WO2017128734A1 - 用于照射穴位的激光针灸系统 - Google Patents
用于照射穴位的激光针灸系统 Download PDFInfo
- Publication number
- WO2017128734A1 WO2017128734A1 PCT/CN2016/098702 CN2016098702W WO2017128734A1 WO 2017128734 A1 WO2017128734 A1 WO 2017128734A1 CN 2016098702 W CN2016098702 W CN 2016098702W WO 2017128734 A1 WO2017128734 A1 WO 2017128734A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- laser
- acupuncture
- acupuncture points
- control device
- illuminating
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Classifications
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61H—PHYSICAL THERAPY APPARATUS, e.g. DEVICES FOR LOCATING OR STIMULATING REFLEX POINTS IN THE BODY; ARTIFICIAL RESPIRATION; MASSAGE; BATHING DEVICES FOR SPECIAL THERAPEUTIC OR HYGIENIC PURPOSES OR SPECIFIC PARTS OF THE BODY
- A61H39/00—Devices for locating or stimulating specific reflex points of the body for physical therapy, e.g. acupuncture
Definitions
- the utility model relates to the field of health equipment, in particular to a laser acupuncture system for irradiating acupuncture points.
- Acupuncture is a general term for acupuncture and moxibustion.
- the needle method refers to the needle (usually refers to the needle) piercing the patient according to a certain angle under the guidance of the theory of traditional Chinese medicine, and using acupuncture methods such as twisting and lifting to stimulate specific parts of the body to achieve the purpose of treating diseases. .
- the point of penetration is called acupoints of the human body, referred to as acupuncture points.
- acupuncture points According to the latest acupuncture textbook statistics, there are 361 positive acupoints in the human body.
- the moxibustion method uses pre-made moxibustion or moxibustion to burn and smoke on certain acupuncture points on the body surface, and uses heat stimulation to prevent and treat diseases.
- Laser acupuncture is a new type of acupuncture method that uses a laser beam to irradiate acupuncture points to treat diseases.
- medical acupuncture has been used in clinical practice, including stomatology, otolaryngology, and neurology, all of which have certain curative effects.
- the existing laser therapeutic apparatus has a very simple structure, and generally only a single frequency laser can be generated, and the irradiation position needs to be manually determined, the application range is limited, and the degree of manual intervention is high and the efficiency is low.
- the main purpose of the present invention is to provide a laser acupuncture system for illuminating acupuncture points, aiming at solving the defects of the existing laser treatment apparatus which can only produce a single frequency laser and need to manually determine the irradiation position.
- the present invention provides a laser acupuncture system for illuminating acupuncture points, including a control device, a first laser, a second laser, a third laser, a fourth laser, and a position adjusting device, wherein The first laser, the second laser, the third laser, and the fourth laser are both connected to the control device, and the control device is further connected to the position adjusting device, the first laser, the second laser, and the third a laser and a fourth laser are both connected to the position adjusting device;
- control device is configured to control the first laser, the second laser, the third laser, the fourth laser, and a position adjusting device; [0008] the first laser, the second laser, the third laser, and the fourth laser are used to generate laser light of a corresponding frequency;
- the position adjusting device is configured to position acupuncture points of the human body under the control of the control device, and irradiate the laser generated by the first laser, the second laser, the third laser, and the fourth laser to the positioning On the acupuncture point.
- the first laser is a helium neon laser
- the second laser is a helium ion laser
- the third laser is a carbon dioxide laser
- the fourth laser is a uncomfortable aluminum garnet laser.
- control device comprises a microcontroller and a driving unit
- driving unit is electrically connected to the microcontroller
- microcontroller is used to control the driving unit
- the first laser, the second laser, the third laser, and the fourth laser are both connected to the driving unit, and the control device drives the first laser, the second by the driving unit
- the laser, the third laser, and the fourth laser generate laser light of a corresponding frequency.
- control device further comprises laser selection means for the user to select a corresponding laser.
- the laser selection device includes a first selection key, a second selection key, a third selection key, and a fourth selection key, wherein the first selection key corresponds to the first laser, and the second selection The key corresponds to the second laser, the third selection key corresponds to the third laser, and the fourth selection key corresponds to the fourth laser.
- the position adjusting device comprises a laser head and an acupoint sensor, and the position adjusting device positions the acupuncture points of the human body through the acupoint sensor.
- the first laser, the second laser, the third laser, and the fourth laser are all connected to the laser head, and the position adjusting device passes the first laser, the second through the laser head Laser
- the laser generated by the third laser and the fourth laser is irradiated onto the positioned acupuncture points.
- the position adjusting device further includes a transmission unit, a driving rod and a slide rail.
- the laser head and the acupoint sensor are disposed on the transmission unit, the transmission unit is disposed on the driving rod, the transmission unit moves along the driving rod, and the driving rod is along the driving The slide rail moves.
- the laser acupuncture system for illuminating acupuncture points of the present invention adopts the above technical solutions, and achieves the following technical effects: integrated multiple lasers can generate lasers of different frequencies, so that the user Different lasers can be selected according to the needs of different diseases, and further, the acupuncture points can be automatically determined, the degree of manual intervention is reduced, the operation efficiency and the accuracy of aligning acupoints are improved.
- FIG. 1 is a schematic circuit diagram of a preferred embodiment of a laser acupuncture system for illuminating acupuncture points of the present invention
- FIG. 2 is a schematic structural view of a preferred embodiment of a position adjusting device in a laser acupuncture system for irradiating acupuncture points according to the present invention.
- FIG. 1 is a circuit structural diagram of a preferred embodiment of a laser acupuncture system for illuminating acupuncture points of the present invention.
- the laser acupuncture system for illuminating acupuncture points includes, but is not limited to, a control device 1, a first laser 2, a second laser 3, a third laser 4, a fourth laser 5, and a position adjusting device 6. .
- the first laser 2, the second laser 3, the third laser 4, and the fourth laser 5 are all connected to the control device 1.
- the control device 1 is also connected to the position adjustment device 6. Further, the first laser 2, the second laser 3, the third laser 4, and the fourth laser 5 are all connected to the position adjusting device 6.
- the control device 1 is configured to control the first laser 2, the second laser 3, the third laser 4, and the fourth Laser 5 and position adjustment device 6.
- the first laser 2, the second laser 3, the third laser 4, and the fourth laser 5 respectively generate laser light of different frequencies and are irradiated to the acupuncture points of the human body.
- the first laser 2 generates a laser of a first frequency (ie, a corresponding laser wavelength of 632.8 nm, 1152 nm, and/or 3391 nm)
- the second laser 3 generates a second frequency (ie, the corresponding laser wavelength is a laser of 325 nm and/or 442 nm)
- a third laser 4 produces a laser of a third frequency (ie a corresponding laser wavelength of 10.6 microns)
- a fourth laser 5 produces a fourth frequency (ie a corresponding laser wavelength of 1064 nm) Laser.
