Cardiovascular and cerebrovascular rehabilitation physical therapy device
By integrating the head-mounted physiotherapy components with an electric turntable and a ring-shaped inflatable structure, the problem of uneven electrode contact in existing devices has been solved, achieving precise positioning and stable fit of the cardiovascular rehabilitation equipment, thus improving patient comfort and treatment adaptability.
Patent Information
- Application Number
- CN202511709680.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-20
- Publication Date
- 2026-01-06
AI Technical Summary
Existing cardiovascular rehabilitation equipment suffers from uneven contact between electrodes and the patient's head during electrical stimulation, resulting in high contact resistance and improper pressure distribution, which can easily cause burns or stinging sensations. Furthermore, its functions are limited and it cannot dynamically respond to complex clinical needs.
The device employs a head-mounted physiotherapy component, combining an electric rotating disc and a ring-shaped inflatable structure to achieve an integrated design of magnetic stimulation, electrical stimulation, and massage units. The electric rotating disc provides precise positioning, and the ring-shaped rubber ring adapts to the head circumference. Combined with MRI navigation technology, the device ensures a stable fit. The airbag pushes the electrode sheets into close contact, and the electrode area is adjusted to control the current density.
It achieves precise positioning of electrical and magnetic stimulation, reduces contact resistance, avoids the risk of burns, improves patient comfort, and improves the repeatability and adaptability of treatment through modular design to adapt to different rehabilitation stages and types of disorders.
Smart Images

Figure FT_1 
Figure FT_2 
Figure FT_3
Abstract
Description
Technical Field
[0001] This application relates to the field of medical rehabilitation equipment technology, and in particular to a cardiovascular and cerebrovascular rehabilitation physiotherapy device. Background Technology
[0002] Cardiovascular and cerebrovascular diseases, such as stroke and transient ischemic attack, are among the leading causes of long-term disability and death in adults worldwide. These diseases often lead to a series of sequelae, including motor dysfunction, sensory impairment, aphasia, and dysphagia, placing a heavy burden on patients, their families, and society. Modern rehabilitation medicine has confirmed that early, proactive, and standardized rehabilitation training based on the principles of neuroplasticity is a core means to help patients rebuild neurological function and improve their quality of life.
[0003] In the prior art, CN216365054U discloses a head-mounted rehabilitation training device. Specifically, the lead wire connection part is provided with a lead wire hole to facilitate the connection of external leads. The probe part is provided with multiple probes, which can increase the contact area between the electrodes and the scalp and avoid user discomfort. By making one end of the probe away from the bottom of the lead wire connection part a hemispherical end, the comfort of the user's skin and the electrode touch can be improved.
[0004] The prior art in the aforementioned patent has the following defects when used: First, when using the prior art, and during the electrical stimulation process, it cannot accurately drive the motor to make accurate contact with the patient's scalp, resulting in uneven contact between the electrodes and the patient's head. Especially in areas with greater curvature, such as the forehead, the contact resistance is high and the pressure distribution is improper, which can easily lead to current burns or stinging sensations, affecting the patient's experience. At the same time, the prior art can only perform electrical stimulation on the patient. When different stimuli are required, it cannot rotate the electrical or magnetic stimulation according to the needs of the application. Its function is limited and it cannot dynamically respond to complex clinical needs.
[0005] To address the aforementioned problems, this invention proposes an integrated cardiovascular and cerebrovascular rehabilitation and physiotherapy device. This device features automatic and precise positioning and stable fit, and enhances patient comfort, thereby promoting a significant improvement in rehabilitation efficacy. Summary of the Invention
[0006] In order to solve the problems existing in the background art, the present invention proposes a cardiovascular and cerebrovascular rehabilitation and physiotherapy device.
[0007] The cardiovascular and cerebrovascular rehabilitation and physiotherapy device provided in this application adopts the following technical solution: A cardiovascular and cerebrovascular rehabilitation physiotherapy device includes: a head-mounted physiotherapy component, a connecting strap, and a connecting seat. The head-mounted physiotherapy component has a circular structure and is used to wrap around the patient's head. Mounting seats are evenly installed on the outer periphery of the head-mounted physiotherapy component. A connecting seat is provided on the top of the head-mounted physiotherapy component. A connecting strap is installed between the connecting seat and the mounting seat. The connecting strap is made of elastic material.
