WO2017107507A1 - 用于体征监测的保健衣服 - Google Patents

用于体征监测的保健衣服 Download PDF

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Publication number
WO2017107507A1
WO2017107507A1 PCT/CN2016/095232 CN2016095232W WO2017107507A1 WO 2017107507 A1 WO2017107507 A1 WO 2017107507A1 CN 2016095232 W CN2016095232 W CN 2016095232W WO 2017107507 A1 WO2017107507 A1 WO 2017107507A1
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WO
WIPO (PCT)
Prior art keywords
waistband
garment
belt
health
microcontroller
Prior art date
Application number
PCT/CN2016/095232
Other languages
English (en)
French (fr)
Inventor
张贯京
Original Assignee
深圳市纳福信息技术有限公司
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by 深圳市纳福信息技术有限公司 filed Critical 深圳市纳福信息技术有限公司
Publication of WO2017107507A1 publication Critical patent/WO2017107507A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D1/00Garments
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41FGARMENT FASTENINGS; SUSPENDERS
    • A41F9/00Belts, girdles, or waistbands for trousers or skirts
    • 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
    • A61B5/0205Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/103Detecting, measuring or recording devices for testing the shape, pattern, colour, size or movement of the body or parts thereof, for diagnostic purposes
    • A61B5/107Measuring physical dimensions, e.g. size of the entire body or parts thereof

Definitions

  • the present invention relates to the field of health monitoring, and in particular to a health care garment for physical condition monitoring.
  • the main object of the present invention is to provide a health care garment for physical condition monitoring, which aims to solve the product defect that the existing clothes cannot automatically detect the wearer's vital signs data.
  • the present invention provides a health care garment for physical condition monitoring, the health care garment comprising a garment body and a waistband, a breast pocket, a cuff and a rim disposed on the garment body, the waistband comprising a waistband body, a waistband head and a belt buckle, wherein the inner side of the waistband body is provided with a card slot having a unique size number every same preset distance, and each card slot is provided with an electrode of different resistance value, in each card slot
  • the electrodes are connected in series by wires embedded in the waistband body, and the inner side of the belt buckle is provided with a voltage sensor, the waistband includes a microcontroller and a micro battery, the voltage sensor is connected to the microcontroller, and the micro battery supplies power to electrodes in each card slot, the chest An electrocardiographic sensor is disposed in the bag, and a blood pressure sensor is disposed in the cuff, and the electrocardiographic sensor and the blood pressure sensor are both connected to the microcontroller through
  • the waistband head further includes a breathing sensor coupled to the microcontroller.
  • the waistband head further includes a communication unit connected to the microcontroller.
  • the waistband head further includes a slamming button linked to the microcontroller, the slamming button being disposed outside the waistband.
  • the waistband head further includes a charging port linked to the micro battery, and the charging port is disposed outside the waistband.
  • the waist belt, the chest pocket and the cuff are all formed into a joint structure by the hem, and are all disposed on the garment body in a detachable structure.
  • the detachable structure is a snap button, a button or a Velcro.
  • the garment body, the cuff, the breast pocket, and the edging are all made of a non-conductive textile having elasticity and flexibility.
  • the belt buckle is disposed at a joint of the belt body and the waistband.
  • the waistband body is made of an inelastic soft leather or a soft plastic insulating material
  • the outer casing of the waistband and the belt buckle is made of a hard leather or a hard plastic insulating material. production.
  • the health care garment for physical condition monitoring can automatically measure the wearer's waist circumference data, respiratory rate, blood pressure data, and heart rate data, and the physical data. It is sent to the cloud health management platform of the remote health monitoring center through the communication unit, so that the remote doctor can track and manage the health of the wearer.
  • FIG. 1 is a schematic plan view showing a preferred embodiment of a health care garment for physical condition monitoring according to the present invention
  • FIG. 2 is a front view of a preferred embodiment of a waistband of a health garment for physical condition monitoring of the present invention.
  • FIG. 3 is a schematic view showing a reverse structure of a preferred embodiment of a waistband of a health garment for use in vital sign monitoring according to the present invention
  • FIG. 4 is a schematic view showing the internal structure of a preferred embodiment of a health care garment for use in vital sign monitoring according to the present invention.
  • FIG. 1 is a schematic plan view showing a preferred embodiment of a health care garment for use in vital sign monitoring according to the present invention.
  • the health care garment 100 includes a garment body 05, a waistband 01, a cuff 02, a breast pocket 03, and a edging 04 disposed under the placket of the garment body 05.
  • the edging 04 is embedded with a flexible wire, and the waistband 01, the cuff 02 and the chest pocket 03 are joined together to form a joint structure.
  • the garment body 05, the cuff 02, the breast pocket 03, and the edging 04 are all made of a non-conductive woven fabric having elasticity and flexibility, and the health care garment 100 can be closely attached to the wearer while ensuring the comfort of the wearer. Skin.
  • the waist belt 01, the cuff 02 and the breast pocket 03 form a joint structure by the edging 04, and each is disposed on the garment body 05 in a detachable structure.
  • the detachable structure includes, but is not limited to, a snap, a button, a velcro, or other attachable structure. Therefore, when the health care garment 100 requires washing, the waistband 01, the cuff 02, the breast pocket 03, and the edging 04 can be detached from the garment body 05 to prevent washing of the health care garment 100, resulting in the waistband 01, cuffs 02. The electrical components in the chest pocket 03 and the rim 04 were washed out and could not be used.
  • the connected waistband 01, the cuff 02, the breast pocket 03, and the edging 04 are respectively attached to the garment body 05, so that it is convenient to use and is not washed.
  • the impact has a strong practical value.
  • FIG. 2 is a front structural view of a preferred embodiment of the waist belt 01 of the health garment for physical condition monitoring of the present invention.
  • the waist belt 01 includes a belt body 1, a belt head 2, and a belt buckle 3, and the belt buckle 3 is provided at a joint of the belt body 1 and the belt head 2.
