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    • 53. 发明授权
    • Concavity of an implantable medical device
    • 可植入医疗器械的凹陷
    • US07529586B2
    • 2009-05-05
    • US10731867
    • 2003-12-09
    • Carl D. WahlstrandDarren A. JanzigRuchika SinghalRobert M. SkimeErik R. ScottJames E. Randall
    • Carl D. WahlstrandDarren A. JanzigRuchika SinghalRobert M. SkimeErik R. ScottJames E. Randall
    • A61N1/36
    • A61N1/375A61N1/3605A61N1/3754A61N1/3758
    • At least one surface of an implantable medical device is concave along at least one axis such that it substantially conforms to a surface within a patient, such as the cranium, when it is implanted on that surface. In some embodiments, the surface of the implantable medical device substantially conforms to an arc with a radius that is between 4.5 and 9.5 centimeters, and is preferably approximately equal to 7 centimeters. In some embodiments, the implantable medical device comprises a plurality of interconnected modules, and an overmold that at least partially encapsulates each of the modules. In such embodiments, at least one surface of the overmold is concave along at least one axis. Further, each of the modules of such an implantable medical device may comprise a housing, and at least one surface of at least one of the housings may be concave along at least one axis.
    • 可植入医疗装置的至少一个表面沿着至少一个轴线是凹形的,使得当植入在该表面上时,其基本上符合患者(例如颅骨)内的表面。 在一些实施例中,可植入医疗装置的表面基本上符合半径在4.5和9.5厘米之间的弧度,并且优选地大约等于7厘米。 在一些实施例中,可植入医疗装置包括多个互连的模块,以及至少部分地封装每个模块的包覆模制。 在这样的实施例中,包覆模制体的至少一个表面沿着至少一个轴线是凹形的。 此外,这种可植入医疗装置的每个模块可以包括壳体,并且至少一个壳体的至少一个表面沿着至少一个轴线可以是凹形的。
    • 57. 发明授权
    • Programming interface for stimulation therapy
    • 刺激治疗的编程界面
    • US08538549B2
    • 2013-09-17
    • US13592918
    • 2012-08-23
    • Steven M. GoetzRichard T. StoneWarren W. BallCarl D. Wahlstrand
    • Steven M. GoetzRichard T. StoneWarren W. BallCarl D. Wahlstrand
    • A61N1/08
    • A61N1/0534A61N1/36071A61N1/36157A61N1/36185A61N1/37247
    • The disclosure is directed to programming implantable stimulators to deliver stimulation energy via one or more implantable leads having complex electrode array geometries. The disclosure also contemplates guided programming to select electrode combinations and parameter values to support efficacy. The techniques may be applied to a programming interface associated with a clinician programmer, a patient programmer, or both. A user interface permits a user to view electrodes from different perspectives relative to the lead. For example, the user interface provides a side view of a lead and a cross-sectional view of the lead. The user interface may include an axial control medium to select and/or view electrodes at different axial positions along the length of a lead, and a rotational control medium to select and/or view electrodes at different angular positions around a circumference of the lead.
    • 本公开涉及编程可植入刺激器以通过具有复杂电极阵列几何形状的一个或多个可植入引线输送刺激能量。 本公开还考虑了引导编程以选择电极组合和参数值以支持功效。 这些技术可以应用于与临床医生程序员,患者程序员或两者相关联的编程接口。 用户界面允许用户从相对于铅的不同角度来观察电极。 例如,用户界面提供引线的侧视图和引线的横截面图。 用户界面可以包括轴向控制介质,用于选择和/或查看沿引线长度的不同轴向位置处的电极;以及旋转控制介质,用于选择和/或查看围绕引线圆周的不同角位置处的电极。