[0008] Furthermore, the head-mounted physiotherapy component includes a housing frame, clamping components, an electric turntable, a ring frame, a magnetic stimulation unit, an electrical stimulation unit, and a massage unit. The housing frame has a circular ring structure. Clamping components are installed on the upper and lower sides of the inner side of the housing frame. The size of the middle part of the clamping components is adjustable, and an annular channel is formed between the two clamping components. An annular groove is opened on the inner side of the housing frame, and an electric turntable is installed inside the annular groove. The ring frame is installed on the inner side of the electric turntable and can rotate synchronously with the electric turntable. A magnetic stimulation unit is fixedly installed on the right side of the inner side of the ring frame, and an electrical stimulation unit is fixedly installed on the left side of the inner side of the ring frame. A massage unit is installed in the gap between the magnetic stimulation unit and the electrical stimulation unit and is fixedly installed on the ring frame. The magnetic stimulation unit, the electrical stimulation unit, and the massage unit can move into the annular channel.
[0009] Furthermore, the clamping element is an annular rubber ring, which has a hollow structure inside and is inflatable. Anti-slip ridges are evenly arranged along the circumference of the inner side of the annular rubber ring.
[0010] Furthermore, the magnetic stimulation unit includes a magnetic stimulation frame and a piston rod. The magnetic stimulation frame is installed on the right side inside the annular frame. The magnetic stimulation frame has an arc-shaped structure. The piston rod is symmetrically installed on the inner side of the magnetic stimulation frame. The annular frame has through holes that cooperate with the piston rod.
[0011] Furthermore, the magnetic stimulation frame is also equipped with a capacitor bank and a stimulation coil, which are electrically connected. The stimulation coil has an 8-shaped structure.
[0012] Furthermore, the electrical stimulation unit includes an electrical stimulation frame, a second piston rod, an adjustment mechanism, and an electrode mechanism. The electrical stimulation frame is installed on the left side inside the annular frame. The electrical stimulation frame has an arc-shaped structure. The second piston rod is symmetrically installed on the inner side of the electrical stimulation frame. The annular frame has two through holes that cooperate with the second piston rod. An arc-shaped groove is opened on the front end face of the electrical stimulation frame. An adjustment mechanism is installed in the middle of the arc-shaped groove. Electrode mechanisms are installed on both sides of the adjustment mechanism between the adjustment mechanism and the arc-shaped groove. One electrode mechanism is connected to the anode of the power supply, and the other electrode mechanism is connected to the cathode of the power supply.
[0013] Furthermore, the adjustment mechanism includes a connecting frame, a push rod, and a baffle. The connecting frame is installed in the middle of the arc-shaped groove. The front end of the connecting frame is symmetrically provided with sliding grooves. Push rods are symmetrically installed on the sliding grooves. A baffle is slidably arranged on the sliding grooves. The baffle is provided with a movable groove that cooperates with the push rod. The push rod can drive the baffle to move toward the surface of the electrode mechanism.
[0014] Furthermore, the electrode mechanism includes an airbag and an electrode sheet. A groove is provided on the inner side of the electrical stimulation frame, an airbag is installed in the groove, and an electrode sheet is installed on the outer side of the airbag. The side of the baffle near the electrode sheet is an inclined surface.
[0015] Furthermore, the electrode sheet is made of an elastic material, the inside of the electrode sheet is filled with a sponge sleeve, and conductive sheets are uniformly arranged on the surface of the electrode sheet.
[0016] The massage unit includes an arc-shaped massage frame and vibrating protrusions. The arc-shaped massage frame is fixedly installed on the inner side of the ring frame, and the vibrating protrusions are evenly installed on the inner side of the arc-shaped massage frame.
[0017] Beneficial effects Compared with the prior art, the present invention provides a cardiovascular and cerebrovascular rehabilitation and physiotherapy device, which has the following beneficial effects: 1. In this invention, the rotational positioning structure of the ring frame driven by an electric turntable, combined with medical image navigation technology, can precisely move and lock the magnetic or electrical stimulation unit to the patient's specific target brain functional area (such as the motor cortex or language area), overcoming the errors of manual positioning. Simultaneously, the clamping component of the ring-shaped inflatable structure can adapt to different patients' head circumference and skull morphology, providing uniform and reliable locking force throughout the treatment process. This effectively avoids the problem of stimulation target drift caused by device slippage, ensuring that each stimulation accurately acts on the preset neural circuit, greatly improving the repeatability and reliability of the treatment.
