Split type sound, heat, light, electricity comprehensive treatment head

The modular design of the integrated acoustic, thermal, optical, and electrical treatment head solves the problems of poor heat dissipation and susceptibility to infection associated with existing treatment heads, enabling flexible combinations of multiple therapies and extending the lifespan of the equipment.

CN114522350BActive Publication Date: 2026-05-01QINHUANGDAO GAHA MEDICAL ELECTRONICS INSTR
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
QINHUANGDAO GAHA MEDICAL ELECTRONICS INSTR
Filing Date
2022-02-25
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

The existing integrated treatment head is a one-piece design, which leads to poor heat dissipation, short service life, difficult maintenance, and easy cross-infection.

Method used

The treatment head features a split design that integrates sound, heat, light, and electricity. The treatment head terminal and the main body are connected by a plug and socket. Electrodes and piezoelectric ceramic plates form an ultrasonic transducer, light guide columns transmit light wave signals, and a silicone waterproof sleeve seals and transmits electrical stimulation signals, enabling the combined use of multiple therapies.

Benefits of technology

It enables the combined application of multiple physical therapies, including flexible combinations of ultrasound, heating, light wave and electrical stimulation therapies, which improves the lifespan of the equipment and prevents cross-infection.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a split-type integrated sound, heat, light, and electricity therapy head, comprising a treatment head terminal and a treatment head body. The treatment head terminal includes a light guide column, electrodes, a piezoelectric ceramic sheet, a silicone waterproof sleeve, a conductive circuit board, and a plug. The treatment head body includes a physiotherapy-type light wave emitter or light guide, a socket, a transparent front shell, a circuit board, a rear shell, a heat sink, connecting wires, and a connecting plug. The treatment head terminal and the treatment head body are designed separately and connected via a plug and socket. The electrodes of the treatment head terminal can be designed into different shapes according to the human tissue structure, and different treatment heads can be replaced for different treatment sites. This invention integrates multiple physical therapies such as sound, light, heat, and electricity, allowing for arbitrary combination and superposition of various physical therapies to achieve multi-spectral light wave therapy, combined sound and heat therapy, combined sound, heat, and electricity therapy, combined sound, heat, and light therapy, combined electricity and light therapy, and combined sound, heat, light, and electricity therapy.
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Description

Technical Field

[0001] This invention relates to a treatment head for treating various diseases, and particularly to a split-type integrated sound, heat, light, and electricity treatment head. Background Technology

[0002] Currently known comprehensive treatment heads include: a treatment head (CN204219619U), a compound physical therapy electrode head (CN203154623 U), and a treatment head for a multifunctional treatment and health care device (CN2749521). All of the above patented technologies are integrated designs, and the laser or infrared light-emitting tube is not easy to dissipate heat inside the treatment head, resulting in a short service life, inconvenience in maintenance and replacement, and inability to be used as a consumable. Patients sharing the same device can easily cause cross-infection. Therefore, there is a need to propose a split-type comprehensive treatment head that integrates sound, heat, light, and electricity. Summary of the Invention

[0003] To address the aforementioned issues, this invention proposes a split-type integrated sound, heat, light, and electricity therapy head, combining multiple physical therapies into one unit. It can arbitrarily combine and superimpose various physical therapies for output. The head includes a treatment head terminal and a treatment head body. The treatment head terminal comprises a light guide column, electrodes, a piezoelectric ceramic sheet, a silicone waterproof sleeve, a conductive circuit board, and a plug. The treatment head body comprises a physiotherapy-type light wave emitter or light guide, a socket, a transparent front shell, a first circuit board, a rear shell, a heat sink, connecting wires, and a connecting plug.

[0004] The electrode and piezoelectric ceramic sheet are provided with a central through hole for mounting the light guide post;

[0005] The treatment head terminal and the treatment head body are designed as separate units, and are connected by a plug and a socket to enable quick plugging and unplugging and electrical signal transmission.

