WO2017215023A1 - <?xm-replace_text {发明名称}?> 调理亚健康的人体太赫兹波仿真康复理疗仪及其理疗方法 - Google Patents

<?xm-replace_text {发明名称}?> 调理亚健康的人体太赫兹波仿真康复理疗仪及其理疗方法 Download PDF

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Publication number
WO2017215023A1
WO2017215023A1 PCT/CN2016/087191 CN2016087191W WO2017215023A1 WO 2017215023 A1 WO2017215023 A1 WO 2017215023A1 CN 2016087191 W CN2016087191 W CN 2016087191W WO 2017215023 A1 WO2017215023 A1 WO 2017215023A1
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terahertz wave
terahertz
signal
frequency
module
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PCT/CN2016/087191
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English (en)
French (fr)
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鲍玉珍
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鲍玉珍
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Publication of WO2017215023A1 publication Critical patent/WO2017215023A1/zh

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • A61N2005/0658Radiation therapy using light characterised by the wavelength of light used

Definitions

  • the invention relates to the field of medical equipment, in particular to a human body terahertz wave simulation rehabilitation physiotherapy apparatus and method for conditioning sub-health.
  • the “terahertz wave” is generated from a biological information field and is emitted by the organism itself. According to scientific instrument identification, “terahertz waves” are divided into two types: one is the “human terahertz wave” emitted by the human body, and its band is 3 to 45. Micron; the other is a terahertz wave radiated by a bio-wave functional material, whose wavelength is concentrated in 4-20 Micron, there is a certain overlap with the terahertz wave emitted by the human body. At present, the terahertz wave radiated by the bio-wave functional material also has a resonance effect on the human body.
  • the effect of the material on the human body can promote blood circulation and improve microcirculation; secondly, it can reduce blood viscosity; third, it can activate cells; fourth, it can strengthen metabolism; fifth, it can resist ultraviolet rays; and sixth, it can prevent harmful bacteria. Growth; seventh is to adjust the meridian balance.
  • physiotherapy equipment involving biological functional materials and various bands (mainly light waves, terahertz waves, microwaves and ultrashort waves). Although they have various shapes and various shapes, they are numerous and numerous. However, it is indispensable to change the light, terahertz waves, microwaves and ultrashort waves directly into the medical physiotherapy equipment and act on the human body; such methods can also play a role in some common diseases. The effect, but can not heal the majority of incurable diseases. For example, it has been found that the terahertz wave is the electromagnetic wave closest to the human biological wave, and the physiotherapy effect of the terahertz wave physiotherapy device is ideal in the above various physiotherapy devices.
  • the device is only a physiotherapy instrument developed by interfering with terahertz waves, although it can treat and regulate some common diseases, it is prohibitive for special incurable diseases.
  • the United States and Japan have developed terahertz wave therapy devices, quantum generators, and terahertz wave therapy devices for treating and regulating common diseases, but they are afraid to use them because they are afraid of harm to the human body. Treatment and conditioning of areas such as heart disease.
  • Test project Prof. Fei from Shanghai Fudan University used scientific instruments to test Bao Yuzhen's human terahertz wave source and its radiation intensity.
  • Figure 1 shows the THz of the device memory before testing.
  • a blue line in the middle is the reference line, and the remaining lines are the frequency before and after the fluctuations, showing the wavelength of the human body terahertz wave and the intensity of the electromagnetic wave.
  • Bao Yuzhen's body contains a very rich source of terahertz electromagnetic waves, which is about four times higher than that of ordinary people.
  • Bao Yuzhen terahertz wave band abbreviation: Bao ⁇ s
  • the wavelength and frequency of the electromagnetic wave of the terahertz wave are completely matched, and the electromagnetic field frequency of the terahertz wave can cover the partial band of the terahertz wave and the band of the microwave.
  • terahertz waves After nearly 20 years of exploration, analysis and research, she found that she can directly emit terahertz waves into her body, which is more effective than biological wave functional materials.
  • the system also known as the eight major systems
  • the system has a variety of diseases, especially intractable diseases, which have medical therapeutic effects. This is because the human body can easily absorb the same radiant energy as its frequency or wavelength.
  • Bao Yuzhen's human terahertz wave enters the patient's body, it produces a superimposed resonance effect of the terahertz band exactly like the patient's human body, so that the patient's nucleic acid and protein are excited. High vibration level, which promotes metabolism and circulatory system, and regulates the human body.
  • Bao Yuzhen's human terahertz wave has a better conditioning effect on sub-health conditions, and other bio-wave functional materials are incomparable.
  • Bao Yuzhen mastered the clinical science and technology of using the rich terahertz wave in her body to adjust the healing of patients, and the effect is very good.
  • the object of the present invention is to overcome the defects in the prior art, and to design a sub-healthy human body terahertz wave simulation rehabilitation physiotherapy instrument for realizing the use of a rich human terahertz electromagnetic wave source for conditioning various diseases, especially heart diseases. .
  • the technical solution adopted by the present invention is to adjust a sub-health human terahertz wave simulation rehabilitation physiotherapy instrument, which comprises a signal source generator, a modulator, a terahertz wave generator, a terahertz wave horn antenna.
  • a controller for generating a signal source of the low frequency terahertz wave signal; the modulator modulating the frequency of the low frequency terahertz wave signal of the signal source by pulse and sinusoidal modulation by controlling the frequency
  • the modulated terahertz electromagnetic wave signal is input to the terahertz wave generator; the terahertz wave generator receives the modulated low frequency terahertz electromagnetic wave signal, and uses the frequency extension chain 5
  • the road amplifies and multiplies the low frequency electromagnetic wave signal to generate a specific terahertz wave spectrum, and sends it to the terahertz wave horn antenna for radiation; the controller is used for signal processing and control of the whole machine.
  • the specific terahertz wave spectrum is a terahertz wave spectrum having the same width as the Bao's spectrum.
  • the frequency extension link in the above solution is preferably a frequency multiplication link, and after receiving the signal source, the frequency multiplication link performs multiple amplification and frequency multiplication through a driver amplifier and a multi-stage frequency multiplier to achieve the required terahertz.
  • the frequency-multiplied signal of the waveband is output through a standard terahertz electromagnetic waveguide and then radiated by a terahertz horn antenna.
  • the multi-stage frequency multiplier is composed of a varactor group in a low frequency region and a resistive diode group in a high frequency region; the varactor group is combined into a plurality of varactor diodes in parallel and in parallel to form odd and even times. Frequency multiplication; the resistive diode group passes 2 More than one Schottky barrier diodes are combined in anti-parallel.
  • the physiotherapy apparatus is configured as a hand-held contact product.
  • the physiotherapy apparatus further includes a probe, and the front end of the probe is provided with a suction cup, and the rear end of the suction cup is provided with a single convex curved surface and a curved surface. a focusing lens facing backward; the modulator and the terahertz wave generator are disposed in the probe, and the open end of the terahertz wave horn antenna of the terahertz wave generator faces the curved surface of the focusing lens.
  • the signal source generator is a frequency synthesizer constructed by using a monolithic integrated radio frequency chip combined with a peripheral bias circuit, and the frequency synthesizer includes a phase locked loop and A phase-locked structure consisting of a voltage controlled oscillator.
