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    • 1. 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。
    • 3. 发明授权
    • Methods for delivering cortical electrode leads into patient's head
    • 将皮质电极导入患者头部的方法
    • US07937160B2
    • 2011-05-03
    • US11010232
    • 2004-12-10
    • Robert J. GarabedianMichael P. WallaceGary Heit
    • Robert J. GarabedianMichael P. WallaceGary Heit
    • A61N1/05
    • A61N1/0531A61N1/0539A61N1/36082
    • Methods and kits for delivering an electrode lead into the head of a patient are provided. A burr hole is formed within the cranium of the patient, and an electrode lead is threaded through the burr hole. The electrode lead is then placed in a pre-shaped two-dimensional geometry between the cranium and cortical brain tissue of the patient. An access anchor may be mounted into the burr hole to facilitate introduction and removal of the electrode lead and other devices. In some circumstances, it may be desirable to separate the dura mater overlying the cortical brain tissue from the cortical brain tissue to create a pocket in which the electrode lead may be manipulated. In this case, a tissue layer dissection device can be introduced through the burr hole, operated to separate the dura mater from the cranium, and then removed from the burr hole. In one embodiment, the dissection device comprises a balloon that can be inflated to separate the dura mater and cranium, and then deflated prior to removing the dissection device from the burr hole.
    • 提供了用于将电极引线输送到患者头部的方法和套件。 在患者的颅骨内形成有钻孔,电极引线穿过毛刺孔。 然后将电极引线置于患者的颅骨和皮质脑组织之间的预先形状的二维几何形状中。 可以将入口锚固件安装到钻孔中以便于引入和移除电极引线和其它装置。 在某些情况下,可能需要将覆盖皮质脑组织的硬膜与皮层脑组织分离,以产生可以操纵电极引线的口袋。 在这种情况下,可以通过毛刺孔引入组织层解剖装置,操作以将硬脑膜与头颅分开,然后从毛刺孔中取出。 在一个实施例中,解剖装置包括可以充气以分离硬脑膜和颅骨的气囊,然后在从毛刺孔移除解剖装置之前放气。
    • 7. 发明授权
    • Collapsible/expandable tubular electrode leads
    • 可折叠/可扩展管状电极引线
    • US08019441B2
    • 2011-09-13
    • US11459618
    • 2006-07-24
    • Michael P. WallaceRobert J. Garabedian
    • Michael P. WallaceRobert J. Garabedian
    • A61N1/05
    • A61N1/0553
    • A medical lead and method of treating a patient are provided. The medical lead comprises an electrically insulative tubular membrane, a resilient spring element associated with the insulative membrane, and at least one electrode associated with the insulative membrane. The medical lead is configured to be collapsed into a compact form for percutaneous delivery into the patient, thereby obviating the need to perform an invasive surgical procedure on the patient. The body formed by these elements, when expanded, can be sized to fit within the epidural space of a patient. The patient can be treated by placing the medical lead into a collapsed state by applying a compressive force to the medical lead, percutaneously delivering the collapsed medical lead into the patient adjacent tissue to be treated, and placing the medical lead into an expanded state by releasing the compressive force. In one preferred method, the stimulation lead is used to stimulate tissue, such as spinal cord tissue.
    • 提供医疗用铅和治疗患者的方法。 医用引线包括电绝缘管状膜,与绝缘膜相关联的弹性弹簧元件以及与绝缘膜相关联的至少一个电极。 医疗用引线被构造成塌缩成紧密形式用于经皮输送到患者体内,从而避免了对患者执行侵入性外科手术的需要。 由这些元件形成的身体,当扩张时,其尺寸可以适合于患者的硬膜外腔内。 可以通过向医用引线施加压缩力将医用引线置于折叠状态来将患者放置在患者身体中,将经塌陷的医用导管经皮递送到邻近被治疗组织的患者中,并通过释放将医用引线放入扩张状态 压缩力。 在一种优选的方法中,刺激引线用于刺激组织,例如脊髓组织。
    • 9. 发明授权
    • Intravascular self-anchoring electrode body with arcuate springs, spring loops, or arms
    • 血管内自身锚定电极主体具有弧形弹簧,弹簧环或手臂
    • US07231260B2
    • 2007-06-12
    • US10841070
    • 2004-05-06
    • Michael P. WallaceRobert J. GarabedianWendelin C. ManersRobert Abrams
    • Michael P. WallaceRobert J. GarabedianWendelin C. ManersRobert Abrams
    • A61N1/00
    • A61N1/057A61N1/3787A61N2001/0585
    • An expandable intravascular medical device comprises an arcuate spring configured to be expanded into contact with the inner surface of a blood vessel. Another medical device comprises an electrode support structure, e.g., a non-tubular arcuate structure or a cylindrical member, and a plurality of resilient spring loops laterally extending from the support structure. The contact created between the loops and a blood vessel is sufficient to anchor the medical device within the blood vessel. In another embodiment, the medical device comprises an elongated member and two resilient spring arms extending distally from the elongated member. The arms are configured to be laterally moved towards each other to place the medical device in a collapsed geometry, and configured to be laterally moved away from each into contact with an inner surface of a blood vessel to place the medical device an expanded geometry.
    • 可扩张血管内医疗装置包括弓形弹簧,其被构造成膨胀成与血管的内表面接触。 另一医疗装置包括电极支撑结构,例如非管状弓形结构或圆柱形构件,以及从支撑结构横向延伸的多个弹性弹簧环。 在环和血管之间产生的接触足以将医疗装置锚定在血管内。 在另一个实施例中,医疗装置包括细长构件和从细长构件向远侧延伸的两个弹性弹簧臂。 臂被配置为朝向彼此横向移动以将医疗装置放置在折叠的几何形状中,并且被构造成横向移动远离每个与血管的内表面接触,以将医疗装置放置成扩展的几何形状。
    • 10. 发明授权
    • Collapsible/expandable electrode leads
    • 可折叠/可扩展电极引线
    • US07177702B2
    • 2007-02-13
    • US10799270
    • 2004-03-12
    • Michael P. WallaceRobert J. GarabedianAlex Leynov
    • Michael P. WallaceRobert J. GarabedianAlex Leynov
    • A61N1/00
    • A61N1/0553A61N1/0529A61N1/0531A61N1/0534A61N1/0558
    • A medical lead and method of treating a patient are provided. The medical lead comprises an electrically insulative membrane, a resilient spring element associated with the insulative membrane, and at least one electrode associated with the insulative membrane. The spring layer is configured to urge that insulative membrane into an expanded geometry. The medical lead is configured to be collapsed into a compact form for percutaneous delivery into the patient, thereby obviating the need to perform an invasive surgical procedure on the patient. The patient can be treated by placing the medical lead into a collapsed state by applying a compressive force to the medical lead, percutaneously delivering the collapsed medical lead into the patient adjacent tissue to be treated, and placing the medical lead into an expanded state by releasing the compressive force.
    • 提供医疗用铅和治疗患者的方法。 医用引线包括电绝缘膜,与绝缘膜相关联的弹性弹簧元件,以及与绝缘膜相关联的至少一个电极。 弹簧层构造成将绝缘膜推动成扩展的几何形状。 医疗用引线被构造成塌缩成紧密形式用于经皮输送到患者体内,从而避免了对患者执行侵入性外科手术的需要。 可以通过向医用引线施加压缩力将医用引线置于折叠状态来将患者放置在患者身体中,将经塌陷的医用导管经皮递送到邻近被治疗组织的患者中,并通过释放将医用引线放入扩张状态 压缩力。