[0018] 2. In this invention, the magnetic stimulation unit, electrical stimulation unit, and massage unit are integrated into a unified ring-shaped frame platform. This allows a single device to quickly and flexibly switch or combine different neuromodulation modes according to the patient's specific rehabilitation stage (such as the acute or recovery phase after stroke) and the type of impairment (such as motor, speech, or swallowing disorders). By formulating personalized plans such as "first magnetic stimulation to excite the motor cortex on the affected side, followed by functional training" or "anodic tDCS stimulation of the language area while inhibiting the contralateral side," this invention achieves a leap from a single-function device to a comprehensive rehabilitation platform, improving the adaptability and efficiency of clinical treatment.
[0019] 3. In this invention, the electrode sheet is attached by pushing it with an airbag, which ensures close and uniform contact between the electrode and the curved surface of the scalp, effectively reducing contact resistance and avoiding the risk of current concentration and burns caused by poor contact. At the same time, the effective contact area of the electrode can be dynamically changed by the adjustment mechanism, thereby precisely controlling the current density and stimulation range, and realizing the fine-tuning of stimulation parameters. Attached Figure Description
[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0021] Figure 1 This is a three-dimensional structural diagram of this application.
[0022] Figure 2 This is a three-dimensional cross-sectional structural diagram of this application.
[0023] Figure 3 This is a three-dimensional structural diagram of the head-mounted physiotherapy component of this application.
[0024] Figure 4 This is a cross-sectional structural diagram of the head-mounted physiotherapy component of this application.
[0025] Figure 5 This application Figure 3 A magnified structural diagram of point A in the middle.
[0026] Figure 6 This is a three-dimensional structural diagram of the electrical stimulation unit of this application.
[0027] Figure 7 This is a cross-sectional structural diagram of the electrical stimulation unit of this application.
[0028] Figure 8 This is a cross-sectional structural diagram of the electrical stimulation unit of this application.
[0029] Explanation of reference numerals in the attached drawings: 1. Head-mounted physiotherapy component; 11. Shell frame; 12. Clamping component; 121. Annular rubber ring; 13. Electric turntable; 14. Annular frame; 15. Magnetic stimulation unit; 151. Magnetic stimulation frame; 152. Piston rod one; 16. Electrical stimulation unit; 161. Electrical stimulation frame; 162. Piston rod two; 163. Adjustment mechanism; 1631. Connecting frame; 1632. Push rod; 1633. Baffle; 164. Electrode mechanism; 1641. Airbag; 1642. Electrode sheet; 17. Massage unit; 2. Connecting strap; 3. Connecting seat. Detailed Implementation
[0030] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0031] Please see Figures 1-8 The present invention provides a cardiovascular and cerebrovascular rehabilitation physiotherapy device, comprising: a head-mounted physiotherapy component 1, a connecting strap 2, and a connecting seat 3. The head-mounted physiotherapy component 1 has a circular structure and is used to wrap the patient's head. Mounting seats are evenly installed on the outer periphery of the head-mounted physiotherapy component 1. A connecting seat 3 is provided above the head-mounted physiotherapy component 1. A connecting strap 2 is installed between the connecting seat 3 and the mounting seat. The connecting strap 2 is made of elastic material.
[0032] In the above technical solution, when physical function rehabilitation is required for a patient, the head-mounted physiotherapy component 1 is worn on the patient's head, and the connecting seat 3 is connected through the connecting strap 2. The connecting seat 3 is fixed on the top of the patient's head. The head-mounted physiotherapy component 1 uses transcranial magnetic stimulation / transcranial direct current stimulation to non-invasively regulate the excitability of specific areas of the brain (such as the motor cortex) by using magnetic fields or weak currents, thereby creating a better brain state for cardiovascular and cerebrovascular rehabilitation training.
[0033] See Figures 1-4 As shown, in a preferred embodiment, the head-mounted physiotherapy component 1 includes a housing frame 11, clamping members 12, an electric turntable 13, a ring frame 14, a magnetic stimulation unit 15, an electrical stimulation unit 16, and a massage unit 17. The housing frame 11 has a circular ring structure. Clamping members 12 are respectively installed on the upper and lower sides of the inner side of the housing frame 11. The size of the middle part of the clamping member 12 is adjustable, and an annular channel is formed between the two clamping members 12. An annular groove is opened on the inner side of the housing frame 11, and an electric turntable is installed inside the annular groove. 13. An annular frame 14 is installed on the inner side of the electric turntable 13. The annular frame 14 can rotate synchronously with the electric turntable 13. A magnetic stimulation unit 15 is fixedly installed on the right side of the inner side of the annular frame 14, and an electrical stimulation unit 16 is fixedly installed on the left side of the inner side of the annular frame 14. A massage unit 17 is installed in the gap between the magnetic stimulation unit 15 and the electrical stimulation unit 16. The massage unit 17 is fixedly installed on the annular frame 14. The magnetic stimulation unit 15, the electrical stimulation unit 16 and the massage unit 17 can move into the annular channel.