  • the controller comprises:
  • the control processing module receives the instruction generated by the human-machine interaction module and generates driving information, modulates and analyzes the specific terahertz wave information stored in the storage module, and controls the operation of the modulation module;
  • the signal source driving module receives the driving signal input by the control processing module, thereby controlling the working state of the signal source generator;
  • a storage module which receives and stores specific terahertz wave information input by the human-computer interaction module and an analysis result input by the control processing module;
  • a human-computer interaction module configured to transmit an instruction to the control processing module, and display input and output information of the control processing module
  • the modulation module receives the modulation command input by the control processing module to control the working state of the modulator.
  • the physiotherapy apparatus further includes a terahertz wave detector, and the terahertz wave detector detects a terahertz wave signal emitted by a specific human body, and the terahertz wave detector includes a lens and a detecting unit.
  • a front end of the terahertz wave detector is provided with a circular suction cup, and the convex surface of the lens faces the front end to the circular suction cup;
  • the controller further includes a terahertz wave signal processing module and a terahertz wave signal adjustment module, and the terahertz wave signal processing module is configured to receive the signal detected by the terahertz wave detector and perform signal conversion on the received terahertz wave signal. Processing, acquiring amplitude and relative offset of the terahertz wave signal; the terahertz wave signal adjustment module receives the new terahertz wave spectrum signal processed by the terahertz wave signal processing unit, and uses the terahertz wave spectrum signal Make adjustments and replacements.
  • controller further includes a power conversion module for converting the alternating current into a direct current required by the terahertz wave therapy instrument and a transmission module for data transmission.
  • Another aspect of the present invention provides a method for conditioning a sub-healthy human terahertz wave simulation therapy, comprising the steps of:
  • Step 1 The control processing module sends driving information to the signal source driving module, and the signal source generator receives the driving command of the terahertz wave driving module to generate a low frequency terahertz electromagnetic wave signal;
  • Step 2 The modulator modulates the amplitude of the low-frequency terahertz wave signal of the signal source by pulse and sine differently by controlling the current frequency, and inputs the modulated terahertz electromagnetic wave signal to the terahertz generator;
  • Step 3 The terahertz wave generator receives the modulated low frequency terahertz electromagnetic wave signal, and amplifies and multiplies the low frequency terahertz electromagnetic wave signal by using a frequency extension link to generate a terahertz wave frequency band of a specific terahertz wave spectrum, and Radiation through a terahertz horn antenna;
  • the specific terahertz wave spectrum in step 3 is a terahertz wave spectrum having the same width as the Bao's spectrum.
  • the human body terahertz wave simulation rehabilitation physiotherapy instrument of the invention is improved based on the existing terahertz physiotherapy instrument, and the terahertz wave bandwidth is adjusted at any time by the added modulator; further improvement, the physiotherapy device is connected
  • the terahertz wave detector is used to directly detect the terahertz wave spectrum of a specific applicant, Bao Yuzhen, and adjust and correct the existing terahertz wave spectrum in the physiotherapy instrument after signal processing.
  • the physiotherapy instrument is novel in design and is used for the conditioning of sub-health waves in specific human terahertz waves.
  • the terahertz wave generator of the present invention adopts a frequency doubled link design, wherein the frequency multiplier adopts a plurality of nonlinear devices, and the multi-device adopts a balanced structure; the balance structure adopts 2 One or more Schottky barrier diodes are used as frequency doubling devices to increase the output power and increase the dynamic range; the balanced structure can suppress unwanted harmonic components and does not require an additional filter circuit, so the entire The conversion loss of the circuit can obtain a large output power; the balanced structure can isolate the input and output signals from each other, and the input and output circuits can be matched separately, which is beneficial to improve the input and output standing wave ratio.
  • the radiant end of the physiotherapy instrument of the present invention can be a non-contact product or a hand-held contact product; for a hand-held contact product design, consider using a space quasi-optical technique to design a lower loss focusing lens with an antenna to perform radiation using a Gaussian optical method.
  • the lens can be designed with low dielectric constant and low loss material such as polytetrafluoroethylene, and the shape is realized by single focus. This method can reduce the signal output power requirement of the device to a certain extent and avoid excessive space loss.
  • the invention adopts the human body terahertz electromagnetic wave emitted by the human body as a template when the applicant Bao Yuzhen is conditioning the patient, and the Bao ⁇ s
  • the terahertz wave spectrum envelope holographic information
  • the terahertz wave spectrum is modulated onto a single wave to form a unique carrier in the world that is modulated by human terahertz wave holographic information, and this carrier is input into the patient through an oscillator to achieve The purpose of healing and healing.
  • the human body terahertz wave simulation rehabilitation physiotherapy instrument namely "human terahertz wave simulation rehabilitation physiotherapy instrument” modulates non-interfering terahertz electromagnetic waves by using terahertz electromagnetic waves generated by Bao Yuzhen's own body as a template to form complete with the human body
  • the approximate terahertz wave carrier is then transmitted to the patient, which can maximize the resonance effect with the patient's body. It can be directly absorbed by the molecules and atoms of the inorganic substances, organic substances, and cellular genes (DNA) inside the substance.
  • Lattice vibrational energy activateated or referred to as its activation). By realigning the molecular crystal structure, the physical properties of the organism itself are denatured. The patient's body immediately undergoes material degeneration, so that the patient's immunity and self-healing power are greatly improved, and the disease will not heal itself.
  • the physiotherapy apparatus of the invention minimizes the pain and fear of the patient; in particular, the mental and physical aspects of the intractable patient are very painful, most of the patients The mood is very low.
  • the conditioning effect is immediate, greatly shortening the conditioning cycle.
  • Many patients with intractable diseases are suffering from long-term illnesses, and they are comfortable.
  • the effect is immediate, and the patients can generally make the patient a short time (one to two courses, A course of treatment for seven days) anti-inflammatory and pain relief, restore life and work ability.
  • the "human terahertz wave simulation rehabilitation physiotherapy instrument” is even better.
  • the physiotherapy instrument is economical and practical, easy to operate and easy to grasp.
  • the household "human terahertz wave rehabilitation physiotherapy instrument” is small in size, and its operation technology is easy to learn and master. Patients can buy one home for use just like buying a regular household appliance. Because the physiotherapy instrument has the function of disease conditioning, disease-free fitness, especially in conditioning sub-health effect is better. Therefore, the family has a "human terahertz wave simulation rehabilitation physiotherapy instrument", the whole family can benefit from the light.
  • Figure 1 is the reference waveform of the THz band of the device memory before Ms. Bao Yuzhen's test;
  • Figure 2 is the reference waveform of the THz band of the device memory after Ms. Bao Yuzhen's test
  • Figure 3 is a test chart of the body energy field of Ms. Bao Yuzhen;
  • Figure 4 is a comparison of the value-added results of E. coli and common human E. coli;
  • Figure 5 is a schematic diagram showing the principle structure of a human terahertz wave simulation rehabilitation physiotherapy apparatus for conditioning sub-health
  • Figure 6 is a schematic diagram showing the internal structure of a frequency-doubled link in a sub-hertz wave simulated rehabilitation physiotherapy apparatus for sub-healthy human body;
  • FIG. 7 is a circuit diagram of a frequency doubling link in a sub-hertz wave simulation rehabilitation physiotherapy apparatus for conditioning sub-health
  • Figure 8 is a schematic diagram of antenna radiation in a human terahertz wave simulation rehabilitation physiotherapy apparatus for conditioning sub-health
  • FIG. 9 is a schematic view showing an embodiment of a main body structure of a human terahertz wave simulation rehabilitation physiotherapy apparatus for conditioning sub-health;
  • Figure 10 is a schematic view showing the structure of a probe in a sub-hertz wave simulation rehabilitation physiotherapy apparatus for conditioning sub-health;
  • FIG. 11 is a schematic structural view of a first embodiment of a control device for conditioning a sub-health human terahertz wave simulation rehabilitation physiotherapy instrument;
  • FIG. 12 is a schematic structural view of a second embodiment of a sub-health human terahertz wave simulation rehabilitation physiotherapy instrument
  • Figure 13 is a schematic illustration of one embodiment of a detector for conditioning a sub-health human terahertz wave simulated rehabilitation physiotherapy instrument.
