Anti-resistance Tai Chi gloves for Turpan sand therapy

By designing a Tai Chi glove with an electrothermal layer, a Turpan sand layer, and an electrostimulation layer, and combining thermotherapy, electrotherapy, and resistance training, the problems of symptom differentiation, portability, and adaptability of existing rehabilitation training gloves have been solved, achieving targeted and flexible rehabilitation training effects.

CN121868032APending Publication Date: 2026-04-17HUNAN UNIV OF CHINESE MEDICINE
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
HUNAN UNIV OF CHINESE MEDICINE
Filing Date
2026-01-22
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing rehabilitation training gloves are not designed for diabetic hands, cannot meet the differentiated needs of the condition, have a complicated structure and are inconvenient to carry, lack multi-functional integration and condition-level adjustment, and are not adaptable enough.

Method used

A Tai Chi glove was designed, comprising an electrothermal layer, a Turpan sand layer, an electrostimulation layer, an airbag pressure channel, and a one-way valve air channel. It combines thermotherapy, electrotherapy, and resistance training, and can achieve targeted treatment and portability through knob adjustment, supporting multi-level rehabilitation modes.

Benefits of technology

It enables multifunctional rehabilitation training for diabetic hands, improves portability and adaptability, and can adjust the intensity and mode of treatment according to the condition to meet the needs of fragmented home training.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of medical rehabilitation, and discloses a Turpan sand therapy anti-resistance Tai Chi glove which comprises an electric heating layer, the electric heating layer is internally and fixedly filled with a Turpan sand layer, and an electric stimulation layer is fixedly arranged in the Turpan sand layer in a sleeving mode; an outer layer is fixedly arranged outside the electric heating layer in a sleeving mode, air bag pressure pipelines are arranged inside the outer layer in a surrounding and sleeving mode, and one-way valve air pipelines are arranged between the air bag pressure pipelines in a surrounding and sleeving mode; and a temperature adjusting knob is fixedly mounted outside the outer layer. Internal fingers are heated through the electric heating layer, then the Turpan sand layer is used for being attached to the fingers, the electric stimulation layer is used for conducting current stimulation on the internal fingers, the fingers are moved by adopting the posture of quivering, stroking, squeezing and pressing in the Tai Chi technique, spasm is relieved, and resistance is resisted. According to the invention, Turpan characteristic grit is combined with characteristic therapies such as thermal therapy, electrotherapy and the like, and finger spasm is specifically treated by utilizing the change of the posture of the Tai Chi technique.
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Description

Technical Field

[0001] This invention relates to the field of medical rehabilitation, and in particular to a stepped resistance-countermeasure glove featuring sand therapy and also possessing electrotherapy and thermotherapy functions. Background Technology

[0002] Globally, diabetes has become a major chronic disease, and its prevalence is increasing year by year due to various factors. Currently, there are 425 million adults (aged 20-79) with diabetes worldwide, with a prevalence of approximately 8.8%. China has the largest number of adult diabetes patients, at 114 million, accounting for more than a quarter of the global total, and this number continues to grow, projected to reach 120 million by 2045.

[0003] Long-term hyperglycemia often leads to various complications, among which "diabetic hand" is a common problem that seriously affects quality of life. Limited joint mobility, palmar aponeurosis contracture, and trigger finger are typical symptoms of diabetic hand. Patients often experience numbness, pain, stiffness, and a typical "contracture" state in their fingers due to peripheral neuropathy and limited joint mobility, resulting in weakness in grasping, difficulty in fine motor skills, and even inability to complete daily activities such as dressing and buttoning. Self-care ability and social participation are significantly reduced.

[0004] Currently, rehabilitation for diabetic hand often relies on single physical therapy methods or passive massage, which suffers from problems such as fragmented interventions, insufficient coordination, and low patient compliance. In particular, there is a lack of comprehensive rehabilitation equipment that can integrate multiple physical factors, combine passive treatment with active resistance training, and is convenient for daily home use. The market needs an innovative solution that can integrate functions such as heat therapy to improve circulation, electrotherapy to stimulate nerves, mechanical therapy to loosen adhesions, and active training to enhance muscle strength, providing efficient and convenient integrated rehabilitation intervention for diabetic hand patients to fill the existing technological gap. Therefore, a Turpan sand therapy resistance Tai Chi glove is proposed.