  • the waistband body 1 is made of the same material as the conventional plain waistband, and the embodiment can be made of an inelastic soft leather or a soft plastic or the like.
  • the outer casing of the waistband 2 and the waistband buckle 3 are made of the same material as the conventional plain waistband and belt buckle, and the embodiment can be made of an insulating material such as hard leather or hard plastic.
  • FIG. 3 is a schematic view showing the reverse structure of a preferred embodiment of the waist belt 01 of the health care garment for use in the physical examination of the present invention.
  • the inside of the belt body 1 is provided with a card slot 10 having a unique size number every same preset distance (e.g., lcm or 0.5 cm).
  • a card slot 10 is provided at every predetermined distance, and each card slot 10 has a unique size number.
  • each of the card slots 10 includes an electrode 101 of a different resistance value, and the electrodes 101 in each of the card slots 10 are connected in series by wires embedded in the waistband body 1.
  • the voltage signal outputted by the electrode 101 in each of the card slots 10 is a small voltage (e.g., a voltage not greater than lmv), and thus does not have any influence on the health of the wearer.
  • the inner side of the belt buckle 3 is provided with a voltage sensor 30.
  • the voltage sensor 30 is used for sensing. The voltage signal output from the electrode 101 in the stuck card slot 10.
  • FIG. 4 is a schematic diagram of the internal structure of a preferred embodiment of the health care garment for use in vital sign monitoring according to the present invention.
  • the garment body 01 of the health care garment 100 is provided with a belt 01, a cuff 02, and a chest pocket 03.
  • the waist belt 01 includes a belt body 1, a belt head 2, and a belt buckle 3.
  • Place A blood pressure sensor 102 is disposed in the cuff 02, and an electrocardiographic sensor 103 is disposed in the chest pocket 03.
  • the waistband 2 includes a microcontroller 20, a switch button 21, a breath sensor 22, a communication unit 23, a micro battery 24, and a charging port 25.
  • the switch button 21, the breathing sensor 22, the communication unit 23, and the micro battery 24 are all connected to the microcontroller 20.
  • the microbattery 24 is also connected to the electrode 10 1 in each of the card slots 10 to provide power to the electrodes 101 in each of the card slots 10.
  • a voltage sensor 30 within the belt buckle 3 is coupled to the microcontroller 20.
  • Both the blood pressure sensor 102 and the electrocardiographic sensor 103 are coupled to the microcontroller 20 by flexible wires within the rim 04.
  • the microcontroller 20, the respiration sensor 22, the communication unit 23, and the micro battery 24 are all disposed inside the waistband 2.
  • the switch button 21 and the charging port 25 are disposed on the outer side of the waistband head 2, and may be respectively disposed on both sides of the waistband head 2, or may be disposed on the same side.
  • the micro battery 24 When the slamming button 21 is turned on, the micro battery 24 energizes the electrode 101 in each of the card slots 10. When the belt buckle 3 catches one of the slots 10 ⁇ , the voltage sensor 30 measures the voltage signal outputted by the electrode 101 of the card slot 10 stuck by the belt buckle 3, and outputs the electrode 101. The voltage signal is sent to the microcontroller 20.
  • the microcontroller 20 is a micro control unit (MCU), a data processing chip, or an information processing unit having a data processing function.
  • the microcontroller 20 identifies the size number of the card slot 10 corresponding to the electrode 101 according to the voltage signal output from the electrode 101, and obtains the wearer's waistline data according to the size number of the card slot 10.
  • the respiration sensor 22 is a micro-breath sensing device that senses human respiratory waves in the prior art, and the specific structure is not described in detail in the present invention. In the present embodiment, the respiration sensor 22 detects the wearer's respiratory rate from the wearer's abdomen and transmits the wearer's respiratory rate to the microcontroller 20.
  • the garment body 05 is made of a textile having elasticity and flexibility, the wearer can wear the health care garment 100 on the body, and the garment body 05 can make the blood pressure in the cuff 02
  • the sensor 102 fits snugly against the wearer's arm.
  • the blood pressure sensor 102 is a micro blood pressure sensing device for measuring blood pressure of a human body in the prior art, and the specific structure is not described in detail in the present invention.
  • the blood pressure sensor 102 measures the blood pressure data of the wearer from the arm portion of the wearer, and Transmitting the wearer's blood pressure data to the microcontroller 20 through a flexible wire within the rim 04
  • the garment body 05 is made of a textile having elasticity and flexibility, the wearer can wear the health care garment 100 on the body, and the garment body 05 can be made in the chest pocket 03.
  • the ECG sensor 103 fits snugly against the wearer's chest.
  • the electrocardiographic sensor 103 is a miniature heart rate sensing device for measuring a human heart rate in the prior art, and the specific structure is not described in detail in the present invention.
  • the ECG sensor 103 measures the wearer's heart rate data from the wearer's chest, and transmits the wearer's heart rate data to the micro-control through the flexible wire in the rim 04. 20.
  • the communication unit 23 is a wireless communication interface with wireless communication function (for example, a short-range communication interface such as Bluetooth or WIFI or a remote communication interface).
  • the communication unit 23 transmits the wearer's waistline data, respiratory rate, blood pressure data, and heart rate data to the cloud health management platform installed in the remote health management center, so that the remote doctor can track and manage the wearer's health.
  • the micro battery 24 is used to supply electric energy to all electrical components in the health care garment 100, and the micro battery 24 is a low-radiation, low-power rechargeable lithium battery, which is not for the wearer. Health has an impact.
  • the micro battery 24 is also connected to a charging port 25, which can be a USB interface or other standard battery charging interface, and the charging port 25 can be directly inserted into an external power source (such as a computer USB interface or a low voltage regulator).
  • the micro battery 24 is charged, for example. When the power of the microbattery 24 is used up, the wearer can charge the microbattery 24 through the charging port 25, thereby extending the life cycle of the health care garment 100.
  • the health care garment for physical condition monitoring can automatically measure the wearer's waist circumference data, respiratory rate, blood pressure data, and heart rate data, and can send the vital sign data to set remote health monitoring.
