WO2017219325A1 - 智能腕表 - Google Patents

智能腕表 Download PDF

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Publication number
WO2017219325A1
WO2017219325A1 PCT/CN2016/086953 CN2016086953W WO2017219325A1 WO 2017219325 A1 WO2017219325 A1 WO 2017219325A1 CN 2016086953 W CN2016086953 W CN 2016086953W WO 2017219325 A1 WO2017219325 A1 WO 2017219325A1
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WIPO (PCT)
Prior art keywords
measuring electrode
ecg
smart
watchband
electrocardiographic
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PCT/CN2016/086953
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English (en)
French (fr)
Inventor
彭鹏
Original Assignee
彭鹏
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Application filed by 彭鹏 filed Critical 彭鹏
Priority to PCT/CN2016/086953 priority Critical patent/WO2017219325A1/zh
Publication of WO2017219325A1 publication Critical patent/WO2017219325A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/01Measuring temperature of body parts ; Diagnostic temperature sensing, e.g. for malignant or inflamed tissue
    • 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
    • A61B5/24Detecting, measuring or recording bioelectric or biomagnetic signals of the body or parts thereof
    • A61B5/316Modalities, i.e. specific diagnostic methods
    • A61B5/318Heart-related electrical modalities, e.g. electrocardiography [ECG]
    • GPHYSICS
    • G04HOROLOGY
    • G04BMECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
    • G04B47/00Time-pieces combined with other articles which do not interfere with the running or the time-keeping of the time-piece
    • G04B47/06Time-pieces combined with other articles which do not interfere with the running or the time-keeping of the time-piece with attached measuring instruments, e.g. pedometer, barometer, thermometer or compass