[0006] The electrodes of the treatment head terminal can be designed in different shapes according to the structure of the diseased tissue in the human body. The electrodes can be designed as convex cones, cylinders or teardrop shapes, etc., to facilitate the electrode part to be inserted into the human body cavity tissue for treatment. They can also be designed as flat, convex arc surfaces or concave arc surfaces, etc., to facilitate the electrode part to be in contact with the human body surface for treatment. During treatment, different electrode shapes of the treatment head terminal can be selected and replaced according to the treatment site.

[0007] The electrode, serving as a common electrode for both electrical stimulation and ultrasonic signal output, is made of a material with good electrical conductivity and ultrasonic conductivity. A piezoelectric ceramic sheet is tightly attached to a groove below the electrode, forming an ultrasonic transducer with the electrode. The ultrasonic transducer converts the high-frequency electrical signal output from the treatment device into ultrasonic signals and heat. The electrode transmits the ultrasonic signals and heat generated by the ultrasonic transducer, along with the electrical stimulation signal output from the treatment device, to the patient's diseased tissue, thus achieving the combined use of ultrasonic wave therapy, heating therapy, and electrical stimulation therapy.

[0008] The aforementioned therapeutic photowave emitter includes a central emitter located at the center of the first circuit board. The emission window of the central emitter faces the light guide column at the central through-hole of the electrode and piezoelectric ceramic sheet. When the electrode portion is inserted into the human cavity tissue for treatment, the light guide column transmits the light wave signal emitted by the central emitter to the patient's cavity tissue, realizing intracavitary photowave therapy. When the electrode portion is attached to the human body surface for treatment, the light guide column transmits the light wave signal emitted by the central emitter to the center of the patient's treatment site, realizing central photowave therapy.

[0009] The aforementioned physiotherapy photowave emitter also includes an outer ring emitter, which consists of multiple light-emitting devices arranged in a ring around the first circuit board. When the electrode portion is inserted into the human body cavity tissue for treatment, the light wave signal emitted by the outer ring emitter directly irradiates the tissue outside the cavity, realizing external photowave therapy. When the electrode portion is attached to the human body surface for treatment, the light wave signal emitted by the outer ring emitter directly irradiates the patient's treatment site in a ring shape, realizing ring-shaped photowave therapy.

[0010] The electrode can also be used as a common electrode for both electrical stimulation signal and ultrasonic signal output. The electrode is bonded to a piezoelectric ceramic sheet to form an ultrasonic transducer. The electrode is used only as an ultrasonic signal output electrode to conduct the ultrasonic signal and heat generated by the ultrasonic transducer to the patient's diseased tissue, thereby realizing ultrasonic wave therapy and heating therapy.

[0011] The aforementioned silicone waterproof sleeve can be made of conductive silicone and used as an output electrode for electrical stimulation signals. While providing a sealing and waterproof function, it also serves as an output electrode for electrical stimulation signals, transmitting the electrical stimulation signals output by the treatment device to the patient's diseased tissue to achieve electrical stimulation therapy.

[0012] The electrode is used as the output electrode for ultrasonic signals, and the silicone waterproof sleeve is used as the output electrode for electrical stimulation signals. The electrode and the silicone waterproof sleeve work together to achieve the combined use of ultrasonic wave therapy, heating therapy and electrical stimulation therapy. Of course, the best solution is to use the electrode as a common electrode for both electrical stimulation signals and ultrasonic signals.

[0013] The therapeutic light wave emitter is not limited to any particular type of light emission or wavelength. Multiple different types of therapeutic light wave emitters can be used in combination to achieve multi-spectral light wave therapy.

[0014] The treatment head body may include a physiotherapy light wave emitter, but does not include a light guide. That is, the physiotherapy light wave emitter is set on the first circuit board of the treatment head body. The connecting wire does not include a light guide material. The connecting wire only conducts the electrical signals output by the treatment device. The physiotherapy light wave emitter, as a light-emitting element, emits light wave signals to realize light wave therapy.

[0015] The treatment head body may include a light guide, but does not include a physiotherapy light wave emitter. That is, the treatment head body does not contain a light-emitting element. The physiotherapy light wave emitter is set in the treatment device. The connecting wire includes a light guide material. The connecting wire conducts the electrical signals and light wave signals output by the device. The light guide conducts the light wave signals to realize light wave therapy.

