Muscle training device for diabetic patient

By designing a muscle training device for diabetic patients that includes device body and real-time monitoring components, the problems of insufficient safety, lack of professional guidance and single function of existing devices are solved, and comprehensive muscle training for diabetic patients is achieved, improving the safety and effectiveness of training.

CN119971423AInactive Publication Date: 2025-05-13THE SECOND AFFILIATED HOSPITAL TO NANCHANG UNIV
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Patent Information

Application Number
CN202510254399.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-05
Publication Date
2025-05-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing training devices for diabetic patients have insufficient safety, lack of professional guidance and single function, and cannot effectively carry out comprehensive training of whole body muscles.

Method used

A muscle training device for diabetic patients including a device body and a real-time monitoring component is designed. The device body realizes comprehensive training of the upper limbs, lower limbs and core muscles through the design of the movable platform and the power folding rod, and detects data such as movement intensity, movement amplitude and movement time through real-time monitoring components.

Benefits of technology

The device uses its own gravity to exercise the leg muscles, which is simple and practical, and can comprehensively train the muscles of the whole body to improve the safety and effectiveness of the training. Real-time monitoring components provide scientific training assessments and personalized training programs for long-term use by diabetic patients.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of medical care instruments, in particular to a diabetic muscle training device which comprises a device body and a real-time monitoring assembly. The device body comprises a base and a movable platform, and the monitoring assembly comprises a pressure sensor, a timer and a touch panel. The self-gravity is adopted for training, extra energy consumption is not needed, and the device is simple and practical. In addition, the device can conduct comprehensive training on upper limbs, lower limbs and core muscles, and the whole-body training effect is achieved. The sitting posture is adopted during training, stable support is provided for a trainee, and the falling risk caused by unstable standing during standing posture training is avoided. Meanwhile, the two hands can be supported through the upper limb pull rod, and the safety in the training process is further enhanced. The sports protection device has a good sports protection effect, a trainer is not prone to falling down even if emergencies such as dizziness occur in the training process, and the safety of the trainer is effectively guaranteed.
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Description

Technical Field

[0001] The invention relates to the technical field of medical care equipment, and in particular to a muscle training device for diabetic patients. Background Art

[0002] Diabetic patients will have symptoms of insulin resistance, and the efficiency of skeletal muscle to absorb and utilize glucose will be reduced, which will affect myosin synthesis. At the same time, related pathways will be activated, leading to upregulation of gene expression related to muscle atrophy, and then increased degradation of skeletal muscle protein will cause muscle loss. At the same time, the generation of reactive oxygen species increases in a hyperglycemic environment, the body's antioxidant capacity is weakened, and mitochondria are susceptible to oxidative damage, affecting normal protein synthesis and electron transfer. In addition, myostatin expression is upregulated, and myofibrillar protein degradation increases, leading to reduced muscle mass.

[0003] Reduced muscle mass causes imbalance in skeletal muscle glucose metabolism, exacerbating insulin resistance, reducing glucose metabolism sites, and reducing the body's total glucose metabolism capacity, which in turn leads to elevated or uncontrolled blood sugar. Reduced muscle mass also increases the risk of complications and low immunity, increasing the risk of infection.

[0004] Diabetic patients need to pay attention to the exercise method and intensity during exercise because of their weak sugar metabolism ability. The intensity of exercise should be determined according to the patient's physical condition and exercise habits, and mild to moderate is appropriate. It is recommended to do 40 to 60 minutes of moderate-intensity aerobic exercise and 20 to 30 minutes of resistance exercise every day. At the same time, you should choose a relatively safe exercise method to avoid hypoglycemia and fainting due to rapid blood sugar reduction, which will then cause secondary injuries.

