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    • 10. 发明授权
    • Wire configuration and method of making for an implantable medical apparatus
    • 电线配置和可植入医疗器械的制造方法
    • US08639352B2
    • 2014-01-28
    • US12419082
    • 2009-04-06
    • Ling WangBernard Q. Li
    • Ling WangBernard Q. Li
    • A61N1/04
    • A61N1/05A61N1/0472A61N1/0488A61N1/0551Y10T29/49002
    • A filar includes an inner conductive core that is formed of a low-resistivity material such as silver having a resistivity of less than 20 μΩ per centimeter. A conductive coil is provided around the core to form a filar. This coil is formed of a biocompatible alloy or super alloy having an ultimate tensile strength (UTS) of between 150 kilo pounds per square inch (ksi) and 280 ksi at room temperature. Examples of such alloys include CoCrMo, CoFeCrMo, and CoFeNiCrMo. In one specific embodiment, the alloy is MP35N (CoNiCrMo), which may be low-titanium (“low-ti”) MP35N. One or more such filars may be included within a wire. This wire may be carried by an implantable medical apparatus such as a lead, lead extension, or catheter. The wire may electrically couple elements such as connector electrodes to conducting electrodes or sensors.
    • 丝状物包括由诸如银的低电阻率材料形成的内导电芯,其电阻率小于每平方厘米20微米。 在芯周围设置导电线圈以形成丝状体。 该线圈由在室温下具有150千磅/平方英寸(ksi)和280ksi之间的极限拉伸强度(UTS)的生物相容性合金或超级合金形成。 这种合金的实例包括CoCrMo,CoFeCrMo和CoFeNiCrMo。 在一个具体实施方案中,合金是MP35N(CoNiCrMo),其可以是低钛(“低钛”)MP35N。 一根或多根这样的丝状物可以包括在线内。 该线可以由诸如铅,引线延伸或导管的可植入医疗设备携带。 导线可以将诸如连接器电极的元件电耦合到导电电极或传感器。