  • the invention modulates a sub-health human terahertz wave simulation rehabilitation physiotherapy apparatus, as shown in FIG. 5, the physiotherapy apparatus comprises a signal source generator 1, a modulator 2, a terahertz wave generator 3, a terahertz wave horn antenna 4 and a control
  • the signal source generator 1 is configured to generate a signal source of the low frequency signal;
  • the modulator 2 performs pulse and sinusoidal modulation on the amplitude of the low frequency terahertz signal of the signal source by controlling the frequency, and modulates
  • the terahertz electromagnetic wave signal is input to the terahertz generator 3;
  • the terahertz wave generator 3 receives the modulated low frequency terahertz electromagnetic wave signal, and amplifies and multiplies the low frequency terahertz electromagnetic wave signal by using a frequency extension link to generate a specific
  • the terahertz wave spectrum is sent to the terahertz wave horn antenna 4 for radiation;
  • the controller 5 is used for signal processing and control
  • the input signal to the physiotherapy instrument of the present invention is provided by the microwave signal source generator 1 and is designed to enter the link through a 2.92 mm coaxial connector (K connector). Since the output frequency of the signal source generator 1 is generally 20-40 GHz or less, the terahertz band needs to be amplified and multiplied by using a frequency extension link.
  • the basic principle is to amplify and multiply the low-frequency terahertz wave signal multiple times to achieve the required terahertz band for transmission. Taking the 300 GHz multi-frequency link as an example, the corresponding principle is shown in FIG. 6; the multiplied signal generated by the link is output through a standard waveguide, and then radiated into the space by the horn antenna. In practical applications, if the design considers the use of spatial non-contact illumination for physiotherapy, consider using a low-gain antenna with a certain spatial distance.
  • the frequency extension link in the physiotherapy apparatus of the present invention is a frequency multiplication link, and after receiving the signal source, the frequency doubling link performs multiple amplification and frequency doubling by the driver amplifier 30 and the multistage frequency multiplier 31 to achieve the required
  • the frequency doubling signal of the terahertz wave band is output through a standard terahertz electromagnetic waveguide, and then radiated by the terahertz wave horn antenna 4.
  • the frequency doubled link adopts a microstrip suspension circuit in a waveguide cavity, and the microstrip circuit can be realized by thinning the quartz substrate medium, and at the same time, flip-chip welding is performed by using a diode with suitable parameters (such as UMS or domestic device).
  • the multistage frequency multiplier 31 is composed of a varactor diode group in a low frequency region and a resistive diode group in a high frequency region; the varactor diode group is connected through a plurality of varactor diodes and parallel combinations. The odd-frequency and even-time multiplication; the resistive diode group is formed by combining two or more Schottky barrier diodes in anti-parallel.
  • the frequency multiplyer adopts a plurality of nonlinear devices, and multiple devices adopt a balanced structure to improve circuit power capacity, obtain large output power, and suppress no. The necessary harmonic components.
  • the invention physiotherapy product can be designed as a non-contact product or a contact product.
  • the physiotherapy device is a hand-held contact product, as shown in FIGS. 9-10.
  • the physiotherapy apparatus includes a housing 100.
  • the front end of the housing 100 is provided with a display screen 8, and the housing 100 is provided with a plurality of An interface 101 for connecting the probe 6.
  • the front end of the probe 6 is provided with a suction cup 7, and the rear end of the suction cup 7 is provided with a single convex curved surface and a curved lens 70 with a curved surface; the probe 6 is 5
  • the connector 60 is connected to the interface 101.
  • the modulator 2 and the terahertz wave generator 3 are disposed in the probe 6, and the open end of the terahertz wave horn antenna 4 faces the curved surface of the focus lens 70.
  • the focusing lens 70 is combined with the terahertz wave horn antenna 4 to radiate by Gaussian optical method to reduce the loss; the focusing lens 70 can be designed by using a low dielectric constant such as polytetrafluoroethylene and a low loss material, and the shape is a single curved focusing mode. This method can reduce the signal output power requirement of the device to a certain extent and avoid excessive space loss.
  • the first embodiment of the controller 5 includes a control processing module 50, a signal source driving module 51, a storage module 52, a human-machine interaction module 53, a modulation module 54, and a power conversion module 57.
  • the control processing module 50 receives the instructions generated by the human-machine interaction module 53 and generates drive information, modulates and analyzes the specific terahertz wave information stored in the storage module 52, and controls the operation of the modulation module 54.
  • the signal source driving module 51 receives the driving signal input from the control processing module 50, thereby controlling the operating state of the signal source generator 1.
  • the storage module 52 receives and stores the specific terahertz wave information input by the human-machine interaction module 53 and the analysis result input by the control processing module 50.
  • the human-machine interaction module 53 is configured to transmit an instruction to the control processing module 50 and display the input and output information of the control processing module 50 through the display screen 8.
  • Modulation module 54 receives the modulation commands input by control processing module 50 to control the operational state of modulator 2.
  • the power conversion module 57 is used to convert the alternating current into the direct current required by the terahertz wave therapy instrument.
  • the physiotherapy apparatus further includes a terahertz wave detector 9.
  • the terahertz wave detector 9 detects a terahertz wave signal emitted by a specific human body
  • the terahertz wave detector 9 includes a lens 90 and a detecting unit 91, and a front end of the terahertz wave detector 9 is provided with a circular sucker 92, and the convex surface of the lens 90 faces the front end into the circular chuck 92.
  • the terahertz wave detector 9 is connected with a plug 93 for easy connection to the physiotherapy instrument.
  • the corresponding controller 5 also adds a terahertz wave signal processing module 55 and a terahertz wave signal adjustment module 56, as shown in FIG.
  • the terahertz wave signal processing module 55 is configured to receive a signal detected by the terahertz wave detector 9 and perform signal conversion processing on the received terahertz wave signal to obtain an amplitude and a relative offset of the terahertz wave signal; the terahertz
  • the wave signal adjustment module 56 receives the new terahertz wave spectrum signal processed by the terahertz wave signal processing unit 55, and adjusts and replaces the used terahertz spectrum signal.
  • a transmission module 58 for data transmission may also be included in the control unit 5 of the present invention.
  • the terahertz wave detector 9 places an area to be tested on a specific human body through a circular suction cup 92, collects an electric signal generated by a specific human body, realizes photoelectric conversion, and completes sampling of the terahertz wave.