Definitions

  • the utility model relates to the technical field of physical sign monitoring, in particular to a smart wrist watch.
  • ECG monitor is used to record the physiological electrical signals generated by cardiac activity. Because the ECG diagnostic technology is mature, reliable, easy to operate, moderate in price, and has no damage to patients, it has become the most popular medical treatment at all levels of hospitals. One of the electronic instruments. But for most people, it is not worthwhile to go to the hospital to test an electrocardiogram. Although there are many smart watches (watches) on the market that can detect user heart rate and ECG data, the measurement process of ECG data is cumbersome, and improper operation can lead to large measurement errors.
  • the main purpose of the present invention is to provide a smart wristwatch that integrates the ECG monitoring function on a smart wristwatch, and is easy to operate, and can reduce measurement errors caused by improper operation.
  • the present invention provides a smart wristwatch.
  • the smart wristwatch includes a watch band and a watch head, the watch band includes a first watch band and a second watch band, the first watch band and the second watch band card and the watch table
  • the head is fixed on the wrist of the user, and an ECG monitoring device is disposed in the head.
  • the ECG monitoring device includes a display screen, an electrocardiographic measuring electrode, an ECG collecting unit and a processing unit, wherein:
  • the display screen is electrically connected to the processing unit, and is disposed at an intermediate portion of the front surface of the meter head;
  • the electrocardiographic measuring electrode is electrically connected to the ECG collecting unit, and is configured to collect an ECG signal
  • the ECG acquisition unit is electrically connected to the processing unit, and is configured to perform preliminary processing on amplification, filtering, and analog-to-digital conversion of the collected ECG signals;
  • the processing unit is configured to convert the initially processed ECG signal into a standard ECG waveform and send Display to the display screen.
  • At least two card slots are disposed on the first strap, and the card slot is configured to penetrate a hollow ellipse of the first strap.
  • a buckle of the card slot card is disposed on a reverse surface of the second strap.
  • the buckles are provided in two.
  • a button is disposed on a front surface of the second watchband corresponding to the buckle, and the button is used to assist pressing the buckle and the card slot card.
  • the smart wristwatch provided by the utility model comprises a watch strap and a watch head, and an ECG monitoring device is arranged in the watch head, and the watch head is fixed to the user through the strap when the cymbal is used.
  • an ECG monitoring device is arranged in the watch head, and the watch head is fixed to the user through the strap when the cymbal is used.
  • one of the electrodes of the electrocardiographic monitoring device is attached to the wrist artery, and the two fingers of the other hand of the user are respectively in contact with the other two electrodes, so that the electrodes of the electrocardiographic monitoring device are formed in the human body.
  • the measuring circuit collects the human body ECG signal, and the measuring process is simple and convenient to operate, and can reduce the measurement error caused by improper operation.
  • FIG. 1 is a schematic front view showing the appearance of a preferred embodiment of the smart wristwatch of the present invention
  • FIG. 2 is a schematic view showing the appearance of the back side of a preferred embodiment of the smart wristwatch of the present invention
  • FIG. 3 is a schematic structural view of a preferred embodiment of the electrocardiogram monitoring device of the present invention.
  • FIG. 1 is a schematic front view showing the appearance of a preferred embodiment of the smart wristwatch of the present invention
  • 2 is a schematic view showing the appearance of the back surface of a preferred embodiment of the smart wristwatch of the present invention.
  • the smart wristwatch includes a watch band 1 and a watch head 2, the watch band 1 includes a first watch band 10 and a second watch band 11, the first watch band 10 and the first watch band The second strap 11 card and the head 2 are then fixed to the user's wrist.
  • At least two card slots 101 are disposed on the first strap 10, and the card slot 101 may be disposed to penetrate the hollow ellipse of the first strap 10.
  • a buckle 111 that can be engaged with the card slot 101 is disposed on a reverse surface of the second band 11 , and a button 112 is disposed at a position corresponding to the buckle 111 on a front surface of the second band 11 . The button 112 is used to press the buckle 111 against the card slot 101.
  • a total of eight card slots 101 are provided on the first watch band 10, and the buckles 111 are carded with different card slots 101 according to different wrists.
  • the two buckles 111 are provided, and the two wristbands 111 are locked with the corresponding two card slots 101 to securely fix the smart wristwatch to the wrist of the user. In the movement, the smart watch is detached due to the strap card and the weakness, which causes the damage of the smart watch.
  • FIG. 3 is a schematic structural view of a preferred embodiment of the electrocardiogram monitoring apparatus of the present invention.
  • an electrocardiographic monitoring device 20 is disposed in the head 2, and the electrocardiogram monitoring is performed.
  • the device 20 includes a display screen 21, an electrocardiographic measurement electrode 22, an electrocardiographic acquisition unit 23, and a processing unit 24, and the electrocardiographic measurement electrode 22 is electrically connected to the electrocardiographic acquisition unit 23 for performing electrocardiogram through a user's finger.
  • the ECG acquisition unit 23 is electrically connected to the processing unit 24 for performing preliminary processing such as amplification, filtering, and analog-to-digital conversion on the collected ECG signals, and the processing unit 24 is configured to adopt an existing algorithm.
  • the process is converted into a standard ECG waveform and sent to the display screen 21 for display.
  • the electrocardiographic measuring electrode 22 includes a first measuring electrode 221, a second measuring electrode 222 and a third measuring electrode 223, and the display screen 21 is electrically connected to the processing unit 24, and is disposed on the meter 2
  • the first measurement electrode 221 and the second measurement electrode 222 are respectively disposed at two end regions of the display screen 21, and the third measurement electrode 223 is disposed on the reverse side of the meter head 2 and is capable of being connected to the user.
  • the third measuring electrode 223 is adhered to the wrist by using the cassette of the first strap 10 and the second strap 11 and the wrist 2 fixed to the wrist of one of the user's hands.
  • the two fingers of the other hand of the user are in contact with the first measuring electrode 221 and the second measuring electrode 222, respectively, such that the first measuring electrode 221, the second measuring electrode 222 and the third measuring electrode 223 are in the human body.
  • the measurement loop is formed to collect the human body ECG signal, and the measurement process is simple and convenient to operate, and can be reduced due to improper operation. The measurement error brought.
  • the ECG acquisition unit 23 uses the human finger as a collection point, so the detection is more convenient and faster, unlike the traditional ECG detection device, the conductive adhesive is coated, and the user is required to take off the clothes, which is convenient for the user to self-detect.
  • the ECG acquisition unit 23 can use the world's smallest ECG SOC chip BMD101 produced by Shennian Technology, which is the third-generation biosignal detection and processing on-chip device of Shennian Technology. It has an advanced analog front-end circuit and a flexible and powerful digital signal processing structure. It can collect bio-signals from uV to mV, processed by processing unit 24 using existing algorithms, and converted into standard ECG waveforms for display on display.
  • the screen 21 is for the user to view.
  • the ECG monitoring device 20 in order to transmit the collected ECG signals to the user's smart mobile terminal for viewing and storage by the user, and to the remote monitoring platform for the doctor to analyze and give health suggestions, the ECG monitoring device 20 also includes a wireless communication unit 25 and a storage unit 26, which are electrically coupled to the processing unit 24, respectively.
  • the wireless communication unit 25 can adopt an existing wireless communication module such as Bluetooth or WIFI to ensure that the smart watch can establish a wireless communication connection with a smart mobile terminal (such as a smart phone or a smart tablet), and the collected user's
  • the ECG waveform is sent to the smart mobile terminal for viewing and storage by the user, and the smart mobile terminal sends the ECG waveform to the remote monitoring platform for the doctor to analyze and give health advice.
  • the memory unit 26 may be a separate FLASH chip or an electrically erasable chip such as an EPROM for temporarily storing the ECG waveform.
  • the smart wristwatch provided by the utility model comprises a watch strap and a watch head, and an ECG monitoring device is arranged in the watch head, and the watch head is fixed on the wrist of one of the user's hands by using a strap.
  • One of the electrodes of the ECG monitoring device is attached to the wrist artery, and the two fingers of the other hand of the user respectively and the other two The electrodes are in contact, so that the electrodes of the electrocardiographic monitoring device form a measuring loop in the human body to collect the ECG signal of the human body.
  • the measuring process is simple and convenient to operate, and the measurement error caused by improper operation can be reduced.