[0005] However, in the process of realizing this invention, the inventors discovered that at least the following problems remain unresolved in the existing technology: 1. Lack of disease-specific effects: Existing rehabilitation training gloves do not cover diabetic hand, a common disease, and cannot clearly address the different rehabilitation focuses of different conditions—stroke requires spasm suppression, while diabetic hand is mainly caused by nerve damage and requires a focus on gentle repair of nerve sensation. Existing devices cannot meet these differentiated needs; 2. Complex structural design and insufficient practicality: The integration of various functional components is not compact enough, resulting in a large overall size and weight, making it inconvenient to carry and unable to flexibly adapt to fragmented, high-frequency rehabilitation training scenarios in a home environment, thus failing to meet the actual needs of users for daily home rehabilitation training; 3. Existing devices only have a single rehabilitation mode and do not classify corresponding rehabilitation training levels based on the severity of different users' conditions, making it impossible to flexibly adjust the treatment mode and intensity according to the progression of the condition, resulting in a lack of adaptability. Therefore, the market urgently needs an innovative solution that can integrate the functions of thermotherapy to improve circulation, electrotherapy to stimulate nerves, mechanical therapy to loosen adhesions, and active training to enhance muscle strength, providing efficient and convenient integrated rehabilitation intervention for diabetic hand patients, thus filling the gap in existing technologies. Summary of the Invention

[0006] The purpose of this invention is to address the shortcomings of existing technologies, such as: lack of disease-specific effects; existing rehabilitation training gloves do not cover diabetic hand, a common disease, and cannot clearly address the different rehabilitation focuses of different conditions—stroke requires spasm suppression, while diabetic hand is mainly characterized by nerve damage, requiring a focus on gentle repair of nerve sensation. Existing devices cannot meet these differentiated needs; existing devices are structurally complex and lack practicality; the integration of various functional components is not compact enough, resulting in a large overall size and weight, making them inconvenient to carry and unable to flexibly adapt to fragmented, high-frequency rehabilitation training scenarios in a home environment, failing to meet the actual needs of users for daily home rehabilitation training; existing devices only have a single rehabilitation mode and do not classify rehabilitation training levels according to the severity of different users' conditions, failing to flexibly adjust the treatment mode and intensity according to the progression of the condition, resulting in a lack of adaptability. Therefore, this invention designs a Turpan sand therapy resistance-resistant Tai Chi glove.

[0007] To achieve the above objectives, the present invention adopts the following technical solution:

[0008] A Turpan sand therapy resistance Tai Chi glove includes an electrothermal layer, the interior of which is fixedly filled with a Turpan sand layer, and an electrostimulation layer is fixedly sleeved inside the Turpan sand layer.

[0009] The outer layer is fixedly sleeved on the outside of the heating layer, and an airbag pressure pipe is sleeved around the inside of the outer layer. A one-way valve air pipe is sleeved between the airbag pressure pipes.

[0010] A temperature adjustment knob is fixedly installed on the outer layer. An electrical stimulation position intensity adjustment knob is fixedly installed on one end of the temperature adjustment knob. An air pressure tube pressure adjustment knob is fixedly installed on one side of the electrical stimulation position intensity adjustment knob. A wind speed adjustment knob is fixedly installed on one side of the temperature adjustment knob. A one-way valve pressure adjustment knob is fixedly installed on one side of the wind speed adjustment knob. A one-way valve fixed-point opening position adjustment knob is fixedly installed on one side of the one-way valve pressure adjustment knob.

[0011] Preferably, the outer solid sleeve of the heating layer is fitted with an inner elastic band, and an outer elastic band is sewn to the outside of the inner elastic band for fixation.

[0012] Preferably, the outer elastic band is provided with a Velcro inner layer, and the outer Velcro inner layer is provided with an outer Velcro.

[0013] Preferably, a centered control button sewing pad is fixedly sewn to one end of the outer hook and loop fastener, and a left-side control button sewing pad is fixedly sewn to the surface of the outer hook and loop fastener.

[0014] Preferably, one end of the centering control button sewing pad is fixedly sewn with a centering control button fixing strap, which is made of base fabric.

[0015] Preferably, a left control button fixing strap is fixedly sewn onto the surface of the left control button sewing pad, and a right control button sewing pad is fixedly sewn onto one side of the left control button sewing pad.