  • the electrical signal generated by the photoelectric sensors of each channel is sent to the terahertz wave signal processing module 55, and sent to the multi-channel preamplifier for amplification, filtering and integration processing in the terahertz wave signal processing module 55, so that the signal reaches the detection and identification.
  • the lens 90 of the terahertz wave detector 9 is an off-axis aspherical mirror.
  • the detecting unit 91 has a high electron mobility field effect transistor having a high two-dimensional electron concentration as a basic structural unit, and the field effect transistor has three electrodes, which are a source electrode, a gate electrode and a drain electrode, respectively.
  • the detecting element structure of the terahertz wave detector 9 includes three lead electrodes, three low pass filters, and a set of terahertz wave coupling antennas, and the three electrodes of the field effect transistor are connected to the terahertz wave coupling antenna. Commonly as an antenna; and the three electrodes are respectively connected to corresponding lead electrodes through a low pass filter.
  • the high electron mobility field effect transistor is a transistor having a higher two-dimensional electron gas concentration, and includes at least one of an aluminum gallium nitride/gallium nitride transistor and an aluminum gallium arsenide/gallium arsenide transistor.
  • the detection module also includes a signal amplifier that amplifies the received terahertz echo signal.
  • One embodiment of the present invention provides a method for conditioning sub-health human terahertz simulation rehabilitation therapy, comprising the steps of:
  • Step 1 The control processing module 50 issues driving information to the signal source driving module 51, and the signal source generator 50 receives the driving command of the signal source driving module 51 to generate a low frequency terahertz electromagnetic wave signal;
  • Step 2 the modulator 2 modulates the amplitude of the low-frequency terahertz wave signal of the signal source by controlling the current frequency, and modulates the terahertz electromagnetic wave signal into the terahertz generator 3;
  • Step three terahertz wave generator 3 Receiving the modulated low-frequency terahertz electromagnetic wave signal, and amplifying and multiplying the low-frequency terahertz electromagnetic wave signal by using a frequency extension link to generate a specific terahertz wave spectrum and radiating it through the terahertz wave horn antenna 4;
  • the specific terahertz wave spectrum in step 3 is a terahertz wave spectrum having the same width as the Bao's spectrum.
  • conditioning a sub-healthy human terahertz simulated rehabilitation therapy comprises the steps of:
  • Step one terahertz wave detector 9 Detecting a terahertz wave signal of a specific human body and inputting it to the terahertz wave signal processing module 55, the terahertz wave signal processing module 55 Performing signal conversion processing on the received terahertz wave signal, obtaining the terahertz wave amplitude of the specific human body, and inputting to the control processing module 50;
