Multifunctional pulse electro-therapeutic apparatus for patients with tourette syndrome
By designing a multi-functional pulse electrotherapy instrument and using infrared emitters to irradiate the corresponding acupuncture points, the side effects of drug treatment and low acceptance of acupuncture treatment are solved, and home treatment and stable physiotherapy effects are achieved.
Patent Information
- Application Number
- CN202510900692.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-01
- Publication Date
- 2025-08-15
AI Technical Summary
The existing medications for treating tics have side effects. Acupuncture treatment requires breaking the skin and stabbing it into the acupoints. The children have low acceptance and inconvenient treatment time, which leads to frequent medical treatment delays.
A multi-functional pulse electrotherapy instrument is designed, including chest, head and facial physiotherapy components, and irradiate the corresponding acupuncture points through infrared emitters, replacing acupuncture and skin breaking to achieve home treatment.
It improves the treatment acceptance of children, avoids frequent medical treatment, and ensures the stability and safety of physical therapy effects.
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Figure CN120478841A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of pulse electrotherapy apparatus, in particular to a multifunctional pulse electrotherapy apparatus for patients with Tourette syndrome. Background Art
[0002] Tourette syndrome is a chronic neurological disorder that may be caused by environmental, psychological, or genetic factors. Children with Tourette syndrome usually experience involuntary muscle twitching, vocal tics, and other symptoms. The incidence of this disease is usually high. Currently, the main clinical treatments for Tourette syndrome in children include medication, psychotherapy, and neuromodulation therapy. Medication therapy mainly includes haloperidol, pimozide tablets, and clonidine hydrochloride tablets. These drugs can significantly improve the mental tension and tics in children.
[0003] However, the types of drugs mentioned above have many side effects, so more and more parents choose non-drug treatments. However, in the clinical treatment process, it was found that acupuncture is also very effective. Acupuncture treatment is effective, but patients need to use it every other day, and children need to take leave to come to the hospital for treatment, which delays their classes. In addition, acupuncture treatment requires acupuncture needles to break the skin and insert into the acupuncture points, which is difficult for children to accept. Considering its significant treatment effect, but low acceptance, and inconvenient treatment time and other factors, we proposed to use infrared rays instead of acupuncture to solve the problem of breaking the skin and improve the acceptance of children. Then, headbands, eye masks, and vests are used as carriers of infrared rays. In this way, children can receive treatment at home, solving the problem of children having to take frequent leave to come to the hospital for treatment.
[0004] Therefore, it is necessary to solve the above problems through a multifunctional pulse electrotherapy device for patients with Tourette syndrome. Summary of the Invention
[0005] The purpose of the present invention is to provide a multifunctional pulse electrotherapy device for patients with Tourette syndrome to solve the problems raised in the above background technology.
[0006] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a multifunctional pulse electrotherapy device for patients with Tourette syndrome, The invention comprises a chest physiotherapy component (1), a head physiotherapy component (2) and a facial physiotherapy component (3), and is characterized in that: the chest physiotherapy component (1) is electrically connected to the head physiotherapy component (2) and the facial physiotherapy component (3) via a power supply line and a signal line respectively, wherein the chest physiotherapy component (1), the head physiotherapy component (2) and the facial physiotherapy component (3) communicate with each other via the signal line; The chest therapy component (1) comprises a vest shell (101), wherein a first push rod (103) and a second push rod (106) are provided inside the vest shell (101), and the output ends of the first push rod (103) and the second push rod (106) pass through the vest shell (101), and an adjustment plate (102) is provided at the output ends of the first push rod (103) and the second push rod (106), and a first infrared emitter (109) is provided on the surface of each of the adjustment plates (102), and a plurality of ray points are provided on the surface of the first infrared emitter (109), and the plurality of ray points respectively correspond to acupuncture points on the patient's chest, and the chest therapy component (1) can irradiate the acupuncture points on the patient's chest through the first infrared emitter (109) in conjunction with the plurality of ray points.
[0007] Preferably, the head therapy component includes a first magnetic connection device, and the magnetic connection device is used to electrically connect the head therapy component with the signal line and the power supply line. The magnetic force generated by the magnetic connection device can connect the head therapy component with the signal line and the power supply line. A headband bracket is provided on the outer surface of the magnetic connection device, and the material of the headband bracket is stainless steel.