  • the center's cloud health management platform allows remote doctors to track and manage the wearer's health.
  • FIG. 1 is a schematic plan view showing a preferred embodiment of a health care garment for body sign monitoring according to the present invention.
  • the health care garment 100 includes a garment body 05, a waistband 01, a cuff 02, a breast pocket 03, and a edging 04 disposed under the placket of the garment body 05.
  • the edging 04 is embedded with a flexible wire, and the waistband 01, the cuff 02 and the chest pocket 03 are joined together to form a joint structure.
  • the garment body 05, the cuff 02, the breast pocket 03, and the edging 04 are all made of a non-conductive woven fabric having elasticity and flexibility, and the health care garment 100 can be closely attached to the wearer while ensuring the comfort of the wearer. Skin.
  • the waist belt 01, the cuff 02 and the breast pocket 03 form a joint structure by the edging 04, and each is disposed on the garment body 05 in a detachable configuration.
  • the detachable structure includes, but is not limited to, a snap, button, velcro, or other attachable structure. Therefore, when the health care garment 100 requires washing, the waistband 01, the cuff 02, the breast pocket 03, and the edging 04 can be detached from the garment body 05 to prevent washing of the health care garment 100, resulting in the waistband 01, cuffs 02.
  • the electrical components in the chest pocket 03 and the rim 04 were washed out and could not be used.
  • the connected waistband 01, the cuff 02, the breast pocket 03, and the edging 04 are respectively attached to the garment body 05, so that it is convenient to use and is not washed.
  • the impact has a strong practical value.
  • FIG. 2 is a schematic front view of a preferred embodiment of a waistband 01 of a health garment for use in sign monitoring of the present invention.
  • the waist belt 01 includes a belt body 1, a belt head 2, and a belt buckle 3, and the belt buckle 3 is disposed at a joint of the belt body 1 and the belt head 2.
  • the waistband body 1 is made of the same material as the conventional plain waistband, and the embodiment can be made of an inelastic soft leather or a soft plastic or the like.
  • the outer casing of the waistband 2 and the belt buckle 3 are made of the same material as the conventional waistband and belt buckle. In this embodiment, hard leather or hard plastic can be used. Made of edge material.
  • FIG. 3 is a schematic view showing the reverse structure of a preferred embodiment of the waist belt 01 of the health care garment for sign monitoring of the present invention.
  • the inside of the belt body 1 is provided with a card slot 10 having a unique size number every same preset distance (e.g., lcm or 0.5 cm).
  • a card slot 10 is provided at every predetermined distance, and each card slot 10 has a unique size number. If the length of the waistband body 1 is 100 cm and one card slot 10 is provided for each lcm, the number of the first card slot 10 is 1, the number of the second card slot 10 is 2, the number of the third card slot 10 is 3, and finally One card slot 10 is numbered 100.
  • Each of the card slots 10 includes an electrode 101 of a different resistance value, and the electrodes 101 in each of the card slots 10 are connected in series by wires embedded in the waistband body 1.
  • the voltage signal outputted by the electrode 101 in each of the card slots 10 is a small voltage (e.g., a voltage not greater than lmv), and thus does not have any influence on the health of the wearer.
  • the inner side of the belt buckle 3 is provided with a voltage sensor 30.
  • the voltage sensor 30 is used for sensing. The voltage signal output from the electrode 101 in the stuck card slot 10.
  • FIG. 4 is a schematic diagram showing the internal structure of a preferred embodiment of the health care garment for use in vital sign monitoring according to the present invention.
  • the garment body 01 of the health care garment 100 is provided with a belt 01, a cuff 02, and a chest pocket 03.
  • the waist belt 01 includes a belt body 1, a belt head 2, and a belt buckle 3.
  • a blood pressure sensor 102 is disposed in the cuff 02, and an electrocardiographic sensor 103 is disposed in the chest pocket 03.
  • the waistband 2 includes a microcontroller 20, a switch button 21, a breath sensor 22, a communication unit 23, a micro battery 24, and a charging port 25.
  • the switch button 21, the breathing sensor 22, the communication unit 23, and the micro battery 24 are all connected to the microcontroller 20.
  • the microbattery 24 is also connected to the electrode 10 1 in each of the card slots 10 to provide power to the electrodes 101 in each of the card slots 10.
  • a voltage sensor 30 within the belt buckle 3 is coupled to the microcontroller 20.
  • Both the blood pressure sensor 102 and the electrocardiographic sensor 103 are coupled to the microcontroller 20 by flexible wires within the rim 04.
  • the microcontroller 20, the respiration sensor 22, the communication unit 23, and the micro battery 24 are all disposed inside the waistband 2. Referring to FIGS. 1 and 2, the switch button 21 and the charging port 25 are disposed on the outer side of the waistband head 2, and may be respectively disposed on both sides of the waistband head 2, or may be disposed on the same side.
  • the micro battery 24 energizes the electrode 101 in each of the card slots 10.
  • the voltage sensor 30 measures the voltage signal outputted by the electrode 101 of the card slot 10 stuck by the belt buckle 3, and outputs the electrode 101. The voltage signal is sent to the microcontroller 20.
  • the microcontroller 20 is a micro control unit (MCU), a data processing chip, or an information processing unit having a data processing function.
  • the microcontroller 20 identifies the size number of the card slot 10 corresponding to the electrode 101 according to the voltage signal output from the electrode 101, and obtains the wearer's waistline data according to the size number of the card slot 10.
  • the respiration sensor 22 is a micro-breath sensing device that senses human respiratory waves in the prior art, and the specific structure is not described in detail in the present invention. In the present embodiment, the respiration sensor 22 detects the wearer's respiratory rate from the wearer's abdomen and transmits the wearer's respiratory rate to the microcontroller 20.
  • the garment body 05 is made of a textile having elasticity and flexibility, the wearer can wear the health care garment 100 on the body, and the garment body 05 can make the blood pressure in the cuff 02.
  • the sensor 102 fits snugly against the wearer's arm.