  • Step 2 The control processing module 50 sends an adjustment command to the terahertz wave adjustment module 56, and the terahertz wave adjustment module 56 Receiving a new terahertz wave spectrum signal processed by the terahertz wave signal processing unit 55, and adjusting and replacing the used terahertz spectrum signal;
  • Step 3 The control processing module 50 issues driving information to the signal source driving module 51, and the signal source generator 50 receives the signal source driving module 51.
  • Drive command to generate a low frequency terahertz electromagnetic wave signal
  • Step four modulator 2
  • the amplitude of the low frequency terahertz wave signal of the signal source is modulated in a different pulse and sinusoidal manner by controlling the current frequency, and the modulated terahertz electromagnetic wave signal is input to the terahertz generator 3;
  • Step five terahertz wave generator 3
  • the modulated low frequency terahertz electromagnetic wave signal is received, and the low frequency terahertz electromagnetic wave signal is amplified and multiplied by a frequency extension link to generate a specific terahertz wave spectrum and radiated through the terahertz wave horn antenna 4.

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Abstract

一种调理亚健康的人体太赫兹波仿真康复理疗仪,所述理疗仪包括信号源生成器(1)、调制器(2)、太赫兹波发生器(3)、太赫兹波喇叭天线(4)以及控制仪(5),信号源生成器(1)用于生成低频太赫兹波信号的信号源;调制器(2)通过控制电频实现对信号源的低频太赫兹波信号幅度进行脉冲、正弦不同方式调制,并将调制后的太赫兹电磁波信号输入至太赫兹发生器(3);太赫兹波发生器(3)接收调制后的低频太赫兹电磁波信号,利用频率扩展链路对低频太赫兹电磁波信号进行放大和倍频,产生特定太赫兹波频段,并将其送至太赫兹波喇叭天线(4)进行辐射出去;控制仪(5)用于对整机信号处理和控制。该理疗仪实现将丰富的人体太赫兹电磁波波源用于调理各类疾病,特别是心脏类疾病。

Description

调理亚健康的人体太赫兹波仿真康复理疗仪及其理疗方法 技术领域
本发明涉及医疗设备领域,具体涉及一种调理亚健康的人体太赫兹波仿真康复理疗仪及方法。
背景技术
“太赫兹波”自生物信息场产生,并由生物体自行放射的波谱。根据科学仪器鉴定,“太赫兹波”分为二种:一种是由人体放射出来的“人体太赫兹波”,其波段为3~45 微米;另一种是由“生物波功能材料所辐射出来的太赫兹波,其波段集中在4~20 微米,与人体发射出来太赫兹波有一定的重叠。目前已出现的生物波功能材料所辐射太赫兹波对人体也会产生共振效应,这是由于人体会产生热效应现象及水分子共振现象,肌体细胞动能增加,如同保持微量运动或微按摩状态。该材料对于人体的作用一是可以促进血液循环及改善微循环;二是可以降低血液粘稠度;三是可以活化细胞;四是可以强化新陈代谢;五是可以抗紫外线;六是可以预防有害细菌的生长;七是可以调节经络平衡。
目前世界各国科学家们已研发出的、涉及到生物功能材料以及各个波段(主要是光波、太赫兹波、微波和超短波)的理疗设备等,尽管其外形形形色色,各式各样,名目繁多,数不胜数,但是万变不离其宗,即:都是直接将光波、太赫兹波、微波和超短波作为波源用于医学理疗设备,并作用于人体;这类方法对一些普通的疾病也能起到一定的效果,但是无法疗愈多数的疑难杂症。例如,目前已发现太赫兹波是最接近于人体生物波的一种电磁波,在上述各种理疗设备中太赫兹波理疗设备的理疗效果算是比较理想。但是由于该设备也只是单纯利用干涉太赫兹波研发的理疗仪,虽然也能治疗和调理一些普通疾病,但是对于特殊的疑难杂症则是望而却步。诸如美国和日本都已先后研发出用于治疗和调理普通疾病的太赫兹波理疗仪、量子发生器以及太赫兹波理疗仪器等,但是由于害怕对人体造成伤害,他们至今不敢将其用于诸如心脏疾病等部位的治疗和调理。
为此,申请人致力研究新型“太赫兹波”以解决上述问题。实际上,每个人人体内都或多或少地蕴藏太赫兹电磁波,只是强弱不同而已。申请人鲍玉珍女士体内是蕴藏着很丰富的极强的太赫兹电磁波波源的人。
相关测试实验:
1、鲍玉珍人体太赫兹电磁波带宽测试
测试项目:上海复旦大学费教授利用科学仪器对鲍玉珍人体太赫兹波波源及其辐射强度进行了测试。
图1 为测试前设备内存的THz 波段的基准波形;鲍玉珍在模似环境中使其体内产生的电磁波作用于测试设备,其结果见图2。图2中,中间的一条蓝色线是基准线,其余划线的是频率前后和上下波动情况,显示了鲍玉珍人体太赫兹波波长及电磁波的强度。
2、鲍玉珍人体电磁场测试
2013 年底,中国工程院某院士在亲自体验过鲍玉珍调理方法之后,他采用电磁强场测试设备,对鲍玉珍调理疑难杂症的方法进行测试后发现:鲍玉珍在给疑难杂症调理时能发出高于普通人三到四倍的电磁场。
3、鲍玉珍超强的人体能量场测试
中国超声技术研究的带头人、联合国教科文组织生物医学技术研究院院士、中国人体健康科技促进会副会长兼秘书长刘忠齐先生亲自使用TTM 设备测试鲍玉珍人体能量,结果为鲍玉珍人体能量高于普通人25%,见图3。
4、鲍玉珍大肠杆菌实验
原清华大学、首都师范大学、中国地质大学等五位教授和专家们发现:经过鲍玉珍太赫兹波调理过的大肠杆菌菌种,其遗传和生长特性发生根本性的变化,其调理过的菌种增殖速度比没有调理的菌种增殖数量提高了十几倍。未经鲍玉珍调理的细胞每二十分钟才增殖一代,而经鲍玉珍调理过的细胞,每二分钟就增殖一代,见图4。
5、鲍玉珍人体高电阻值测试
中国地质大学毕业的一位博士后给鲍玉珍做过人体电阻值比较测试后发现:鲍玉珍人体的电阻值高于普通人的四倍左右。
经过数位工程院院士和大学教授对鲍玉珍人体进行对比测试和实验后发现:鲍玉珍女士身体内蕴藏着非常丰富的太赫兹电磁波波源,超过普通人四倍左右。经上述测试后发现其频率和波长与鲍玉珍太赫兹波波段(简称:Bao`s 太赫兹波)的电磁波波长和频率完全相吻合,其太赫兹波的电磁场频率可以覆盖太赫兹波部分波段和微波部分波段。经过近二十年的探索、分析和研究,发现她可以直接将其体内的太赫兹波发射到患者体内,所起的效果比生物波功能材料对人体所起的效果更加强大;对人体九大系统(亦称八大系统)各种疾病,特别是疑难杂症,都有医学上的治疗效果。这是由于人体较易吸收与其频率或波长相同的辐射能量,鲍玉珍的人体太赫兹波进入患者人体后,产生了与患者人体完全一样太赫兹波段的叠加共振效应,使患者核酸与蛋白质被激发到高震动能级,进而促进新陈代谢、循环系统,达到调理人体。鲍玉珍的人体太赫兹波对亚健康病症的调理效果更好,其他生物波功能材料更是无法相比。鲍玉珍掌握了利用其本人体内丰富的太赫兹波为患者调理疗伤的临床科学技术,且效果非常好。