[0016] Preferably, the surface of the right control button sewing pad is fixedly sewn with a right control button fixing strap, which is made of a base fabric material.

[0017] Preferably, the bottom of the outer layer is fixedly sewn with a sewing tape, and a sewing groove is provided through the inside of the sewing tape.

[0018] Preferably, the bottom of the suture band is fixedly sewn with a fastening outer band, and a fastening outer groove is provided through the inside of the fastening outer band.

[0019] Preferably, the inner part of the fastening outer groove is fixedly sewn with an adhesive tape, and the adhesive tape has an adhesive groove through it.

[0020] Compared with the prior art, the beneficial effects of the present invention are:

[0021] 1. This invention heats the inner palm through an electrothermal layer, then uses a Turpan sand layer to adhere to the fingers, and then uses an electrical stimulation layer to stimulate the inner fingers with current. This allows for a more targeted treatment mode, using Turpan's unique sand and combining thermotherapy and electrotherapy to treat finger spasms in a targeted manner.

[0022] 2. This invention uses multiple airbag pressure pipes fixedly installed inside the air layer between the outer layer and the heating layer to inflate and fit different fingers. Then, multiple one-way valve air pipes are used to inflate and fit different fingers. The method of inflating and deflating the airbags can be used to drive the fingers to complete the movement, replacing the traditional bulky mechanical device. This makes the whole device lightweight and easy to carry, thereby improving the practical portability of the device.

[0023] 3. This invention involves adjusting the wind speed control knob. First, set it to level one, a lower wind speed that blows fine sand up and concentrates it on the palm. After hearing a dripping sound, proceed to level two, a higher wind speed that blows coarser sand up, distributing the fine sand to various parts of the hand. For stronger stimulation, set it to level three. After the sand is fully covered, adjust the one-way valve pressure control knob to release air from the one-way valve's air pipe. Adjusting the knob controls the amount of air released, thus adjusting the pressure stimulation intensity of the sand on the hand. After releasing air, the sand is shaped to closely resemble the hand, clearly showing the finger outlines. Then, temperature control... Adjusting the knob heats the grit, indirectly and at a constant temperature, warming the patient's hand. The warmth combined with the pressure of the grit helps promote blood circulation, facilitating hand extension and the recovery of fine motor skills. Next, using the knob to adjust the intensity of the electrical stimulation, rotating it selects a specific finger to stimulate. Pressing the knob confirms the selection, and continuing to press adjusts the intensity of the stimulation for that finger. To select multiple fingers, rotate the knob again to select another finger, repeating the process. A long press stops all electrical stimulation, which can be controlled via a one-way valve in the electrical stimulation circuit. The air duct installation allows for precise positioning of a single finger. By adjusting the one-way valve's fixed-point opening position knob, a single finger is selected, and the device inflates unidirectionally into that finger. Using air pressure, the curled finger is slowly stretched. In cases where fingers are tightly pressed together and difficult to separate, adjusting the air pressure adjustment knob on the airbag tube allows for slow inflation, gently prying the patient's fingers apart. This avoids injury from forced separation. Furthermore, resistance training using gravel can be implemented, allowing for weight-bearing exercise while simultaneously... This method aims to enhance therapeutic effects by combining training with treatment. It allows for the creation of different treatment levels based on the patient's condition, categorized into four levels from severe to mild. Users can select the appropriate treatment combination based on the corresponding level to meet the needs of different condition levels. When using Tai Chi, the hand position requires "five fingers naturally extended, palm slightly concave." The techniques of Peng, Lu, Ji, and An must maintain an arc-shaped trajectory and continuous force. Even when wearing gloves, these principles must be strictly followed. When Peng, the arm should be bent in an arc, palm facing inward, with force reaching the outer forearm, to avoid deformation due to loose gloves. Attached Figure Description

[0024] Figure 1 This is a three-dimensional view of a Turpan sand therapy resistance-resistant Tai Chi glove proposed in this invention;

[0025] Figure 2 This is a schematic diagram of the overall structure of a Turpan sand therapy resistance-resistant Tai Chi glove proposed in this invention;

[0026] Figure 3 This is a schematic diagram of the outer partial structure of a Turpan sand therapy anti-resistance Tai Chi glove proposed in this invention;

[0027] Figure 4 This is a partial three-dimensional view of the electrothermal layer of a Turpan sand therapy anti-resistance Tai Chi glove proposed in this invention;