- the first laser 2 is a HeNe laser, and the Xenon laser can stimulate the skin to a depth of 10 mm to 15 mm of human tissue.
- the second laser 3 is a helium ion laser, and the helium ion laser can stimulate the skin to a depth of 10 mm to 18 mm of the human body, and the laser generated by the helium ion laser is opposite to the helium neon laser.
- the intensity is twice as high as that produced by the HeNe laser.
- the third laser 4 is a carbon dioxide laser, and the carbon dioxide laser can stimulate the skin to a depth of 20 mm to 25 mm of human tissue.
- the fourth laser 5 is a tragic aluminum garnet laser, and the tragic aluminum garnet laser can stimulate the skin to a depth of 25 mm to 35 mm of human tissue.
- the position adjusting device 6 is configured to position acupuncture points of the human body under the control of the control device, and generate the first laser 2, the second laser 3, the third laser 4, and the fourth laser 5 The laser is illuminated onto the positioned acupuncture points.
- the control device 1 includes, but is not limited to, a microcontroller 11, a drive unit 12.
- the drive unit 12 is electrically connected to the microcontroller 11.
- the control device 1 further includes, but is not limited to, the laser selecting device 13 and the micro battery 14.
- the laser selecting means 13 and the microbattery 14 are electrically connected to the microcontroller 11, respectively.
- the first laser 2, the second laser 3, the third laser 4, and the fourth laser 5 are all connected to the driving unit 12 by a mechanism structure.
- the laser selection device 13 is exposed on the control device 1.
- the laser selection device 13 includes four selection keys (eg, a first selection key, a second selection key, a third Selection button, fourth selection button), each selection button is used for the user to select the corresponding laser. For example, if the first selection key is pressed, the first laser 2 is selected to illuminate the acupoint (the acupoint may be any acupuncture point of the human body); if the second selection key is pressed, the second laser 3 is selected for the acupuncture point (the acupoint Irradiation may be performed at any acupuncture point of the human body; if the third selection key is pressed, the third laser 4 is selected to illuminate the acupoint (the acupoint may be any acupuncture point of the human body); if the fourth selection key is pressed, the fourth is selected The laser 5 illuminates the acupuncture points (which may be any acupuncture points of the human body).
- lasers are generally considered to have thermal effects, photo-pressure effects, photochemical reactions, electromagnetic effects, and stimulating effects.
- the use of laser irradiation acupuncture points instead of acupuncture can avoid the pain caused by acupuncture, no damage to the tissue, no need for hysteresis, broken needles and needle infection, not only has the effect of acupuncture, but also caused by the laser itself.
- the laser selecting device 13 is configured to receive a selection instruction by a user to press a selection key, and send the selection instruction to the microcontroller 11.
- the microcontroller 11 is configured to receive a selection instruction issued by the laser selection device 13 and activate the driving unit 12 to control the corresponding laser to illuminate the acupuncture points according to the selection instruction, so as to achieve conditioning and alleviate the symptoms of the disease. effect.
- the microcontroller 11 is a control chip or a micro control unit (MCU) having a signal control function.
- the micro battery 14 is electrically connected to the microcontroller 11 and the driving unit 12 for supplying working power to the micro controller 11 and the driving unit 12.
- the microbattery 14 is a low-radiation, low-power rechargeable lithium battery or button battery that does not affect the health of the user.
- the micro battery 14 is also connected to a charging port (not shown), which can be a USB interface or other standard battery charging interface, and the charging port can be directly inserted into an external power source (such as a computer USB interface or The microbattery 14 is charged on a low voltage regulator or the like. When the amount of power of the microbattery 14 is used up, the user can charge the microbattery 14 through the charging port, thereby extending the life cycle of the control device 1.
- control device 1 includes a power plug that is connected to a power outlet connected to the municipal grid to pass the municipal grid to the microcontroller in the control device 1 11 and drive unit 12 are powered.
- the position adjustment device 6 includes, but is not limited to, a laser head 60 and an acupressure sensor 62. Position adjustment The device 6 is worn on the user, and the laser head 60 and the acupressure sensor 62 are movable within the position adjustment device 6. The drive unit 12 is also coupled to the position adjustment device 6 for driving the laser head 60 and the acupressure sensor 62 to move within the position adjustment device 6.
- the first laser 2, the second laser 3, the third laser 4, and the fourth laser 5 are all connected to the laser head 60, the first laser 2, the second laser 3, and the third laser 4, The laser light generated by the fourth laser 5 is irradiated to the acupuncture points by the laser head 60.
- the acupoint sensor 62 is used to position acupuncture points of a human body.
- the acupressure sensor 62 can be, but is not limited to
- scanning acupoint detector Through the acupoint sensor 62, the user can find the acupuncture points of the human body.
- FIG. 2 is a schematic structural view of a preferred embodiment of a position adjusting device in a laser acupuncture system for irradiating acupuncture points according to the present invention.
- the position adjusting device 6 includes, but is not limited to, a laser head 60, an acupoint sensor 6, a transmission unit 64, a driving rod 66 and a slide rail 68, and the laser head 60 and the acupoint sensor 62 is disposed on the transmission unit 64.
- the transmission unit 64 is disposed on the driving rod 66.
- the transmission unit 64 is driven by a motor (not shown) to move along the driving rod 66.
- the driving rod 66 is driven by a motor (not shown)
- the drive is moved along the slide rail 68.
- the acupressure sensor 62 can be moved to any position between the slide rails 68 to position the user's acupuncture points.
- the laser head 60 can also be moved to any position between the slide rails 68 to illuminate the positioned acupuncture points by laser.
- the distance between the slide rails 68 may be equidistant (ie, the two slide rails 68 are parallel) or may be non-equal (ie, the two slide rails 68 are not parallel). If the distance between the slide rails 68 is not equidistant, the drive rod 66 is a telescopic structure.
- FIG. 1 is a circuit structural diagram of a preferred embodiment of a laser acupuncture system for illuminating acupuncture points of the present invention.
- the laser acupuncture system for illuminating acupuncture points includes, but is not limited to, a control device 1, a first laser 2, a second laser 3, a third laser 4, a fourth laser 5, and a position adjusting device 6. .
- the first laser 2, the second laser 3, the third laser 4, and the fourth laser 5 are all connected to the control device 1.
- the control device 1 is also connected to the position adjustment device 6. Further, the first laser 2, the second laser 3, the third laser 4, and the fourth laser 5 are all connected to the position adjusting device 6.
- the control device 1 is for controlling the first laser 2, the second laser 3, the third laser 4, the fourth laser 5, and the position adjusting device 6.
- the first laser 2, the second laser 3, the third laser 4, and the fourth laser 5 respectively generate laser light of different frequencies and are irradiated to the acupuncture points of the human body.
