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    • 16. 发明专利
    • FR2507089B1
    • 1985-11-29
    • FR8206793
    • 1982-04-15
    • EMPI INC
    • A61N1/32A61N1/34A61N1/36
    • A transcutaneous electrical nerve stimulation apparatus having stimulus electrical pulses modulated in time and intensity to stimulate afferent and efferent nerves and cause the release of endogenous opiates which suppress pain. An astable pulse generator provides a first train of pulses at a selected repetition rate. A monostable pulse generator connected to receive the first train of pulses supplies a second pulse train having the frequency of the first train. The width of the pulses of the first train is varied over a predetermined range. A second monostable pulse generator connected to pulse amplifiers receives the first and second train of pulses and provides a supply pulse to the patient. Adjustable pulse modulators connected to the second pulse generators function to simultaneously increase the repetition rate of the first train of pulses and decrease the amplitude and pulse width of the second train of pulses, the change being between two predetermined levels for all three parameters with the magnitude of change, i.e. the percent of modulation being determined by the setting of the patient rate, and pulse width control.
    • 19. 发明申请
    • METHOD OF MAKING AN INCONTINENCE ELECTRODE
    • 制造不连续电极的方法
    • WO1995029733A1
    • 1995-11-09
    • PCT/US1995005328
    • 1995-04-28
    • EMPI, INC
    • EMPI, INCMALEWICZ, Andrzej
    • A61N01/05
    • A61N1/0524A61N1/0512
    • A method of manufacturing an electrode (10) comprises molding a plurality of spaced conductive sections (20, 22, 24) which include a pin receptacle (42, 44, 46) for receiving a connector pin (P1, P2, P3) of a wire harness (16). A skeleton of conductive sections (20, 22, 24), connector pins (P1, P2, P3) and lead wires (L1, L2, L3) are placed in a mold which defines the electrode (10). A non-conductive polymer is molded to the skeleton to form an integral electrode (10) having an elongated body (12) of conductive sections (20, 22, 24) separated by non-conductive sections (26, 28). Multiple durometer polymers may be used to achieve desired levels of flexibility of the electrode (10).
    • 制造电极(10)的方法包括模制多个间隔开的导电部分(20,22,24),该导电部分包括一个销插座(42,44,46),用于接收一个连接器针脚(P1,P2,P3) 线束(16)。 将导电部分(20,22,24),连接器针脚(P1,P2,P3)和引线(L1,L2,L3)的骨架放置在限定电极(10)的模具中。 非导电聚合物被模制到骨架上以形成具有由非导电部分(26,28)分开的导电部分(20,22,24)的细长主体(12)的整体电极(10)。 可以使用多重硬度聚合物来实现电极(10)的期望水平的柔性。
    • 20. 发明申请
    • RANGE-OF-MOTION SPLINT WITH ECCENTRIC SPRING
    • 带偏心弹簧的运动范围分离
    • WO1995023568A1
    • 1995-09-08
    • PCT/US1995002450
    • 1995-02-28
    • EMPI, INC.
    • EMPI, INC.MALEWICZ, AndrzejBELMAN, Yuri
    • A61F05/00
    • A61F5/0127A61F5/0125A61F5/013A61F2005/0139A61F2005/016A61F2005/0167A61F2005/0179
    • This invention is a range of motion splint (10) for applying relatively constant torque across a joint undergoing rehabilitative therapy. The splint (10) includes a first brace section (12) configured to engage a portion of a patient's body on a first side of a joint, and a second brace section (14) configured to engage a portion of the body on a second side of the joint. A first arm (20) extends from the first brace section (12) and a second arm (28) extends from the second brace section (14). The first and second arms (20, 28) are connected by a dual axis pivot mechanism (36) for rotational motion about both a primary joint axis (40) and a lateral axis (46) generally perpendicular to the primary joint axis (40). A first spring engaging mount (64) is located on the first arm (20) at a position spaced from the primary joint axis (36). A second spring engaging mount (70) is located on the second arm (28) at a position spaced from the primary joint axis (40). An eccentrically mounted spiral spring (60) has an inner end (62) mounted to the first spring engaging mount (64), and an outer end (68) mounted to the second spring engaging mount (70). The amount of torque between the brace sections (12, 14) can be adjusted by a torque adjusting mechanism (66, 78, 82).
    • 本发明是一种运动夹板(10)的范围,用于在经历康复治疗的关节上施加相对恒定的扭矩。 夹板(10)包括第一支撑部分(12),其构造成接合在关节的第一侧上的患者身体的一部分,以及第二支撑部分(14),其构造成在身体的第二侧 的联合。 第一臂(20)从第一支撑部分(12)延伸,第二臂(28)从第二支撑部分(14)延伸。 第一和第二臂(20,28)通过双轴枢转机构(36)连接,用于围绕主接头轴线(40)和大致垂直于主接头轴线(40)的横向轴线(46)旋转运动, 。 第一弹簧接合座(64)在与主接头轴线(36)间隔开的位置处位于第一臂(20)上。 第二弹簧接合座(70)在与主接头轴线(40)间隔开的位置处位于第二臂(28)上。 偏心安装的螺旋弹簧(60)具有安装到第一弹簧接合座(64)的内端(62)和安装到第二弹簧接合座(70)的外端(68)。 支撑部分(12,14)之间的扭矩量可以通过扭矩调节机构(66,78,82)来调节。