  • the blood pressure sensor 102 is a miniature blood pressure sensing device for measuring blood pressure of a human body in the prior art, and the specific structure is not described in detail in the present invention.
  • the blood pressure sensor 102 measures the blood pressure data of the wearer from the arm portion of the wearer, and transmits the blood pressure data of the wearer to the micro control through the flexible wire in the rim 04.
  • the garment body 05 is made of a textile having elasticity and flexibility, the wearer can wear the health care garment 100 on the body, and the garment body 05 can be made in the chest pocket 03.
  • the ECG sensor 103 fits snugly against the wearer's chest.
  • the ECG sensor 103 is a miniature heart rate sensing device for measuring a human heart rate in the prior art, and the specific structure is not described in detail in the present invention.
  • the electrocardiographic sensor 103 measures the wearer's heart rate data from the wearer's chest, and the The wearer's heart rate data is sent to the microcontroller 20 through a flexible wire within the rim 04.
  • the communication unit 23 is a wireless communication interface with wireless communication function (for example, a short-range communication interface such as Bluetooth or WIFI or a remote communication interface).
  • the communication unit 23 transmits the wearer's waistline data, respiratory rate, blood pressure data, and heart rate data to the cloud health management platform installed in the remote health management center, so that the remote doctor can track and manage the wearer's health.
  • the micro battery 24 is used to supply electric energy to all electrical components in the health care garment 100, and the micro battery 24 is a low-radiation, low-power rechargeable lithium battery, which is not for the wearer. Health has an impact.
  • the micro battery 24 is also connected to a charging port 25, which can be a USB interface or other standard battery charging interface, and the charging port 25 can be directly inserted into an external power source (such as a computer USB interface or a low voltage regulator).
  • the micro battery 24 is charged, for example. When the power of the microbattery 24 is used up, the wearer can charge the microbattery 24 through the charging port 25, thereby extending the life cycle of the health care garment 100.
  • the health care garment for physical condition monitoring can automatically measure the wearer's waist circumference data, respiratory rate, blood pressure data, and heart rate data, and can send the vital sign data to set remote health monitoring.
  • the center's cloud health management platform allows remote doctors to track and manage the wearer's health.