[0034] In the above technical solution, when the shell frame 11 is worn on the patient's head, air is inflated into the clamping member 12 so that the clamping member 12 can accurately cover and press against the patient's head. Then, the MRI image of the patient's skull structure is imported into the system computer. Based on the computer's calculation of the area in the patient's head that needs stimulation, the magnetic stimulation unit 15 or the electrical stimulation unit 16 is moved into that area. The magnetic stimulation unit 15 or the electrical stimulation unit 16 provides electrical or magnetic stimulation to the brain region of the patient's head, thereby creating a better brain state for exercise training and facilitating the physical function rehabilitation of patients with cardiovascular and cerebrovascular diseases such as motor dysfunction, aphasia, and swallowing disorders.
[0035] See Figure 3 As shown, as a preferred technical solution in this embodiment, the clamping member 12 is an annular rubber ring 121. The annular rubber ring 121 has a hollow structure inside and is an inflatable structure inside. Anti-slip ridges are evenly arranged along its circumference on the inner side of the annular rubber ring 121.
[0036] In the above technical solution, when air is inflated into the annular rubber ring 121, the annular rubber ring 121 moves toward the patient's head, so that the inner side of the annular rubber ring 121 can press firmly against the patient's head, thereby accurately wearing the shell frame 11 on the patient's head. The anti-slip ridges can increase the friction and prevent the shell frame 11 from shaking or falling off after being worn, ensuring that the magnetic stimulation unit 15 or the electrical stimulation unit 16 can accurately stimulate the patient's brain.
[0037] See Figure 4 Figure 5 As shown, as a preferred technical solution of this embodiment, the magnetic stimulation unit 15 includes a magnetic stimulation frame 151 and a piston rod 152. The magnetic stimulation frame 151 is installed on the right side inside the ring frame 14. The magnetic stimulation frame 151 has an arc-shaped structure. The piston rod 152 is symmetrically installed on the inner side of the magnetic stimulation frame 151. The ring frame 14 is symmetrically installed with through holes that cooperate with the piston rod 152.
[0038] As a preferred technical solution in this embodiment, the magnetic stimulation frame 151 is further provided with a capacitor bank and a stimulation coil, which are electrically connected and the stimulation coil has an 8-shaped structure.
[0039] In the above technical solution, the capacitor bank is a high-voltage capacitor. When magnetic stimulation is applied to the patient's brain, air is injected into the through hole 1, so that the piston rod 152 can drive the magnetic stimulation frame 151 to fit tightly against the patient's head. The high-voltage capacitor discharges instantaneously to the stimulation coil, generating a brief and powerful pulse current in the stimulation coil. The powerful pulse current generates a brief and powerful pulse magnetic field perpendicular to the plane of the coil around the coil. This magnetic field can penetrate the scalp, skull, and meninges with almost no attenuation. This changing magnetic field induces a secondary and weak induced electric field in the cerebral cortex tissue. The induced electric field causes ions on both sides of the neuronal cell membrane to move, generating transmembrane current. If the electric field strength is large enough and the direction is appropriate, it can make the membrane potential of the target neuron reach the threshold, triggering an action potential and thus exciting it.
[0040] See Figures 6-8 As shown, in a preferred embodiment, the electrical stimulation unit 16 includes an electrical stimulation frame 161, a piston rod 162, an adjustment mechanism 163, and an electrode mechanism 164. The electrical stimulation frame 161 is installed on the left side inside the annular frame 14. The electrical stimulation frame 161 has an arc-shaped structure. The piston rod 162 is symmetrically installed on the inner side of the electrical stimulation frame 161. Through holes 162 that cooperate with the piston rod 162 are symmetrically installed on the annular frame 14. An arc-shaped groove is opened on the front end face of the electrical stimulation frame 161. The adjustment mechanism 163 is installed in the middle of the arc-shaped groove. Electrode mechanisms 164 are installed on both sides of the adjustment mechanism 163 and between the arc-shaped groove. One electrode mechanism 164 is connected to the anode of the power supply, and the other electrode mechanism 164 is connected to the cathode of the power supply.
