protective clothing according to a specific embodiment of the present invention;
[0030] Figure 3 This is a front view of a protective suit according to another specific embodiment of the present invention.
[0031] The meaning of each number in the diagram:
[0032] Top body 01, Pants body 02, Adjustable drawstring 03, Chest airbag 04, Abdominal airbag 05, Back airbag 06, Waist airbag 07, Face airbag 08, Back of head airbag 09, Shoulder airbag 10, Elbow airbag 11, Wrist airbag 12, Hip airbag 13, Buttock airbag 14, Leg airbag 15, Ankle airbag 16, Knee airbag 17, First trachea 18, Second trachea 19, First inflation port 20, First inflation port 21, Ventilation hole 22. Detailed Implementation
[0033] In the following detailed description, reference is made to the accompanying drawings, which form part of the detailed description and illustrate illustrative specific embodiments in which the present invention may be practiced. In this regard, directional terms such as “top,” “bottom,” “left,” “right,” “up,” “down,” etc., are used with reference to the orientation of the described figures. Because components of the embodiments can be positioned in several different orientations, directional terms are used for illustrative purposes and are by no means limiting. It should be understood that other embodiments may be utilized or logical changes may be made without departing from the scope of the present invention. Therefore, the following detailed description should not be taken in a limiting sense, and the scope of the present invention is defined by the appended claims.
[0034] This application proposes a fall protection suit suitable for rehabilitation training of lower limb incomplete paralysis. Figure 1 A frontal schematic diagram of a protective suit according to an embodiment of the present invention is shown, as follows. Figure 1As shown, the protective suit includes a detachable upper garment body 01 and a pants body 02. Its distinguishing feature is that it further includes a segmented torso airbag assembly, an upper limb airbag assembly, a hip and buttock airbag assembly, and a lower limb airbag assembly. The torso airbag assembly covers the front and back of the torso of the upper garment body 01, and extends upwards from the neckline of the upper garment body 01 to form a curve adapted to the shape of the human head. The upper limb airbag assembly covers the surface of the upper garment body 01 from the shoulders to the wrists. The hip and buttock airbag assembly covers the pants. The hip sides and the back of the buttocks of the main body 02 are covered by the lower limb airbag group, which covers the surface of the thigh to the ankle of the pants main body 02. The torso airbag group and the upper limb airbag group, and the hip and buttock airbag group and the lower limb airbag group are respectively connected by a first connecting component and a second connecting component. The first connecting component and the second connecting component have a first inflation port 20 and a second inflation port 21, respectively. The surfaces of the upper body 01 and the pants main body 02 are both wrapped with several adjustable cord buckles 03 for adjusting the tightness.
[0035] By adopting the above technical solution, the fall protection suit is divided into a wearable upper body 01 and a pants body 02. When the user wears the fall protection suit for rehabilitation training, the torso airbag group can not only cushion and protect the user's chest, abdomen, back, and lower back, but its upward extension and bending can effectively protect the user's face and back of the head. The upper limb airbag group protects the user's shoulder joints, elbow joints, and wrists. The hip and buttock airbag group protects the user's buttocks and both sides of the hips. The lower limb airbag group protects the thighs, calves, knee joints, and ankle joints. All of the above airbag groups adopt a segmented structure, which can provide protection without affecting the user. During rehabilitation training, the user's walking movements often involve forward leaning, backward leaning, or side-falling falls. The anti-fall suit of this application can adapt to the cushioning needs of various situations. At the same time, the upper body 01 and the pants body 02 are inflated independently, with gas injected through the first inflation port 20 and the second inflation port 21, respectively. Due to the presence of the first connecting component and the second connecting component, when the first inflation port 20 / second inflation port 21 is inflated, all the airbags on the upper body 01 / pants body 02 can be inflated synchronously, without the need to set up additional inflation ports for individual airbag groups. The presence of the adjustable buckle 03 allows the user to adjust the tightness of the anti-fall suit according to their own body shape after wearing it.
[0036] Figure 2 A side view of a user wearing a protective suit according to a specific embodiment of the present invention is shown, such as... Figure 1-2 As shown, the torso airbag assembly includes a chest airbag 04, an abdominal airbag 05, a back airbag 06, and a waist airbag 07 covering the chest, abdomen, back, and waist of the upper garment body 01. The abdominal airbag 05 extends downward to the hip of the human body, and the waist airbag 07 has an arc-shaped curve that adapts to the shape of the human lumbosacral region.
[0037] Specifically, the shapes of the chest airbag 04 and the back airbag 06 are adapted to the shape and undulation of the human chest and back, respectively, while the waist airbag 07 has a shape adapted to the curvature of the human waist.