- the first laser 2 generates a laser of a first frequency (ie, a corresponding laser wavelength of 632.8 nm, 1152 nm, and/or 3391 nm)
- the second laser 3 generates a second frequency (ie, the corresponding laser wavelength is a laser of 325 nm and/or 442 nm)
- a third laser 4 produces a laser of a third frequency (ie a corresponding laser wavelength of 10.6 microns)
- a fourth laser 5 produces a fourth frequency (ie a corresponding laser wavelength of 1064 nm) Laser.
- the first laser 2 is a HeNe laser, and the Xenon laser can stimulate the skin to a depth of 10 mm to 15 mm of human tissue.
- the second laser 3 is a helium ion laser, and the helium ion laser can stimulate the skin to a depth of 10 mm to 18 mm of the human body, and the laser generated by the helium ion laser is opposite to the helium neon laser.
- the intensity is twice as high as that produced by the HeNe laser.
- the third laser 4 is a carbon dioxide laser, and the carbon dioxide laser can stimulate the skin to a depth of 20 mm to 25 mm of human tissue.
- the fourth laser 5 is a tragic aluminum garnet laser, and the tragic aluminum garnet laser can stimulate the skin to a depth of 25 mm to 35 mm of human tissue.
- the position adjusting device 6 is configured to position acupuncture points of the human body under the control of the control device, and generate the first laser 2, the second laser 3, the third laser 4, and the fourth laser 5 The laser is illuminated onto the positioned acupuncture points.
- the control device 1 includes, but is not limited to, a microcontroller 11, a drive unit 12.
- the drive unit 12 is electrically connected to the microcontroller 11.
- the control device 1 further includes, but is not limited to, the laser selecting device 13 and the micro battery 14.
- the laser selecting means 13 and the microbattery 14 are electrically connected to the microcontroller 11, respectively.
- the first laser 2, the second laser 3, the third laser 4, and the fourth laser 5 are all connected to the driving unit 12 by a mechanism structure.
- the laser selection device 13 is exposed on the control device 1.
- the laser selecting device 13 includes four selection keys (for example, a first selection key, a second selection key, a third selection key, and a fourth selection key), and each selection key is used for the user to select a corresponding laser. .
- the first selection key is pressed, the first laser 2 is selected to illuminate the acupoint (the acupoint may be any acupuncture point of the human body); if the second selection key is pressed, the second laser 3 is selected for the acupuncture point (the acupoint Irradiation may be performed at any acupuncture point of the human body; if the third selection key is pressed, the third laser 4 is selected to illuminate the acupoint (the acupoint may be any acupuncture point of the human body); if the fourth selection key is pressed, the fourth is selected The laser 5 illuminates the acupuncture points (which may be any acupuncture points of the human body).
- the laser selecting device 13 is configured to receive a selection instruction by a user to press a selection key, and send the selection instruction to the microcontroller 11.
- the microcontroller 11 is configured to receive a selection instruction issued by the laser selection device 13 and activate the driving unit 12 to control the corresponding laser to illuminate the acupuncture points according to the selection instruction, so as to achieve conditioning and alleviate the symptoms of the disease. effect.
- the microcontroller 11 is a control chip or a micro control unit (MCU) having a signal control function.
- the micro battery 14 is electrically connected to the microcontroller 11 and the driving unit 12 for providing operating power to the microcontroller 11 and the driving unit 12.
- the microbattery 14 is a low-radiation, low-power rechargeable lithium battery or button battery that does not affect the health of the user.
- the micro battery 14 is also connected to a charging port (not shown), which can be a USB interface or other standard battery charging interface, and the charging port can be directly inserted into an external power source (such as a computer USB interface or The microbattery 14 is charged on a low voltage regulator or the like. When the power of the microbattery 14 is used up, the user can charge the microbattery 14 through the charging port, thereby extending the life cycle of the control device 1.
- control device 1 includes a power plug that is connected to a power outlet connected to the municipal grid to pass the municipal grid to the microcontroller in the control device 1 11 and drive unit 12 are powered.
- the position adjustment device 6 includes, but is not limited to, a laser head 60 and an acupoint sensor 62.
- the position adjusting device 6 is worn on the user, and the laser head 60 and the acupoint sensor 62 are movable within the position adjusting device 6.
- the drive unit 12 is also coupled to the position adjustment device 6 for driving the laser head 60 and the acupressure sensor 62 to move within the position adjustment device 6.
- the first laser 2, the second laser 3, the third laser 4, and the fourth laser 5 are all connected to the laser head 60, the first laser 2, the second laser 3, and the third laser 4, The laser light generated by the fourth laser 5 is irradiated to the acupuncture points by the laser head 60.
- the acupoint sensor 62 is used to position acupuncture points of a human body.
- the acupressure sensor 62 can be, but is not limited to, a scanning acupoint detector. Through the acupoint sensor 62, the user can find the acupuncture points of the human body.
- FIG. 2 is a schematic structural view of a preferred embodiment of a position adjusting device in a laser acupuncture system for irradiating acupuncture points according to the present invention.
- the position adjusting device 6 includes, but is not limited to, a laser head 60, an acupoint sensor 6, a transmission unit 64, a driving rod 66 and a slide rail 68, and the laser head 60 and the acupoint sensor 62 is disposed on the transmission unit 64.
- the transmission unit 64 is disposed on the driving rod 66.
- the transmission unit 64 is driven by a motor (not shown) to move along the driving rod 66.
- the driving rod 66 is driven by a motor (not shown)
- the drive is moved along the slide rail 68.
- the acupressure sensor 62 can be moved to the location Any position between the slide rails 68 is described to locate the user's acupuncture points.
- the laser head 60 can also be moved to any position between the slide rails 68 to illuminate the positioned acupuncture points by laser.
- the distance between the slide rails 68 may be equidistant (ie, the two slide rails 68 are parallel) or may be non-equal (ie, the two slide rails 68 are not parallel). If the distance between the slide rails 68 is not equidistant, the drive rod 66 is a telescopic structure.
- the laser acupuncture system for illuminating acupuncture points of the present invention adopts the above technical solutions, and achieves the following technical effects: integrated multiple lasers can generate lasers of different frequencies, so that the user Different lasers can be selected according to the needs of different diseases, and further, the acupuncture points can be automatically determined, the degree of manual intervention is reduced, the operation efficiency and the accuracy of aligning acupoints are improved.