[0041] In the above technical solution, when the patient's brain is electrically stimulated, the electric turntable 13 drives the electric stimulation frame 161 to move to the designated area of the patient's head through the ring frame 14. Then, air is injected into the through hole 2, and the piston rod 2 162 drives the electric stimulation frame 161 to fit tightly against the patient's head. Current flows in from the electrode mechanism 164 connected to the anode of the power supply. The current passes through the scalp, skull and brain tissue, and flows out from the electrode mechanism 164 connected to the cathode of the power supply. The electrode mechanism 164 will generate anode stimulation and cathode stimulation. The adjustment mechanism 163 can change the electric stimulation area of the electrode mechanism 164 to adjust different stimulation ranges.
[0042] Anodic stimulation: The current below the anode causes depolarization of the neuronal cell membrane (the membrane potential moves closer to the excitation threshold). This puts the neuron in a "ready" state, making it more likely to generate action potentials when it receives weak signals from other neurons. Therefore, anodic stimulation is often used to enhance cortical excitability.
[0043] Cathodic stimulation: The current beneath the cathode causes hyperpolarization of the neuronal cell membrane (the membrane potential deviates significantly from the excitation threshold). This makes it more difficult for neurons to generate action potentials. Therefore, cathodic stimulation is often used to reduce cortical excitability.
[0044] See Figures 6-8 As shown, in this preferred embodiment, the adjustment mechanism 163 includes a connecting frame 1631, a push rod 1632, and a baffle 1633. The connecting frame 1631 is installed in the middle of the arc-shaped groove. The front end of the connecting frame 1631 is symmetrically provided with sliding grooves. The push rod 1632 is symmetrically installed on the sliding grooves. The baffle 1633 is slidably arranged on the sliding grooves. The baffle 1633 is provided with a movable groove that cooperates with the push rod 1632. The push rod 1632 can drive the baffle 1633 to move toward the surface of the electrode mechanism 164.
[0045] In the above technical solution, when it is necessary to adjust the area of the electrode mechanism 164, the baffle 1633 moves outward along the push rod 1632, so that the baffle 1633 can gradually cover the surface of the electrode mechanism 164, thereby adjusting the contact area between the electrode mechanism 164 and the patient's head.
[0046] See Figures 6-8 As shown, as a preferred technical solution of this embodiment, the electrode mechanism 164 includes an airbag 1641 and an electrode sheet 1642. A groove is provided on the inner side of the electrical stimulation frame 161, and the airbag 1641 is installed in the groove. The electrode sheet 1642 is installed on the outer side of the airbag 1641. The side of the baffle 1633 near the electrode sheet 1642 is an inclined surface.
[0047] As a preferred technical solution in this embodiment, the electrode sheet 1642 is made of elastic material, the electrode sheet 1642 is filled with a sponge sleeve, and conductive sheets are uniformly arranged on the surface of the electrode sheet 1642.
[0048] In the above technical solution, when electrical stimulation of the patient's head is required, air is injected into the airbag 1641. The airbag 1641 will move the electrode sheet 1642 toward the patient's scalp, so that the electrode sheet 1642 can be in close contact with the patient's scalp. The sponge sleeve inside the electrode sheet 1642 is fully moistened with physiological saline during use, thereby reducing the resistance of the skin-electrode interface. The conductive sheets evenly arranged on the surface of the electrode sheet 1642 are used to disperse the current density and avoid local burns.
[0049] See Figure 3 As shown, as a preferred technical solution of this embodiment, the massage unit 17 includes an arc-shaped massage frame 171 and vibration protrusions 172. The arc-shaped massage frame 171 is fixedly installed on the inner side of the ring frame 14, and vibration protrusions 172 are evenly installed on the inner side of the arc-shaped massage frame 171.
[0050] In the above technical solution, the arc-shaped massage frame 171 can be in close contact with the patient's head. When the patient's head is subjected to electrical or magnetic stimulation, the vibrating protrusion 172 can vibrate and massage the patient's head to reduce the discomfort caused by electrical or magnetic stimulation.