[0038] The torso airbag assembly has a segmented structure on both the front and back of the upper garment body 01. Adjacent airbags are directly connected through the first air tube 18. Similarly, the airbags on the pants body 02 are connected through the second air tube 19. The chest airbag 04 and the abdominal airbag 05 are responsible for protecting the user's chest and abdomen, respectively. At the same time, the abdominal airbag 05 extends downward to further protect the user's hips. The back airbag 06 and the waist airbag 07 protect the user's lower back, respectively. The curved shape of the waist airbag 07 can better fit the shape of the human waist. The bottom of the waist airbag 07 extends downward to the human lumbosacral region, effectively protecting the key parts of the human body and improving the cushioning effect when falling.
[0039] In some specific embodiments, the trunk airbag assembly also includes a face airbag 08 and a occipital airbag 09. The face airbag 08 is located above the chest airbag 04 and extends upward to form a curve that conforms to the shape of the front neck and jaw of the human body. The occipital airbag 09 is located above the back airbag 06 and extends upward to form a curve that conforms to the shape of the back of the neck and the back of the head of the human body.
[0040] A face airbag 08 and a back airbag 09 are respectively installed at the neckline on the front and back of the garment body 01. The face airbag 08 is shaped to effectively support the user's neck and chin. At the same time, the face airbag 08 extends upward to the user's mouth and nose, enhancing the face protection effect without completely fitting the user's face to avoid affecting breathing. The back airbag 09 is shaped to effectively protect the back of the user's neck and the back of the head. If the back of the neck or the back of the head is injured when falling backward, it may cause paralysis of the user's torso, upper limbs and other parts, which may endanger life in severe cases. Therefore, the back airbag 09 should fit closely to the back of the neck and the back of the head and completely cover the back of the head.
[0041] In some specific embodiments, the upper limb airbag group includes a shoulder airbag 10, an elbow airbag 11, and a wrist airbag 12 located at the shoulder, elbow, and wrist of the upper garment body 01. The shoulder airbag 10 is located on the front, back, and outer sides of the shoulder of the upper garment body 01, and the elbow airbag 11 and wrist airbag 12 are located on the outer side of the elbow and wrist of the upper garment body 01, respectively.
[0042] The upper limb airbag group protects the main joints of the human upper limb. For the human shoulder joint, it is necessary to consider three types of fall scenarios: forward tilting, backward tilting, and side roll. Therefore, shoulder airbags 10 are set on the front, back, and outer sides of the shoulder joint. For the human elbow and wrist joints, the outer sides of the two are relatively easy to be injured. Therefore, elbow airbags 11 and wrist airbags 12 are set on the outer elbow and outer wrist of the upper garment body 01, respectively, corresponding to the human elbow and wrist joints.
[0043] In some specific embodiments, the first connecting component includes a plurality of first tracheas 18, and the chest airbag 04, abdominal airbag 05, back airbag 06, waist airbag 07, face airbag 08, occipital airbag 09, shoulder airbag 10, elbow airbag 11 and wrist airbag 12 are connected to each other through the first tracheas 18, and the first inflation port 20 is located on the surface of any of the first tracheas 18.
[0044] Various airbags on the surface of the garment body 01 are connected by several first air tubes 18, and a first inflation port 20 is provided on any of the first air tubes 18. Figure 2 In the enlarged view at point A, the first inflation port 20 is located on the first air tube 18 between the back air bag 06 and the waist air bag 07. In actual application, the position of the first inflation port 20 is not restricted and can be set on any of the first air tubes 18. The first inflation port 20 and the first air tube 18 work together to inflate all the air bags of the upper garment body 01 by inflating one part, without the need to inflate each air bag individually.
[0045] In some specific embodiments, the hip and buttock airbag assembly includes hip airbags 13 and buttock airbags 14 located on both sides of the hip and the back of the buttocks of the pants body 02, respectively, and lower limb airbags include leg airbags 15, ankle airbags 16 and knee airbags 17 located on the outer side of the thigh and calf, the outer side of the ankle, and the front and outer side of the knee of the pants body 02.
[0046] The hip airbag 13 is responsible for protecting the user's hips on both sides, adapting to side roll scenarios. The buttock airbag 14 is responsible for protecting the buttocks, adapting to backward tilt scenarios. Together with the downward extension structure of the abdominal airbag 05, the two can provide all-round cushioning protection for the human hips. The leg airbag 15 is responsible for protecting the outer side of the human thighs and calves. The front and outer side of the human knee joint are more prone to injury, so the knee airbag 17 is placed on both the front and outer side of the knee of the pants body 02. The outer side of the ankle joint is more prone to injury, so the ankle airbag 16 is placed on the outer side of the ankle of the pants body 02.