[0005] Existing training devices for diabetic patients have the following problems: 1. Insufficient safety. Some devices lack monitoring functions and cannot accurately control the intensity of exercise. They also do not provide personalized protection measures for patients with complications, and there are risks such as hypoglycemia. 2. Lack of professional guidance leads to excessive or insufficient exercise and poor results. 3. Single function, only local muscle training can be performed, lacking comprehensive training for the whole body. Summary of the invention

[0006] The purpose of the present invention is to provide a diabetic patient muscle training device to meet the diabetic patient's needs for effective and safe muscle training. To achieve the above purpose, the present invention provides the following technical solutions:

[0007] A muscle training device for diabetic patients, comprising a device body and a real-time monitoring component;

[0008] The device body comprises a base and a movable platform, wherein two movable support rods are arranged at the bottom of the movable platform, and the two ends of the movable support rods are respectively hinged with the base and the movable platform; the two ends of the movable platform are respectively provided with a footrest and a seat; a power folding rod is also arranged between the movable platform and the base, and an upper limb pull rod is arranged on the power folding rod, and the upper limb pull rod is wound from both sides of the movable platform to the top of the movable platform;

[0009] The monitoring component includes a pressure sensor, a timer and a touch panel. The detection component is arranged on the power folding rod and is used to detect the exercise intensity and exercise duration of the user.

[0010] As an improvement, the two movable support rods are respectively a long rod and a short rod, the short rod is arranged at the front side of the movable platform, and the long rod is arranged at the rear side of the movable platform. The two movable support rods make the movable platform in an inclined state with the rear higher and the front lower.

[0011] As an improvement, the power folding rod comprises a first sub-rod and a second sub-rod, the first sub-rod is hinged to the second sub-rod, the top of the first sub-rod is hinged to the movable platform, and the bottom of the second sub-rod is hinged to the base;

[0012] The bottom of the upper limb pull rod is fixedly connected to the side of the first branch rod.

[0013] As an improvement, the first sub-rod is provided with a first buffer pad arranged upward; and the second sub-rod is provided with a second buffer pad arranged downward.

[0014] As an improvement, the number of the pressure sensors is two, which are respectively arranged on the first buffer pad and the second buffer pad.

[0015] As an improvement, the touch panel is arranged at the lower part of the second branch rod, and the pressure sensor is electrically connected to the touch panel via a wire, and the wire is passed through the inside of the second branch rod.

[0016] As an improvement, a hinged joint is provided at the bottom of the seat, and the top of the long rod is hinged to the movable platform through the hinged joint.

[0017] As an improvement, a load placement rack is provided at the bottom of the movable platform.

[0018] As an improvement, an angle sensor is provided at the hinge of the first branch rod and the second branch rod. The angle sensor is electrically connected to the touch panel and is used to monitor the unfolding angle of the power folding rod and convert it into movement amplitude data.

[0019] Compared with the prior art, the present invention has the following beneficial effects:

[0020] 1. The present invention has a movable platform that is high at the back and low at the front. When pulling the upper limb pull rod, the user needs to overcome his own weight to rotate the movable support rod. The user can exercise the leg muscles with the help of his own gravity without the need for additional energy consumption. It is simple and practical. In addition, the device can comprehensively train the upper limbs, lower limbs and core muscles. By pulling the upper limb pull rod and coordinating the actions of leg kicking, trunk bending and exerting force, the effect of whole body muscle exercise can be achieved.

[0021] 2. The present invention adopts a sitting posture during training, which provides stable support for the trainee and avoids the risk of falling due to unstable standing during standing training. At the same time, both hands can be supported by the upper limb pull rod, further enhancing the safety during training. The present invention has a good sports protection effect. Even if the trainee suffers from sudden conditions such as dizziness during training, it is not easy to fall, which effectively ensures the safety of the trainee.

[0022] 3. The present invention can detect the user's exercise intensity, exercise amplitude, exercise time and other data in real time. The pressure sensor can sense the pressure and pressure frequency applied to the device to determine the exercise intensity; the angle sensor can monitor the unfolding angle of the power folding rod and convert it into exercise amplitude data; the timer can accurately record the exercise duration.