Landscapes
- Health & Medical Sciences (AREA)
- Rehabilitation Therapy (AREA)
- Epidemiology (AREA)
- Pain & Pain Management (AREA)
- Physical Education & Sports Medicine (AREA)
- Life Sciences & Earth Sciences (AREA)
- Animal Behavior & Ethology (AREA)
- General Health & Medical Sciences (AREA)
- Public Health (AREA)
- Veterinary Medicine (AREA)
- Finger-Pressure Massage (AREA)
Abstract
一种用于照射穴位的激光针灸系统,包括控制设备(1)、第一激光器(2)、第二激光器(3)、第三激光器(4)、第四激光器(5)及位置调整装置(6),第一激光器(2)、第二激光器(3)、第三激光器(4)、第四激光器(5)均连接至控制设备(1),控制设备(1)还与位置调整装置(6)连接;控制设备(1)用于控制第一激光器(2)、第二激光器(3)、第三激光器(4)、第四激光器(5)及位置调整装置(6);第一激光器(2)、第二激光器(3)、第三激光器(4)、第四激光器(5)用于产生对应频率的激光;位置调整装置(6)用于定位人体的穴位,并将第一激光器(2)、第二激光器(3)、第三激光器(4)、第四激光器(5)所产生的激光照射到定位的穴位上。本设备可以产生不同频率的激光,还可以自动确定穴位,提高了操作效率及对准穴位的准确度。
Description
说明书 发明名称:用于照射穴位的激光针灸系统 技术领域
[0001] 本实用新型涉及健康设备领域, 尤其涉及一种用于照射穴位的激光针灸系统。
背景技术
[0002] 针灸是针法和灸法的总称。 针法是指在中医理论的指导下把针具 (通常指毫针 ) 按照一定的角度刺入患者体内, 运用捻转与提插等针刺手法来对人体特定部 位进行刺激从而达到治疗疾病的目的。 刺入点称为人体腧穴, 简称穴位。 根据 最新针灸学教材统计, 人体共有 361个正经穴位。 灸法是以预制的灸炷或灸草在 体表一定的穴位上烧灼、 熏熨, 利用热的刺激来预防和治疗疾病。
[0003] 激光针灸是一种利用激光的微细光束照射穴位以治疗疾病的新型针灸方法。 目 前, 医学上有幵始将激光针灸用于临床, 包括口腔科、 耳鼻喉科、 神经科等, 均具有一定的疗效。
[0004] 然而, 现有的激光治疗仪结构非常简单, 通常情况下只能产生单一频率激光, 且需要手动确定照射位置, 适用范围有限, 且人工干预程度高, 效率低下。 技术问题
[0005] 本实用新型的主要目的在于提供一种用于照射穴位的激光针灸系统, 旨在解决 现有激光治疗仪只能产生单一频率激光且需手动确定照射位置的产品缺陷。 问题的解决方案
技术解决方案
[0006] 为实现上述目的, 本实用新型提供了一种用于照射穴位的激光针灸系统, 包括 控制设备、 第一激光器、 第二激光器、 第三激光器、 第四激光器及位置调整装 置, 其中, 所述第一激光器、 第二激光器、 第三激光器、 第四激光器均连接至 所述控制设备, 所述控制设备还与所述位置调整装置连接, 所述第一激光器、 第二激光器、 第三激光器、 第四激光器均连接至所述位置调整装置;
[0007] 所述控制设备用于控制所述第一激光器、 第二激光器、 第三激光器、 第四激光 器及位置调整装置;
[0008] 所述第一激光器、 第二激光器、 第三激光器、 第四激光器用于产生对应频率的 激光; 及
[0009] 所述位置调整装置用于在所述控制设备的控制下定位人体的穴位, 并将所述第 一激光器、 第二激光器、 第三激光器、 第四激光器所产生的激光照射到定位的 穴位上。
[0010] 优选的, 所述第一激光器为氦氖激光器, 所述第二激光器为氪离子激光器, 所 述第三激光器为二氧化碳激光器, 所述第四激光器为惨钕钇铝石榴石激光器。
[0011] 优选的, 所述控制设备包括微控制器及驱动单元, 所述驱动单元电气连接至微 控制器上, 所述微控制器用于控制所述驱动单元。
[0012] 优选的, 所述第一激光器、 第二激光器、 第三激光器和第四激光器均连接至所 述驱动单元上, 所述控制设备通过所述驱动单元驱动所述第一激光器、 第二激 光器、 第三激光器和第四激光器产生对应频率的激光。
[0013] 优选的, 所述控制设备还包括激光器选择装置, 用于供使用者选择对应的激光 器。
[0014] 优选的, 所述激光器选择装置包括第一选择键、 第二选择键、 第三选择键及第 四选择键, 所述第一选择键对应所述第一激光器, 所述第二选择键对应所述第 二激光器, 所述第三选择键对应所述第三激光器, 所述第四选择键对应所述第 四激光器。
[0015] 优选的, 所述位置调整装置包括激光头及穴位传感器, 所述位置调整装置通过 所述穴位传感器定位人体的穴位。
[0016] 优选的, 所述第一激光器、 第二激光器、 第三激光器及第四激光器均与所述激 光头连接, 所述位置调整装置通过所述激光头将所述第一激光器、 第二激光器
、 第三激光器及第四激光器所产生的激光照射到定位的穴位上。
[0017] 优选的, 所述位置调整装置还包括传动单元、 驱动杆及滑轨。
[0018] 优选的, 所述激光头及穴位传感器设置于所述传动单元上, 所述传动单元设置 于所述驱动杆上, 所述传动单元沿所述驱动杆移动, 所述驱动杆沿所述滑轨移 动。
发明的有益效果
有益效果
[0019] 相较于现有技术, 本实用新型所述用于照射穴位的激光针灸系统采用上述技术 方案, 达到了如下技术效果: 集成了多个激光器, 可以产生不同频率的激光, 使得使用者可以根据不同病种的需求选择不同的激光器进行照射, 进一步地, 还可以自动确定穴位, 减少了人工干预的程度, 提高了操作效率及对准穴位的 准确度。
对附图的简要说明
附图说明
[0020] 图 1是本实用新型用于照射穴位的激光针灸系统的较佳实施例的电路结构示意 图;
[0021] 图 2是本实用新型用于照射穴位的激光针灸系统中位置调整装置较佳实施例的 结构示意图。
[0022] 本实用新型目的的实现、 功能特点及优点将结合实施例, 参照附图做进一步说 明。
实施该发明的最佳实施例
本发明的最佳实施方式
[0023] 为更进一步阐述本实用新型为达成上述目的所采取的技术手段及功效, 以下结 合附图及较佳实施例, 对本实用新型的具体实施方式、 结构、 特征及其功效进 行详细说明。 应当理解, 此处所描述的具体实施例仅仅用以解释本实用新型, 并不用于限定本实用新型。
[0024] 参考图 1所示, 图 1是本实用新型用于照射穴位的激光针灸系统的较佳实施例的 电路结构示意图。 在本实施例中, 所述用于照射穴位的激光针灸系统包括, 但 不限于, 控制设备 1、 第一激光器 2、 第二激光器 3、 第三激光器 4、 第四激光器 5 及位置调整装置 6。 所述第一激光器 2、 第二激光器 3、 第三激光器 4、 第四激光 器 5均连接至所述控制设备 1。 所述控制设备 1还与所述位置调整装置 6连接。 进 一步地, 所述第一激光器 2、 第二激光器 3、 第三激光器 4、 第四激光器 5均连接 至所述位置调整装置 6。
[0025] 所述控制设备 1用于控制所述第一激光器 2、 第二激光器 3、 第三激光器 4、 第四