[0047] In some specific embodiments, the second communication component includes a plurality of second air tubes 19, and the hip airbag 13, the buttock airbag 14, the leg airbag 15, the knee airbag 17 and the ankle airbag 16 are connected through the second air tubes 19, and the second inflation port 21 is located on the surface of any of the second air tubes 19.
[0048] Various airbags on the surface of the pants body 02 are connected by several second air pipes 19, and a second inflation port 21 is provided on any of the second air pipes 19. Figure 2 In the enlarged view at point B, the second inflation port 21 is located on the second air tube 19 between the leg air bladder 15 and the knee air bladder 17. In practical applications, the position of the second inflation port 21 is not restricted and can be set on any of the second air tubes 19. The second inflation port 21 and the second air tube 19 work together to inflate all the air bladders of the pants body 02 by inflating one part.
[0049] In some specific embodiments, the adjustable cord buckle 03 is wrapped around the collar, cuffs, and hem of the upper garment body 01 and the waistband and cuffs of the trouser body 02.
[0050] The adjustable cord buckle 03 allows users to adjust the tightness of the collar, cuffs, hem, waistband, and leg openings after wearing the protective clothing, preventing the clothing from being too loose and restricting the user's movement. At the same time, an overly loose protective clothing will have poor shock protection.
[0051] Specifically, the adjustable cord buckle 03 can also be wrapped around the chest, abdomen, arms, etc. of the top body 01, or around the thighs and calves of the pants body 02.
[0052] Figure 3 A frontal schematic diagram of a protective suit according to another specific embodiment of the present invention is shown, as follows: Figure 1-3 As shown, the front of the torso of the upper garment body 01 is a cardigan structure. The chest airbag 04, abdominal airbag 05 and facial airbag 08 are symmetrically distributed with respect to the cardigan dividing line, and the chest airbag 04, abdominal airbag 05 and facial airbag 08 on both sides are connected by adjustable cord buckles 03.
[0053] By adopting the above technical solution, when the upper garment body 01 is a cardigan structure, the chest airbag 04, abdominal airbag 05, and facial airbag 08 are divided into left and right parts. In order to ensure the cushioning effect and wrapping performance after the airbags are divided into two parts, adjustable cord buckles 03 are provided on the surface of the chest airbag 04 / abdominal airbag 05 / facial airbag 08 on both sides. The adjustable cord buckles 03 are used to connect the airbags on both sides, and the tightness of the adjustable cord buckles 03 is further adjusted to adjust the wrapping performance of the airbags (especially the facial airbag 08).
[0054] In some specific embodiments, the upper garment body 01, the pants body 02, the torso airbag group, the upper limb airbag group, the hip and buttock airbag group, and the lower limb airbag group are all made of PVC material, and the surfaces of the upper garment body 01 and the pants body 02 are also evenly provided with a number of breathable small holes 22.
[0055] The entire protective suit is made of PVC material, which is low in cost and avoids the problem of high prices for various automatic sensor protective suits on the market. At the same time, PVC material has high strength and good wear resistance, and can withstand frequent friction and pulling, which can significantly extend the product's service life. It has good waterproof properties, which can resist water splashes and moisture and prevent the airbags from being damaged by water. The surface is smooth and easy to clean; it can be wiped with a damp cloth, reducing maintenance costs. The design of the ventilation holes 22 ensures that the protective suit has good breathability, avoiding the lack of breathability of the material of the upper body 01 and the pants body 02. In addition, users tend to sweat during rehabilitation training, and the design of the ventilation holes 22 can further improve the user's wearing comfort.
[0056] This protective suit is specifically designed for rehabilitation training of lower limb incomplete paralysis. It features a detachable upper garment (01) and lower trousers (02). Each airbag group has a clearly defined function and a segmented structure, providing comprehensive protection for the user without hindering walking. The torso airbag group cushions and protects the chest, abdomen, back, and lower back, while its upward curve protects the face and back of the head. The upper limb airbag group targets the shoulder, elbow, and wrist joints; the hip and buttock airbag group protects the buttocks and sides of the hips; and the lower limb airbag group protects the thighs, calves, knees, and ankles, adapting to various fall scenarios such as forward tilting, backward tilting, and side rolling. The upper garment (01) and lower trousers (02) inflate independently, and multiple airbags can be inflated simultaneously via the first inflation port (20) and second inflation port (21) of the first and second connecting components, eliminating the need for separate inflation ports for each airbag group. The adjustable drawstrings (03) allow the user to adjust the tightness according to their body shape, improving wearing comfort and fall protection. In addition, the entire garment is made of PVC material, which is low in cost and solves the problem of the high price of automatic sensing anti-fall suits. Moreover, the material is high in strength, wear-resistant, waterproof, and easy to clean, which can extend the service life, prevent water damage to the airbags, and reduce maintenance costs, providing practical, economical and durable protection for the rehabilitation training of patients with incomplete lower limb paralysis.