[0016] The electrode is used as the output electrode of the electrical stimulation signal, or the silicone waterproof sleeve is used as the output electrode of the electrical stimulation signal, to conduct the electrical stimulation signal output by the treatment device to the patient's diseased tissue; the physiotherapy light wave emitter or light guide irradiates the light wave signal to the patient's diseased tissue, realizing the combined use of electrical stimulation therapy and light wave therapy.

[0017] The electrodes are used as electrodes for outputting ultrasonic signals, transmitting the ultrasonic signals and heat generated by the ultrasonic transducer to the patient's diseased tissue; the physiotherapy light wave emitter or light guide irradiates the patient's diseased tissue with light wave signals, realizing the combined use of ultrasonic wave therapy, heating therapy and light wave therapy.

[0018] The electrode is used as a common electrode for outputting electrical stimulation signals and ultrasonic signals. It conducts the electrical stimulation signals output by the treatment device and the ultrasonic signals and heat generated by the ultrasonic transducer to the patient's diseased tissue. The physiotherapy light wave emitter or light guide irradiates the patient's diseased tissue with light wave signals, realizing the combined use of ultrasonic wave therapy, heating therapy, light wave therapy and electrical stimulation therapy.

[0019] The beneficial effects of this invention are: ① The light wave signal emitted by the central light emitter irradiates the tissue inside the patient's cavity through the light guide column, and the light wave signal emitted by the outer ring light emitter irradiates the tissue outside the cavity through the transparent front shell, so that the tissue inside and outside the cavity are simultaneously irradiated by light waves, realizing multi-spectral light wave therapy; ② It realizes the combined use of ultrasonic wave therapy and heating therapy; ③ It realizes the combined use of ultrasonic wave therapy, heating therapy and electrical stimulation therapy; ④ It realizes the combined use of ultrasonic wave therapy, heating therapy and light wave therapy; ⑤ It realizes the combined use of electrical stimulation therapy and light wave therapy; ⑥ It realizes the combined use of ultrasonic wave therapy, heating therapy, light wave therapy and electrical stimulation therapy. Attached Figure Description

[0020] Figure 1 A cross-sectional schematic diagram of an embodiment of the treatment head terminal

[0021] Figure 2 Top view of one embodiment of the treatment head terminal

[0022] Figure 3 Cross-sectional schematic diagram of one embodiment of the treatment head body

[0023] Figure 4 Top view of one embodiment of the treatment head body

[0024] Figure 5 A schematic cross-sectional view of an embodiment of a split-type integrated sound, heat, light, and electricity therapy head.

[0025] Figure 6 A top view of an embodiment of a split-type integrated sound, heat, light, and electricity therapy head.

[0026] In the diagram, 1. Treatment head terminal, 11. Light guide post, 12. Electrode, 13. Piezoelectric ceramic sheet, 14. Silicone waterproof sleeve, 15. Conductive circuit board, 16. Plug, 2. Treatment head body, 21. Physiotherapy light wave emitter, 211. Outer ring emitter, 212. Central emitter, 22. Socket, 23. Transparent front shell, 24. First circuit board, 25. Rear shell, 26. Heat sink, 27. Connecting wire, 28. Connecting plug. Detailed Implementation

[0027] The present invention will be further illustrated below with reference to specific embodiments. It should be understood that these embodiments are for illustrative purposes only and are not intended to limit the scope of the invention. They do not limit the appearance or shape of the treatment head terminal or the treatment head body, and their appearance or shape can be designed in different shapes according to the structure of human tissue. Furthermore, it should be understood that after reading the teachings of this invention, those skilled in the art can make various modifications or alterations to the invention. Any modifications, equivalent substitutions, improvements, etc., made in these equivalent forms should be included within the scope of protection of this invention.