申请人鲍玉珍认为人体太赫兹波用于太赫兹波理疗仪,调理疑难杂症,研发创新型的“人体太赫兹波仿真康复理疗仪”会是目前为止最为理想和最先的科学创新技术。
发明内容
本发明的目的在于克服现有技术中的缺陷,设计一种调理亚健康的人体太赫兹波仿真康复理疗仪,实现将丰富的人体太赫兹电磁波波源用于调理各类疾病,特别是心脏类疾病。
为实现上述目的,本发明所采用的技术方案是调理亚健康的人体太赫兹波仿真康复理疗仪,所述理疗仪包括信号源生成器、调制器、太赫兹波发生器、太赫兹波喇叭天线以及控制仪,所述信号源生成器用于生成低频太赫兹波信号的信号源;所述调制器通过控制电频实现对信号源的低频太赫兹波信号幅度进行脉冲、正弦不同方式调制,并将调制后的太赫兹电磁波信号输入至太赫兹波发生器;所述太赫兹波发生器接收调制后的低频太赫兹电磁波信号,利用频率扩展链5 路对低频电磁波信号进行放大和倍频,产生特定太赫兹波频谱,并将其送至太赫兹波喇叭天线进行辐射出去;所述控制仪用于对整机信号处理和控制。
其中,优选所述特定太赫兹波频谱为具有Bao’s 频谱同样宽的太赫兹波频谱。
上述方案中所述频率扩展链路优选为倍频链路,所述倍频链路接收信号源后,通过驱动放大器和多级倍频器进行多次放大和倍频,达到所需要的太赫兹波频段的倍频信号经标准太赫兹电磁波导输出,后由太赫兹波喇叭天线辐射出去。
具体的,所述多级倍频器由低频区域的变容二极管组和高频区域的阻性二极管组构成;所述变容二极管组通过若干个变容二极管串、并联组合成奇、偶次倍频;所述阻性二极管组通过2 个以上的肖特基势垒二极管反向并联组合而成。
本发明理疗仪在一个优选方案中设置成手持接触式产品,此时,所述理疗仪还包括探头,所述探头的前端设有吸盘,所述吸盘的后端设有单凸曲面且曲面朝后的聚焦透镜;所述调制器和太赫兹波发生器设于所述探头内,且太赫兹波发生器的太赫兹波喇叭天线开口端朝向聚焦透镜的曲面。
本发明理疗仪的信号源生成器在一个优选方案中,所述信号源生成器为利用单片集成射频芯片结合外围偏置电路搭建的频率综合器,所述频率综合器中包含锁相环和压控振荡器组成的锁相结构。
本发明理疗仪的控制仪在一个优选方案中,控制仪包括:
控制处理模块,接收人机交互模块产生的指令并产生驱动信息,调制并分析存储模块中存储的特定太赫兹波信息,并控制调制模块的工作;
信号源驱动模块,接收控制处理模块输入的驱动信号,从而控制信号源生成器的工作状态;
存储模块,接收并存储人机交互模块输入的特定太赫兹波信息和控制处理模块输入的分析结果;
人机交互模块,用于向控制处理模块传输指令,并显示控制处理模块的输入输出信息;
调制模块,接收控制处理模块输入的调制指令,从而控制调制器的工作状态。
本发明进一步的优选方案有:所述理疗仪还包括太赫兹波探测器,所述太赫兹波探测器探测特定人体发射出的太赫兹波信号,所述太赫兹波探测器包括透镜和探测单元,所述太赫兹波探测器的前端设有圆形吸盘,且透镜的凸面朝向前端至圆形吸盘内;
所述控制仪还包括太赫兹波信号处理模块和太赫兹波信号调整模块,所述太赫兹波信号处理模块用于接收太赫兹波探测器探测的信号并对接收的太赫兹波信号进行信号转换处理,获取太赫兹波信号的振幅和相对偏移;所述太赫兹波信号调整模块接收太赫兹波信号处理单元处理后的新的太赫兹波频谱信号,并对已用的太赫兹波频谱信号进行调整更换。
更进一步的,所述控制仪还包括用于将交流电转换为太赫兹波理疗仪所需要的直流电的电源转换模块和用于数据传输的传输模块。
本发明另一个方面提供了一种调理亚健康的人体太赫兹波仿真理疗法,包括如下步骤:
步骤一、控制处理模块向信号源驱动模块下达驱动信息,信号源生成器接收太赫兹波驱动模块的驱动指令,产生低频太赫兹电磁波信号;
步骤二、调制器通过控制电流频率对信号源的低频太赫兹波信号幅度进行脉冲、正弦不同方式调制,并将调制后的太赫兹电磁波信号输入至太赫兹发生器;
步骤三、太赫兹波发生器接收调制后的低频太赫兹电磁波信号,利用频率扩展链路对低频太赫兹电磁波信号进行放大和倍频,产生特定太赫兹波频谱的太赫兹波频段,并将其通过太赫兹喇叭天线辐射出去;
其中,步骤三中特定太赫兹波频谱为具有Bao’s 频谱同样宽的太赫兹波频谱。
本发明的优点和有益效果在于:
1、本发明的人体太赫兹波仿真康复理疗仪基于现有的太赫兹理疗仪进行改进,通过添加的调制器随时对发射的太赫兹波频宽进行调整;进一步的改进中,理疗仪连接有太赫兹波探测仪,用于直接探测特定申请人鲍玉珍身上的太赫兹波频谱,经信号处理后对理疗仪内已存的太赫兹波频谱进行调整校正。该理疗仪设计新颖,用于特定人体太赫兹波对亚健康病患的调理。
2、本发明的太赫兹波发生器采用倍频链路设计,其中倍频器采用多个非线性器件,多器件采用平衡式结构;平衡结构采用2 个或4个以上肖特基势垒二极管作为倍频器件,提高了输出功率,增大了动态范围;平衡式结构可以抑制不需要的谐波分量,不需要附加的滤波电路,故可以降低整个电路的变频损耗,获得较大的输出功率;平衡式结构使输入、输出信号相互隔离,则可以对输入、输出回路分别进行匹配,有利于改善输入、输出驻波比。
3、本发明理疗仪的辐射端可采用非接触式产品或手持接触式产品;对于手持接触式产品设计方案,考虑利用空间准光学技术设计较低损耗的聚焦透镜配合天线利用高斯光学方式进行辐射。透镜可利用聚四氟乙烯等低介电常数、低损耗材料设计,外形为单曲聚焦方式实现。该方式可在一定程度上降低对设备信号输出功率需求,避免过多空间损耗。
4、本发明通过将申请人鲍玉珍在调理患者时,其人体所发出来人体太赫兹电磁波作为模板,并将Bao`s 太赫兹波频谱(包络全息信息)调制到单一波上,以形成目前世界上独一无二的、利用人体太赫兹波全息信息调制的载波,并通过振荡器将这种载波输入到患者体内,以达到治病疗伤的目的。本发明的人体太赫兹波仿真康复理疗仪,即“人体太赫兹波仿真康复理疗仪”,是将鲍玉珍自身体内所产生的太赫兹电磁波作为模板来调制非干涉太赫兹电磁波,以形成与其人体完全近似的太赫兹波载波后再发射到患者体内,可以最大限度地与患者身体发生共振效应,可直接被物质内部的无机质物、有机物、细胞的遗传基因(DNA)的分子及原子吸收,增强格子振动能量(激活或被称为使其活性化)。通过对分子结晶构造的重新排列,引起生物体本身物性的变性。使患者的身体即时性发生物质变性作用,使患者免役力和自愈力都大为提高,其疾病也就不治自愈。
5、使患者人体起到最大化的化学反应作用。由于“人体太赫兹波仿真康复理疗仪”是以鲍玉珍人体太赫兹电磁波为模板,其向患者所传递的人体全息健康信息,因此进入人体后可以最大化地起着化学反应作用。例如,可以使患者不合格的生化指标即时性地发生逆转。少数经过调理后其生化指标还优于生病前的指标。
6、相比较传统治疗的吃药、打针和手术,本发明理疗仪最大程度地减少了患者的痛苦和恐惧心理;特别是疑难杂症患者的精神上和肉体上本身就十分痛苦,大部分患者情绪都十分低落。但是使用“人体太赫兹波仿真康复理疗仪”调理疾病时可以不吃药、不打针,不用手术,因此不会给患者带来二次痛苦,可以在谈笑之间就调理好疾病,是目前最为理想的临床医学技术。
7、调理效果立竿见影,大大地缩短了调理周期。许多疑难杂症患者都是长期遭受病魔的折磨,苦不堪言;而使用“人体太赫兹波仿真康复理疗仪”调理后,效果立竿见影,一般都能使患者短时间内(一到二个疗程,一个疗程为七天)消炎止痛,恢复生活和工作能力。与药物和手术治疗效果相比,“人体太赫兹波仿真康复理疗仪”效果更胜一筹。