[0028] Figure 5 This is a partial three-dimensional view of the inner elastic band of a Turpan sand therapy anti-resistance Tai Chi glove proposed in this invention;

[0029] Figure 6 This is a partial three-dimensional view of the inner layer of the Velcro of a Turpan sand therapy anti-resistance Tai Chi glove proposed in this invention;

[0030] Figure 7 This is a partial three-dimensional view of the suture band of a Tai Chi glove for resisting therapies in Turpan sand therapy proposed in this invention;

[0031] Figure 8 This is a partial three-dimensional view of the fastening outer strap of a Turpan sand therapy anti-resistance Tai Chi glove proposed in this invention.

[0032] In the diagram: 1. Inner elastic band; 101. Outer elastic band; 2. Inner layer of Velcro; 201. Outer Velcro; 3. Seam tape; 301. Seam groove; 4. Fastening outer tape; 401. Fastening outer groove; 402. Adhesive tape; 403. Adhesive groove; 5. Left control button seam pad; 501. Left control button fixing tape; 6. Right control button seam pad; 601. Right control button fixing tape; 7. Centered control button seam pad; 701. Centered control button fixing band; 8. Temperature adjustment knob; 801. Electrical stimulation position and intensity adjustment knob; 802. Air pressure tube pressure adjustment knob; 803. Wind speed adjustment knob; 804. One-way valve pressure adjustment knob; 805. One-way valve fixed-point opening position adjustment knob; 9. Outer layer; 901. Air pressure pipe; 902. One-way valve air pipe; 10. Electrothermal layer; 1001. Turpan sand layer; 1002. Electrical stimulation layer. Detailed Implementation

[0033] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.

[0034] Reference Figures 1-8 A Turpan sand therapy resistance Tai Chi glove includes an electric heating layer 10, the interior of which is fixedly filled with a Turpan sand layer 1001, and the interior of the Turpan sand layer 1001 is fixedly fitted with an electric stimulation layer 1002.

[0035] The outer layer 9 is fixedly sleeved on the outside of the heating layer 10. The inner part of the outer layer 9 is surrounded by airbag pressure pipes 901. One-way valve air pipes 902 are surrounded between the airbag pressure pipes 901.

[0036] A temperature adjustment knob 8 is fixedly installed on the outer layer 9. An electric stimulation position intensity adjustment knob 801 is fixedly installed on one end of the temperature adjustment knob 8. An air pressure tube pressure adjustment knob 802 is fixedly installed on one side of the electric stimulation position intensity adjustment knob 801. A wind speed adjustment knob 803 is fixedly installed on one side of the temperature adjustment knob 8. A one-way valve pressure adjustment knob 804 is fixedly installed on one side of the wind speed adjustment knob 803. A one-way valve fixed-point opening position adjustment knob 805 is fixedly installed on one side of the one-way valve pressure adjustment knob 804.

[0037] When this device is in operation, the internal fingers are heated by the heating layer 10, then the Turpan sand layer 1001 is attached to the palm, and then the internal palm is stimulated by the electrical stimulation layer 1002. This allows for a more targeted treatment mode, using Turpan sand and combining heat therapy and electrotherapy to treat finger spasms.

[0038] Multiple airbag pressure pipes 901, which are fixedly installed inside the air layer between the outer layer 9 and the heating layer 10, inflate and fit different fingers. Then, multiple one-way valve air pipes 902 are used to inflate and fit different fingers. The method of inflating and deflating airbags can be used to drive the fingers to complete the movement, replacing the traditional bulky mechanical device. This makes the whole device lightweight and easy to carry, thereby improving the practical portability of the device.

