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    • 2. 发明授权
    • Volumetrically efficient battery for implantable medical devices
    • 用于植入式医疗设备的体积有效的电池
    • US06040082A
    • 2000-03-21
    • US903297
    • 1997-07-30
    • David P. HaasWilliam G. HowardAnn M. CrespiAnthony R. RorvickSteven RockowAndrew J. Ries
    • David P. HaasWilliam G. HowardAnn M. CrespiAnthony R. RorvickSteven RockowAndrew J. Ries
    • A61N1/378A61N1/39H01M2/02H01M2/04H01M2/10H01M6/10H01M6/16H01M10/04H01M10/05H01M4/02
    • H01M2/027A61N1/378H01M10/0431H01M2/0232H01M2/0275H01M2/0426H01M2/1022H01M6/10A61N1/3956H01M10/05H01M2/0217H01M6/16
    • A high rate battery having a coiled electrode assembly housed in a case that efficiently utilizes the space available in many implantable medical devices is disclosed. The battery case provides a planar surface opposite an arcuate surface to allow for the close abutting of other components located within the implantable device while also providing for efficient location of the battery within an arcuate edge of the device. The battery cases include at least three planar sides extending between a top and a base of the battery case, wherein the arcuate side is located directly opposite one of the planar sides. The battery case may form a prismatic solid shape with one arcuate surface and five planar surfaces. The batteries may include a coiled electrode assembly including an anode and a cathode; electrolyte; and a case liner containing the electrode assembly. The coiled electrode assembly can have an elliptical cross-section including two arcuate ends, wherein one of the arcuate ends is nested within an arcuate side of the case. The batteries are capable of delivering about 20 joules or more in about 20 seconds or less; and may also be capable of delivering about 20 joules or more at least twice in a period of about 30 seconds. Also included are implantable defibrillator devices incorporating the batteries and methods of manufacturing the batteries including drawing the battery case from metal.
    • 公开了一种高速电池,其具有容纳在有效利用许多可植入医疗装置中的空间的壳体中的盘绕电极组件。 电池壳提供与弓形表面相对的平坦表面,以允许位于可植入装置内的其它部件的紧密邻接,同时还提供电池在装置的弓形边缘内的有效定位。 电池壳体包括在电池壳体的顶部和底部之间延伸的至少三个平面侧,其中弧形侧面位于与一个平面侧面正对的位置。 电池盒可以形成具有一个弧形表面和五个平坦表面的棱柱形实体形状。 电池可以包括包括阳极和阴极的线圈电极组件; 电解液 以及包含电极组件的壳体衬里。 线圈电极组件可以具有包括两个弓形端部的椭圆形横截面,其中弓形端部之一嵌套在壳体的弧形侧内。 电池能够在约20秒以内提供约20焦耳或更多; 并且还可以在约30秒的时间内能够输送约20焦耳或更多至少两次。 还包括结合有电池的可植入除颤器装置和制造电池的方法,包括从金属中拉出电池壳体。
    • 9. 发明授权
    • Implantable medical electrical device connector module assemblies and methods
    • 植入式医疗电气设备连接器模块组件及方法
    • US08945451B2
    • 2015-02-03
    • US13473965
    • 2012-05-17
    • Andrew J. RiesJeevan M. PrasannakumarRichard P. Nelson
    • Andrew J. RiesJeevan M. PrasannakumarRichard P. Nelson
    • B29C45/14
    • B29C45/1671A61N1/3754B29C45/14065B29C45/14639B29L2031/753
    • Methods for forming an insulative body of an implantable medical device connector module assembly employ an injection molding process, whereby first and second shots of insulative material form core and an overlay portions, respectively. In some methods, a panel portion of an electrical component is mounted between opposing surfaces of a mold such that a finger-like portion of the component extends into a cavity of the mold, with a first side thereof touching another surface of the mold and a second, opposite side exposed within the cavity; following first shot injection, the core portion captures the finger-like portion in relatively rigid relation thereto. When two types of connector bores are formed, a color indicator may be engaged with a feature of the core portion that is located in proximity to a connector bore of the first type, and then the overlay portion is formed over the indicator.
    • 用于形成可植入医疗器械连接器模块组件的绝缘体的方法采用注射成型工艺,其中第一和第二隔离材料分别形成芯部和覆盖部分。 在一些方法中,电气部件的面板部分安装在模具的相对表面之间,使得部件的指状部分延伸到模具的空腔中,其第一侧接触模具的另一表面,并且 第二,相对侧暴露在空腔内; 在第一次注射之后,芯部分以相对刚性的关系捕获手指状部分。 当形成两种类型的连接器孔时,颜色指示器可以与位于第一类型的连接器孔附近的芯部分的特征接合,然后覆盖部分形成在指示器之上。