[0051] Based on the above structure, the cardiovascular and cerebrovascular rehabilitation physiotherapy device provided by the present invention operates according to the following steps: S1: Equipment Wearing and Fixing The operator places the circular head-mounted physiotherapy component 1 on the patient's head, allowing it to wrap around the head. Inflation of the annular rubber ring 121 within the clamping element 12 causes it to expand and fit snugly against the contours of the patient's head. The anti-slip textured inner side of the annular rubber ring 121 increases friction, ensuring the housing frame 11 remains stable and slip-free during subsequent treatment, providing a foundation for precise stimulation.
[0052] S2: Target brain region localization and stimulation module selection The patient's cranial MRI images are imported into the system computer, and the navigation system calculates the specific brain functional areas (such as the motor cortex and language area) that need to be stimulated. The system controls the electric turntable 13 to rotate, which drives the inner ring frame 14 and the magnetic stimulation unit 15, electrical stimulation unit 16 and massage unit 17 mounted on it to rotate together until the selected stimulation unit (magnetic stimulation or electrical stimulation) is precisely moved to the scalp directly above the target brain area.
[0053] S3: Stimulation module attachment and execution of neuromodulation For magnetic stimulation: Air is injected into the through-hole corresponding to the magnetic stimulation unit 15, pushing the piston rod 152 to extend, so that the arc-shaped magnetic stimulation frame 151 and its internal figure-eight stimulation coil are in close contact with the scalp. Subsequently, the capacitor bank discharges instantaneously to the stimulation coil, generating a strong pulsed current, which in turn induces a pulsed magnetic field that penetrates the skull. This magnetic field induces an electric field in the target cerebral cortex region, causing neurons to depolarize, thereby achieving the purpose of exciting or inhibiting neural activity (depending on the stimulation frequency).
[0054] For electrical stimulation: Air is injected into the second through-hole corresponding to the electrical stimulation unit 16, pushing the second piston rod 162 to extend and bring the electrical stimulation frame 161 close to the scalp. Simultaneously, air is injected into the airbag 1641 of the electrode mechanism 164, pushing the electrode sheet 1642, filled with saline solution, into close contact with the scalp, forming a benign conductive circuit. By adjusting the push rod 1632 of the adjustment mechanism 163, which moves the baffle 1633, the effective contact area of the electrode sheet 1642 can be changed to adjust the current density and stimulation range. Finally, a weak direct current forms a circuit through the anode and cathode electrodes, polarizing and modulating the subcutaneous neurons (the anode enhances excitability, and the cathode reduces excitability).
[0055] S4: Synergistic Massage and Adaptive Regulation During or between sessions of neuromodulation, the massage unit 17 can be activated as needed to physically massage the scalp, promoting local blood circulation, relieving patient tension, and improving treatment comfort and compliance. Throughout the process, the extendable structures of the clamping element 12, magnetic stimulation unit 15, and electrical stimulation unit 16 jointly ensure the stability of the fit with the scalp.
[0056] S5: Treatment completion and equipment reset After treatment, the system sequentially stops all stimulation outputs. The gas in the annular rubber ring 121, airbag 1641, and through-holes one and two is released, causing the clamping element 12 and the magnetic stimulation unit 15 and electrical stimulation unit 16 to disengage from head contact. Subsequently, the electric turntable 13 can reset the stimulation modules to their initial positions, allowing the patient to safely and comfortably remove the device.
[0057] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. A cardiovascular rehabilitation physiotherapy device, characterized in that, Include: Head-wearing physiotherapy component (1), connecting band (2) and connecting seat (3), the head-wearing physiotherapy component (1) is circular ring structure, head-wearing physiotherapy component (1) is used to be wrapped to patient head, the outer peripheral side of head-wearing physiotherapy component (1) is uniformly installed with mounting seat, the upper of head-wearing physiotherapy component (1) is provided with connecting seat (3), connecting seat (3) is installed with connecting band (2) between mounting seat, connecting band (2) is elastic material.
