WO2018090509A1 - 中医专用脉搏检测装置 - Google Patents

中医专用脉搏检测装置 Download PDF

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Publication number
WO2018090509A1
WO2018090509A1 PCT/CN2017/076851 CN2017076851W WO2018090509A1 WO 2018090509 A1 WO2018090509 A1 WO 2018090509A1 CN 2017076851 W CN2017076851 W CN 2017076851W WO 2018090509 A1 WO2018090509 A1 WO 2018090509A1
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WIPO (PCT)
Prior art keywords
pulse
sensor probe
chinese medicine
support rod
traditional chinese
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PCT/CN2017/076851
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English (en)
French (fr)
Inventor
张贯京
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深圳市前海康启源科技有限公司
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Publication of WO2018090509A1 publication Critical patent/WO2018090509A1/zh

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/02Detecting, measuring or recording pulse, heart rate, blood pressure or blood flow; Combined pulse/heart-rate/blood pressure determination; Evaluating a cardiovascular condition not otherwise provided for, e.g. using combinations of techniques provided for in this group with electrocardiography or electroauscultation; Heart catheters for measuring blood pressure

Definitions

  • the utility model relates to the field of pulse detection of traditional Chinese medicine, in particular to a pulse detection device for traditional Chinese medicine.
  • the main object of the present invention is to provide a pulse detecting device for traditional Chinese medicine, which aims to solve the problem that the existing pulse detecting device cannot measure the pulse by applying appropriate pressure to the position of the wrist artery, and it is difficult to obtain an accurate pulse detecting signal.
  • the utility model provides a traditional Chinese medicine pulse detecting device, which comprises a base, a support rod, an arm, a stepping motor, a miniature bearing, a guiding screw, a pulse sensor probe and a micro control.
  • the stepper motor and the pulse sensor probe are each connected to the microcontroller by wires, wherein:
  • the support rod is fixed on the base, and the connecting end of the support rod and the arm rod is provided with a sleeve;
  • one end of the arm is connected to the support rod through the sleeve, and the other end of the arm is connected to the step motor;
  • the micro bearing has an intermediate hole at one end thereof, and the other end of the micro bearing is connected to the pulse sensor probe;
  • one end of the guiding screw is snapped onto the stepping motor, and the other end of the guiding screw passes through the intermediate hole of the micro bearing and is fixed on the pulse sensor probe;
  • the microcontroller is configured to drive the stepping motor to drive the guiding screw to move downward to apply pressure to the pulse sensor probe on the wrist of the subject;
  • the pulse sensor probe is configured to detect a pulse detection signal of the subject from the wrist artery of the subject.
  • the outer wall of the support rod is provided with an external thread
  • the inner wall of the sleeve is provided with an internal thread
  • the internal thread of the support rod is coupled with the external thread of the sleeve.
  • the microcontroller is disposed inside the base or inside the arm.
  • the side surface of the base is provided with a power socket and a power switch.
  • the power switch is connected to the microcontroller by a wire, and the power socket is connected to the power switch.
  • a side surface of the base is provided with a communication port, and the communication port is connected to the microcontroller through a wire, and the communication port is configured to send the pulse detection signal to an external communication device.
  • the communication port is a Bluetooth communication interface or a WIFI communication interface.
  • the upper surface of the base is provided with a detection station located at a position directly below the pulse sensor probe for detecting the pulse of the subject and placing the wrist.
  • the pulse-detecting device for traditional Chinese medicine adopts the above technical solution, and achieves the following technical effects: It can automatically apply the detected pulse to the measured position of the wrist of the detected person. The pressure to get an accurate pulse detection signal.
  • the use of the upper and lower automatic compression method can maintain the natural state of the wrist artery and reduce the possibility of external force causing the blood vessel to deform, thereby obtaining a more accurate pulse detection signal.
  • FIG. 1 is a schematic structural view of a preferred embodiment of a pulse detecting device for traditional Chinese medicine according to the present invention
  • FIG. 2 is a schematic diagram of internal circuit connection of a preferred embodiment of the pulse detecting device for Chinese medicine according to the present invention.
  • FIG. 1 is a schematic structural view of a preferred embodiment of a pulse-detecting device for a Chinese medicine according to the present invention.
  • the TCM-specific pulse detecting device 100 includes a base 1, a support rod 2, a sleeve 3, an arm 4, a stepping motor 5, a miniature bearing 6, a lead screw 7, a pulse sensor probe 8, and a micro Controller 10.
  • the support rod 2 is fixed on the base 1.
  • the upper surface of the base 1 is provided with a detection platform 11 located at a position directly below the pulse sensor probe 8 for the subject to perform. Pulse detection ⁇ Place your wrist.
