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    • 2. 发明申请
    • Wearable device for bioelectrical interaction with motion artifact correction means
    • 用于与运动伪像校正装置进行生物电相互作用的穿戴装置
    • US20060149146A1
    • 2006-07-06
    • US10537886
    • 2003-12-08
    • Ralf SchmidtOlaf SuchChristian ReichingerMichael PerkuhnHarald ReiterAndras MontvayJosef Lauter
    • Ralf SchmidtOlaf SuchChristian ReichingerMichael PerkuhnHarald ReiterAndras MontvayJosef Lauter
    • A61B5/04
    • A61B5/02A61B5/0006A61B5/02438A61B5/02444A61B5/0404A61B5/0408A61B5/6843A61B2562/02A61B2562/0247A61B2562/046
    • The invention relates to a wearable device arranged for enabling a bioelectrical interaction with an individual when being brought into contact with the individual's skin I, said device comprising electrodes 2 arranged to carry out said interaction by means of a first electrical signal, said electrodes comprise motion artifact detection means 4. The electrode assembly 1 comprises the electrode 2 arranged to carry out a bioelectrical interaction with the individual by means of measuring an electrical signal on the body of the individual I and/or applying an electrical signal to the body of the individual. In order to enable said bioelectrical interaction the electrode 2 is provided with an electrical cable 2a. According to the invention, the electrode 2 is arranged with a pressure sensor 4. The pressure sensor 4 is arranged to measure a normal force component of an external force applied to the electrode due to movement of the individual. Preferably the pressure sensor 4 is a force/pressure sensitive resistor or a capacitive pressure sensor. The pressure sensor is arranged to produce an electrical signal, referred to as the second signal, the magnitude of the second signal being proportional to the pressure load. The pressure sensor 4 is arranged with cables 4a, 4b for purposes of signal processing.
    • 本发明涉及一种穿戴式装置,其被布置成当与个人的皮肤I接触时能够与个人进行生物电相互作用,所述装置包括布置成通过第一电信号执行所述相互作用的电极2,所述电极包括运动 电极组件1包括布置成通过测量个体I的身体上的电信号和/或向个体的身体施加电信号来与个体进行生物电相互作用的电极2 。 为了使所述生物电相互作用,电极2设置有电缆2a。 根据本发明,电极2配置有压力传感器4.压力传感器4布置成测量由于个体的移动而施加到电极的外力的法向力分量。 优选地,压力传感器4是力/压敏电阻器或电容式压力传感器。 压力传感器被布置成产生称为第二信号的电信号,第二信号的幅度与压力负载成正比。 为了信号处理的目的,压力传感器4配置有电缆4a,4b。
    • 3. 发明申请
    • Monitoring Device And A Motnitoring Body-Wear
    • 监控装置和运动身体穿戴
    • US20080194917A1
    • 2008-08-14
    • US10595876
    • 2004-11-24
    • Jens MuehlsteffHarald ReiterAndras MontvayJosef LauterOlaf SuchRalf SchmidtMichael PerkuhnFabian Kohler
    • Jens MuehlsteffHarald ReiterAndras MontvayJosef LauterOlaf SuchRalf SchmidtMichael PerkuhnFabian Kohler
    • A61B5/00
    • A61B5/6843A61B5/00
    • A monitoring device (21) arranged to measure a signal (S1) representative of a physiological condition of the individual by means of a suitably arranged sensor (22) and to automatically modify a contact pressure (P) of said sensor meeting real-time requirements. For this purpose the sensor (22) is supported by a piece of elastic material, the monitoring device further comprising an actuator (27) arranged to interact with the piece of elastic material upon receipt of a control signal (CS) from a control unit (25). The control unit (25) is arranged to analyze the signal (S1) from the sensor (22) and to decide on an alteration of the contact pressure (P). For this purpose the control means (25) comprises a logic unit (25a) arranged to carry out a suitable signal analysis. Preferably, the monitoring device (21) is arranged with a further sensor (23), a signal (S3) of which is also provided for analysis to the control unit (25).