2. The cardiovascular rehabilitation physiotherapy device according to claim 1, characterized in that: The head-wearing physiotherapy component (1) includes shell frame (11), compression part (12), electric rotary table (13), annular frame (14), magnetic stimulation unit (15), electric stimulation unit (16) and massage unit (17), the shell frame (11) is circular ring structure, the inner side of shell frame (11) is installed with compression part (12) on both sides, the size of compression part (12) middle part is adjustable, the annular channel is formed between two compression parts (12), the annular groove is set up on the inner side of shell frame (11), the annular groove is installed with electric rotary table (13), the inner side of electric rotary table (13) is installed with annular frame (14), annular frame (14) can rotate with electric rotary table (13) synchronously, the inner side of annular frame (14) right side is fixedly installed with magnetic stimulation unit (15), the inner side of annular frame (14) left side is fixedly installed with electric stimulation unit (16), the gap between magnetic stimulation unit (15) and electric stimulation unit (16) is installed with massage unit (17), massage unit (17) is fixedly installed on annular frame (14), the magnetic stimulation unit (15), electric stimulation unit (16) and massage unit (17) can move to the inside of annular channel.
3. The cardiovascular rehabilitation physiotherapy device according to claim 2, characterized in that: The compression part (12) is annular rubber ring (121), the inside of annular rubber ring (121) is hollow structure, the inside of annular rubber ring (121) is inflatable structure, the inner side of annular rubber ring (121) is uniformly arranged with anti-skid convex grain along its circumferential direction.
4. The cardiovascular rehabilitation physiotherapy device according to claim 3, characterized in that: The magnetic stimulation unit (15) includes magnetic stimulation frame (151) and piston rod one (152), the inside right side of annular frame (14) is installed with magnetic stimulation frame (151), magnetic stimulation frame (151) is arc structure, the inner side of magnetic stimulation frame (151) is symmetrically installed with piston rod one (152), annular frame (14) is symmetrically installed with through hole one matched with piston rod one (152).
5. The cardiovascular rehabilitation physiotherapy device according to claim 4, characterized in that: The inside of magnetic stimulation frame (151) is further provided with capacitor group and stimulating coil, capacitor group and stimulating coil are electrically connected, stimulating coil is 8-shaped structure.
6. The cardiovascular rehabilitation physiotherapy device according to claim 5, characterized in that: The electric stimulation unit (16) comprises an electric stimulation frame (161), a piston rod two (162), an adjusting mechanism (163) and an electrode mechanism (164), the electric stimulation frame (161) is arranged on the left side of the inside of the ring-shaped frame (14), the electric stimulation frame (161) is in an arc-shaped structure, the piston rod two (162) is symmetrically arranged on the inner side of the electric stimulation frame (161), the through hole two matched with the piston rod two (162) is symmetrically arranged on the ring-shaped frame (14), the arc-shaped recess is formed on the front end surface of the electric stimulation frame (161), the adjusting mechanism (163) is arranged in the middle of the arc-shaped recess, the electrode mechanism (164) is arranged between the arc-shaped recess and the two sides of the adjusting mechanism (163), one electrode mechanism (164) is connected with the anode of the power supply, and the other electrode mechanism (164) is connected with the cathode of the power supply.
7. The cardiovascular rehabilitation physiotherapy device according to claim 6, characterized in that: The adjusting mechanism (163) comprises a connecting frame (1631), a push rod (1632) and a baffle (1633), the connecting frame (1631) is arranged in the middle of the arc-shaped recess, the front end of the connecting frame (1631) is symmetrically provided with a sliding groove, the push rod (1632) is symmetrically arranged on the sliding groove, the baffle (1633) is slidably arranged on the sliding groove, the movable slot matched with the push rod (1632) is formed in the baffle (1633), and the push rod (1632) can drive the baffle (1633) to move towards the surface of the electrode mechanism (164).
8. The cardiovascular rehabilitation physiotherapy device according to claim 7, characterized in that: The electrode mechanism (164) comprises a gas bag (1641) and an electrode sheet (1642), the recess is formed in the inner side of the electric stimulation frame (161), the gas bag (1641) is arranged in the recess, the electrode sheet (1642) is arranged on the outer side of the gas bag (1641), and the side, close to the electrode sheet (1642), of the baffle (1633) is an inclined surface.
9. The cardiovascular rehabilitation physiotherapy device according to claim 8, characterized in that: The electrode sheet (1642) is made of elastic material, the electrode sheet (1642) is filled with a sponge sleeve, and the conductive sheets are uniformly arranged on the surface of the electrode sheet (1642).
10. The cardiovascular rehabilitation physiotherapy device according to claim 9, characterized in that: The massage unit (17) comprises an arc-shaped massage frame (171) and a vibrating protrusion (172), the arc-shaped massage frame (171) is fixedly arranged on the inner side of the ring-shaped frame (14), and the vibrating protrusion (172) is uniformly arranged on the inner side of the arc-shaped massage frame (171).