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  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Physics & Mathematics (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Molecular Biology (AREA)
  • Veterinary Medicine (AREA)
  • Biophysics (AREA)
  • Pathology (AREA)
  • Engineering & Computer Science (AREA)
  • Biomedical Technology (AREA)
  • Cardiology (AREA)
  • Medical Informatics (AREA)
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  • Measurement And Recording Of Electrical Phenomena And Electrical Characteristics Of The Living Body (AREA)

Abstract

一种智能腕表,包括表带(1)和表头(2),在表头(2)内设置一心电监测装置(20),心电监测装置(20)的心电测量电极(22)包括第一测量电极(221)、第二测量电极(222)和第三测量电极(223),第一测量电极(221)和第二测量电极(222)分别设置于显示屏(21)的两端区域,第三测量电极(223)设置于表头(2)反面且与用户的手腕接触的区域,在使用时,通过表带(1)将表头(2)固定于用户其中一只手的手腕上,将第三测量电极(223)紧贴于手腕动脉,用户另外一只手的两个手指分别与第一测量电极(221)和第二测量电极(222)接触,使得第一测量电极(221)、第二测量电极(222)和第三测量电极(223)在人体中形成测量回路来采集人体心电信号。

Description

说明书 发明名称:智能腕表
技术领域
[0001] 本实用新型涉及体征监测技术领域, 尤其涉及一种智能腕表。
背景技术
[0002] 对于心脑血管病患者来说, 经常检测自身心率、 心电数据是非常必要的。 心电 监测仪用来记录心脏活动吋所产生的生理电信号的仪器, 由于心电图诊断技术 成熟、 可靠、 操作简便, 价格适中, 对病人无损伤等优点, 已成为各级医院中 最普及的医用电子仪器之一。 不过对于大部分人来说, 为了测试一个心电图而 跑去医院非常不值。 虽然目前市面上有很多智能腕表 (手表) 可以检测用户心 率、 心电数据, 但是心电数据的测量过程操作繁琐, 操作不当会导致测量误差 较大。
技术问题
[0003] 本实用新型的主要目的在于提供一种智能腕表, 将心电监测功能集成于智能腕 表上, 且操作简便, 能够降低由于操作不当带来的测量误差。
问题的解决方案
技术解决方案
[0004] 为实现上述目的, 本实用新型提供了一种智能腕表。
[0005] 所述智能腕表包括表带和表头, 所述表带包括第一表带和第二表带, 所述第一 表带与所述第二表带卡和后将所述表头固定于用户的手腕上, 所述表头内设置 一心电监测装置, 所述心电监测装置包括显示屏、 心电测量电极、 心电采集单 元和处理单元, 其中:
[0006] 所述显示屏与所述处理单元电连接, 设置于所述表头正面的中间区域;
[0007] 所述心电测量电极与所述心电采集单元电连接, 用于采集心电信号;
[0008] 所述心电采集单元与所述处理单元电连接, 用于对采集到的所述心电信号进行 放大、 滤波、 模数转化的初步处理;
[0009] 所述处理单元用于将经过初步处理的心电信号转化为标准的心电波形, 并发送 至所述显示屏进行显示。
[0010] 优选地, 所述第一表带上设置至少 2个卡槽, 所述卡槽设置为穿透所述第一表 带的空心椭圆形。
[0011] 优选地, 所述第二表带的反面上设置有与所述卡槽卡和的卡扣。
[0012] 优选地, 所述卡扣设置 2个。
[0013] 优选地, 所述第二表带的正面与所述卡扣对应的位置上设置有按钮, 所述按钮 用于辅助按下所述卡扣与所述卡槽卡和。
发明的有益效果
有益效果
[0014] 相较于现有技术, 本实用新型提供的智能腕表, 包括表带和表头, 在表头内设 置一心电监测装置, 在使用吋, 通过表带将表头固定于用户其中一只手的手腕 上, 将心电监测装置的其中一个电极紧贴于手腕动脉, 用户另外一种手的两个 手指分别与另外两个电极接触, 使得心电监测装置的电极在人体中形成测量回 路来采集人体心电信号, 测量过程操作简单且方便, 能够降低由于操作不当带 来的测量误差。
对附图的简要说明
附图说明
[0015] 图 1为本实用新型智能腕表的较佳实施例外观正面结构示意图;
[0016] 图 2为本实用新型智能腕表的较佳实施例外观背面结构示意图;
[0017] 图 3为本实用新型心电监测装置较佳实施例结构示意图。
实施该发明的最佳实施例
本发明的最佳实施方式