[0008] Preferably, an elastic limiting belt is provided at the bottom of the headband bracket, and the elastic limiting belt is used to fix the bottom of the headband bracket at the patient's ear, and the elastic limiting belt can be sleeved on the patient's ear; The number of the elastic limiting bands is set to two, and the two elastic limiting bands are laterally symmetrically arranged at the left and right ends of the headband bracket. The two laterally symmetrical elastic limiting bands can respectively connect the two ends of the bottom of the headband bracket to the ears of the patient's head.
[0009] Preferably, a first infrared emitter is provided in the central area of the bottom of the headband bracket, and the emitting surface of the first infrared emitter is located at the top of the patient's head. The first infrared emitter array is provided with multiple ray points, and the multiple ray points correspond to the acupuncture points on the patient's head respectively. The first infrared emitter uses multiple ray points to emit infrared rays to the top of the patient's head.
[0010] Preferably, the facial therapy component includes a frame bracket, and the left and right sides of the frame bracket are hingedly provided with restraint straps, and the frame bracket can be fixed to the patient's ears using the restraint straps. A second magnetic connection device is provided at the bottom of the frame bracket, and the second magnetic connection device is used to connect the power supply line and the signal line.
[0011] Preferably, a mirror is provided inside the frame bracket, the mirror is located in the central area of the frame bracket, and the mirror is made of flexible skin-friendly plastic. A second infrared emitter is provided on the middle surface of the mirror, and a plurality of ray points are provided on the side of the second emitter facing the patient's face, and the plurality of ray points correspond to the acupuncture points on the patient's face respectively.
[0012] Preferably, the outer surface of the vest shell is provided with a plurality of connection sockets, and the output ends of the plurality of connection sockets are electrically connected to the signal line and the power supply line, and the ends of the signal line and the power supply line away from the connection sockets are provided with metal iron sheets, and the outer side of the metal patch is provided with a connector, and the outer surface of the vest shell is provided with a control panel, and the control panel is used to control the start and shut down status of the facial therapy component and the head therapy component respectively through the signal line and the power supply line.
[0013] Preferably, a third push rod is provided on the side of the inner wall of the vest shell facing the adjustment plate, and the third push rod passes through the vest shell, and the output end of the third push rod is fixedly connected to a load-bearing plate, and the positions of the load-bearing plate and the two laterally symmetrical adjustment plates correspond to each other. There are two adjustment plates, and each adjustment plate is laterally symmetrically arranged on the inner wall of the vest shell, and the load-bearing plate is used to support the patient's back, and pressure sensors are provided on both sides of the weight-bearing plate, and the pressure sensors are used to detect the pressure state of the weight-bearing plate.
[0014] Technical effects and advantages of the present invention: 1. The present invention electrically connects the chest therapy component, the head therapy component and the face therapy component through power supply lines and signal lines. The third infrared emitter on the chest, the first infrared emitter on the head and the second infrared emitter on the face emit infrared rays corresponding to the acupuncture points on the chest, head and face respectively. Multiple components work together to achieve synchronous therapy for acupuncture points on multiple parts of the body, replacing acupuncture and moxibustion that breaks the skin with infrared irradiation, thereby improving the children's acceptance of treatment. In addition, the child can be used at home to avoid frequent medical treatment and delaying courses.
[0015] 2. The present invention uses the first push rod, the second push rod, the third push rod and the pressure sensor to adjust the distance between the adjustment plate and the patient according to the patient's body shape data detected by the pressure sensor. When the surface of the infrared emitter is adhered to dirt due to sweat or the like, the third push rod drives the load-bearing plate to tilt so that the patient's body can wipe off the dirt, automatically adapting to children of different body shapes to avoid burns caused by excessive infrared irradiation. At the same time, the emitter surface is cleaned through the mutual cooperation of the load-bearing plate and the adjustment plate, ensuring stable physical therapy effects. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 It is a front view of the overall structure of the present invention; Figure 3 This is a rear view of the chest physiotherapy assembly structure of the present invention; Figure 4 This is a schematic diagram of the chest therapy assembly of the present invention in an open state; Figure 5 This is a schematic diagram of the adjustment plate and related structures of the present invention; Figure 6 Schematic diagram of the structure of the third infrared emitter and the adjustment board in the installation state of the present invention; Figure 7 This is a schematic diagram of the locking hinge screw structure of the present invention.