[0039] By adjusting the wind speed control knob 803, first set it to level one, a lower wind speed that blows fine sand up and concentrates it on the palm. After hearing a dripping sound, proceed to the next step, setting it to level two, a higher wind speed that blows up coarser sand, distributing the fine sand to various parts of the hand. For stronger stimulation, set it to level three. After the sand is covered, use the one-way valve pressure control knob 804 to release air from the one-way valve air pipe 902. Adjust the amount of air released by adjusting the knob to adjust the pressure stimulation intensity of the sand on the hand. After releasing air, the sand is shaped to closely resemble the shape of the hand, clearly showing the outline of the fingers. Then, adjust the temperature... Knob 8 heats the sand, indirectly and at a constant temperature, warming the patient's hand. The warmth combined with the pressure of the sand helps promote blood circulation, facilitating hand extension and the recovery of fine motor skills. Next, using the electrical stimulation position and intensity adjustment knob 801, rotating the knob selects a specific finger to be stimulated. Pressing the knob confirms the selection of the current finger, and continuing to press adjusts the electrical stimulation intensity for that finger. To select multiple fingers, rotate the knob again to select another finger, repeating the above operation. A long press of the knob stops all electrical stimulation, allowing the electrical stimulation circuit to operate along the one-way valve airflow. The installation of pipe 902 allows for precise positioning of a single finger. By adjusting the one-way valve's fixed-point opening position knob 805, a single finger is selected. This allows the device to inflate the selected finger in one direction, using air pressure to slowly extend the curled finger. In cases where fingers are tightly pressed together and difficult to separate, adjusting the air pressure adjustment knob 802 through the air pressure pipe 901 slowly inflates the air, gently prying apart the patient's tightly pressed fingers. This avoids injury from forced separation. Furthermore, resistance training using gravel can be implemented, allowing the training process to achieve weight-bearing exercise. At the same time, it plays a therapeutic role, thus combining training and treatment. It can set different levels of treatment modes according to the condition, divided into four levels from severe to mild. When using it, you can select the matching treatment combination mode according to the corresponding level, so as to adapt to the needs of the condition classification. When using it, the Tai Chi hand shape requires "five fingers naturally extended and palm slightly concave". The hand techniques require that Peng, Lu, Ji, and An maintain an arc trajectory and continuous force. Even after wearing gloves, these principles must still be strictly followed. When Peng, the arm is bent into an arc, the palm faces inward, and the force reaches the outside of the forearm to avoid deformation due to loose gloves.

[0040] Among them, the outer solid sleeve of the electric heating layer 10 is fitted with an inner elastic band 1, and the outer elastic band 101 is fixedly sewn to the outside of the inner elastic band 1.

[0041] It should be noted that when this device is in operation, the inner elastic band 1 and the outer elastic band 101 can be used to fix and suture the outer layer 9, which can adapt to the size of the patient's wrist for wearing and use.

[0042] Among them, the outer elastic band 101 is externally fixed with a Velcro inner layer 2, and the outer Velcro 201 is externally fixed with the Velcro inner layer 2.

[0043] It should be noted that by using the inner Velcro layer 2 and the outer Velcro 201 to adhere to the palm when it passes through the inner elastic band 1 and the electrical stimulation layer 1002, the palm can be fixed in place for wearing, thereby improving the stability of the glove.

[0044] Among them, one end of the outer hook and loop fastener 201 is fixedly sewn with a central control button sewing pad 7, and the surface of the outer hook and loop fastener 201 is fixedly sewn with a left control button sewing pad 5.

[0045] It should be noted that multiple button stitching pads are installed by wrapping around the outer Velcro 201, thereby improving the stability of button installation;

[0046] Among them, a center control button fixing strap 701 is fixedly sewn to one end of the center control button sewing pad 7, and the center control button fixing strap 701 is made of base fabric.

[0047] It should be noted that the electric stimulation position intensity adjustment knob 801 and the air pressure tube pressure adjustment knob 802 are stably sewn together internally by the central control button fixing strap 701, thereby improving the stability of the electric stimulation position intensity adjustment knob 801 and the air pressure tube pressure adjustment knob 802 in use.

[0048] Among them, the surface of the left control button sewing pad 5 is fixedly sewn with the left control button fixing strap 501, and the side of the left control button sewing pad 5 is fixedly sewn with the right control button sewing pad 6.

[0049] It should be noted that the temperature adjustment knob 8 and the fan speed adjustment knob 803 are stably sewn together internally by the control button fixing strap 501 on the left side, thereby improving the stability of the temperature adjustment knob 8 and the fan speed adjustment knob 803 in use.

[0050] Among them, the surface of the right control button sewing pad 6 is fixedly sewn with a right control button fixing strap 601, which is made of base fabric material;

[0051] It should be noted that the one-way valve pressure adjustment knob 804 and the one-way valve fixed-point opening position adjustment knob 805 are stably and securely installed inside by fixing the right-side control button with the strap 601, thereby improving the stability of the one-way valve pressure adjustment knob 804 and the one-way valve fixed-point opening position adjustment knob 805.

