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    • 22. 发明申请
    • BIOMETRIC BELT CONNECTOR
    • 生物胶带连接器
    • WO2011161701A2
    • 2011-12-29
    • PCT/IS2011/050010
    • 2011-06-24
    • NOX MEDICALHERMANNSSON, Kormakur Hlini
    • HERMANNSSON, Kormakur Hlini
    • A61B5/0428
    • H01R13/46A61B5/00A61B5/0004A61B5/04286A61B5/0806A61B5/1135A61B5/6804A61B2562/227H01R11/22H01R13/6591H01R43/00H01R43/18Y10T29/49208
    • A belt connector for electrically connecting an electrode belt to a biometric device to be carried on a human or animal body. The belt connector is made from one single piece which can be economically manufactured in order to function as a single-use consumable, to be used with a matching biometric device. The connector comprises a molded plastic frame having a shaped circular or semi-circular hole with radial flexibility to function as a female snap button fastener for receiving and fastening on the front side of the frame a male snap protrusion. The belt connector further comprises fastening means for fastening to the frame a belt end of said electrode belt, and a member adjacent to said snap fastener hole to engage an electrode wire end electrically connected to said belt such that said end is in contact with said hole and comes in electrical contact with a conducting male snap fastener inserted in said hole. The belt connector and belt is configured such that a person wearing the belt under operation is insulated from current running through the belt, in order to meet existing standards for medical devices.
    • 一种带式连接器,用于将电极带电连接到要携带在人或动物身上的生物测定装置。 皮带连接器由一个单件制成,可以经济地制造,以便用作一次性消费品,以与匹配的生物测定装置一起使用。 连接器包括模制塑料框架,其具有成形的圆形或半圆形孔,其具有径向柔性,用作用于在框架的前侧上接收并紧固凸形卡扣突起的母扣式紧固件。 带连接器还包括紧固装置,用于将所述电极带的带端紧固到框架,以及邻近所述卡扣紧固孔的构件,以接合电连接到所述带的电极线端,使得所述端部与所述孔接触 并且与插入所述孔中的导电插入式紧固紧固件电接触。 皮带连接器和皮带被配置为使得运行中的皮带佩戴者与穿过皮带的电流绝缘,以满足医疗装置的现有标准。
    • 29. 发明申请
    • PRECORDIAL CABLE APPARATUS
    • PRECORDIAL电缆设备
    • WO2003070097A1
    • 2003-08-28
    • PCT/IB2003/000666
    • 2003-02-24
    • TELEMEDIC HOLDINGS PLCBOTTEN, John
    • BOTTEN, John
    • A61B5/0408
    • A61B5/04085A61B5/0416A61B5/04286A61B2562/222
    • An electrocardiograph (ECG) precordial cable apparatus for a twelve lead ECG system, said cable apparatus including: an elongate, flexible, lightweight length of multi-core conductor cable adapted for substantially equal resistance to flexure in all directions relative to the longitudinal axis of said conductor cable; six electrode connectors distributed at substantially equal spacing along a portion of said multi-core conductor cable and disposed along the longitudinal axis of said conductor cable; a distal electrode connector forming a first end of said multi-core conductor cable and core connector means forming a second end of said conductor cable; said cable apparatus arranged to conduct electrical signals derived from electrodes, connected to said electrode connectors, to said core connector means.
    • 一种用于十二导联心电图系统的心电图仪ECG心电图电缆装置,所述电缆装置包括:细长的,柔性的,轻质的多芯导体电缆长度,其适于在相对于所述导体电缆的纵向轴线的所有方向上基本相等的抗弯曲性 六个电极连接器沿着所述多芯导体电缆的一部分以基本相等的间隔分布,并且沿着所述导体电缆的纵向轴线设置,形成所述多芯导体电缆的第一端的远端电极连接器和形成第二个 所述电缆装置的端部被布置成将连接到所述电极连接器的电极的电信号传导到所述芯连接器装置。
    • 30. 发明申请
    • MEASUREMENT METHOD AND MEASUREMENT APPARATUS FOR BIOELECTRIC IMPEDANCE AND HEALTH MANAGEMENT GUIDELINE ADVISING APPARATUS COMPRISING THE MEASUREMENT APPARATUS
    • 用于放射性阻抗和健康管理指南的测量方法和测量装置建议包括测量装置的装置
    • WO02024069A1
    • 2002-03-28
    • PCT/JP2001/008080
    • 2001-09-17
    • A61B5/05A61B5/0408A61B5/0416A61B5/0428A61B5/0478A61B5/0492A61B5/053
    • A61B5/0537A61B5/0416A61B5/04286A61B5/4872A61B5/6824A61B5/6828A61B2562/0209A61B2562/043G06F19/00
    • Convenient and precise sensing of information of panniculus (fatty layers, muscular layers, osseous tissue layers, etc.) in the depth direction immediately under a living body surface. In one working mode, a linear layout of a pair of current-carrying electrodes (1a, 1b) and a pair of probes (2a, 2b) in contact with the surface of a living body (5) so that the smaller area probe (2a) may be close to the smaller area current-carrying electrode (1a). A voltage between the probes (2a, 2b) is sensed by a sensor (4) with a constant current flowing between the current-carrying electrodes (1a, 1b) from a high-frequency current source (3). The probe (2a) comes to be at a potential almost equal to a contact position (P3) of the current-carrying electrode (1a), and the probe (2b) comes to be at a potential almost equal to that of the deepest position (P1) of a longitudinal region (5c) inside the living body (5). Therefore, the potential difference between both top and bottom ends of the longitudinal region (5c) is measured by the sensor (4), so that the bioelectric impedance (Zv) of the longitudinal portion (5c) is calculated from this potential difference and a current value (i).
    • 在生物体表面下方的深度方向上方便和精确地检测小叶(脂肪层,肌层,骨组织层等)的信息。 在一个工作模式中,一对载流电极(1a,1b)和与活体(5)的表面接触的一对探针(2a,2b)的线性布局使得较小区域探针 2a)可以靠近较小面积的载流电极(1a)。 探针(2a,2b)之间的电压由传感器(4)感测,其中恒定电流从高频电流源(3)流到载流电极(1a,1b)之间。 探针(2a)的电位几乎等于载流电极(1a)的接触位置(P3),探针(2b)的电位几乎等于最深位置 (5)内的纵向区域(5c)的前端(P1)。 因此,通过传感器(4)测量纵向区域(5c)的顶端和底端之间的电位差,从而根据该电位差计算纵向部分(5c)的生物电阻抗(Zv),并且 当前值(i)。