  • the health care garment for physical condition monitoring can automatically measure the wearer's waist circumference data, respiratory rate, blood pressure data, and heart rate data, and the physical data. It is sent to the cloud health management platform of the remote health monitoring center through the communication unit, so that the remote doctor can track and manage the health of the wearer.

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  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Molecular Biology (AREA)
  • Textile Engineering (AREA)
  • Biophysics (AREA)
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  • Medical Informatics (AREA)
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  • Dentistry (AREA)
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  • Measurement And Recording Of Electrical Phenomena And Electrical Characteristics Of The Living Body (AREA)
  • Measuring Pulse, Heart Rate, Blood Pressure Or Blood Flow (AREA)

Abstract

一种用于体征监测的保健衣服(100),该保健衣服(100)包括衣服本体(05)以及设置在衣服本体(05)上的腰带(01)、胸袋(03)、袖口(02)和镶边(04)。腰带(01)包括腰带本体(1)、腰带头(2)和腰带锁扣(3),腰带本体(1)内侧每隔相同预设距离设置一个具有唯一尺码编号的卡槽(10),每一卡槽(10)内设置有一个不同电阻值的电极(101),每一卡槽(10)内的电极(101)通过镶嵌在腰带本体(1)内的导线串接,腰带锁扣(3)内侧设置有电压感测器(30),腰带头(2)内包括微控制器(20)和微型电池(24),电压感测器(30)连接至微控制器(20)上,微型电池(24)为每一卡槽(10)内的电极(101)供电,胸袋(03)内设置心电传感器(103),袖口(02)内设置血压传感器(102),心电传感器(103)和血压传感器(102)均通过镶边(04)内的柔性导线连接至微控制器(20)上。能够有效地监控用户的体征数据,方便医生实时管理用户的健康状况。

Description

说明书 发明名称:用于体征监测的保健衣服 技术领域
[0001] 本实用新型涉及健康监控领域, 尤其涉及一种用于体征监测的保健衣服。
背景技术
[0002] 日常生活中, 很多人总担心自己胖的太快, 特别是腰围。 一些人根据自己的审 美和工作的需要, 特别注意腰围的变化情况。 另一些人则是出于锻炼和减肥情 况的考虑, 需要经常性的测量腰围。 一般地, 人们测量腰围需要软尺, 但不能 把软尺总带在身边, 给测量带来不便。 此外, 穿戴者在测量自身腰围吋, 需要 使用软尺手动测量出自身的腰围数据, 并且需要通过目测从软尺上人工读取测 量的腰围数据, 由于人工读取数据存在误差, 因而导致测量数据不够准确。 此 夕卜, 在健康管理领域, 除了体现用户肥胖的腰围数据外, 还有呼吸频率、 心率 和血压等都是用于监测患者健康状况的重要体征参数。
[0003] 众所周知, 衣服是人们生活的必需品, 它每吋每刻都能穿戴在身上, 但现有衣 服只有保暖或装饰功能, 而不具备穿戴者体征数据的检测功能。 为此, 需要设 计了一种健康监控保健衣服及健康监控方法, 不仅能轻松简单的解决上述问题 , 而且能够有效地监控用户的健康状况。
技术问题
[0004] 本实用新型的主要目的在于提供一种用于体征监测的保健衣服, 旨在解决现有 衣服不能自动检测穿戴者体征数据的产品缺陷。
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用于体征监测的保健衣服, 该保健衣 服包括衣服本体以及设置在衣服本体上的腰带、 胸袋、 袖口和镶边, 所述腰带 包括腰带本体、 腰带头和腰带锁扣, 所述腰带本体内侧每隔相同预设距离设置 一个具有唯一尺码编号的卡槽, 每一卡槽内设置有一个不同电阻值的电极, 每 一卡槽内的电极通过镶嵌在腰带本体内的导线串接, 所述腰带锁扣内侧设置有 电压感测器, 所述腰带头内包括微控制器和微型电池, 所述电压感测器连接至 所述微控制器上, 所述微型电池为每一个卡槽内的电极供电, 所述胸袋内设置 有心电传感器, 所述袖口内设置有血压传感器, 所述心电传感器和血压传感器 均通过镶边内的柔性导线连接至所述微控制器上。
[0006] 优选地, 所述腰带头还包括一个连接至所述微控制器上的呼吸传感器。
[0007] 优选地, 所述腰带头还包括一个连接至所述微控制器上的通信单元。
[0008] 优选地, 所述腰带头还包括一个链接至所述微控制器上的幵关按钮, 该幵关按 钮设置在所述腰带头的外侧。
[0009] 优选地, 所述腰带头还包括一个链接至所述微型电池上的充电端口, 该充电端 口设置在所述腰带头的外侧。
[0010] 优选地, 所述腰带、 胸袋和袖口均通过所述镶边构成连体结构, 并且均采用可 拆卸式结构设置在所述衣服本体上。
[0011] 优选地, 所述可拆卸式结构为一种按扣、 纽扣或者魔术贴。
[0012] 优选地, 所述衣服本体、 袖口、 胸袋以及镶边均采用具有弹性及柔软性的非导 电纺织物制成。
[0013] 优选地, 所述腰带锁扣设置在所述腰带本体与腰带头的连接处。
[0014] 优选地, 所述腰带本体采用无弹性的软质皮革或软质塑料的绝缘材料制成, 以 及所述腰带头和腰带锁扣的外壳均采用硬质皮革或硬质塑料的绝缘材料制成。 发明的有益效果
有益效果
[0015] 相较于现有技术, 本实用新型所述用于体征监测的保健衣服能够自动测量出穿 戴者的腰围数据、 呼吸频率、 血压数据以及心率数据等体征数据, 并将所述体 征数据通过通信单元发送至设置远程健康监控中心的云健康管理平台上, 以便 远程的医生实吋跟踪与管理穿戴者的健康状况。
对附图的简要说明
附图说明
[0016] 图 1是本实用新型用于体征监测的保健衣服优选实施例的平面结构示意图; [0017] 图 2是本实用新型用于体征监测的保健衣服的腰带优选实施例的正面结构示意 图;