[0052] Among them, the bottom of the outer layer 9 is fixedly sewn with a sewing tape 3, and a sewing groove 301 is provided through the inside of the sewing tape 3;

[0053] It should be noted that the safety of glove use is improved by sewing the bottom of the outer layer 9, the electric heating layer 10, the electric stimulation layer 1002, the inner elastic band 1, and the outer elastic band 101 together with the sewing tape 3.

[0054] Among them, the bottom of the suture tape 3 is fixedly sewn with a fastening outer tape 4, and the fastening outer tape 4 has a fastening outer groove 401 through it;

[0055] It should be noted that by fastening the outer strap 4 to the bottom of the stitching strap 3, the abrasion resistance of the gloves is improved.

[0056] Among them, the inner fixed stitch of the fastening outer groove 401 is fitted with a bonding tape 402, and the inner part of the bonding tape 402 is provided with a bonding groove 403;

[0057] It should be noted that by sewing the adhesive tape 402 inside the fastening outer tape 4, the palm can easily pass through the glove, thereby improving the ease of wearing the glove.

[0058] In this invention, when using the device, the user should refer to the appendix of the instruction manual. Figure 1 Instruction manual attached Figure 2 Instruction manual attached Figure 5 Instruction manual attached Figure 6 Instruction manual attached Figure 7 Included with instruction manual Figure 8 When the device is in operation, it is sewn and installed inside the fastening outer band 4 by the adhesive tape 402. Then, the palm is easily passed through the glove by the adhesive tape 402. Then, the fastening outer band 4 is sewn and installed at the bottom of the sewing tape 3. Then, the bottom of the outer layer 9, the electrothermal layer 10, the electrostimulation layer 1002, the inner elastic band 1 and the outer elastic band 101 are sewn and installed by the sewing tape 3. Then, the inner elastic band 1 and the outer elastic band 101 are fixed and sewn on the outside of the outer layer 9. Then, the inner Velcro layer 2 and the outer Velcro 201 are used to make movable adhesion when the palm passes through the inner elastic band 1 and the electrostimulation layer 1002.

[0059] Next, refer to the attached instruction manual. Figure 2 Included with instruction manual Figure 6Multiple button stitching pads are installed by externally wrapping around the outer Velcro 201. Then, the electric stimulation position intensity adjustment knob 801 and the air pressure tube pressure adjustment knob 802 are stably stitched and installed inside by using the central control button fixing strap 701. Next, the temperature adjustment knob 8 and the wind speed adjustment knob 803 are stably stitched and installed inside by using the left control button fixing strap 501. Then, the one-way valve pressure adjustment knob 804 and the one-way valve fixed point opening position adjustment knob 805 are stably stitched and installed inside by using the right control button fixing strap 601.

[0060] Finally, please refer to the attached instruction manual. Figure 1 Instruction manual attached Figure 2 Instruction manual attached Figure 3 Instruction manual attached Figure 4 Included with instruction manual Figure 6The process involves heating the fingers inside the heating layer 10, then applying Turpan sand layer 1001 to the palm, followed by electrical stimulation of the palm using an electrical stimulation layer 1002. Next, multiple airbag pressure pipes 901, fixedly installed within the air layer between the outer layer 9 and the heating layer 10, inflate and adhere different fingers. Then, multiple one-way valve air pipes 902 further inflate and adhere different fingers. Finally, the wind speed adjustment knob 803 is used to adjust the wind speed to level one, where a low wind speed blows up the fine sand. Concentrate the sand in your palm. After hearing a beep, proceed to the next step: adjust to level two, a higher wind speed to blow up coarser sand, distributing finer sand to various parts of your hand. For stronger stimulation, adjust to level three. Once the sand is covered, use the one-way valve pressure adjustment knob 804 to release air from the one-way valve air pipe 902. Control the amount of air released by adjusting the knob to adjust the pressure stimulation intensity of the sand on your hand. After releasing air, the sand will shape closely resemble your hand, clearly showing the outline of your fingers. Then, use the temperature adjustment knob 8 to further adjust the sand temperature. Heat can indirectly and at a constant temperature warm the patient's hand. The warmth combined with the pressure of the sand helps promote blood circulation, facilitating hand extension and the recovery of fine motor skills. Then, by adjusting the intensity of the electrical stimulation using the adjustment knob 801, rotating the knob allows selection of a specific finger to be stimulated. Pressing the knob confirms the selection of the current finger, and continuing to press adjusts the intensity of the electrical stimulation for that finger. To select multiple fingers, rotate the knob again to select another finger, and repeat the above operation. Pressing and holding the knob stops all electrical stimulation. The electrical stimulation circuit can be laid along the one-way valve air pipe 902 to accurately locate a single finger. Then, by adjusting the one-way valve fixed-point opening position adjustment knob 805, rotating the knob fixes the selection of a finger, allowing the device to inflate the selected finger in one direction. Using air pressure, the curled finger is slowly extended. If the fingers are tightly pressed together and difficult to separate, by adjusting the air pressure adjustment knob 802, air is slowly inflated through the air pressure pipe 901, gently opening the patient's tightly pressed fingers, avoiding injury caused by forced separation.