[0018] 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。
[0019] 参照图 1和图 2, 图 1为本实用新型智能腕表的较佳实施例外观正面结构示意图 ; 图 2为本实用新型智能腕表的较佳实施例外观背面结构示意图。
[0020] 在本实施例中, 所述智能腕表包括表带 1和表头 2, 所述表带 1包括第一表带 10 和第二表带 11, 所述第一表带 10与第二表带 11卡和后将所述表头 2固定于用户的 手腕上。 所述第一表带 10上设置至少 2个卡槽 101, 所述卡槽 101可以设置为穿透 所述第一表带 10的空心椭圆形。 所述第二表带 11的反面上设置有能够与所述卡 槽 101卡和的卡扣 111, 所述第二表带 11的正面与所述卡扣 111对应的位置上设置 有按钮 112, 所述按钮 112用于将所述卡扣 111按下与所述卡槽 101卡和。 在本实 施例中, 所述第一表带 10上共设置 8个卡槽 101, 在使用吋通过能够根据不同粗 细的手腕, 将所述卡扣 111与不同的卡槽 101进行卡和。 在本实施例中, 所述卡 扣 111设置 2个, 通过所述 2个卡扣 111与对应的 2个卡槽 101卡和, 牢固地将所述 智能腕表固定于用户的手腕上, 避免在运动中由于表带卡和不牢固而使得智能 腕表脱落, 导致智能腕表损坏的情况发生。
[0021] 图 3所示为本实用新型心电监测装置较佳实施例结构示意图, 参照图 1、 图 2和 图 3, 所述表头 2内设置一心电监测装置 20, 所述心电监测装置 20包括显示屏 21 、 心电测量电极 22、 心电采集单元 23和处理单元 24, 所述心电测量电极 22与所 述心电采集单元 23电连接, 用于通过用户的手指进行心电采集, 所述心电采集 单元 23与所述处理单元 24电连接, 用于对采集到的心电信号进行放大、 滤波、 模数转化等初步处理, 所述处理单元 24用于采用现有算法处理, 转化为标准的 心电波形, 并发送至所述显示屏 21进行显示。
[0022] 所述心电测量电极 22包括第一测量电极 221, 第二测量电极 222和第三测量电极 223 , 所述显示屏 21与所述处理单元 24电连接, 设置于所述表头 2正面的中间区 域, 所述第一测量电极 221和第二测量电极 222分别设置于所述显示屏 21的两端 区域, 所述第三测量电极 223设置于所述表头 2反面且能够与用户的手腕接触的 区域。 在使用吋, 通过所述第一表带 10和第二表带 11的卡和将所述表头 2固定于 用户其中一只手的手腕上, 将所述第三测量电极 223紧贴于手腕动脉, 用户另外 一只手的两个手指分别与所述第一测量电极 221和第二测量电极 222接触, 使得 所述第一测量电极 221、 第二测量电极 222和第三测量电极 223在人体中形成测量 回路来采集人体心电信号, 测量过程操作简单且方便, 能够降低由于操作不当 带来的测量误差。
[0023] 所述心电采集单元 23以人的手指为采集点, 因此检测起来更方便更快捷, 不像 传统心电检测设备一样涂满导电胶, 并要求用户脱掉衣服, 方便用户自我检测 。 在本实施例中, 所述心电采集单元 23可以采用神念科技生产的世界上最小的 心电 SOC芯片 BMD101, 该心电 SOC芯片是神念科技第三代生物信号检测和处理 的片上设备, 它具有先进的模拟前端电路和灵活强大的数字信号处理结构, 它 可以采集从 uV到 mV的生物信号, 通过处理单元 24采用现有算法处理, 转化为标 准的心电波形, 从而显示在显示屏 21上供用户査看。
[0024] 参照图 3, 为了将采集到的心电信号发送至用户的智能移动终端供用户査看和 存储, 以及发送至远程监控平台供医生分析和给出健康建议, 所述心电监测装 置 20还包括无线通讯单元 25和存储单元 26, 所述无线通讯单元 25和存储单元 26 分别与所述处理单元 24电连接。 所述无线通讯单元 25可以采用蓝牙、 WIFI等现 有的无线通讯模块, 确保所述智能腕表能够与智能移动终端 (例如智能手机、 智能平板电脑) 建立无线通讯连接, 将采集到的用户的心电波形发送至智能移 动终端供用户査看和存储, 所述智能移动终端再将所述心电波形发送至远程监 控平台供医生分析和给出健康建议。 所述存储单元 26可以采用单独的 FLASH芯 片, 也可以采用 EPROM等电可擦除芯片, 用来暂存所述心电波形。
[0025] 应当理解, 本实用新型所涉及的技术方案可以单独做成带有纯心电监测功能的 智能腕表, 也可以将其集成于现有的具有其他体征监测功能的智能腕表中, 在 此不做限制。
[0026] 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
[0027] 本实用新型提供的智能腕表, 包括表带和表头, 在表头内设置一心电监测装置 , 在使用吋, 通过表带将表头固定于用户其中一只手的手腕上, 将心电监测装 置的其中一个电极紧贴于手腕动脉, 用户另外一种手的两个手指分别与另外两 个电极接触, 使得心电监测装置的电极在人体中形成测量回路来采集人体心电 信号, 测量过程操作简单且方便, 能够降低由于操作不当带来的测量误差。