[0057] Obviously, those skilled in the art can make various modifications and changes to the embodiments of this utility model without departing from the spirit and scope of this utility model. In this way, this utility model is also intended to cover such modifications and changes if they fall within the scope of the claims of this utility model and their equivalents. The word "comprising" does not exclude the presence of other elements or steps not listed in the claims. The simple fact that certain measures are described in mutually different dependent claims does not indicate that a combination of these measures cannot be used for profit. Any reference numerals in the claims should not be considered as limiting the scope.
Claims
1. A fall-preventing suit for rehabilitation training of lower extremity incomplete paralysis, comprising a shirt body and a trousers body, characterized in that, Further comprising segmented torso air bag group, upper limb air bag group, hip air bag group and lower limb air bag group, the torso air bag group is wrapped in the front and back of the torso of the upper body, and the torso air bag group extends upward from the neckline of the upper body to form a curve that fits the shape of the human head; The upper limb air bag group is wrapped in the surface of the upper body from the shoulder to the wrist; The hip air bag group is wrapped in the surface of the hip and the back of the hip of the trousers; The lower limb air bag group is wrapped in the surface of the trousers from the thigh to the ankle; The torso air bag group and the upper limb air bag group, the hip air bag group and the lower limb air bag group are connected by the first communication assembly and the second communication assembly respectively, the first communication assembly and the second communication assembly have the first inflation port and the second inflation port respectively, and the surface of the upper body and the trousers is provided with a plurality of adjustable rope buckles for adjusting the tightness.
2. The impact-attenuating apparel of claim 1, wherein, The torso air bag group includes chest air bag, abdominal air bag, back air bag and waist air bag covering the chest, abdomen, back and waist of the upper body, the abdominal air bag extends downward to the position of the human hip, and the waist air bag has an arc curve that fits the shape of the human waist and sacrum.
3. The impact-attenuating apparel of claim 2, wherein, The torso air bag group further includes face air bag and back air bag, the face air bag is located above the chest air bag, and the face air bag extends upward to form a curve that fits the shape of the human front neck and lower jaw, and the back air bag is located above the back air bag, and the back air bag extends upward to form a curve that fits the shape of the human back neck and back head.
4. The impact-attenuating apparel of claim 3, wherein, The front of the torso of the upper body is a cardigan structure, the chest air bag, abdominal air bag and face air bag are symmetrically distributed relative to the cardigan boundary line, and the chest air bag, abdominal air bag and face air bag on both sides are connected by the adjustable rope buckle.
5. The impact-attenuating apparel of claim 3, wherein, The upper limb air bag group includes shoulder air bag, elbow air bag and wrist air bag located at the shoulder, elbow and wrist of the upper body, the shoulder air bag is located on the front and back of the shoulder of the upper body and the outside, and the elbow air bag and wrist air bag are located on the outside of the elbow and wrist of the upper body respectively.
6. The impact-attenuating apparel of claim 5, wherein, The first communication assembly includes a plurality of first air pipes, the chest air bag, abdominal air bag, back air bag, waist air bag, face air bag, back air bag, shoulder air bag, elbow air bag and wrist air bag are connected by the first air pipe, and the first inflation port is located on the surface of any first air pipe.
7. The impact-attenuating apparel of claim 1, wherein, The hip air bag group includes hip air bag and hip air bag located on both sides of the hip of the trousers, and the lower limb air bag group includes leg air bag, ankle air bag and knee air bag located on the outside of the thigh, the outside of the ankle and the front and outside of the knee of the trousers.
8. The impact-attenuating apparel of claim 7, wherein, The second communication assembly includes a plurality of second air pipes, the hip air bag, hip air bag, leg air bag, knee air bag and ankle air bag are connected by the second air pipe, and the second inflation port is located on the surface of any second air pipe.
9. The impact-attenuating apparel of claim 1, wherein, The adjustable rope buckle is provided around the neckline, sleeve opening, hem of the upper body and the waist, trouser leg of the trousers.
10. The impact-attenuating apparel of claim 1, wherein, The upper body, the trousers body, the trunk air bag group, the upper limb air bag group, the hip air bag group and the lower limb air bag group are all made of PVC material, and the surface of the upper body and the trousers body is also uniformly provided with a plurality of air holes.