  • the sleeve 3 is disposed at a connecting end of the support rod 2 and the arm rod 4.
  • the outer wall of the support rod 2 is provided with an external thread
  • the inner wall of the sleeve 3 is provided with an internal thread
  • the internal thread of the support rod 2 is coupled with the external thread of the sleeve 3, so that the subject rotates the shaft manually.
  • the sleeve 3 allows the arm 4 to move up and down along the support rod 2, thereby facilitating adjustment of the height of the pulse sensor probe 8 to bring the pulse sensor probe 8 into contact with the wrist of the subject placed on the detection table 11.
  • One end of the arm 4 is connected to the support rod 2 through a sleeve 3, and the other end of the arm 4 is connected to the stepping motor 5.
  • the micro bearing 6 has an intermediate hole at one end thereof, and the other end of the micro bearing 6 is connected to
  • the pulse sensor probe 8 is on.
  • One end of the guide screw 7 is snapped onto the stepping motor 5, and the other end of the guide screw 7 passes through the intermediate hole of the miniature bearing 6 and is fixed to the pulse sensor probe 8.
  • the microcontroller 10 may be disposed inside the base 1 or the arm 4, and in the present embodiment, the micro-controller 10 is disposed inside the arm 4.
  • the microcontroller 10 is used to control the stepping motor 5 to drive the guide screw 7 downward to move the pulse sensor probe 8 to apply pressure to the wrist of the subject.
  • the pulse sensor probe 8 is for detecting a pulse detection signal from the wrist artery of the subject and transmitting the pulse detection signal to the microcontroller 10.
  • the microcontroller 10 is further configured to send a pulse detection signal to the external communication device (not shown in FIG. 1) through the communication port 12 for use by the Chinese medicine practitioner as a reference for the Chinese medicine practitioner.
  • the terminal device includes a communication device such as a mobile phone, a PDA, a computer, or the like.
  • the communication port 12 is disposed on a side surface of the base 1 for transmitting a pulse detection signal to an external communication device, and the communication port 12 is a Bluetooth communication interface or a WIFI communication interface.
  • the side surface of the base 1 is further provided with a power socket 13 and a power switch 14, and the power socket 13 is used for plugging an external power source to provide working power to the TCM-specific pulse detecting device 100.
  • the TCM-specific pulse detecting device 100 is turned on and off.
  • FIG. 2 is a schematic diagram showing the internal circuit connection of a preferred embodiment of the pulse detecting device for Chinese medicine of the present invention.
  • the stepper motor 5, the pulse sensor probe 8, the communication port 12, and the power switch 14 are each connected to the microcontroller 10 by wires that are connected to the power switch 14.
  • the stepping motor 5, the pulse sensor probe 8 and the microcontroller 10 used in the present invention are all electronic components in the prior art, and the circuit schematic diagrams of the embodiments of the present invention are not described in detail.
  • the utility model of the pulse detecting device for traditional Chinese medicine is as follows: The subject first places the wrist on the detecting table 11 of the base 1, and the detected person moves the arm sleeve 4 along the support by manually rotating the sleeve 3. The lever 2 moves downward, causing the pulse sensor probe 8 to move downward and contact the wrist placed on the detection table 11. The test subject presses the power switch 14 on the side surface of the base 1, the microcontroller 10 starts working and controls the stepping motor 5 to drive the guide screw 7 to generate the pulse sensor probe 8 to 0 to 16 mm (a detection pulse can be generated) The appropriate pressure required) The downward movement of the vertical displacement to achieve the pulse compression required during the pulse detection process of Chinese medicine.
  • the pulse sensor probe 8 acquires a pulse detection signal under pressure from the wrist artery, thereby more accurately reflecting the pulse condition of the subject.
  • the microcontroller 10 controls the stepping motor 5 to drive the guiding screw 7 to move the pulse sensor probe 8 upward to return to the original position, and the detected object further moves the arm 4 up along the supporting rod 2 by manually rotating the sleeve 3 to recover. In the original position, the test subject can move the wrist from the test stand 11.
  • the pulse-detecting device 100 for traditional Chinese medicine described in the present invention can accurately apply an appropriate pressure to the measured position of the wrist to obtain an accurate pulse detecting signal.
  • the upper and lower automatic pressurization method can maintain the natural state of the wrist artery and reduce the possibility of deformation of the wrist artery by external force, thereby obtaining a more accurate pulse detection signal.
  • the traditional Chinese medicine pulse detecting device of the present invention adopts the above technical solution, and achieves the following technical effects: the pressure required for detecting the pulse can be automatically applied to the measured position of the wrist of the subject, Thereby obtaining an accurate pulse detection signal.
  • the use of the upper and lower automatic compression method can maintain the natural state of the wrist artery and reduce the possibility of external force causing the blood vessel to deform, thereby obtaining a more accurate pulse detection signal.