[0018] 图 3是本实用新型用于体征监测的保健衣服的腰带优选实施例的反面结构示意 图;
[0019] 图 4是本实用新型用于体征监测的保健衣服优选实施例的内部结构示意图。
[0020] 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
[0021] 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。
[0022] 如图 1所示, 图 1是本实用新型用于体征监测的保健衣服优选实施例的平面结构 示意图。 在本实施例中, 所述保健衣服 100包括衣服本体 05、 腰带 01、 袖口 02、 胸袋 03以及镶边 04, 所述腰带 01设置在衣服本体 05的衣襟下方。 所述镶边 04内 镶嵌有柔性导线, 并将所述腰带 01、 袖口 02和胸袋 03连接在一起构成连体结构 。 所述衣服本体 05、 袖口 02、 胸袋 03以及镶边 04均采用具有弹性及柔软性的非 导电纺织物制成, 在保证穿戴者舒适型的同吋还能够使保健衣服 100紧贴穿戴者 的皮肤。
[0023] 为保证所述柔性导线能够通电, 所述腰带 01、 袖口 02和胸袋 03通过镶边 04构成 连体结构, 并且各自均采用可拆卸式结构设置在所述衣服本体 05上。 所述可拆 卸式结构包括, 但不仅限于, 按扣、 纽扣、 魔术贴、 或者其它可粘贴结构。 因 此, 当所述保健衣服 100需要洗涤吋, 所述腰带 01、 袖口 02、 胸袋 03以及镶边 04 均可从所述衣服本体 05拆卸下来, 以防止洗涤保健衣服 100吋导致腰带 01、 袖口 02、 胸袋 03以及镶边 04内的电气元件被水洗坏而无法使用。 当穿戴者需要穿戴 所述保健衣服 100吋, 将所述连体的腰带 01、 袖口 02、 胸袋 03以及镶边 04分别张 贴至所述衣服本体 05上即可, 因而使用方便并且不受洗涤的影响, 具有很强的 实用价值。 [0024]
[0025] 如图 2所示, 图 2是本实用新型用于体征监测的保健衣服的腰带 01优选实施例的 正面结构示意图。 在本实施例中, 所述腰带 01包括腰带本体 1、 腰带头 2和腰带 锁扣 3, 所述腰带锁扣 3设置在所述腰带本体 1与腰带头 2的连接处。 所述腰带本 体 1采用与现有普通腰带相同的材料制成, 本实施例可采用无弹性的软质皮革或 软质塑料等绝缘材料制成。 所述腰带头 2和腰带锁扣 3的外壳均采用与现有普通 腰带头和腰带锁扣相同的材料制成, 本实施例可采用硬质皮革或硬质塑料等绝 缘材料制成。
[0026]
[0027] 如图 3所示, 图 3是本实用新型用于体征监测的保健衣服的腰带 01优选实施例的 反面结构示意图。 在本实施例中, 所述腰带本体 1内侧每隔相同预设距离 (例如 lcm或 0.5cm) 设置一个具有唯一尺码编号的卡槽 10。 在本实施例中, 从腰带锁 扣 3的一端幵始, 每隔预设距离设置有一个卡槽 10, 每一卡槽 10具有唯一的尺码 编号。 假如腰带本体 1长度为 100cm以及每一 lcm设置一个卡槽 10, 则第一卡槽 10 的编号为 1、 第二卡槽 10的编号为 2、 第三卡槽 10的编号为 3、 以及最后一个卡槽 10的编号为 100。 每一卡槽 10包括一个不同电阻值的电极 101, 每一卡槽 10内的 电极 101通过镶嵌在腰带本体 1内的导线串接。 当腰带锁扣 3卡住不同卡槽 10吋, 由于每一卡槽 10内的电极 101的电阻值不同, 因而每一卡槽 10内的电极 101输出 的电压信号不同。 在本实施例中, 每一卡槽 10内的电极 101所输出的电压信号为 一种微小电压 (例如不大于 lmv的电压) , 因此不会对穿戴者的健康产生任何影 响。
[0028] 在本实施例中, 所述腰带锁扣 3内侧设置有电压感测器 30, 当腰带锁扣 3卡住其 中之一卡槽 10吋, 所述电压感测器 30用于感测该被卡住的卡槽 10内电极 101输出 的电压信号。
[0029]
[0030] 如图 4所示, 图 4是本实用新型用于体征监测的保健衣服优选实施例的内部结构 示意图。 一并参考图 2和图 3所示, 所述保健衣服 100的衣服本体 01上设置有腰带 01、 袖口 02以及胸袋 03。 所述腰带 01包括腰带本体 1、 腰带头 2和腰带锁扣 3。 所 述袖口 02内设置有血压传感器 102, 所述胸袋 03内设置有心电传感器 103。 所述 腰带头 2包括微控制器 20、 幵关按钮 21、 呼吸传感器 22、 通信单元 23、 微型电池 24以及充电端口 25。 所述幵关按钮 21、 呼吸传感器 22、 通信单元 23和微型电池 2 4均连接至所述微控制器 20上。 所述微型电池 24还连接至每一卡槽 10内的电极 10 1上, 为每一个卡槽 10内的电极 101提供电源。 所述腰带锁扣 3内的电压感测器 30 连接至所述微控制器 20上。 所述血压传感器 102和心电传感器 103均通过所述镶 边 04内的柔性导线连接至所述微控制器 20上。
[0031] 所述微控制器 20、 呼吸传感器 22、 通信单元 23和微型电池 24均设置在腰带头 2 的内部。 参考图 1和图 2所示, 所述幵关按钮 21与充电端口 25设置在腰带头 2设置 在腰带头 2的外侧, 例如可以分别设置在腰带头 2的两侧, 也可以设置在同一侧
[0032] 当幵关按钮 21幵启吋, 所述微型电池 24给每一卡槽 10内的电极 101通电。 当腰 带锁扣 3卡住其中之一卡槽 10吋, 电压感测器 30测量出被腰带锁扣 3卡住的卡槽 1 0内电极 101输出的电压信号, 并将所述电极 101输出的电压信号发送至微控制器 20。
[0033] 在本实施例中, 所述微控制器 20为一种微控制单元 (MCU) 、 数据处理芯片 、 或者具有数据处理功能的信息处理单元。 所述微控制器 20根据所述电极 101输 出的电压信号识别出该电极 101对应的卡槽 10的尺码编号, 并根据该卡槽 10的尺 码编号得到穿戴者的腰围数据。
[0034] 所述呼吸传感器 22为现有技术中对人体呼吸波进行感测的微型呼吸感测装置, 具体结构在本实用新型中不作详细描述。 在本实施例中, 所述呼吸传感器 22从 穿戴者的腹部侦测穿戴者的呼吸频率, 并将所述穿戴者的呼吸频率发送至所述 微控制器 20。
[0035] 在本实施例中, 由于衣服本体 05采用具有弹性及柔软性的纺织物制成, 因此在 穿戴者将保健衣服 100穿戴在身上吋, 所述衣服本体 05能够使袖口 02内的血压传 感器 102紧贴穿戴者的手臂部位。 所述血压传感器 102为现有技术中对人体血压 进行测量的微型血压感测装置, 具体结构在本实用新型中不作详细描述。 在本 实施例中, 所述血压传感器 102从穿戴者的手臂部测量出穿戴者的血压数据, 并 将所述穿戴者的血压数据通过所述镶边 04内的柔性导线发送至所述微控制器 20