激光器 5及位置调整装置 6。
[0026] 所述第一激光器 2、 第二激光器 3、 第三激光器 4、 第四激光器 5分别产生不同频 率的激光, 并照射到人体的穴位上。 具体地说, 所述第一激光器 2产生第一频率 (即对应的激光波长为 632.8纳米、 1152纳米及 /或 3391纳米) 的激光, 第二激光 器 3产生第二频率 (即对应的激光波长为 325纳米及 /或 442纳米) 的激光, 第三激 光器 4产生第三频率 (即对应的激光波长为 10.6微米) 的激光, 第四激光器 5产生 第四频率 (即对应的激光波长为 1064纳米) 的激光。
[0027] 本领域技术人员可知, 不同频率的激光具有不同的治疗效果, 穿透深度不同, 对于穴位的刺激程度也不同。
[0028] 具体地说, 所述第一激光器 2为氦氖激光器, 所述氦氖激光器对皮肤的刺激深 度可以达到人体组织的 10毫米至 15毫米。
[0029] 所述第二激光器 3为氪离子激光器, 所述氪离子激光器对皮肤的刺激深度可以 达到人体组织的 10毫米至 18毫米, 相对于氦氖激光器, 所述氪离子激光器所产 生的激光强度比所述氦氖激光器所产生的激光强度高一倍。
[0030] 所述第三激光器 4为二氧化碳激光器, 所述二氧化碳激光器对皮肤的刺激深度 可以达到人体组织的 20毫米至 25毫米。
[0031] 所述第四激光器 5为惨钕钇铝石榴石激光器, 所述惨钕钇铝石榴石激光器对皮 肤的刺激深度可以达到人体组织的 25毫米至 35毫米。
[0032] 所述位置调整装置 6用于在所述控制设备的控制下定位人体的穴位, 并将所述 第一激光器 2、 第二激光器 3、 第三激光器 4、 第四激光器 5所产生的激光照射到 定位的穴位上。
[0033] 所述控制设备 1包括, 但不仅限于, 微控制器 11、 驱动单元 12。 所述驱动单元 1 2电气连接至微控制器 11上。
[0034] 所述控制设备 1还包括, 但不仅限于, 激光器选择装置 13以及微型电池 14。 所 述激光器选择装置 13和微型电池 14分别电气连接至所述微控制器 11上。 所述第 一激光器 2、 第二激光器 3、 第三激光器 4和第四激光器 5均采用机构结构连接至 所述驱动单元 12上。 所述激光器选择装置 13外露于所述控制设备 1上。
[0035] 所述激光器选择装置 13包括四个选择键 (例如第一选择键、 第二选择键、 第三
选择键、 第四选择键) , 每一个选择键用于供使用者选择对应的激光器。 例如 , 若按下第一选择键则选择第一激光器 2对穴位 (所述穴位可以是人体的任意穴 位) 进行照射; 若按下第二选择键则选择第二激光器 3对穴位 (所述穴位可以是 人体的任意穴位) 进行照射; 若按下第三选择键则选择第三激光器 4对穴位 (所 述穴位可以是人体的任意穴位) 进行照射; 若按下第四选择键则选择第四激光 器 5对穴位 (所述穴位可以是人体的任意穴位) 进行照射。 本领域技术人员可知 , 激光的生物效应一般认为有热效应、 光压效应、 光化学反应、 电磁效应和刺 激效应。 采用激光照射穴位以替代针灸, 可以避免针刺引起的疼痛, 对组织无 损害, 无滞针、 断针及针穴感染之可能, 不但有类似针灸的作用, 同吋还有激 光本身所引起的一系列生物效应。
[0036] 所述激光器选择装置 13用于接收使用者按下选择键的选择指令, 并将所述选择 指令发送至所述微控制器 11。 所述微控制器 11用于接收所述激光器选择装置 13 发出的选择指令, 并根据所述选择指令启动所述驱动单元 12分别控制对应的激 光器针对穴位进行照射, 以达到调理并缓解疾病症状的效果。 在本实施例中, 所述微控制器 11为一种控制芯片或者具有信号控制功能的微控制单元 (MCU)
[0037] 所述微型电池 14电气连接至所述微控制器 11和驱动单元 12上, 用于为所述微控 制器 11和驱动单元 12提供工作电源。 所述微型电池 14是一种低辐射、 低功耗的 可充电锂电池或纽扣电池, 其不会对使用者的健康带来影响。 所述微型电池 14 还连接有一个充电端口 (图中未示出) , 该充电端口可以为一种 USB接口或其它 标准的电池充电接口, 该充电端口可以直接插入外部电源 (例如电脑 USB接口或 者低压稳压器等) 上对所述微型电池 14进行充电。 当所述微型电池 14的电量用 完吋, 使用者可通过所述充电端口对微型电池 14进行充电, 从而延长所述控制 设备 1的使用周期。
[0038] 在其它实施例中, 所述控制设备 1包括一电源插头, 所述电源插头与连接至市 政电网的电源插座连接, 以通过市政电网为所述控制设备 1中的所述微控制器 11 和驱动单元 12供电。
[0039] 所述位置调整装置 6包括, 但不限于, 激光头 60及穴位传感器 62。 所述位置调
整装置 6穿戴于使用者身上, 所述激光头 60及穴位传感器 62可以在所述位置调整 装置 6内移动。 所述驱动单元 12还与所述位置调整装置 6连接, 用于驱动所述激 光头 60及穴位传感器 62在所述位置调整装置 6内移动。
[0040] 其中, 所述第一激光器 2、 第二激光器 3、 第三激光器 4及第四激光器 5均与激光 头 60连接, 所述第一激光器 2、 第二激光器 3、 第三激光器 4、 第四激光器 5所产 生的激光通过所述激光头 60照射到穴位上。
[0041] 所述穴位传感器 62用于定位人体的穴位。 所述穴位传感器 62可以是, 但不限于
, 扫描式穴位探测器。 通过所述穴位传感器 62, 使用者可以找到人体的穴位。
[0042]
[0043] 如图 2所示, 图 2是本实用新型用于照射穴位的激光针灸系统中的位置调整装置 较佳实施例的结构示意图。
[0044] 在本实施例中, 所述位置调整装置 6包括, 但不限于, 激光头 60、 穴位传感器 6 2、 传动单元 64、 驱动杆 66及滑轨 68, 所述激光头 60及穴位传感器 62设置于所述 传动单元 64上。 所述传动单元 64设置于所述驱动杆 66上, 所述传动单元 64由电 机 (图中未示出) 驱动以沿所述驱动杆 66移动, 所述驱动杆 66由电机 (图中未 示出) 驱动以沿所述滑轨 68移动。 如此一来, 所述穴位传感器 62可以移动至所 述滑轨 68之间的任意位置, 以定位使用者的穴位。 所述激光头 60也可以移动至 所述滑轨 68之间的任意位置, 以通过激光对所述定位的穴位进行照射。
[0045] 所述滑轨 68之间的距离可以等距 (即两根滑轨 68平行) , 也可以非等距 (即两 根滑轨 68不平行) 。 若所述滑轨 68之间的距离为非等距, 则所述驱动杆 66为可 伸缩结构。
[0046]
[0047] 以上仅为本实用新型的优选实施例, 并非因此限制本实用新型的专利范围, 凡 是利用本实用新型说明书及附图内容所作的等效结构或等效功能变换, 或直接 或间接运用在其他相关的技术领域, 均同理包括在本实用新型的专利保护范围 内。 本发明的实施方式
[0048] 为更进一步阐述本实用新型为达成上述目的所采取的技术手段及功效, 以下结 合附图及较佳实施例, 对本实用新型的具体实施方式、 结构、 特征及其功效进 行详细说明。 应当理解, 此处所描述的具体实施例仅仅用以解释本实用新型, 并不用于限定本实用新型。