[0017] In the figure: 1. Chest therapy component; 101. Vest shell; 102. Adjustment plate; 103. First push rod; 104. Controller; 105. Conveyor line; 106. Second push rod; 107. Third push rod; 108. Connecting socket; 109. First infrared emitter; 110. Load-bearing plate; 2. Head therapy component; 201. Headband bracket; 202. Second infrared emitter; 203. Elastic limiting belt; 3. Facial therapy component; 301. Frame bracket; 302. Mirror; 303. Third infrared emitter; 304. Restraint belt. DETAILED DESCRIPTION
[0018] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.
[0019] The present invention provides Figures 1 to 7 The multifunctional pulse electrotherapy device for patients with Tourette syndrome shown in the figure includes a chest therapy component 1, a facial therapy component 3 and a head therapy component 2, and the chest therapy component 1 is electrically connected to the facial therapy component 3 and the head therapy component 2 through a transmission line 105, wherein the chest therapy component 1, the head therapy component 2 and the facial therapy component 3 communicate with each other through a signal line, and the transmission line 105 includes a power supply line and a signal line.
[0020] When in use, first wear the chest therapy component 1 on the patient's upper body, then wear the head therapy device on the top of the patient's head, and at the same time wear the facial therapy component 3 on the patient's face, and use the connecting line to power the chest therapy component 1, head therapy component 2 and facial therapy component 3 at the same time. In addition, a controller 104 is provided on the outer surface of the chest therapy component, and the controller 104 is used in conjunction with the signal line to realize control therapy of the chest therapy component 1, head therapy component 2 and facial therapy component 3.
[0021] The chest therapy component 1 includes a vest shell 101, and a first push rod 103 and a second push rod 106 are provided inside the vest shell 101, and the output ends of the first push rod 103 and the second push rod 106 pass through the vest shell 101, and the output ends of the first push rod 103 and the second push rod 106 are hingedly provided with an adjustment plate 102, and the number of the adjustment plates 102 is two, and each adjustment plate 102 is laterally symmetrically arranged on the inner wall of the vest shell 101, and the surface of each adjustment plate 102 is provided with a first infrared emitter 109, and the surface of the first infrared emitter 109 is provided with each ray point, and the multiple ray points correspond to the acupuncture points on the patient's chest, and the chest therapy component 1 irradiates the acupuncture points on the patient's chest through the first infrared emitter 109 in cooperation with the multiple ray points, thereby achieving a physiotherapy effect on the patient's chest.
[0022] The outer surface of the vest shell 101 is provided with multiple connection sockets 108, and the output ends of the multiple connection sockets 108 are electrically connected to the signal line and the power supply line, and the ends of the signal line and the power supply line away from the connection sockets 108 are provided with metal iron sheets, and the outside of the metal sheets are provided with connectors. The outer surface of the vest shell 101 is provided with a control panel, and the control panel is used to control the start and stop of the facial therapy component 3 and the head therapy component 2 respectively through the signal line and the power supply line.
[0023] A third push rod 107 is provided on the side of the inner wall of the vest shell 101 facing the adjustment plate 102, and the third push rod 107 passes through the vest shell 101. The output end of the third push rod 107 is fixedly connected to the load-bearing plate 110, and the positions of the load-bearing plate 110 and the two laterally symmetrical adjustment plates 102 correspond to each other, and the load-bearing plate 110 is used to support the patient's back. Pressure sensors are provided on both sides of the weight-bearing plate 110, and the pressure sensors are used to detect the pressure state of the weight-bearing plate 110.
[0024] During use, the patient wears the vest shell 101 on the upper body area, and then operates the controller 104 to start auxiliary physical therapy. At this time, the controller 104 will control the first infrared emitter 109 on the adjustment plate 102 to emit infrared beams to the patient's chest acupuncture points through multiple ray points, thereby achieving the effect of auxiliary physical therapy on the patient's chest acupuncture points. At the same time, the first push rod 103 and the second push rod 106 are used to respectively control the distance between the adjustment plate 102 and the vest shell 101, so as to adjust different irradiation intensities according to the patient's specific condition. At the same time, the weight-bearing plate 110 in the vest shell 101 is used to detect the patient's posture in real time and judge the patient's posture at this time (using the detected pressure data for analysis).