[0028] A split-type integrated acoustic, thermal, optical, and electrical therapy head includes a treatment head terminal 1 and a treatment head body 2, which are designed as separate units. The treatment head terminal 1 includes a light guide post 11, electrodes 12, a piezoelectric ceramic sheet 13, a silicone waterproof sleeve 14, a conductive circuit board 15, and a plug 16. The treatment head body 2 includes a physiotherapy-type light wave emitter 21, a socket 22, a transparent front shell 23, a first circuit board 24, a rear shell 25, a heat sink 26, a connecting wire 27, and a connecting plug 28.

[0029] The treatment head terminal 1 and the treatment head body 2 are connected by a plug 16 and a socket 22, enabling quick plugging and unplugging and electrical signal transmission between the two.

[0030] like Figure 1 The treatment head terminal 1 shown has one pole of the annular piezoelectric ceramic sheet 13 attached to the circular groove below the electrode 12. The other pole of the annular piezoelectric ceramic sheet 13 and the electrode 12 are connected to the conductive circuit board 15 through a conductive material. The plug 16 is soldered to the conductive circuit board 15. Both the electrode 12 and the piezoelectric ceramic sheet 13 have through holes in their centers. The light guide post 11 is embedded in the central hole of the electrode 12 and the piezoelectric ceramic sheet 13. The light guide post 11 is sealed and connected to the circular hole at the tip of the electrode 12.

[0031] like Figure 3 , Figure 4 The treatment head body 2 shown includes a physiotherapy light wave emitter 21 comprising an outer ring emitter 211 and a central emitter 212. Multiple outer ring emitters 211 are distributed in a ring shape around the first circuit board 24, and the central emitter 212 is located at the center of the first circuit board 24. A socket 22 is soldered onto the first circuit board and faces the opening of the transparent front shell 23, facilitating the connection between the socket 22 and the plug 16 of the treatment head terminal 1. A heat sink 26 is located below the first circuit board 24. The transparent front shell 23 and the rear shell 25 are sealed together. A connecting line 27 connects the connecting plug 28 and the first circuit board 24, and the connecting plug 28 is connected to the output end of the treatment device.

[0032] like Figure 5 As shown, the treatment head terminal 1 and the treatment head body 2 are connected by a plug 16 and a socket 22 to enable quick plugging and unplugging and electrical signal transmission. The silicone waterproof sleeve 14 is sealed to the electrode 12 of the treatment head terminal 1 and the transparent front shell 23 of the treatment head body 2.

Claims

1. A split-type integrated sound, heat, light, and electricity therapy head, characterized in that: This device integrates sound, heat, light, and electricity physical therapy, enabling arbitrary combination and superposition of these therapies. It includes a treatment head terminal and a treatment head body. The treatment head terminal includes a light guide column, electrodes, piezoelectric ceramic sheet, silicone waterproof sleeve, conductive circuit board, and plug. The treatment head body includes a physiotherapy-type light wave emitter or light guide, socket, transparent front shell, first circuit board, rear shell, heat sink, connecting wire, and connecting plug. The electrode and piezoelectric ceramic sheet are provided with a central through hole for mounting the light guide post; The treatment head terminal and the treatment head body are designed as separate units, and are connected by a plug and a socket to enable quick plugging and unplugging and electrical signal transmission. The electrodes of the treatment head terminal can be designed into different shapes according to the structure of the diseased tissue in the human body. The electrodes can be designed as convex cones, cylinders or teardrop shapes to facilitate the electrode part to be inserted into the human body cavity tissue for treatment. They can also be designed as flat, convex arc or concave arc surfaces to facilitate the electrode part to fit the human body surface for treatment. During treatment, different electrode shapes of the treatment head terminal can be selected and replaced according to the treatment site. The electrode, serving as a common electrode for both electrical stimulation and ultrasonic signal output, is made of a material with good electrical conductivity and ultrasonic conductivity. A piezoelectric ceramic sheet is tightly attached to a groove below the electrode, forming an ultrasonic transducer with the electrode. The ultrasonic transducer converts the high-frequency electrical signal output from the treatment device into ultrasonic signals and heat. The electrode transmits the ultrasonic signals and heat generated by the ultrasonic transducer, along with the electrical stimulation signal output from the treatment device, to the patient's diseased tissue, thus achieving the combined use of ultrasonic wave therapy, heating therapy, and electrical stimulation therapy. The aforementioned therapeutic photowave emitter includes a central emitter located at the center of the first circuit board. The emission window of the central emitter faces the light guide column at the central through-hole of the electrode and piezoelectric ceramic sheet. When the electrode portion is inserted into the human cavity tissue for treatment, the light guide column transmits the light wave signal emitted by the central emitter to the patient's cavity tissue, realizing intracavitary photowave therapy. When the electrode portion is attached to the human body surface for treatment, the light guide column transmits the light wave signal emitted by the central emitter to the center of the patient's treatment site, realizing central photowave therapy. The aforementioned physiotherapy photowave emitter also includes an outer ring emitter, which consists of multiple light-emitting devices arranged in a ring around the first circuit board. When the electrode portion is inserted into the human body cavity tissue for treatment, the light wave signal emitted by the outer ring emitter directly irradiates the tissue outside the cavity, realizing external photowave therapy. When the electrode portion is attached to the human body surface for treatment, the light wave signal emitted by the outer ring emitter directly irradiates the patient's treatment site in a ring shape, realizing ring-shaped photowave therapy.