[0049] 参考图 1所示, 图 1是本实用新型用于照射穴位的激光针灸系统的较佳实施例的 电路结构示意图。 在本实施例中, 所述用于照射穴位的激光针灸系统包括, 但 不限于, 控制设备 1、 第一激光器 2、 第二激光器 3、 第三激光器 4、 第四激光器 5 及位置调整装置 6。 所述第一激光器 2、 第二激光器 3、 第三激光器 4、 第四激光 器 5均连接至所述控制设备 1。 所述控制设备 1还与所述位置调整装置 6连接。 进 一步地, 所述第一激光器 2、 第二激光器 3、 第三激光器 4、 第四激光器 5均连接 至所述位置调整装置 6。
[0050] 所述控制设备 1用于控制所述第一激光器 2、 第二激光器 3、 第三激光器 4、 第四 激光器 5及位置调整装置 6。
[0051] 所述第一激光器 2、 第二激光器 3、 第三激光器 4、 第四激光器 5分别产生不同频 率的激光, 并照射到人体的穴位上。 具体地说, 所述第一激光器 2产生第一频率 (即对应的激光波长为 632.8纳米、 1152纳米及 /或 3391纳米) 的激光, 第二激光 器 3产生第二频率 (即对应的激光波长为 325纳米及 /或 442纳米) 的激光, 第三激 光器 4产生第三频率 (即对应的激光波长为 10.6微米) 的激光, 第四激光器 5产生 第四频率 (即对应的激光波长为 1064纳米) 的激光。
[0052] 本领域技术人员可知, 不同频率的激光具有不同的治疗效果, 穿透深度不同, 对于穴位的刺激程度也不同。
[0053] 具体地说, 所述第一激光器 2为氦氖激光器, 所述氦氖激光器对皮肤的刺激深 度可以达到人体组织的 10毫米至 15毫米。
[0054] 所述第二激光器 3为氪离子激光器, 所述氪离子激光器对皮肤的刺激深度可以 达到人体组织的 10毫米至 18毫米, 相对于氦氖激光器, 所述氪离子激光器所产 生的激光强度比所述氦氖激光器所产生的激光强度高一倍。
[0055] 所述第三激光器 4为二氧化碳激光器, 所述二氧化碳激光器对皮肤的刺激深度 可以达到人体组织的 20毫米至 25毫米。
[0056] 所述第四激光器 5为惨钕钇铝石榴石激光器, 所述惨钕钇铝石榴石激光器对皮 肤的刺激深度可以达到人体组织的 25毫米至 35毫米。
[0057] 所述位置调整装置 6用于在所述控制设备的控制下定位人体的穴位, 并将所述 第一激光器 2、 第二激光器 3、 第三激光器 4、 第四激光器 5所产生的激光照射到 定位的穴位上。
[0058] 所述控制设备 1包括, 但不仅限于, 微控制器 11、 驱动单元 12。 所述驱动单元 1 2电气连接至微控制器 11上。
[0059] 所述控制设备 1还包括, 但不仅限于, 激光器选择装置 13以及微型电池 14。 所 述激光器选择装置 13和微型电池 14分别电气连接至所述微控制器 11上。 所述第 一激光器 2、 第二激光器 3、 第三激光器 4和第四激光器 5均采用机构结构连接至 所述驱动单元 12上。 所述激光器选择装置 13外露于所述控制设备 1上。
[0060] 所述激光器选择装置 13包括四个选择键 (例如第一选择键、 第二选择键、 第三 选择键、 第四选择键) , 每一个选择键用于供使用者选择对应的激光器。 例如 , 若按下第一选择键则选择第一激光器 2对穴位 (所述穴位可以是人体的任意穴 位) 进行照射; 若按下第二选择键则选择第二激光器 3对穴位 (所述穴位可以是 人体的任意穴位) 进行照射; 若按下第三选择键则选择第三激光器 4对穴位 (所 述穴位可以是人体的任意穴位) 进行照射; 若按下第四选择键则选择第四激光 器 5对穴位 (所述穴位可以是人体的任意穴位) 进行照射。 本领域技术人员可知 , 激光的生物效应一般认为有热效应、 光压效应、 光化学反应、 电磁效应和刺 激效应。 采用激光照射穴位以替代针灸, 可以避免针刺引起的疼痛, 对组织无 损害, 无滞针、 断针及针穴感染之可能, 不但有类似针灸的作用, 同吋还有激 光本身所引起的一系列生物效应。
[0061] 所述激光器选择装置 13用于接收使用者按下选择键的选择指令, 并将所述选择 指令发送至所述微控制器 11。 所述微控制器 11用于接收所述激光器选择装置 13 发出的选择指令, 并根据所述选择指令启动所述驱动单元 12分别控制对应的激 光器针对穴位进行照射, 以达到调理并缓解疾病症状的效果。 在本实施例中, 所述微控制器 11为一种控制芯片或者具有信号控制功能的微控制单元 (MCU)
[0062] 所述微型电池 14电气连接至所述微控制器 11和驱动单元 12上, 用于为所述微控 制器 11和驱动单元 12提供工作电源。 所述微型电池 14是一种低辐射、 低功耗的 可充电锂电池或纽扣电池, 其不会对使用者的健康带来影响。 所述微型电池 14 还连接有一个充电端口 (图中未示出) , 该充电端口可以为一种 USB接口或其它 标准的电池充电接口, 该充电端口可以直接插入外部电源 (例如电脑 USB接口或 者低压稳压器等) 上对所述微型电池 14进行充电。 当所述微型电池 14的电量用 完吋, 使用者可通过所述充电端口对微型电池 14进行充电, 从而延长所述控制 设备 1的使用周期。
[0063] 在其它实施例中, 所述控制设备 1包括一电源插头, 所述电源插头与连接至市 政电网的电源插座连接, 以通过市政电网为所述控制设备 1中的所述微控制器 11 和驱动单元 12供电。
[0064] 所述位置调整装置 6包括, 但不限于, 激光头 60及穴位传感器 62。 所述位置调 整装置 6穿戴于使用者身上, 所述激光头 60及穴位传感器 62可以在所述位置调整 装置 6内移动。 所述驱动单元 12还与所述位置调整装置 6连接, 用于驱动所述激 光头 60及穴位传感器 62在所述位置调整装置 6内移动。
[0065] 其中, 所述第一激光器 2、 第二激光器 3、 第三激光器 4及第四激光器 5均与激光 头 60连接, 所述第一激光器 2、 第二激光器 3、 第三激光器 4、 第四激光器 5所产 生的激光通过所述激光头 60照射到穴位上。
[0066] 所述穴位传感器 62用于定位人体的穴位。 所述穴位传感器 62可以是, 但不限于 , 扫描式穴位探测器。 通过所述穴位传感器 62, 使用者可以找到人体的穴位。
[0067]
[0068] 如图 2所示, 图 2是本实用新型用于照射穴位的激光针灸系统中的位置调整装置 较佳实施例的结构示意图。
[0069] 在本实施例中, 所述位置调整装置 6包括, 但不限于, 激光头 60、 穴位传感器 6 2、 传动单元 64、 驱动杆 66及滑轨 68, 所述激光头 60及穴位传感器 62设置于所述 传动单元 64上。 所述传动单元 64设置于所述驱动杆 66上, 所述传动单元 64由电 机 (图中未示出) 驱动以沿所述驱动杆 66移动, 所述驱动杆 66由电机 (图中未 示出) 驱动以沿所述滑轨 68移动。 如此一来, 所述穴位传感器 62可以移动至所
述滑轨 68之间的任意位置, 以定位使用者的穴位。 所述激光头 60也可以移动至 所述滑轨 68之间的任意位置, 以通过激光对所述定位的穴位进行照射。
[0070] 所述滑轨 68之间的距离可以等距 (即两根滑轨 68平行) , 也可以非等距 (即两 根滑轨 68不平行) 。 若所述滑轨 68之间的距离为非等距, 则所述驱动杆 66为可 伸缩结构。
[0071]
[0072] 以上仅为本实用新型的优选实施例, 并非因此限制本实用新型的专利范围, 凡 是利用本实用新型说明书及附图内容所作的等效结构或等效功能变换, 或直接 或间接运用在其他相关的技术领域, 均同理包括在本实用新型的专利保护范围 内。