[0025] Due to the different body shapes of different children, the distance between the adjustment plate 102 and the patient's body is different. If the patient's body is large, the patient's skin will be in close contact with the adjustment plate 102, which will cause the first infrared emitter 109 on the adjustment plate 102 to emit too strong infrared rays through multiple ray points, causing burns on the patient's body surface. In addition, during the physical therapy process, the infrared rays irradiating the patient's skin surface cause a certain amount of heat on the patient's skin surface, causing a large amount of sweat on the patient's body surface. In this process, a large amount of sweat mixed with skin tissue will form stains and dirt attached to the transmitting end of the third infrared ray emitter. In this way, the infrared beam emitted by the first infrared emitter 109 will be blocked, making it impossible to irradiate the patient's acupuncture points, resulting in a significant decrease in the patient's physical therapy effect. Based on this problem, this solution makes the following adjustments: The pressure sensor is used to detect the pressure data of the load-bearing plate 110 in real time and analyze the patient's body shape data when wearing it. If it is detected that the patient's body shape is large, the first push rod 103 and the second push rod 106 are controlled to shrink, so that the distance between the two adjustment plates 102 and the patient's chest area is gradually increased. Then, the first infrared emitter 109 is turned on by the controller 104 to detect the distance of the patient's chest area. If it meets the irradiation distance, the first push rod 103 and the second push rod 106 are stopped and the adjusted distance is maintained to irradiate the patient's chest, thereby achieving the effect of physical therapy. If the light beam emitted by the first infrared emitter 109 detects that the patient is When the distance between the body and the adjustment plate 102 is still not at a therapeutic distance, the third push rod 107 is controlled to drive the distance between the load-bearing plate 110 and the inner wall of the vest shell 101 to gradually decrease, so that the space between the patient's chest area and the adjustment plate 102 gradually expands. When it expands to a suitable distance, the third push rod 107 is stopped from contracting, and then the first push rod 103 and the second push rod 106 are controlled to extend, and then the distance between the adjustment plate 102 and the patient's chest is continued to be adjusted, and the first infrared emitter 109 is used to detect the distance between the adjustment plate 102 and the patient's chest in real time, until the adjustment plate 102 is at the therapeutic distance, it stops moving, and the therapeutic work is immediately started.
[0026] Secondly, if the first infrared emitter 109 detects that the distance of the emitted infrared beam has shortened to the minimum threshold, and at the same time uses the pressure sensor to detect the pressure of the load-bearing plate 110 (to prevent the patient's chest area from directly contacting the surface of the adjustment plate 102 due to changes in posture, thereby causing the distance detected by the first infrared emitter 109 to shorten to the minimum threshold), if the pressure sensor detects that the pressure data on the load-bearing plate 110 has not changed, it is determined that the surface of the first infrared emitter 109 is dirty due to a mixture of sweat and other impurities, such as skin tissue or air dust particles, attached to the surface of the first infrared emitter 109. At this time, the third push rod 107 is controlled to drive the load-bearing plate 110 to move toward the adjustment plate 102, and at the same time, the two symmetrically arranged third push rods 107 are controlled to be at different extension lengths. Since the side of the load-bearing plate 110 facing the third push rod 107 is hinged to the output end of the third push rod 107, the load-bearing plate 110 will be in a tilted state at this time, and then the two third push rods 107 are controlled to extend and retract alternately (please refer to the detailed description for details). Figure 7 ), causing the load-bearing plate 110 to tilt back and forth left and right, and causing the patient's upper body to tilt left and right, thereby utilizing the patient's chest area to wipe off dirt on the surface of the first infrared emitter 109 on the adjustment plate 102, and then utilizing the first infrared emitter 109 to detect the erasure status through distance, and then continuing the physical therapy work, thereby ensuring the physical therapy effect.
[0027] The head therapy component 2 includes a magnetic connection device, and the magnetic connection device is used to electrically connect the head therapy component 2 with the signal line and the power supply line. The magnetic connection device cooperates with the metal patch to use magnetic force to continuously connect the head therapy component 2 with the signal line and the power supply line. The outer surface of the magnetic connection device is provided with a headband bracket 201. The material of the headband bracket 201 is stainless steel, and the process of the stainless steel material is to increase the hardness and elasticity through cold processing (such as cold rolling and stretching), and it can return to its original shape after being deformed by force. In this way, the headband bracket 201 can be worn on the patient's head area, and the magnetic connection device and the connector are adapted to each other.