[0036] 在本实施例中, 由于衣服本体 05采用具有弹性及柔软性的纺织物制成, 因此在 穿戴者将保健衣服 100穿戴在身上吋, 所述衣服本体 05能够使胸袋 03内的心电传 感器 103紧贴穿戴者的胸部。 所述心电传感器 103为现有技术中对人体心率进行 测量的微型心率感测装置, 具体结构在本实用新型中不作详细描述。 在本实施 例中, 所述心电传感器 103从穿戴者的胸部测量出穿戴者的心率数据, 并将所述 穿戴者的心率数据通过所述镶边 04内的柔性导线发送至所述微控制器 20。
[0037] 所述的通信单元 23为一种具有无线通讯功能的无线通讯接口 (例如蓝牙、 WIFI 等近距离通信接口或者远程通信接口) 。 所述通信单元 23将穿戴者的腰围数据 、 呼吸频率、 血压数据以及心率数据发送至设置在远程健康管理中心的云健康 管理平台, 以便远程的医生实吋跟踪与管理穿戴者的健康状况。
[0038] 所述微型电池 24用于对所述保健衣服 100内的所有电器元件提供电能, 该微型 电池 24是一种低辐射、 低功耗的可充电锂电池, 其不会对穿戴者的健康带来影 响。 所述微型电池 24还连接有一个充电端口 25, 该充电端口 25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 25可以直接***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 24进行充电。 当所述微型电池 24的电量用完吋, 穿戴者可通过所述充电端口 25对微型电池 24进行充电, 从而 延长所述保健衣服 100的使用周期。
[0039] 本实用新型所述用于体征监测的保健衣服能够自动测量出穿戴者的腰围数据、 呼吸频率、 血压数据以及心率数据等体征数据, 并能够将所述体征数据发送至 设置远程健康监控中心的云健康管理平台上, 以便远程的医生能够实吋跟踪与 管理穿戴者的健康状况。
[0040] 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
[0041] 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。
[0042] 如图 1所示, 图 1是本实用新型用于体征监测的保健衣服优选实施例的平面结构 示意图。 在本实施例中, 所述保健衣服 100包括衣服本体 05、 腰带 01、 袖口 02、 胸袋 03以及镶边 04, 所述腰带 01设置在衣服本体 05的衣襟下方。 所述镶边 04内 镶嵌有柔性导线, 并将所述腰带 01、 袖口 02和胸袋 03连接在一起构成连体结构 。 所述衣服本体 05、 袖口 02、 胸袋 03以及镶边 04均采用具有弹性及柔软性的非 导电纺织物制成, 在保证穿戴者舒适型的同吋还能够使保健衣服 100紧贴穿戴者 的皮肤。
[0043] 为保证所述柔性导线能够通电, 所述腰带 01、 袖口 02和胸袋 03通过镶边 04构成 连体结构, 并且各自均采用可拆卸式结构设置在所述衣服本体 05上。 所述可拆 卸式结构包括, 但不仅限于, 按扣、 纽扣、 魔术贴、 或者其它可粘贴结构。 因 此, 当所述保健衣服 100需要洗涤吋, 所述腰带 01、 袖口 02、 胸袋 03以及镶边 04 均可从所述衣服本体 05拆卸下来, 以防止洗涤保健衣服 100吋导致腰带 01、 袖口 02、 胸袋 03以及镶边 04内的电气元件被水洗坏而无法使用。 当穿戴者需要穿戴 所述保健衣服 100吋, 将所述连体的腰带 01、 袖口 02、 胸袋 03以及镶边 04分别张 贴至所述衣服本体 05上即可, 因而使用方便并且不受洗涤的影响, 具有很强的 实用价值。
[0044]
[0045] 如图 2所示, 图 2是本实用新型用于体征监测的保健衣服的腰带 01优选实施例的 正面结构示意图。 在本实施例中, 所述腰带 01包括腰带本体 1、 腰带头 2和腰带 锁扣 3, 所述腰带锁扣 3设置在所述腰带本体 1与腰带头 2的连接处。 所述腰带本 体 1采用与现有普通腰带相同的材料制成, 本实施例可采用无弹性的软质皮革或 软质塑料等绝缘材料制成。 所述腰带头 2和腰带锁扣 3的外壳均采用与现有普通 腰带头和腰带锁扣相同的材料制成, 本实施例可采用硬质皮革或硬质塑料等绝 缘材料制成。
[0046]
[0047] 如图 3所示, 图 3是本实用新型用于体征监测的保健衣服的腰带 01优选实施例的 反面结构示意图。 在本实施例中, 所述腰带本体 1内侧每隔相同预设距离 (例如 lcm或 0.5cm) 设置一个具有唯一尺码编号的卡槽 10。 在本实施例中, 从腰带锁 扣 3的一端幵始, 每隔预设距离设置有一个卡槽 10, 每一卡槽 10具有唯一的尺码 编号。 假如腰带本体 1长度为 100cm以及每一 lcm设置一个卡槽 10, 则第一卡槽 10 的编号为 1、 第二卡槽 10的编号为 2、 第三卡槽 10的编号为 3、 以及最后一个卡槽 10的编号为 100。 每一卡槽 10包括一个不同电阻值的电极 101, 每一卡槽 10内的 电极 101通过镶嵌在腰带本体 1内的导线串接。 当腰带锁扣 3卡住不同卡槽 10吋, 由于每一卡槽 10内的电极 101的电阻值不同, 因而每一卡槽 10内的电极 101输出 的电压信号不同。 在本实施例中, 每一卡槽 10内的电极 101所输出的电压信号为 一种微小电压 (例如不大于 lmv的电压) , 因此不会对穿戴者的健康产生任何影 响。
[0048] 在本实施例中, 所述腰带锁扣 3内侧设置有电压感测器 30, 当腰带锁扣 3卡住其 中之一卡槽 10吋, 所述电压感测器 30用于感测该被卡住的卡槽 10内电极 101输出 的电压信号。
[0049]
[0050] 如图 4所示, 图 4是本实用新型用于体征监测的保健衣服优选实施例的内部结构 示意图。 一并参考图 2和图 3所示, 所述保健衣服 100的衣服本体 01上设置有腰带 01、 袖口 02以及胸袋 03。 所述腰带 01包括腰带本体 1、 腰带头 2和腰带锁扣 3。 所 述袖口 02内设置有血压传感器 102, 所述胸袋 03内设置有心电传感器 103。 所述 腰带头 2包括微控制器 20、 幵关按钮 21、 呼吸传感器 22、 通信单元 23、 微型电池 24以及充电端口 25。 所述幵关按钮 21、 呼吸传感器 22、 通信单元 23和微型电池 2 4均连接至所述微控制器 20上。 所述微型电池 24还连接至每一卡槽 10内的电极 10 1上, 为每一个卡槽 10内的电极 101提供电源。 所述腰带锁扣 3内的电压感测器 30 连接至所述微控制器 20上。 所述血压传感器 102和心电传感器 103均通过所述镶 边 04内的柔性导线连接至所述微控制器 20上。 [0051] 所述微控制器 20、 呼吸传感器 22、 通信单元 23和微型电池 24均设置在腰带头 2 的内部。 参考图 1和图 2所示, 所述幵关按钮 21与充电端口 25设置在腰带头 2设置 在腰带头 2的外侧, 例如可以分别设置在腰带头 2的两侧, 也可以设置在同一侧