Claims

权利要求书
[权利要求 1] 一种智能腕表, 所述智能腕表包括表带和表头, 其特征在于, 所述表 带包括第一表带和第二表带, 所述第一表带与所述第二表带卡和后将 所述表头固定于用户的手腕上, 所述表头内设置一心电监测装置, 所 述心电监测装置包括显示屏、 心电测量电极、 心电采集单元和处理单 元, 其中:
所述显示屏与所述处理单元电连接, 设置于所述表头正面的中间区域 所述心电测量电极与所述心电采集单元电连接, 用于采集心电信号; 所述心电采集单元与所述处理单元电连接, 用于对采集到的所述心电 信号进行放大、 滤波、 模数转化的初步处理;
所述处理单元用于将经过初步处理的心电信号转化为标准的心电波形 , 并发送至所述显示屏进行显示。
[权利要求 2] 如权利要求 1所述的智能腕表, 其特征在于, 所述第一表带上设置至 少 2个卡槽, 所述卡槽设置为穿透所述第一表带的空心椭圆形。
[权利要求 3] 如权利要求 2所述的智能腕表, 其特征在于, 所述第二表带的反面上 设置有与所述卡槽卡和的卡扣。
[权利要求 4] 如权利要求 3所述的智能腕表, 其特征在于, 所述卡扣设置 2个。
[权利要求 5] 如权利要求 3所述的智能腕表, 其特征在于, 所述第二表带的正面与 所述卡扣对应的位置上设置有按钮, 所述按钮用于辅助按下所述卡扣 与所述卡槽卡和。
PCT/CN2016/086953 2016-06-23 2016-06-23 智能腕表 WO2017219325A1 (zh)

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