[0023] 4. The present invention is provided with a load placement rack, which allows the operator to place weights according to the training conditions to increase the training intensity. The user can choose different training methods and weights according to their own conditions, which can achieve the purpose of muscle training without causing excessive burden on the body, and is suitable for long-term use by diabetic patients. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 This is a structural diagram of a muscle training device for diabetic patients in Example 1.

[0025] Figure 2 This is a structural diagram of a power folding rod in a muscle training device for diabetic patients in Example 1.

[0026] Figure 3 This is a state diagram of a muscle training device for diabetic patients in Example 1 when the upper limb pull rod is partially pulled.

[0027] Figure 4 This is a side view of a muscle training device for diabetic patients in Example 2.

[0028] Indicated in the figure:

[0029] 1-base, 2-movable platform, 21-hinge, 22-load placement frame, 3-movable support rod, 31-long rod, 32-short rod, 4-footrest, 5-seat, 6-power folding rod, 61-first branch rod, 62-second branch rod, 63-first buffer pad, 64-second buffer pad, 65-angle sensor, 7-upper limb pull rod, 8-pressure sensor, 9-touch panel. DETAILED DESCRIPTION

[0030] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Generally, the components of the embodiments of the present invention described and shown in the drawings here can be arranged and designed in various different configurations.

[0031] Example 1

[0032] This embodiment discloses a muscle training device for diabetic patients, including a device body and a real-time monitoring component.

[0033] like Figure 1 As shown, the device body includes a base 1 and a movable platform 2. Two movable support rods 3 are provided at the bottom of the movable platform 2, and the two ends of the movable support rods 3 are respectively hinged to the base 1 and the movable platform 2. The two movable support rods 3 are respectively a long rod 31 and a short rod 32, the short rod 32 is provided at the front side of the movable platform 2, and the long rod 31 is provided at the rear side of the movable platform 2. The two movable support rods 3 make the movable platform 2 in an inclined state with the rear higher and the front lower. A hinge joint 21 is provided at the bottom of the movable platform 2, and the top of the long rod 31 is hinged to the movable platform 2 through the hinge joint 21.

[0034] The two ends of the movable platform 2 are respectively provided with a footrest 4 and a seat 5. A power folding rod 6 is also provided between the movable platform 2 and the base 1, and an upper limb pull rod 7 is provided on the power folding rod 6. The upper limb pull rod 7 is wound around the movable platform 2 from both sides to the top of the movable platform 2.

[0035] The power folding rod 6 includes a first sub-rod 61 and a second sub-rod 62, the first sub-rod 61 is hinged to the second sub-rod 62, the top of the first sub-rod 61 is hinged to the movable platform 2, and the bottom of the second sub-rod 62 is hinged to the base 1. The bottom of the upper limb pull rod 7 is fixedly connected to the side of the first sub-rod 61. The first sub-rod 61 is provided with a first buffer pad 63 arranged upward; the second sub-rod 62 is provided with a second buffer pad 64 arranged downward.

[0036] The monitoring component includes a pressure sensor 8, a timer and a touch panel 9. The monitoring component is arranged on the power folding rod 6 to detect the user's exercise intensity and exercise duration. There are two pressure sensors 8, which are arranged on the first buffer pad 63 and the second buffer pad 64 respectively. The touch panel 9 is arranged at the lower part of the second branch rod 62. The pressure sensor 8 is electrically connected to the touch panel 9 through a wire, and the wire is arranged inside the second branch rod 62.

[0037] An angle sensor 65 is provided at the hinge of the first branch rod 61 and the second branch rod 62 . The angle sensor 65 is electrically connected to the touch panel 9 and is used to monitor the unfolding angle of the power folding rod 6 and convert it into movement amplitude data.

[0038] The present invention mainly realizes muscle training through the user's own weight and the structural design of the movable platform, without the need for additional energy consumption. The movable platform is in an inclined state with the back higher and the front lower. When the user is training the lower limbs, he can use his own gravity to exercise the leg muscles, which is simple and practical. At the same time, the present invention can also perform comprehensive training on the muscles of the whole body. By pulling the upper limb training rod and coordinating the actions of leg kicking and trunk bending, the upper limbs, lower limbs and core muscles can be comprehensively trained.