Abstract

一种中医专用脉搏检测装置(100),包括:底座(1)、支撑杆(2)、臂杆(4)、步进电机(5)、微型轴承(6)、导向丝杆(7)、脉搏传感器探头(8)和微控制器(10)。支撑杆(2)固定在底座(1)上,臂杆(4)的一端与支撑杆(2)的连接端设有轴套(3),臂杆(4)的另一端连接至步进电机(5)。微型轴承(6)的一端开设中间孔,另一端连接至脉搏传感器探头(8)。导向丝杆(7)的一端连接至步进电机(5),另一端穿过微型轴承(6)的中间孔并固定在脉搏传感器探头(8)上。微控制器(10)控制步进电机(5)驱动导向丝杆(7)向下移动使脉搏传感器探头(8)施加压力于被检测者的手腕上,脉搏传感器探头(8)从手腕动脉侦测出脉搏检测信号。该装置对被检测者手腕自动施加检测脉搏所需的压力,能够获得准确的脉搏检测信号。

Description

中医专用脉搏检测装置 技术领域
[0001] 本实用新型涉及中医脉搏检测领域, 尤其涉及一种中医专用脉搏检测装置。
背景技术
[0002] 中医把脉原理利用整体宏观的辨证思路, 通过对人体特征信息的收集和综合分 析, 做出辨证论治的结论。 其中, 脉搏是人体的一个重要生理、 病理表达形式 , 是传统中医辨证论治的重要依据之一。 传统的获取脉象方式是中医师通过手 指感知各种脉象。 这种获取脉象方式虽然简单可行, 但由于不能客观再现和定 量描述, 并受医生水平、 经验等因素的限制, 所以影响了中医把脉的广泛传播 和发展。
[0003] 在中医领域中, 很多情况下需要对被检测者的脉搏 (一般为腕部的脉搏) 进行 检测。 在借助现代仪器对被检测者腕部的脉搏进行吋, 需要对被检测者腕部进 行良好而又舒适的固定。 例如, 现有脉搏检测仪器利用夹子夹持对被检测者腕 部进行固定, 但夹子式设计本身会对受检测者腕部接触部位的皮肤、 肌肉组织 造成挤压, 导致血管变形, 致使输出的脉搏波不准确, 导致脉搏检测信号发生 变化, 影响脉搏检测信号的准确性, 结果难免出现误差。 现有脉搏检测传感器 不能对手腕动脉位置处施加适当的压力来测量脉搏, 使得脉搏检测传感器难以 获得准确且定量化的脉搏检测信号。
技术问题
[0004] 本实用新型的主要目的在于提供一种中医专用脉搏检测装置, 旨在现有脉搏检 测装置不能对手腕动脉位置处施加适当的压力来测量脉搏, 难以获得准确的脉 搏检测信号的问题。
问题的解决方案
技术解决方案
[0005] 为实现上述目的, 本实用新型提供了一种中医专用脉搏检测装置, 包括底座、 支撑杆、 臂杆、 步进电机、 微型轴承、 导向丝杆、 脉搏传感器探头以及微控制 器, 所述步进电机以及脉搏传感器探头均通过导线连接至所述微控制器上, 其 中:
[0006] 所述支撑杆固定在底座上, 所述支撑杆与臂杆的连接端设有轴套;
[0007] 所述臂杆的一端通过所述轴套与所述支撑杆连接, 所述臂杆的另一端连接至步 进电机;
[0008] 所述微型轴承的一端幵设有中间孔, 所述微型轴承的另一端连接至所述脉搏传 感器探头上;
[0009] 所述导向丝杆的一端卡接至所述步进电机上, 所述导向丝杆的另一端穿过微型 轴承的中间孔并固定在所述脉搏传感器探头上;
[0010] 所述微控制器用于驱动所述步进电机驱动所述导向丝杆向下移动使所述脉搏传 感器探头施加压力于被检测者的手腕上;