2. The split-type integrated sound, heat, light, and electricity treatment head according to claim 1, characterized in that: The electrode can also be used as a common electrode for outputting electrical stimulation signals and ultrasonic signals. The electrode is bonded to the piezoelectric ceramic sheet to form an ultrasonic transducer. The electrode is used only as an electrode for outputting ultrasonic signals, and the ultrasonic signals and heat generated by the ultrasonic transducer are conducted to the patient's diseased tissue to realize ultrasonic wave therapy and heating therapy. The aforementioned silicone waterproof sleeve is made of conductive silicone and serves as the output electrode for the electrical stimulation signal. While providing a sealing and waterproof function, it also acts as the output electrode for the electrical stimulation signal, transmitting the electrical stimulation signal output by the treatment device to the patient's diseased tissue to achieve electrical stimulation therapy.

3. The split-type integrated sound, heat, light, and electricity treatment head according to claim 1, characterized in that: The treatment head body includes a physiotherapy light wave emitter, but does not include a light guide. The physiotherapy light wave emitter is set on the first circuit board of the treatment head body. The connecting wire does not include a light guide material. The connecting wire only conducts the electrical signals output by the treatment device. The physiotherapy light wave emitter, as a light-emitting element, emits light wave signals to realize light wave therapy.

4. The split-type integrated sound, heat, light, and electricity treatment head according to claim 1, characterized in that: The treatment head body includes a light guide, but does not include a physiotherapy light wave emitter. The treatment head body does not contain a light-emitting element. The physiotherapy light wave emitter is set in the treatment device. The connecting wire includes a light guide material. The connecting wire conducts the electrical signals and light wave signals output by the device. The light guide conducts the light wave signals to realize light wave therapy.

5. A split-type integrated sound, heat, light, and electricity treatment head according to claim 1, characterized in that: The electrodes are used as electrodes for outputting ultrasonic signals, transmitting the ultrasonic signals and heat generated by the ultrasonic transducer to the patient's diseased tissue; the physiotherapy light wave emitter or light guide irradiates the patient's diseased tissue with light wave signals, realizing the combined use of ultrasonic wave therapy, heating therapy and light wave therapy.

6. A split-type integrated sound, heat, light, and electricity treatment head according to claim 1, characterized in that: The electrode is used as a common electrode for outputting electrical stimulation signals and ultrasonic signals. It conducts the electrical stimulation signals output by the treatment device and the ultrasonic signals and heat generated by the ultrasonic transducer to the patient's diseased tissue. The physiotherapy light wave emitter or light guide irradiates the patient's diseased tissue with light wave signals, realizing the combined use of ultrasonic wave therapy, heating therapy, light wave therapy and electrical stimulation therapy.

Citation Information

Patent Citations

  • Combined physiotherapy electrode tip

    CN203154623U

  • Treatment head

    CN204219619U

  • Illumination apparatus for pudendum

    CN101293124A

  • Ear disease therapeutic apparatus

    CN104490517A