8、使用“人体太赫兹波仿真康复理疗仪”调理的患者可以在门诊调理,不用住院,与医院诊治和药费相比,其调理费用十分低廉,人人用得起。
9、该理疗仪经济实用,操作简便,容易掌握。家用性的“人体太赫兹波康复理疗仪”体积小、其操作技术更是易学好掌握。患者可以如同购买普通家用电器一样购买一台回家使用。由于该理疗仪具有有病调理,无病健身的功能,特别是在调理亚健康方面效果更佳。因此,家有一台“人体太赫兹波仿真康复理疗仪”全家人都可以受益沾光。
附图说明
图1为鲍玉珍女士测试前设备内存的THz波段的基准波形图;
图2为鲍玉珍女士测试后设备内存的THz波段的基准波形图;
图3为鲍玉珍女士人体能量场测试图;
图4为鲍玉珍女士大肠杆菌和普通人大肠杆菌增值结果对比图;
图5为调理亚健康的人体太赫兹波仿真康复理疗仪的原理结构示意图;
图6为调理亚健康的人体太赫兹波仿真康复理疗仪中倍频链路内部结构原理图;
图7为调理亚健康的人体太赫兹波仿真康复理疗仪中倍频链路电路图;
图8为调理亚健康的人体太赫兹波仿真康复理疗仪中天线辐射示意图;
图9为调理亚健康的人体太赫兹波仿真康复理疗仪主体结构的一种实施方式示意图;
图10为调理亚健康的人体太赫兹波仿真康复理疗仪中探头的结构示意图;
图11是调理亚健康的人体太赫兹波仿真康复理疗仪中控制仪的第一种实施方式的结构示意图;
图12是调理亚健康的人体太赫兹波仿真康复理疗仪中控5 制仪的第二种实施方式的结构示意图;
图13是调理亚健康的人体太赫兹波仿真康复理疗仪中探测器的一种实施方式的结构示意图。
本发明的实施方式
下面结合附图和实施例,对本发明的具体实施方式作进一步描述。以下实施例仅用于更加清楚地说明本发明的技术方案,而不能以此来限制本发明的保护范围。
本发明调理亚健康的人体太赫兹波仿真康复理疗仪,图5所示,所述理疗仪包括信号源生成器1、调制器2、太赫兹波发生器3、太赫兹波喇叭天线4以及控制仪5,所述信号源生成器1用于生成低频信号的信号源;所述调制器2通过控制电频实现对信号源的低频太赫兹信号幅度进行脉冲、正弦不同方式调制,并将调制后的太赫兹电磁波信号输入至太赫兹发生器3;所述太赫兹波发生器3接收调制后的低频太赫兹电磁波信号,利用频率扩展链路对低频太赫兹电磁波信号进行放大和倍频,产生特定太赫兹波频谱,并将其送至太赫兹波喇叭天线4进行辐射出去;所述控制仪5用于对整机信号处理和控制。其中所述特定太赫兹波频谱为与特定人体太赫兹波频谱同样宽的太赫兹波频谱,优选具有Bao’s频谱同样宽的太赫兹波频谱。
本发明理疗仪的输入信号由微波信号源生成器1提供,设计通过2.92mm同轴接头(K接头)进入链路。由于信号源生成器1输出频率一般为20-40GHz以下,在太赫兹频段需要利用频率扩展链路进行放大和倍频来实现。其基本原理是将低频太赫兹波信号多次放大和倍频,达到所需要的太赫兹频段进行发射。以300GHz倍频链路为例,对应原理如图6所示;链路产生的倍频信号经标准波导输出,后由喇叭天线辐射至空间中。在实际应用中,如设计考虑采用空间非接触照射进行理疗,则考虑采用低增益天线,配合一定空间距离即可。
本发明理疗仪内的频率扩展链路为倍频链路,所述倍频链路接收信号源后,通过驱动放大器30和多级倍频器31进行多次放大和倍频,达到所需要的太赫兹波频段的倍频信号经标准太赫兹电磁波导输出,后由太赫兹波喇叭天线4辐射出去。倍频链路采用波导腔体内装配微带悬置电路方式,微带电路可采用石英衬底介质减薄后实现,同时选用合适参数的二极管(如UMS或国产器件)倒装焊接实现。
具体的实施方案中,所述多级倍频器31是由低频区域的变容二极管组和高频区域的阻性二极管组构成;所述变容二极管组通过若干个变容二极管串、并联组合成奇、偶次倍频;所述阻性二极管组通过2个或4个以上的肖特基势垒二极管反向并联组合而成。
本发明的倍频链路电路的一个实施方式如图7所示,倍频器采用多个非线性器件,多器件采用平衡式结构,提高电路功率容量,获得较大的输出功率,并抑制不必要的谐波分量。
发明理疗仪产品可设计成非接触式产品或接触式产品。其中一个优选方案中,理疗仪为手持接触式产品,图9-10所示,此时,所述理疗仪包括壳体100,壳体100前端设有显示屏8,壳体100上设有若干个接口101,用于连接探头6。所述探头6的前端设有吸盘7,所述吸盘7的后端设有单凸曲面且曲面朝后的聚焦透镜70;所述探头6通5 过接头60与接口101连接。所述调制器2和太赫兹波发生器3设于所述探头6内,且太赫兹波喇叭天线4开口端朝向聚焦透镜70的曲面。其中聚焦透镜70配合太赫兹波喇叭天线4利用高斯光学方式进行辐射,使损耗降低;聚焦透镜70可利用聚四氟乙烯等低介电常数、低损耗材料设计,外形为单曲聚焦方式实现。该方式可在一定程度上降低对设备信号输出功率需求,避免过多空间损耗。
图10所示,所述控制仪5的第一种实施方式,包括有控制处理模块50、信号源驱动模块51、存储模块52、人机交互模块53、调制模块54和电源转换模块57。
其中,控制处理模块50接收人机交互模块53产生的指令并产生驱动信息,调制并分析存储模块52中存储的特定太赫兹波信息,并控制调制模块54的工作。信号源驱动模块51接收控制处理模块50输入的驱动信号,从而控制信号源生成器1的工作状态。存储模块52接收并存储人机交互模块53输入的特定太赫兹波信息和控制处理模块50输入的分析结果。人机交互模块53用于向控制处理模块50传输指令,并通过显示屏8显示控制处理模块50的输入输出信息。调制模块54接收控制处理模块50输入的调制指令,从而控制调制器2的工作状态。电源转换模块57用于将交流电转换为太赫兹波理疗仪所需要的直流电。
本发明理疗仪在第二种实施方式中,理疗仪还包括有太赫兹波探测器9。所述太赫兹波探测器9探测特定人体发射出的太赫兹波信号,所述太赫兹波探测器9包括透镜90和探测单元91,所述太赫兹波探测器9的前端设有圆形吸盘92,且透镜90的凸面朝向前端至圆形吸盘92内。太赫兹波探测器9连接有插头93,便于连接至理疗仪。此时,对应的控制仪5还增加了太赫兹波信号处理模块55和太赫兹波信号调整模块56,如图11所示。所述太赫兹波信号处理模块55用于接收太赫兹波探测器9探测的信号并对接收的太赫兹波信号进行信号转换处理,获取太赫兹波信号的振幅和相对偏移;所述太赫兹波信号调整模块56接收太赫兹波信号处理单元55处理后新的太赫兹波频谱信号,并对已用的太赫兹频谱信号进行调整更换。本发明的所述控制仪5中还可包括用于数据传输的传输模块58。
所述太赫兹波探测器9通过圆形吸盘92放置特定人体身上的待测区域,采集特定人体身上产生的电信号,实现光电转换,完成太赫兹波的采样。其内各通道光电传感器产生的电信号送到太赫兹波信号处理模块55,在太赫兹波信号处理模块55中,送往多通道前置放大器进行放大、滤波、积分处理,使信号达到检测识别的幅度和信噪比,再由A/D转换器实现模拟信号到数字信号的转变,输出相关太赫兹波的振幅和相对偏移,处理后的数字信号输入至控制处理模块50和存储模块52。
所述太赫兹波探测器9的透镜90为离轴非球面镜。其中探测单元91以具有较高二维电子浓度的高电子迁移率场效应晶体管为基本结构单元,且场效应晶体管具有三个电极,分别为源电极、栅电极和漏电极。所述太赫兹波探测器9的探测元件结构包括三个引线电极、三个低通滤波器以及一组太赫兹波耦合天线,所述场效应晶体管的三个电极与太赫兹波耦合天线相连,共同作为天线;并且所述三个电极分别通过低通滤波器与对应的引线电极相连。所述高电子迁移率场效应晶体管为具有较高二维电子气浓度的晶体管,至少包括铝镓氮/镓氮晶体管和铝镓砷/镓砷晶体管中的一种。探测模块还包括信号放大器,对接收的太赫兹回波信号进行放大。
本发明的一个实施例提供了一种调理亚健康的人体太赫兹仿真康复理疗法,包括如下步骤:
