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    • 62. 发明授权
    • Method and apparatus for gastrointestinal tract ablation for treatment of obesity
    • 用于治疗肥胖的胃肠道消融的方法和装置
    • US08641711B2
    • 2014-02-04
    • US12114628
    • 2008-05-02
    • Douglas KellyDavid S. UtleyRobert A. GanzMichael P. WallaceNathan Every
    • Douglas KellyDavid S. UtleyRobert A. GanzMichael P. WallaceNathan Every
    • A61B18/18
    • A61B18/04A61B18/1492A61B18/18A61B2018/0022A61B2018/0212A61B2018/1467
    • Devices and methods for ablating tissue in the wall of various organs of the gastrointestinal tract of a patient in order to cure or ameliorate metabolic pathophysiological conditions such as obesity, insulin resistance, or type 2 diabetes mellitus are provided. Ablational treatment of target areas may be fractional or partial, rendering a post-treatment portion of target tissue ablated and another portion that is substantially intact. Fractional ablation is achieved by controlling the delivery of ablational energy across the surface area being treated, and controlling the depth of energy penetration into tissue. Surface area control of energy delivery may controlled by the spatial pattern of distributed ablation elements or by the selective activation of a subset of a dense pattern of ablation elements. Embodiments of the device include an ablational electrode array that spans 360 degrees and an array that spans an arc of less than 360 degrees.
    • 提供了用于消除患者胃肠道的各种器官的壁中的组织以便治愈或改善代谢病理生理条件如肥胖,胰岛素抵抗或2型糖尿病的装置和方法。 目标区域的消融治疗可能是部分或部分,使目标组织的后处理部分消融,另一部分基本上完好无损。 通过控制穿过所治疗的表面区域的消融能量的传递并控制能量渗入组织的深度来实现分数消融。 能量输送的表面积控制可以由分布式消融元件的空间模式控制,或者通过选择性地激活消融元件的密集图案的子集。 该装置的实施例包括跨越360度的消融电极阵列和跨越小于360度的弧的阵列。
    • 65. 发明授权
    • Intravascular self-anchoring integrated tubular electrode body
    • 血管内自我锚定一体化管状电极体
    • US08412348B2
    • 2013-04-02
    • US10841069
    • 2004-05-06
    • Michael P. WallaceRobert J. GarabedianJohn Eric Peckham
    • Michael P. WallaceRobert J. GarabedianJohn Eric Peckham
    • A61N1/05
    • A61N1/057A61N1/3787A61N2001/0585
    • An expandable intravascular medical device is provided. The medical device comprises an expandable tubular body that includes an integrated resilient support structure that forms a plurality of electrically conductive regions to which the lead(s) is coupled. The tubular body further includes at least one electrically insulative element disposed between the conductive regions. In one embodiment, the support structure is skeletal in nature, e.g., it can be formed of a mesh, braid, or coil. The conductive regions can be variously formed by the support structure. For example, the support structure may comprise electrically conductive sub-structures that form the conductive regions. In this case, the sub-structures may be mechanically linked together by the insulative element(s), or they can be directly linked together, and the insulative element(s) can take the form of insulative layer(s) disposed on one or more of the conductive sub-structures. As another example, the support structure can have a conductive core and insulative material disposed over portions of the conductive core. In this case, the exposed core portions form the conductive regions, and the unexposed core portions form the insulative element(s).
    • 提供可扩张血管内医疗装置。 医疗装置包括可扩张的管状体,其包括形成多个导电区域的集成的弹性支撑结构,引线与该多个导电区域相连。 管状体还包括设置在导电区域之间的至少一个电绝缘元件。 在一个实施例中,支撑结构本质上是骨架的,例如,其可以由网,编织物或线圈形成。 导电区域可以由支撑结构各种形成。 例如,支撑结构可以包括形成导电区域的导电子结构。 在这种情况下,子结构可以通过绝缘元件机械地连接在一起,或者它们可以直接连接在一起,并且绝缘元件可以采取设置在一个或多个绝缘元件上的绝缘层的形式, 更多的导电子结构。 作为另一示例,支撑结构可以具有设置在导电芯的部分上方的导电芯和绝缘材料。 在这种情况下,露出的芯部形成导电区域,未曝光的芯部形成绝缘元件。