[0061] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. A Turpan sand therapy resistance-resistant Tai Chi glove, comprising an electrothermal layer (10), characterized in that, The interior of the electric heating layer (10) is fixedly filled with a Turpan sand layer (1001), and an electric stimulation layer (1002) is fixedly sleeved inside the Turpan sand layer (1001). The outer layer (9) is fixedly sleeved on the outside of the heating layer (10), and the inner side of the outer layer (9) is surrounded by airbag pressure pipes (901), and the airbag pressure pipes (901) are surrounded by one-way valve air pipes (902). A temperature adjustment knob (8) is fixedly installed on the outside of the outer layer (9). An electric stimulation position intensity adjustment knob (801) is fixedly installed on one end of the temperature adjustment knob (8). An air pressure tube pressure adjustment knob (802) is fixedly installed on one side of the electric stimulation position intensity adjustment knob (801). A wind speed adjustment knob (803) is fixedly installed on one side of the temperature adjustment knob (8). A one-way valve pressure adjustment knob (804) is fixedly installed on one side of the wind speed adjustment knob (803). A one-way valve fixed-point opening position adjustment knob (805) is fixedly installed on one side of the one-way valve pressure adjustment knob (804).

2. The Turpan sand therapy resistance-resistant Tai Chi glove according to claim 1, characterized in that, The outer solid sleeve of the heating layer (10) is fitted with an inner elastic band (1), and the outer elastic band (101) is fixedly sewn to the outside of the inner elastic band (1).

3. The Turpan sand therapy resistance-resistant Tai Chi glove according to claim 2, characterized in that, The outer elastic band (101) is fitted with a Velcro inner layer (2), and the outer Velcro inner layer (2) is sewn with an outer Velcro (201).

4. The Turpan sand therapy resistance-resistant Tai Chi glove according to claim 3, characterized in that, One end of the outer Velcro (201) is fixedly sewn with a central control button sewing pad (7), and the surface of the outer Velcro (201) is fixedly sewn with a left control button sewing pad (5).

5. The Turpan sand therapy resistance-resistant Tai Chi glove according to claim 4, characterized in that, One end of the centering control button sewing pad (7) is fixedly sewn with a centering control button fixing strap (701), which is made of base fabric.

6. The Turpan sand therapy resistance-resistant Tai Chi glove according to claim 4, characterized in that, The surface of the left control button sewing pad (5) is fixedly sewn with a left control button fixing band (501), and a right control button sewing pad (6) is fixedly sewn to one side of the left control button sewing pad (5).

7. The Turpan Sand Therapy Resistance-Resistant Tai Chi Glove according to claim 6, characterized in that, The surface of the right control button sewing pad (6) is fixedly sewn with a right control button fixing strap (601), which is made of base fabric.

8. The Turpan sand therapy resistance-resistant Tai Chi glove according to claim 1, characterized in that, The bottom of the outer layer (9) is fixedly sewn with a suture tape (3), and a suture groove (301) is provided through the inside of the suture tape (3).

9. The Turpan sand therapy resistance-resistant Tai Chi glove according to claim 8, characterized in that, The bottom of the suture band (3) is fixedly sewn with a fastening outer band (4), and a fastening outer groove (401) is provided through the inside of the fastening outer band (4).

10. The Turpan sand therapy resistance-resistant Tai Chi glove according to claim 9, characterized in that, The inner part of the fastening outer groove (401) is fixedly sewn with a bonding tape (402), and the inner part of the bonding tape (402) is provided with a bonding groove (403).