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    • 81. 发明公开
    • 전위 치료 장치
    • 电力电位处理装置
    • KR1020120079463A
    • 2012-07-12
    • KR1020127004489
    • 2010-07-22
    • 가부시키가이샤 하쿠쥬세이 가가쿠겡큐쇼
    • 오가와유키오
    • A61N1/04A61N1/36
    • A61N1/08A61N1/36014A61N1/04A61N1/10A61N1/18
    • 고도의 전기 절연을 필요로 하지 않고, 고압 변압기의 2차측으로부터 저전압 전원을 용이하게 얻는 것이 가능한 전위 치료 장치를 제공한다. 고압 변압기(51)로부터 출력되는 고전압을 이용하여 전계를 형성해 치료를 행하는 전위 치료 장치(1)에 있어서, 고압 변압기(15)의 2차측에 전위가 다른 복수의 출력 단자(52, 53)를 형성하고, 복수의 출력 단자 중 고전위가 되는 출력 단자(53)를 풋 레스트(3)의 치료용 전극(4)에 접속하며, 고전위가 되는 출력 단자(53)에 대하여 저전위차가 되는 출력 단자(52)에 파일럿 램프(6)를 접속한다.
    • 公开了一种电位处理装置,其中可以容易地从高压变压器的次级侧获得低压电源,而不需要先进的电绝缘。 具体公开了一种用于形成电场以使用从高压变压器(51)输出的高电压进行处理的电位处理装置(1),其中形成具有不同电位的多个输出端子(52,53) 在高压变压器(51)的次级侧,从多个输出端子变为高电位的输出端子(53)与脚踏板(3)的治疗电极(4)连接, 指示灯(6)连接到输出端子(52),相对于输出端子(53)成为高电位的低电位差。
    • 87. 发明公开
    • 인감 몸의 신경의 경피성 자극 시스템
    • 人体神经传导性刺激系统
    • KR1020090040342A
    • 2009-04-23
    • KR1020097003252
    • 2007-07-09
    • 셀보메드 게엠베하
    • 디트리히,슈테판
    • A61N1/372
    • A61N1/36014A61N1/0456A61N1/08A61N1/37217
    • The invention relates to a system (1) for the transcutaneous stimulation of a nerve of the human body. Said system comprises a device (2) having at least one stimulation electrode (3) and at least one reference electrode (4) for transcutaneous nerve stimulation. The at least one stimulation electrode (3) and the at least one reference electrode (4) are connected to a control unit (5) and can be supplied by the latter with an electric current. The at least one stimulation electrode (3) and the at least one reference electrode (4) are arranged in or on a housing (6) that is adapted to be fastened on, in or behind the human ear. In order to increase functionality, the system (1) also comprises a programming device (7) which can be used to define the profile of at least one stimulation parameter (I, U, t, f) for the nerve stimulation. Said device (7) comprises a programmable control element (8) having a memory element (9) which is connected to the control unit (5) of the device (2) and in which a program can be stored that comprises the profile of at least one stimulation parameter (I, U, t, f), at least one temporary communication link (10, 10', 10'') for transmitting information, especially data for the stimulation parameters (I, U, t, f,), being establishable between the programming device (7) and the control element (8).
    • 本发明涉及一种用于经皮刺激人体神经的系统(1)。 所述系统包括具有至少一个刺激电极(3)和用于经皮神经刺激的至少一个参比电极(4)的装置(2)。 所述至少一个刺激电极(3)和所述至少一个参考电极(4)连接到控制单元(5),并且可以由所述至少一个参考电极(5)由电流供应。 所述至少一个刺激电极(3)和所述至少一个参考电极(4)被布置在壳体(6)中或壳体(6)上,所述壳体适于紧固在人耳内或之后。 为了增加功能,系统(1)还包括编程设备(7),其可用于定义用于神经刺激的至少一个刺激参数(I,U,t,f)的轮廓。 所述装置(7)包括具有存储元件(9)的可编程控制元件(8),所述存储器元件(9)连接到所述装置(2)的控制单元(5),并且其中可以存储包括在 至少一个刺激参数(I,U,t,f),用于传送信息的至少一个临时通信链路(10,10',10“),特别是刺激参数(I,U,t,f, ,可在编程装置(7)和控制元件(8)之间建立。
    • 88. 发明公开
    • 임피던스 캘리브레이션을 위한 기준 카테터
    • 用于阻抗校准的参考导线
    • KR1020070119533A
    • 2007-12-20
    • KR1020070057817
    • 2007-06-13
    • 바이오센스 웹스터 인코포레이티드
    • 고바리아사프알트만안드레스클라우디오에프라스야론
    • A61B5/05
    • A61B5/06A61B5/063A61B2034/2053A61N1/08
    • A reference catheter is provided to accurately determine a position of a target probe in real-time by measuring impedance differences between the target probe and reference probes and applying a calibration factor to the measured impedance difference. A reference probe(42) includes at least one reference electrode which is arranged at a predetermined position in a body of a user. A target probe(22) includes at least one target electrode which is attached to the body of the user. A controller(28) applies a first current between body surface electrodes and the reference electrode, while the reference probe is located at a known position, measures a first characteristic of the first current, generates an estimation of the known position by using the first characteristic, and determines a compensation factor based on a relation between the known position and the position estimation. The controller applies a second current between body surface electrodes and the reference electrode, measures a second characteristic of the second current, generates a calculated position of the target probe, and applies the compensation factor to the calculated position.
    • 提供参考导管以通过测量目标探头和参考探针之间的阻抗差异并将校准因子应用于测量的阻抗差异来实时准确地确定目标探针的位置。 参考探针(42)包括至少一个参考电极,其布置在用户体内的预定位置。 靶探针(22)包括至少一个连接到使用者身体的目标电极。 控制器(28)在体表电极和参考电极之间施加第一电流,而参考探针位于已知位置时,测量第一电流的第一特性,通过使用第一特性产生已知位置的估计 并且基于已知位置与位置估计之间的关系确定补偿因子。 控制器在体表电极和参考电极之间施加第二电流,测量第二电流的第二特性,产生目标探针的计算位置,并将补偿因子应用于计算位置。