[0028] An elastic limiting band 203 is provided at the bottom of the headband bracket 201. The elastic limiting band 203 is used to fix the bottom of the headband bracket 201 at the patient's ear, and the elastic limiting band 203 is used to be sleeved on the patient's ear. Secondly, the number of elastic limiting bands 203 is set to two, and the two elastic limiting bands 203 are laterally symmetrically arranged at the left and right ends of the headband bracket 201. In this way, the two laterally symmetrical elastic limiting bands 203 can be used to fix the two ends of the bottom of the headband bracket 201 at the patient's ears respectively, to avoid falling off due to sudden shaking or changes in body shape of the patient during physical therapy.
[0029] A second infrared emitter 202 is provided in the central area of the bottom of the headband bracket 201, and the emitting surface of the second infrared emitter 202 is located at the top of the patient's head, and the second infrared emitter 202 array is provided with multiple ray points, and the multiple ray points correspond to the acupuncture points on the patient's head respectively, and the second infrared emitter 202 uses multiple ray points to emit infrared rays to the top of the patient's head, thereby stimulating the acupuncture points on the patient's head, thereby achieving the effect of auxiliary physical therapy.
[0030] During use, first clamp the headband bracket 201 on the patient's head area, and move the headband bracket 201 to the patient's ear, then pull the elastic limiting belt 203 toward the patient's ear, and put the elastic limiting belt 203 on the patient's ear, so that the upper part of the entire headband bracket 201 is clamped on the patient's head, and the two ends of the bottom of the headband bracket 201 are fixed to the patient's ears by the elastic limiting belt 203, achieving a double fixed and limited effect to ensure that the headband bracket 201 will not fall off due to violent shaking or changing posture during physical therapy. Then, the second infrared emitter 202 is used to emit infrared rays to the patient's head, and the multiple ray points on the first infrared emitting area are used to irradiate and stimulate the acupuncture points on the patient's head, thereby achieving the effect of auxiliary physical therapy for the patient's head.
[0031] The facial therapy component 3 includes a frame bracket 301, and the left and right sides of the frame bracket 301 are hingedly provided with a restraint belt 304, and the frame bracket 301 can be fixed to the patient's ear using the restraint belt 304. The interior of the frame bracket 301 is provided with a mirror 302, and the material of the mirror 302 is flexible and skin-friendly plastic. The mirror 302 is located in the central area of the frame bracket 301, and the middle surface of the mirror 302 is provided with a third infrared emitter 303, and the side of the second emitter facing the patient's face is provided with multiple ray points, and the multiple ray points correspond to the patient's facial acupuncture points respectively. In this way, the facial therapy component 3 can use the third infrared emitter 303 in conjunction with multiple ray points to achieve the effect of irradiation-assisted physiotherapy of the patient's facial acupuncture points.
[0032] During use, the patient only needs to tie the restraint belt 304 to the patient's head, so that the restraint belt 304 can be attached to the patient's head by its own elasticity, thereby fixing the position of the frame bracket 301, and then turning on the third infrared emitter 303, so that the third infrared emitter 303 can irradiate multiple acupuncture points on the patient's face through multiple ray points, thereby achieving the purpose of auxiliary physical therapy for the patient's face.
[0033] It is worth noting that the second infrared emitter 202, the third infrared emitter 303 and the first infrared emitter 109 used in this technical solution are all common light beam devices on the market. When the patient gradually removes the chest therapy component 1, the head therapy component 2 and the facial therapy component 3, the second infrared emitter 202, the third infrared emitter 303 and the first infrared emitter 109 sense that the distance of the emitted light has increased to a certain threshold, and the therapy is considered to be completed, and data is fed back to the controller 104. After receiving the feedback data, the controller 104 cuts off the circuit of the generating device.
[0034] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A multifunctional pulse electrotherapy device for patients with Tourette syndrome, comprising a chest therapy component (1), a head therapy component (2) and a facial therapy component (3), characterized in that: The chest physiotherapy component (1) is electrically connected to the head physiotherapy component (2) and the face physiotherapy component (3) via a power supply line and a signal line, respectively, wherein the chest physiotherapy component (1), the head physiotherapy component (2) and the face physiotherapy component (3) communicate with each other via the signal line; The chest therapy component (1) comprises a vest shell (101), wherein a first push rod (103) and a second push rod (106) are provided inside the vest shell (101), and the output ends of the first push rod (103) and the second push rod (106) pass through the vest shell (101), and an adjustment plate (102) is provided at the output ends of the first push rod (103) and the second push rod (106), and a first infrared emitter (109) is provided on the surface of each of the adjustment plates (102), and a plurality of ray points are provided on the surface of the first infrared emitter (109), and the plurality of ray points respectively correspond to acupuncture points on the patient's chest, and the chest therapy component (1) can irradiate the acupuncture points on the patient's chest through the first infrared emitter (109) in conjunction with the plurality of ray points.