[0052] 当幵关按钮 21幵启吋, 所述微型电池 24给每一卡槽 10内的电极 101通电。 当腰 带锁扣 3卡住其中之一卡槽 10吋, 电压感测器 30测量出被腰带锁扣 3卡住的卡槽 1 0内电极 101输出的电压信号, 并将所述电极 101输出的电压信号发送至微控制器 20。
[0053] 在本实施例中, 所述微控制器 20为一种微控制单元 (MCU) 、 数据处理芯片 、 或者具有数据处理功能的信息处理单元。 所述微控制器 20根据所述电极 101输 出的电压信号识别出该电极 101对应的卡槽 10的尺码编号, 并根据该卡槽 10的尺 码编号得到穿戴者的腰围数据。
[0054] 所述呼吸传感器 22为现有技术中对人体呼吸波进行感测的微型呼吸感测装置, 具体结构在本实用新型中不作详细描述。 在本实施例中, 所述呼吸传感器 22从 穿戴者的腹部侦测穿戴者的呼吸频率, 并将所述穿戴者的呼吸频率发送至所述 微控制器 20。
[0055] 在本实施例中, 由于衣服本体 05采用具有弹性及柔软性的纺织物制成, 因此在 穿戴者将保健衣服 100穿戴在身上吋, 所述衣服本体 05能够使袖口 02内的血压传 感器 102紧贴穿戴者的手臂部位。 所述血压传感器 102为现有技术中对人体血压 进行测量的微型血压感测装置, 具体结构在本实用新型中不作详细描述。 在本 实施例中, 所述血压传感器 102从穿戴者的手臂部测量出穿戴者的血压数据, 并 将所述穿戴者的血压数据通过所述镶边 04内的柔性导线发送至所述微控制器 20
[0056] 在本实施例中, 由于衣服本体 05采用具有弹性及柔软性的纺织物制成, 因此在 穿戴者将保健衣服 100穿戴在身上吋, 所述衣服本体 05能够使胸袋 03内的心电传 感器 103紧贴穿戴者的胸部。 所述心电传感器 103为现有技术中对人体心率进行 测量的微型心率感测装置, 具体结构在本实用新型中不作详细描述。 在本实施 例中, 所述心电传感器 103从穿戴者的胸部测量出穿戴者的心率数据, 并将所述 穿戴者的心率数据通过所述镶边 04内的柔性导线发送至所述微控制器 20。
[0057] 所述的通信单元 23为一种具有无线通讯功能的无线通讯接口 (例如蓝牙、 WIFI 等近距离通信接口或者远程通信接口) 。 所述通信单元 23将穿戴者的腰围数据 、 呼吸频率、 血压数据以及心率数据发送至设置在远程健康管理中心的云健康 管理平台, 以便远程的医生实吋跟踪与管理穿戴者的健康状况。
[0058] 所述微型电池 24用于对所述保健衣服 100内的所有电器元件提供电能, 该微型 电池 24是一种低辐射、 低功耗的可充电锂电池, 其不会对穿戴者的健康带来影 响。 所述微型电池 24还连接有一个充电端口 25, 该充电端口 25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 25可以直接***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 24进行充电。 当所述微型电池 24的电量用完吋, 穿戴者可通过所述充电端口 25对微型电池 24进行充电, 从而 延长所述保健衣服 100的使用周期。
[0059] 本实用新型所述用于体征监测的保健衣服能够自动测量出穿戴者的腰围数据、 呼吸频率、 血压数据以及心率数据等体征数据, 并能够将所述体征数据发送至 设置远程健康监控中心的云健康管理平台上, 以便远程的医生能够实吋跟踪与 管理穿戴者的健康状况。
[0060] 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
[0061] 相较于现有技术, 本实用新型所述用于体征监测的保健衣服能够自动测量出穿 戴者的腰围数据、 呼吸频率、 血压数据以及心率数据等体征数据, 并将所述体 征数据通过通信单元发送至设置远程健康监控中心的云健康管理平台上, 以便 远程的医生实吋跟踪与管理穿戴者的健康状况。
[0062]

Claims

权利要求书
一种用于体征监测的保健衣服, 其特征在于, 所述保健衣服包括衣服 本体以及设置在衣服本体上的腰带、 胸袋、 袖口和镶边, 所述腰带包 括腰带本体、 腰带头和腰带锁扣, 所述腰带本体内侧每隔相同预设距 离设置一个具有唯一尺码编号的卡槽, 每一卡槽内设置有一个不同电 阻值的电极, 每一卡槽内的电极通过镶嵌在腰带本体内的导线串接, 所述腰带锁扣内侧设置有电压感测器, 所述腰带头内包括微控制器和 微型电池, 所述电压感测器连接至所述微控制器上, 所述微型电池为 每一卡槽内的电极供电, 所述胸袋内设置有心电传感器, 所述袖口内 设置有血压传感器, 所述心电传感器和血压传感器均通过所述镶边内 的柔性导线连接至所述微控制器上。
如权利要求 1所述的用于体征监测的保健衣服, 其特征在于, 所述腰 带头还包括一个连接至所述微控制器上的呼吸传感器。
如权利要求 2所述的用于体征监测的保健衣服, 其特征在于, 所述腰 带头还包括一个连接至所述微控制器上的通信单元。
如权利要求 3所述的用于体征监测的保健衣服, 其特征在于, 所述腰 带头还包括一个链接至所述微控制器上的幵关按钮, 该幵关按钮设置 在所述腰带头的外侧。
如权利要求 4所述的用于体征监测的保健衣服, 其特征在于, 所述腰 带头还包括一个链接至所述微型电池上的充电端口, 该充电端口设置 在所述腰带头的外侧。
如权利要求 1至 5任一项所述的用于体征监测的保健衣服, 其特征在于 , 所述腰带、 胸袋和袖口均通过所述镶边构成连体结构, 并且均采用 可拆卸式结构设置在所述衣服本体上。
如权利要求 6所述的用于体征监测的保健衣服, 其特征在于, 所述可 拆卸式结构为一种按扣、 纽扣或者魔术贴。
如权利要求 6所述的用于体征监测的保健衣服, 其特征在于, 所述衣 服本体、 袖口、 胸袋以及镶边均采用具有弹性及柔软性的非导电纺织 物制成。
[权利要求 9] 如权利要求 6所述的用于体征监测的保健衣服, 其特征在于, 所述腰 带锁扣设置在所述腰带本体与腰带头的连接处。
[权利要求 10] 如权利要求 6所述的用于体征监测的保健衣服, 其特征在于, 所述腰 带本体采用无弹性的软质皮革或软质塑料的绝缘材料制成, 以及所述 腰带头和腰带锁扣的外壳均采用硬质皮革或硬质塑料的绝缘材料制成
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