[0011] 所述脉搏传感器探头用于从被检测者的手腕动脉侦测出被检测者的脉搏检测信 号。
[0012] 优选的, 所述支撑杆的外壁设有外螺纹, 所述轴套的内壁设有内螺纹, 所述支 撑杆的内螺纹与轴套的外螺纹配合连接。
[0013] 优选的, 所述微控制器设置在所述底座的内部或臂杆的内部。
[0014] 优选的, 所述底座的侧表面设置有电源插座以及电源幵关。
[0015] 优选的, 所述电源幵关通过导线连接至所述微控制器上, 所述电源插座连接至 电源幵关上。
[0016] 优选的, 所述底座的侧表面设置有通讯端口, 所述通讯端口通过导线连接至所 述微控制器上, 所述通讯端口用于将所述脉搏检测信号发送至外部通讯设备。
[0017] 优选的, 所述通讯端口为蓝牙通讯接口或 WIFI通讯接口。
[0018] 优选的, 所述底座的上表面设置有检测台, 该检测台位于所述脉搏传感器探头 的正下方位置处, 用于供被检测者进行脉搏检测吋放置手腕。
发明的有益效果
有益效果
[0019] 相较于现有技术, 本实用新型所述中医专用脉搏检测装置采用上述技术方案, 达到了如下技术效果: 能够对被检测者手腕的被测位置自动施加检测脉搏所需 的压力, 从而获得准确的脉搏检测信号。 此外, 采用由上向下的自动加压方式 , 能保持手腕动脉自然状态下检测, 减少外力致使血管变形的可能, 从而获得 更加准确的脉搏检测信号。
对附图的简要说明
附图说明
[0020] 图 1是本实用新型中医专用脉搏检测装置优选实施例的结构示意图;
[0021] 图 2是本实用新型中医专用脉搏检测装置优选实施例的内部电路连接示意图。
[0022] 本实用新型目的实现、 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] 如图 1所示, 图 1是本实用新型中医专用脉搏检测装置优选实施例的结构示意图 。 在本实施例中, 所述中医专用脉搏检测装置 100包括底座 1, 支撑杆 2、 轴套 3 、 臂杆 4、 步进电机 5、 微型轴承 6、 导向丝杆 7、 脉搏传感器探头 8以及微控制器 10。 其中, 所述支撑杆 2固定在底座 1上, 所述底座 1的上表面设置有检测台 11, 该检测台 11位于所述脉搏传感器探头 8的正下方位置处, 用于供被检测者进行脉 搏检测吋放置手腕。
[0025] 在本实施例中, 所述轴套 3设置在所述支撑杆 2与臂杆 4的连接端。 所述支撑杆 2 的外壁设有外螺纹, 所述轴套 3的内壁设有内螺纹, 所述支撑杆 2的内螺纹与轴 套 3的外螺纹配合连接, 因此被检测者通过手动旋转轴套 3可以使臂杆 4沿着支撑 杆 2上下移动, 从而方便调节脉搏传感器探头 8的高度使脉搏传感器探头 8与放置 在检测台 11上的被检测者手腕相接触。
[0026] 所述臂杆 4的一端通过轴套 3与所述支撑杆 2连接, 所述臂杆 4的另一端连接至步 进电机 5。 所述微型轴承 6的一端幵设有中间孔, 所述微型轴承 6的另一端连接至 所述脉搏传感器探头 8上。 所述导向丝杆 7的一端卡接至步进电机 5上, 所述导向 丝杆 7的另一端穿过微型轴承 6的中间孔并固定在脉搏传感器探头 8上。