2. The multifunctional pulse electrotherapy device for Tourette syndrome patients according to claim 1, characterized in that: The head therapy component (2) includes a first magnetic connection device, and the first magnetic connection device is used to electrically connect the head therapy component (2) with the signal line and the power supply line. The magnetic attraction force generated by the first magnetic connection device can connect the head therapy component (2) with the signal line and the power supply line. The outer surface of the magnetic connection device is provided with a headband bracket (201), and the material of the headband bracket (201) is stainless steel.
3. The multifunctional pulse electrotherapy device for Tourette syndrome patients according to claim 2, characterized in that: An elastic limiting belt (203) is provided at the bottom of the headband bracket (201), and the elastic limiting belt (203) is used to fix the bottom of the headband bracket (201) at the patient's ear, and the elastic limiting belt (203) can be sleeved on the patient's ear; The number of the elastic limiting bands (203) is set to two, and the two elastic limiting bands (203) are laterally symmetrically arranged at the left and right ends of the headband bracket (201). The two laterally symmetrical elastic limiting bands (203) can respectively connect the two ends of the bottom of the headband bracket (201) to the two ears of the patient's head.
4. The multifunctional pulse electrotherapy device for Tourette syndrome patients according to claim 3, characterized in that: A second infrared emitter is provided in the central area of the bottom of the headband bracket (201), and the emission surface of the second infrared emitter (202) is located at the top of the patient's head. The second infrared emitter (202) array is provided with a plurality of ray points, and the plurality of ray points respectively correspond to acupuncture points on the patient's head. The second infrared emitter (202) uses the plurality of ray points to emit infrared rays to the top of the patient's head.
5. The multifunctional pulse electrotherapy device for Tourette syndrome patients according to claim 4, characterized in that: The facial therapy component (3) comprises a frame bracket (301), and the left and right sides of the frame bracket (301) are both hingedly provided with restraint belts (304), and the frame bracket (301) can be fixed to the patient's ears by means of the restraint belts (304), and a second magnetic connection device is provided at the bottom of the frame bracket (301), and the second magnetic connection device is used to connect a power supply line and a signal line.
6. The multifunctional pulse electrotherapy device for Tourette syndrome patients according to claim 5, characterized in that: A mirror surface (302) is provided inside the frame bracket (301), the mirror surface (302) is located in the central area of the frame bracket (301), and the material of the mirror surface (302) is flexible and skin-friendly plastic. A third infrared emitter (303) is provided on the middle surface of the mirror surface (302), and a plurality of ray points are provided on the side of the third emitter facing the patient's face, and the plurality of ray points respectively correspond to acupuncture points on the patient's face.
7. The multifunctional pulse electrotherapy device for Tourette syndrome patients according to claim 1, characterized in that: The outer surface of the vest shell (101) is provided with a plurality of connection sockets (108), and the output ends of the plurality of connection sockets (108) are electrically connected to the signal line and the power supply line, and the ends of the signal line and the power supply line away from the connection sockets (108) are provided with metal iron sheets, and the outer sides of the metal sheets are provided with connectors, and the outer surface of the vest shell (101) is provided with a control panel, and the control panel is used to control the start and shut down states of the facial therapy component (3) and the head therapy component (2) respectively through the signal line and the power supply line.
8. The multifunctional pulse electrotherapy device for Tourette syndrome patients according to claim 7, characterized in that: A first push rod (107) is provided on the side of the inner wall of the vest shell (101) facing the adjustment plate (102), and the first push rod (107) passes through the vest shell (101). The output end of the first push rod (107) is fixedly connected to a load-bearing plate (110), and the positions of the load-bearing plate (110) and the two laterally symmetrical adjustment plates (102) correspond to each other. There are two adjustment plates (102), and each adjustment plate (102) is laterally symmetrically arranged on the inner wall of the vest shell (101). The load-bearing plate (110) is used to support the patient's back. Pressure sensors are provided on both sides of the load-bearing plate (110), and the pressure sensors are used to detect the pressure state of the load-bearing plate (110).
Citation Information
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