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    • 3. 发明授权
    • Esophageal pacing lead
    • 食管起搏线
    • US5056532A
    • 1991-10-15
    • US385348
    • 1989-07-25
    • Vincent HullCreg DanceTerrell WilliamsWayne Voightschild
    • Vincent HullCreg DanceTerrell WilliamsWayne Voightschild
    • A61N1/05
    • A61N1/0517
    • An electrical lead having an elongated flexible lead body having a flattened cross sectional configuration. One flattened surface is provided with at least one aperture open to a longitudinal lumen carrying an electrode lead. The electrode lead is provided with electrodes located within the aperture, and the electrode lead is slideable within the lead body to allow for adjustment of the position of the electrodes within the aperture. The lead body is also provided with at least one expansible balloon, located radially opposite the aperture. In use, the lead is advanced down the esophagus, with the surface of the lead bearing the aperture facing anteriorly. Inflation of the balloon urges the aperture and the electrodes located therein adjacent the anterior surface of the esophagus. After inflation of the balloon, the electrode lead may be moved within the lead body to allow for adjacent of electrode location.
    • 具有扁平横截面构造的细长柔性引线体的电引线。 一个扁平表面设置有至少一个开口的容纳电极引线的纵向内腔的孔。 电极引线设置有位于孔内的电极,并且电极引线可在引线体内滑动以允许调节孔内电极的位置。 引线体还设置有至少一个与孔径向相对设置的可膨胀气囊。 在使用中,引线沿食道向下推进,导线的表面将孔径朝向前方。 气囊的通气促使孔和邻近食管前表面的电极位于其间。 在球囊膨胀之后,电极引线可以在引线体内移动以允许邻近电极位置。
    • 4. 发明授权
    • Medical electrode lead
    • 医用电极引线
    • US5016645A
    • 1991-05-21
    • US264916
    • 1988-10-31
    • Terrell WilliamsJohn G. KeimelRoger RuglandRichard SandstromTimothy Holleman
    • Terrell WilliamsJohn G. KeimelRoger RuglandRichard SandstromTimothy Holleman
    • A61N1/05
    • A61N1/0587
    • A medical electrode lead employing one or more elongated electrode coils embedded in the surface of a flexible base pad. The electrode coils take the form of space wound coils following tortuous paths over the surface of the base pad to provide a large surface area electrode. The electrode coils include a plurality of spaced, generally parallel electrode coil segments. Located intermediate adjacent the parallel electrode coil segments are grooves or pleats, molded into the base pad. These grooves or pleats provide increased elasticity of the electrode and increased ability to conform to the contours of the heart. Insulative cores taking the form of plastic tubes are located within the electrode coils to prevent tissue ingrowth between the individual electrode coils, without induly reducing flexibility of the electrode.
    • 一种医用电极引线,其使用一个或多个细长的电极线圈嵌入在柔性基座的表面中。 电极线圈在基座表面上的曲折路径之后呈空间缠绕线圈的形式,以提供大的表面积电极。 电极线圈包括多个间隔开的大致平行的电极线圈段。 位于平行电极线圈段附近的中间是凹槽或褶皱,模制到基座中。 这些凹槽或褶皱提供了电极的增加的弹性和增加符合心脏轮廓的能力。 采取塑料管形式的绝缘芯位于电极线圈内,以防止单个电极线圈之间的组织向内生长,而不会显着降低电极的柔性。
    • 9. 发明申请
    • Electrode assembly
    • 电极组件
    • US20070027513A1
    • 2007-02-01
    • US11189489
    • 2005-07-26
    • Cygni ChanCarl SchuOrhan SoykanTerrell Williams
    • Cygni ChanCarl SchuOrhan SoykanTerrell Williams
    • A61N1/00
    • A61N1/0587
    • An electrode assembly is described that can be implanted in target tissue of a living body. The electrode assembly includes an introduction needle, a flexible leader coupled to the introduction needle, and an elongated electrode with fixation mechanisms on its proximal and distal ends. The introduction needle includes a visible marker that is a fixed distance from the pointed tip of the needle. This distance is approximately the same as the length of the electrode. During implantation, a surgeon penetrates the tissue with the introduction needle, thereby creating a tract in the tissue, and drives the needle in the tissue up to the marker, then perforates the tissue to cause the needle to emerge. This creates a tract that is approximately the same length as the electrode. The electrode can be pulled into the tract, where the fixation mechanisms resist migration from the tract.
    • 描述了可植入生物体的靶组织中的电极组件。 电极组件包括引入针,耦合到引入针的柔性引导件和在其近端和远端具有固定机构的细长电极。 引入针包括与针的尖端固定距离的可见标记。 该距离与电极的长度大致相同。 在植入期间,外科医生用引入针穿透组织,从而在组织中形成一道,并且将组织中的针驱动到标记物上,然后使组织穿孔以使针出现。 这产生与电极大致相同长度的管道。 电极可以被拉入管道,其中固定机构抵抗从管道迁移。