工业实用性
[0073] 相较于现有技术, 本实用新型所述用于照射穴位的激光针灸系统采用上述技术 方案, 达到了如下技术效果: 集成了多个激光器, 可以产生不同频率的激光, 使得使用者可以根据不同病种的需求选择不同的激光器进行照射, 进一步地, 还可以自动确定穴位, 减少了人工干预的程度, 提高了操作效率及对准穴位的 准确度。
[0074]
Claims
权利要求书
一种用于照射穴位的激光针灸系统, 其特征在于, 包括控制设备、 第 一激光器、 第二激光器、 第三激光器、 第四激光器及位置调整装置, 其中, 所述第一激光器、 第二激光器、 第三激光器、 第四激光器均连 接至所述控制设备, 所述控制设备还与所述位置调整装置连接, 所述 第一激光器、 第二激光器、 第三激光器、 第四激光器均连接至所述位 置调整装置;
所述控制设备用于控制所述第一激光器、 第二激光器、 第三激光器、 第四激光器及位置调整装置;
所述第一激光器、 第二激光器、 第三激光器、 第四激光器用于产生对 应频率的激光; 及
所述位置调整装置用于在所述控制设备的控制下定位人体的穴位, 并 将所述第一激光器、 第二激光器、 第三激光器、 第四激光器所产生的 激光照射到定位的穴位上。
如权利要求 1所述的用于照射穴位的激光针灸系统, 其特征在于, 所 述第一激光器为氦氖激光器, 所述第二激光器为氪离子激光器, 所述 第三激光器为二氧化碳激光器, 所述第四激光器为惨钕钇铝石榴石激 光器。
如权利要求 1所述的用于照射穴位的激光针灸系统, 其特征在于, 所 述控制设备包括微控制器及驱动单元, 所述驱动单元电气连接至微控 制器上, 所述微控制器用于控制所述驱动单元。
如权利要求 3所述的用于照射穴位的激光针灸系统, 其特征在于, 所 述第一激光器、 第二激光器、 第三激光器和第四激光器均连接至所述 驱动单元上, 所述控制设备通过所述驱动单元驱动所述第一激光器、 第二激光器、 第三激光器和第四激光器产生对应频率的激光。
如权利要求 3所述的用于照射穴位的激光针灸系统, 其特征在于, 所 述控制设备还包括激光器选择装置, 用于供使用者选择对应的激光器
如权利要求 5所述的用于照射穴位的激光针灸系统, 其特征在于, 所 述激光器选择装置包括第一选择键、 第二选择键、 第三选择键及第四 选择键, 所述第一选择键对应所述第一激光器, 所述第二选择键对应 所述第二激光器, 所述第三选择键对应所述第三激光器, 所述第四选 择键对应所述第四激光器。
如权利要求 1所述的用于照射穴位的激光针灸系统, 其特征在于, 所 述位置调整装置包括激光头及穴位传感器, 所述位置调整装置通过所 述穴位传感器定位人体的穴位。
如权利要求 7所述的用于照射穴位的激光针灸系统, 其特征在于, 所 述第一激光器、 第二激光器、 第三激光器及第四激光器均与所述激光 头连接, 所述位置调整装置通过所述激光头将所述第一激光器、 第二 激光器、 第三激光器及第四激光器所产生的激光照射到定位的穴位上 如权利要求 7所述的用于照射穴位的激光针灸系统, 其特征在于, 所 述位置调整装置还包括传动单元、 驱动杆及滑轨。
如权利要求 9所述的用于照射穴位的激光针灸系统, 其特征在于, 所 述激光头及穴位传感器设置于所述传动单元上, 所述传动单元设置于 所述驱动杆上, 所述传动单元沿所述驱动杆移动, 所述驱动杆沿所述 滑轨移动。
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201620101859.6U CN205339523U (zh) | 2016-01-30 | 2016-01-30 | 用于照射穴位的激光针灸系统 |
| CN201620101859.6 | 2016-01-30 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2017128734A1 true WO2017128734A1 (zh) | 2017-08-03 |
Family
ID=56182739
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/CN2016/098702 Ceased WO2017128734A1 (zh) | 2016-01-30 | 2016-09-12 | 用于照射穴位的激光针灸系统 |
Country Status (2)
| Country | Link |
|---|---|
| CN (1) | CN205339523U (zh) |
| WO (1) | WO2017128734A1 (zh) |
Families Citing this family (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN205339523U (zh) * | 2016-01-30 | 2016-06-29 | 深圳市纳福信息技术有限公司 | 用于照射穴位的激光针灸系统 |
| WO2018006201A1 (zh) * | 2016-07-02 | 2018-01-11 | 李珂悦 | 针灸装置 |
| WO2018006214A1 (zh) * | 2016-07-02 | 2018-01-11 | 李仁涛 | 具有语音控制功能的穴位照射装置 |
| CN106621070B (zh) * | 2017-02-23 | 2018-12-11 | 合肥京东方光电科技有限公司 | 一种激光针灸系统及激光针灸设备 |
| CN109730923B (zh) * | 2019-03-04 | 2021-02-19 | 黑龙江中医药大学 | 辅助耳穴压籽的耳部穴位自动定位装置、定位系统及定位方法 |
Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN102626540A (zh) * | 2011-02-22 | 2012-08-08 | 深圳市倍轻松科技股份有限公司 | 一种光子治疗控制系统及光子治疗椅 |
| CN203075482U (zh) * | 2013-01-08 | 2013-07-24 | 华南师范大学 | 激光针灸仪 |
| CN104096319A (zh) * | 2014-07-22 | 2014-10-15 | 平湖邑飞光电科技有限公司 | 智能多通道复合半导体激光治疗仪及方法 |
| CN104146860A (zh) * | 2014-08-21 | 2014-11-19 | 上海百家益医疗器械有限公司 | 一种可穿戴蓝牙app控制穴位探测与光电刺激疼痛贴 |
| CN104548385A (zh) * | 2014-12-30 | 2015-04-29 | 张顺清 | 一种头部光照按摩仪器 |
| CN105079974A (zh) * | 2014-05-08 | 2015-11-25 | 陈兆勋 | 保健设备 |
| CN205339523U (zh) * | 2016-01-30 | 2016-06-29 | 深圳市纳福信息技术有限公司 | 用于照射穴位的激光针灸系统 |
-
2016
- 2016-01-30 CN CN201620101859.6U patent/CN205339523U/zh not_active Expired - Fee Related