步骤一、控制处理模块50向信号源驱动模块51下达驱动信息,信号源生成器50接收信号源驱动模块51的驱动指令,产生低频太赫兹电磁波信号;
步骤二、调制器2通过控制电流频率对信号源的低频太赫兹波信号幅度进行脉冲、正弦不同方式调制,并将调制后的太赫兹电磁波信号输入至太赫兹发生器3;
步骤三、太赫兹波发生器3 接收调制后的低频太赫兹电磁波信号,利用频率扩展链路对低频太赫兹电磁波信号进行放大和倍频,产生特定太赫兹波频谱,并将其通过太赫兹波喇叭天线4 辐射出去;
其中,步骤三中特定太赫兹波频谱为具有Bao’s 频谱同样宽的太赫兹波频谱。
在又一个实施例中,调理亚健康的人体太赫兹仿真康复理疗法包括如下步骤:
步骤一、太赫兹波探测器9 探测特定人体的太赫兹波信号,并将其输入至太赫兹波信号处理模块55,太赫兹波信号处理模块55 对接收的太赫兹波信号进行信号转换处理,获取特定人体的太赫兹波振幅后,输入至控制处理模块50;
步骤二、控制处理模块50 向太赫兹波调整模块56 发送调整指令,太赫兹波调整模块56 接收太赫兹波信号处理单元55 处理后新的太赫兹波频谱信号,并对已用的太赫兹频谱信号进行调整更换;
步骤三、控制处理模块50 向信号源驱动模块51 下达驱动信息,信号源生成器50 接收信号源驱动模块51 的驱动指令,产生低频太赫兹电磁波信号;
步骤四、调制器2 依据更新的太赫兹波频谱信号通过控制电流频率对信号源的低频太赫兹波信号幅度进行脉冲、正弦不同方式调制,并将调制后的太赫兹电磁波信号输入至太赫兹发生器3;
步骤五、太赫兹波发生器3 接收调制后的低频太赫兹电磁波信号,利用频率扩展链路对低频太赫兹电磁波信号进行放大和倍频,产生特定太赫兹波频谱,并将其通过太赫兹波喇叭天线4 辐射出去。
以上所述仅是本发明的优选实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本发明技术原理的前提下,还可以做出若干改进和润饰,这些改进和润饰也应视为本发明的保护范围。

Claims (10)

  1. 一种调理亚健康的人体太赫兹波仿真康复理疗仪,其特征在于,所述理疗仪包括信号源生成器(1)、调制器(2)、太赫兹波发生器(3)、太赫兹波喇叭天线(4)以及控制仪(5),所述信号源生成器(1)用于生成低频太赫兹波信号的信号源;所述调制器(2)通过控制电频实现对信号源的低频太赫兹波信号幅度进行脉冲、正弦不同方式调制,并将调制后的太赫兹电磁波信号输入至太赫兹波发生器(3);所述太赫兹波发生器(3)接收调制后的低频太赫兹电磁波信号,利用频率扩展链路对低频太赫兹电磁波信号进行放大和倍频,产生特定太赫兹波频谱,并将其送至太赫兹波喇叭天线(4)进行辐射出去;所述控制仪(5)用于对整机信号处理和控制。
  2. 如权利要求1所述的调理亚健康的人体太赫兹波仿真康复理疗仪,其特征在于,所述特定太赫兹波频谱为具有Bao’s频谱同样宽的太赫兹波频谱。
  3. 如权利要求1所述的调理亚健康的人体太赫兹波仿真康复理疗仪,其特征在于,所述频率扩展链路为倍频链路,所述倍频链路接收信号源后,通过驱动放大器(30)和多级倍频器(31)进行多次放大和倍频,达到所需要的太赫兹波频段的倍频信号,并经标准太赫兹电磁波导输出后,由太赫兹波喇叭天线(4)辐射出去。
  4. 如权利要求3所述的调理亚健康的人体太赫兹波仿真康复理疗仪,其特征在于,所述多级倍频器(31)由低频区域的变容二极管组和高频区域的阻性二极管组构成;所述变容二极管组通过若干个变容二极管串、并联组合成奇、偶次倍频;所述阻性二极管组通过2个以上的肖特基势垒二极管反向并联组合而成。
  5. 如权利要求1-4中任一项所述的调理亚健康的人体太赫兹波仿真康复理疗仪,其特征在于,所述理疗仪还包括探头(6),所述探头(6)的前端设有吸盘(7),所述吸盘(7)的后端设有单凸曲面且曲面朝后的聚焦透镜(70);所述调制器(2)和太赫兹波发生器(3)设于所述探头(6)内,且太赫兹波喇叭天线(4)开口端朝向聚焦透镜(70)的曲面。
  6. 如权利要求1所述的调理亚健康的人体太赫兹波仿真康复理疗仪,其特征在于,所述信号源生成器(1)为利用单片集成射频芯片结合外围偏置电路搭建的频率综合器,所述频率综合器中包含锁相环和压控振荡器组成的锁相结构。
  7. 如权利要求1所述的调理亚健康的人体太赫兹波仿真康复理疗仪,其特征在于,所述控制仪(5)包括
    控制处理模块(50),接收人机交互模块(53)产生的指令并产生驱动信息,调制并分析存储模块(52)中存储的特定太赫兹波信息,并控制调制模块(54)的工作;
    信号源驱动模块(51),接收控制处理模块(50)输入的驱动信号,从而控制信号源生成器(1)的工作状态;
    存储模块(52),接收并存储人机交互模块(53)输入的特定太赫兹波信息和控制处理模块(50)输入的分析结果;
    人机交互模块(53),用于向控制处理模块(50)传输指令,并通过显示屏(8)显示控制处理模块(50)的输入输出信息;
    调制模块(54),接收控制处理模块(50)输入的调制指令,从而控制调制器(2)的工作状态。
  8. 如权利要求1所述的调理亚健康的人体太赫兹波仿真康复理疗仪,其特征在于,所述理疗仪还包括太赫兹波探测器(9),所述太赫兹波探测器(9)探测特定人体发射出的太赫兹波信号,所述太赫兹波探测器(9)包括透镜(90)和探测单元(91),所述太赫兹波探测器(9)的前端设有圆形吸盘(92),且透镜(90)的凸面朝向前端至圆形吸盘(92)内;
    所述控制仪(5)还包括太赫兹波信号处理模块(55)和太赫兹波信号调整模块(56),所述太赫兹波信号处理模块(55)用于接收太赫兹波探测器(9)探测的信号并对接收的太赫兹波信号进行信号转换处理,获取接收太赫兹波信号的振幅和相对偏移;所述太赫兹波信号调整模块(56)接收太赫兹波信号处理单元(55)处理后新的太赫兹波频谱信号,并对已用的太赫兹频谱信号进行调整更换。
  9. 如权利要求1所述的调理亚健康的人体太赫兹波仿真康复理疗仪,其特征在于,所述控制仪(5)还包括用于将交流电转换为太赫兹波理疗仪所需要的直流电的电源转换模块(57)和用于数据传输的传输模块(58)。
  10. 一种调理亚健康的太赫兹仿真康复理疗法,包括如下步骤:
    步骤一、控制处理模块(50)向信号源驱动模块(51)下达驱动信息,信号源生成器(50)接收信号源驱动模块(51)的驱动指令,产生低频太赫兹电磁波信号;
    步骤二、调制器(2)通过控制电流频率对信号源的低频太赫兹波信号幅度进行脉冲、正弦不同方式调制,并将调制后的太赫兹电磁波信号输入至太赫兹波发生器(3);
    步骤三、太赫兹波发生器(3)接收调制后的低频太赫兹电磁波信号,利用频率扩展链路对低频太赫兹电磁波信号进行放大和倍频,产生特定太赫兹波频谱,并将其通过太赫兹波喇叭天线(4)辐射出去;
    其中,步骤三中特定太赫兹波频谱为具有Bao’s频谱同样宽的太赫兹波频谱。
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CN112494816A (zh) * 2020-11-19 2021-03-16 深圳陆羽养生有限公司 具有祛湿寒功能的太赫兹经络仪
CN113397479A (zh) * 2020-11-27 2021-09-17 林健峯 太赫兹场效应无创生物反馈诊断系统
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CN113648542B (zh) * 2021-08-27 2024-03-26 青岛大学 一种颅内神经系统疾病的康复治疗装置及综合治疗装置
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