    • 一种监视装置(21),其被布置成通过适当布置的传感器(22)来测量代表个人的生理状态的信号(S1),并且自动修改所述传感器的接触压力(P),实时会议 要求。 为此目的,传感器(22)由一块弹性材料支撑,监测装置还包括致动器(27),该致动器被布置为当从控制单元接收到控制信号(CS)时与弹性材料相互作用 25)。 控制单元(25)被布置成分析来自传感器(22)的信号(S 1)并决定接触压力(P)的变化。 为此,控制装置(25)包括布置成执行合适的信号分析的逻辑单元(25a)。 优选地,监视装置(21)布置有另外的传感器(23),其信号(S 3)也被提供给控制单元(25)进行分析。
    • 7. 发明授权
    • Wearable device for bioelectrical interaction with motion artifact correction means
    • 用于与运动伪像校正装置进行生物电相互作用的穿戴装置
    • US07395105B2
    • 2008-07-01
    • US10537886
    • 2003-12-08
    • Ralf SchmidtOlaf SuchChristian ReichingerMichael PerkuhnHarald ReiterAndras MontvayJosef Lauter
    • Ralf SchmidtOlaf SuchChristian ReichingerMichael PerkuhnHarald ReiterAndras MontvayJosef Lauter
    • A61B5/04
    • A61B5/02A61B5/0006A61B5/02438A61B5/02444A61B5/0404A61B5/0408A61B5/6843A61B2562/02A61B2562/0247A61B2562/046
    • The invention relates to a wearable device arranged for enabling a bioelectrical interaction with an individual when being brought into contact with the individual's skin I, said device comprising electrodes 2 arranged to carry out said interaction by means of a first electrical signal, said electrodes comprise motion artifact detection means 4. The electrode assembly 1 comprises electrode 2 arranged to carry out a bioelectrical interaction with the individual by means of measuring an electrical signal on the body of the individual I and/or applying an electrical signal to the body of the individual. In order to enable said bioelectrical interaction the electrode 2 is provided with an electrical cable 2a. According to the invention, the electrode 2 is arranged with a pr 4. The pressure sensor 4 is arranged to measure a normal force component of an external force applied to the electrode due to movement of the individual. Preferably the pressure sensor 4 is a force/pressure sensitive resistor or a capacitive pressure sensor. The pressure sensor is arranged to produce an electrical signal, referred to as the second signal, the magnitude of the second signal being proportional to the pressure load. The pressure sensor 4 is arranged with cables 4a, 4b for purposes of signal proce
    • 本发明涉及一种穿戴式装置,其被布置成当与个人的皮肤I接触时能够与个人进行生物电相互作用,所述装置包括布置成通过第一电信号执行所述相互作用的电极2,所述电极包括运动 电极组件1包括布置成通过测量个体I的主体上的电信号和/或向个体的身体施加电信号来执行与个人的生物电相互作用的电极2。 为了使所述生物电相互作用,电极2设置有电缆2a。 根据本发明,电极2设置有pr 4.压力传感器4被布置成测量由于个体的移动而施加到电极的外力的法向力分量。 优选地,压力传感器4是力/压敏电阻器或电容式压力传感器。 压力传感器被布置成产生称为第二信号的电信号,第二信号的幅度与压力负载成正比。 为了信号处理的目的,压力传感器4布置有电缆4a,4b
    • 10. 发明申请
    • System and Method for Detecting and Predicting a Syncope Event
    • 用于检测和预测晕厥事件的系统和方法
    • US20080228088A1
    • 2008-09-18
    • US12064998
    • 2006-08-23
    • Xavier AubertJens MuhlsteffMichael Perkuhn
    • Xavier AubertJens MuhlsteffMichael Perkuhn
    • A61B5/02
    • A61B5/6833A61B5/0002A61B5/02028A61B5/02438A61B5/026A61B5/0285A61B5/029A61B5/721A61B5/7275A61B5/7282G16H50/30
    • The present invention relates to a system (1) and method for detecting and predicting a syncope event. Furthermore the invention relates to a computer program (13) to be executed in a computer (5, 17), said computer (5, 17) being part of a system (1) for detecting and predicting a syncope event. It is an object of the present invention to provide a simple and reliable technique for detecting and predicting the occurrence of syncope events. This object is achieved according to the invention by a method of detecting and predicting a syncope event, the method comprising the steps of continuously obtaining (100) the pulse wave patterns (3) from the upper vascular system of the user (4), determining (101) from the pulse wave patterns (3) a measure (21) of the blood flow to the user's brain, and generating (103) an alarm signal (6), if the blood flow measure indicates the future occurrence of a syncope.
    • 本发明涉及一种用于检测和预测晕厥事件的系统(1)和方法。 此外,本发明涉及要在计算机(5,17)中执行的计算机程序(13),所述计算机(5,17)是用于检测和预测晕厥事件的系统(1)的一部分。 本发明的目的是提供一种用于检测和预测晕厥事件发生的简单可靠的技术。 根据本发明,通过检测和预测晕厥事件的方法来实现本发明的目的,该方法包括以下步骤:从用户(4)的上部血管系统连续地获取(100)脉搏波图形(3),确定 (101)从所述脉搏波形图案(3)到所述用户脑部的血流的测量(21),并且如果所述血流测量指示将来发生晕厥,则产生(103)报警信号(103)。