- 2016-09-12 WO PCT/CN2016/098702 patent/WO2017128734A1/zh not_active Ceased
Patent Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN102626540A (zh) * | 2011-02-22 | 2012-08-08 | 深圳市倍轻松科技股份有限公司 | 一种光子治疗控制系统及光子治疗椅 |
| CN203075482U (zh) * | 2013-01-08 | 2013-07-24 | 华南师范大学 | 激光针灸仪 |
| CN105079974A (zh) * | 2014-05-08 | 2015-11-25 | 陈兆勋 | 保健设备 |
| CN104096319A (zh) * | 2014-07-22 | 2014-10-15 | 平湖邑飞光电科技有限公司 | 智能多通道复合半导体激光治疗仪及方法 |
| CN104146860A (zh) * | 2014-08-21 | 2014-11-19 | 上海百家益医疗器械有限公司 | 一种可穿戴蓝牙app控制穴位探测与光电刺激疼痛贴 |
| CN104548385A (zh) * | 2014-12-30 | 2015-04-29 | 张顺清 | 一种头部光照按摩仪器 |
| CN205339523U (zh) * | 2016-01-30 | 2016-06-29 | 深圳市纳福信息技术有限公司 | 用于照射穴位的激光针灸系统 |
Also Published As
| Publication number | Publication date |
|---|---|
| CN205339523U (zh) | 2016-06-29 |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| US10709894B2 (en) | Aesthetic method of biological structure treatment by magnetic field | |
| US10493293B2 (en) | Aesthetic method of biological structure treatment by magnetic field | |
| US20220184409A1 (en) | Aesthetic method of biological structure treatment by magnetic field | |
| US10688310B2 (en) | Aesthetic method of biological structure treatment by magnetic field | |
| US10245439B1 (en) | Aesthetic method of biological structure treatment by magnetic field | |
| US10478633B2 (en) | Aesthetic method of biological structure treatment by magnetic field | |
| US10471269B1 (en) | Aesthetic method of biological structure treatment by magnetic field | |
| US10549110B1 (en) | Aesthetic method of biological structure treatment by magnetic field | |
| US10569094B2 (en) | Aesthetic method of biological structure treatment by magnetic field | |
| US10569095B1 (en) | Aesthetic method of biological structure treatment by magnetic field | |
| US10695575B1 (en) | Aesthetic method of biological structure treatment by magnetic field | |
| US10821295B1 (en) | Aesthetic method of biological structure treatment by magnetic field | |
| WO2017128734A1 (zh) | 用于照射穴位的激光针灸系统 | |
| US12151120B2 (en) | Aesthetic method of biological structure treatment by magnetic field | |
| CN205084230U (zh) | 一种便携式远红外线艾灸仪 | |
| CN103182149A (zh) | 一种组合激光治疗机 | |
| CN110180085B (zh) | 一种直插式半导体红光内射鼻炎辅助光疗仪 | |
| CN203564511U (zh) | 全自动中药熏蒸床 | |
| CN108338918A (zh) | 一种改进式皮肤针 | |
| CN208114930U (zh) | 一种振动式弩药针 | |
| CN203208350U (zh) | 中医灸疗器 | |
| WO2018006201A1 (zh) | 针灸装置 | |
| CN102626541A (zh) | 一种用于激光辐照治疗的固定器 | |
| CN201200725Y (zh) | 全电脑红外理疗仪 | |
| CN202620485U (zh) | 一种过敏性鼻炎理疗仪 |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| 121 | Ep: the epo has been informed by wipo that ep was designated in this application |
Ref document number: 16887610 Country of ref document: EP Kind code of ref document: A1 |
|
| NENP | Non-entry into the national phase |
Ref country code: DE |
|
| 32PN | Ep: public notification in the ep bulletin as address of the adressee cannot be established |
Free format text: NOTING OF LOSS OF RIGHTS PURSUANT TO RULE 112(1) EPC (EPO FORM 1205A DATED 17.01.2019) |
|
| 122 | Ep: pct application non-entry in european phase |
Ref document number: 16887610 Country of ref document: EP Kind code of ref document: A1 |