[0039] The monitoring component can detect the user's exercise intensity, exercise range, exercise time and other data in real time. The pressure sensor can sense the pressure applied by the user on the device during training, thereby judging the exercise intensity; the angle sensor can monitor the unfolding angle of the power folding rod, and then convert it into exercise range data; the timer can accurately record the exercise duration.

[0040] By analyzing these monitoring data, medical staff or users themselves can scientifically evaluate the patient's training status. According to the changing trends of exercise intensity and time, they can understand the improvement of the patient's muscle endurance and strength. They can also generate personalized follow-up training plans based on the evaluation results to provide strong support for the rehabilitation training of diabetic patients.

[0041] Example 2

[0042] This embodiment discloses a muscle training device for diabetic patients.

[0043] In this embodiment, a load rack 22 is provided at the bottom of the movable platform 2. When in use, the operator can place weights on the load rack 22 according to the training conditions, thereby increasing the training intensity.

[0044] The design of the device in this embodiment fully considers the physical condition of diabetic patients. The setting of the load rack can provide moderate training intensity. Users can choose different training methods and weights according to their own conditions, which can achieve the purpose of muscle training without causing excessive burden on the body. It is suitable for long-term use by diabetic patients.

[0045] The above are only preferred specific implementation modes of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical solutions and inventive concepts of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A muscle training device for diabetic patients, characterized in that: It includes a device body and a real-time monitoring component; The device body comprises a base and a movable platform, wherein two movable support rods are arranged at the bottom of the movable platform, and the two ends of the movable support rods are respectively hinged with the base and the movable platform; the two ends of the movable platform are respectively provided with a footrest and a seat; a power folding rod is also arranged between the movable platform and the base, and an upper limb pull rod is arranged on the power folding rod, and the upper limb pull rod is wound from both sides of the movable platform to the top of the movable platform; The monitoring component includes a pressure sensor, a timer and a touch panel. The detection component is arranged on the power folding rod and is used to detect the exercise intensity and exercise duration of the user.

2. A diabetic muscle training device according to claim 1, characterized in that: The two movable support rods are respectively a long rod and a short rod, the short rod is arranged at the front side of the movable platform, and the long rod is arranged at the rear side of the movable platform. The two movable support rods make the movable platform present an inclined state with the rear higher and the front lower.

3. A muscle training device for diabetic patients according to claim 1, characterized in that: The power folding rod comprises a first sub-rod and a second sub-rod, the first sub-rod is hinged to the second sub-rod, the top of the first sub-rod is hinged to the movable platform, and the bottom of the second sub-rod is hinged to the base; The bottom of the upper limb pull rod is fixedly connected to the side of the first branch rod.

4. A muscle training device for diabetic patients according to claim 3, characterized in that: The first branch rod is provided with a first buffer pad arranged upward; the second branch rod is provided with a second buffer pad arranged downward.

5. A muscle training device for diabetic patients according to claim 4, characterized in that: The number of the pressure sensors is two and they are respectively arranged on the first buffer pad and the second buffer pad.

6. A diabetic muscle training device according to claim 4, characterized in that: The touch panel is arranged at the lower part of the second branch rod, and the pressure sensor is electrically connected to the touch panel through a wire, and the wire is passed through the inside of the second branch rod.

7. A muscle training device for diabetic patients according to claim 1, characterized in that: A hinged joint is arranged at the bottom of the seat, and the top of the long rod is hinged to the movable platform through the hinged joint.

8. A diabetic muscle training device according to claim 1, characterized in that: A load placement rack is provided at the bottom of the movable platform.

9. A diabetic muscle training device according to claim 4, characterized in that: An angle sensor is provided at the hinge of the first branch rod and the second branch rod. The angle sensor is electrically connected to the touch panel and is used to monitor the unfolding angle of the power folding rod and convert it into movement amplitude data.