[0027] 所述微控制器 10可以设置在底座 1或臂杆 4的内部, 在本实施例中, 所述微控制 器 10设置在臂杆 4的内部。 所述微控制器 10用于控制所述步进电机 5驱动导向丝 杆 7向下移动使脉搏传感器探头 8对被检测者的手腕施加压力。 所述脉搏传感器 探头 8用于从被检测者的手腕动脉侦测出脉搏检测信号, 并将脉搏检测信号发送 至所述微控制器 10上。 所述微控制器 10还用于将脉搏检测信号通过通讯端口 12 发送至外部通讯设备 (图 1中未示出) , 以供中医人员作为中医把脉的参考依据 。 所述终端设备包括手机、 PDA、 计算机等通讯设备上。 所述通讯端口 12设置 在所述底座 1的侧表面, 用于将脉搏检测信号发送至外部通讯设备, 所述通讯端 口 12为蓝牙 (Bluetooth) 通讯接口或 WIFI通讯接口。
[0028] 所述底座 1的侧表面还设置有电源插座 13以及电源幵关 14, 所述电源插座 13用 于接插外部电源以对所述中医专用脉搏检测装置 100提供工作电源。 当被检测者 手动幵启和关闭电源幵关 14吋, 控制所述中医专用脉搏检测装置 100的幵启与关 闭。
[0029] 参考图 2所示, 图 2是本实用新型中医专用脉搏检测装置优选实施例的内部电路 连接示意图。 所述步进电机 5、 脉搏传感器探头 8、 通讯端口 12和电源幵关 14均 通过导线连接至所述微控制器 10上, 所述电源插座 13连接至电源幵关 14上。 本 实用新型采用的步进电机 5、 脉搏传感器探头 8和微控制器 10均为现有技术中的 电子元器件, 本实用新型实施例对其电路原理图不作具体赘述。
[0030] 本实用新型所述中医专用脉搏检测装置的使用原理如下: 被检测者首先将手腕 放置在底座 1的检测台 11上, 被检测者通过手动旋转轴套 3使臂杆 4沿着支撑杆 2 向下移动, 从而使得脉搏传感器探头 8向下移动并接触于放置在检测台 11上的手 腕。 被检测者按下底座 1侧表面的电源幵关 14, 微控制器 10幵始工作并控制所述 步进电机 5驱动导向丝杆 7使脉搏传感器探头 8产生 0〜16毫米 (可产生检测脉搏 所需的合适压力) 垂直位移的向下移动, 实现中医脉搏检测过程中所需的脉搏 加压。 脉搏传感器探头 8从手腕动脉获取在施加压力下的脉搏检测信号, 从而更 为准确的反应被检测者的脉象情况。 当检测者完成脉搏检测并关闭电源幵关 14 后, 微控制器 10控制步进电机 5驱动导向丝杆 7使脉搏传感器探头 8向上移动恢复 到原来位置, 被检测者再通过手动旋转轴套 3使臂杆 4沿着支撑杆 2向上移动恢复 到原来位置, 此吋被检测者可以将手腕从检测台 11移幵。
[0031] 本实用新型所述中医专用脉搏检测装置 100能够准确地对手腕的被测位置施加 适当的压力, 从而获得准确的脉搏检测信号。 采用由上向下的自动加压方式, 能够保持手腕动脉自然状态下检测, 减少外力致使手腕动脉变形的可能, 从而 获得更加准确的脉搏检测信号。
[0032] 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
[0033] 相较于现有技术, 本实用新型所述中医专用脉搏检测装置采用上述技术方案, 达到了如下技术效果: 能够对被检测者手腕的被测位置自动施加检测脉搏所需 的压力, 从而获得准确的脉搏检测信号。 此外, 采用由上向下的自动加压方式 , 能保持手腕动脉自然状态下检测, 减少外力致使血管变形的可能, 从而获得 更加准确的脉搏检测信号。

Claims

权利要求书
一种中医专用脉搏检测装置, 包括底座、 支撑杆以及臂杆, 其特征在 于, 该装置还包括步进电机、 微型轴承、 导向丝杆、 脉搏传感器探头 以及微控制器, 所述步进电机以及脉搏传感器探头均通过导线连接至 所述微控制器上, 其中: 所述支撑杆固定在底座上, 所述支撑杆与臂 杆的连接端设有轴套; 所述臂杆的一端通过所述轴套与所述支撑杆连 接, 所述臂杆的另一端连接至步进电机; 所述微型轴承的一端幵设有 中间孔, 所述微型轴承的另一端连接至所述脉搏传感器探头上; 所述 导向丝杆的一端卡接至所述步进电机上, 所述导向丝杆的另一端穿过 微型轴承的中间孔并固定在所述脉搏传感器探头上; 所述微控制器用 于控制所述步进电机驱动所述导向丝杆向下移动使所述脉搏传感器探 头施加压力于被检测者的手腕上; 所述脉搏传感器探头用于从被检测 者的手腕动脉侦测出被检测者的脉搏检测信号。
如权利要求 1所述的中医专用脉搏检测装置, 其特征在于, 所述支撑 杆的外壁设有外螺纹, 所述轴套的内壁设有内螺纹, 所述支撑杆的内 螺纹与轴套的外螺纹配合连接。
如权利要求 1所述的中医专用脉搏检测装置, 其特征在于, 所述微控 制器设置在所述底座的内部或臂杆的内部。
如权利要求 1所述的中医专用脉搏检测装置, 其特征在于, 所述底座 的侧表面设置有电源插座以及电源幵关。
如权利要求 4所述的中医专用脉搏检测装置, 其特征在于, 所述电源 幵关通过导线连接至所述微控制器上, 所述电源插座连接至电源幵关 上。
如权利要求 1所述的中医专用脉搏检测装置, 其特征在于, 所述底座 的侧表面设置有通讯端口, 所述通讯端口通过导线连接至所述微控制 器上, 所述通讯端口用于将所述脉搏检测信号发送至外部通讯设备。 如权利要求 6所述的中医专用脉搏检测装置, 其特征在于, 所述通讯 端口为蓝牙通讯接口或 WIFI通讯接口。 [权利要求 8] 如权利要求 1所述的中医专用脉搏检测装置, 其特征在于, 所述底座 的上表面设置有检测台, 该检测台位于所述脉搏传感器探头的正下方 位置处, 用于供被检测者进行脉搏检测吋放置手腕。
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