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    • 2. 发明授权
    • Systems for locating and ablating accessory pathways in the heart
    • 用于定位和消融心脏中辅助通路的系统
    • US5860920A
    • 1999-01-19
    • US931229
    • 1997-09-16
    • David L. McGeeRussell A. HouserDavid K. Swanson
    • David L. McGeeRussell A. HouserDavid K. Swanson
    • A61B5/042A61B18/14A61N1/08A61N1/40A61B5/04A61N1/05
    • A61B5/6855A61B18/1492A61B5/0422A61N1/08A61N1/3686A61N1/403A61B2017/003A61B2018/00148A61B2018/00952A61B2018/1407A61B2018/1435A61B2018/1861A61B5/6857A61B5/6858
    • Systems and methods sense electrical events about a selected annulus region of the heart to identify the location of an accessory pathway. The systems and methods establish a contact site between heart tissue along the selected annulus and a multi-electrode array having a generally circular shape that conforms to the circumferential geometry of the selected annulus region. The systems and methods maintain the site of contact between the electrode array and heart tissue, while conveying signals representing electrical events sensed by bipolar pairs of the electrodes in the selected annulus region, The systems and methods display the signals as graphic information that represents the time differences between the atrial and ventricular electrogram complexes sensed by bipolar pairs of the electrodes on the selected annulus region. The bipolar pair of electrodes displaying the least time separation between the atrial and ventricular complexes identifies the region of the accessory pathway. With this information, the systems and methods convey energy to one or more of the electrodes of the selected pair to ablate tissue in the selected annulus region.
    • 系统和方法检测关于心脏的选定环区的电事件以识别附件通路的位置。 系统和方法建立沿所选择的环的心脏组织之间的接触位置,以及具有符合所选择的环面区域的圆周几何形状的大致圆形形状的多电极阵列。 系统和方法保持电极阵列和心脏组织之间的接触部位,同时传送表示由所选择的环带区域中的电极的双极对感测的电气事件的信号。系统和方法将信号显示为表示时间的图形信息 通过所选择的环面区域上的电极的双极对检测心房和心室电描记图复合体之间的差异。 显示心房和心室复合体之间的最小时间间隔的双极电极对识别辅助通路的区域。 利用该信息,系统和方法将能量传送到所选择的一对的电极中的一个或多个以消除所选择的环带区域中的组织。
    • 3. 发明授权
    • Methods for locating and ablating accessory pathways in the heart
    • 在心脏中定位和消融辅助通路的方法
    • US5673695A
    • 1997-10-07
    • US744560
    • 1996-11-06
    • David L. McGeeRussell A. HouserDavid K. Swanson
    • David L. McGeeRussell A. HouserDavid K. Swanson
    • A61B5/042A61B18/14A61N1/08A61N1/40A61B5/04A61N1/06
    • A61B5/6855A61B18/1492A61B5/0422A61N1/08A61N1/3686A61N1/403A61B2017/003A61B2018/00148A61B2018/00952A61B2018/1407A61B2018/1435A61B2018/1861A61B5/6857A61B5/6858
    • Systems and methods sense electrical events about a selected annulus region of the heart to identify the location of an accessory pathway. The systems and methods establish a contact site between heart tissue along the selected annulus and a multi-electrode array having a generally circular shape that conforms to the circumferential geometry of the selected annulus region. The systems and methods maintain the site of contact between the electrode array and heart tissue, while conveying signals representing electrical events sensed by bipolar pairs of the electrodes in the selected annulus region. The systems and methods display the signals as graphic information that represents the time differences between the atrial and ventricular electrogram complexes sensed by bipolar pairs of the electrodes on the selected annulus region. The bipolar pair of electrodes displaying the least time separation between the atrial and ventricular complexes identifies the region of the accessory pathway. With this information, the systems and methods convey energy to one or more of the electrodes of the selected pair to ablate tissue in the selected annulus region.
    • 系统和方法检测关于心脏的选定环区的电事件以识别附件通路的位置。 系统和方法建立沿所选择的环的心脏组织之间的接触位置,以及具有符合所选择的环面区域的圆周几何形状的大致圆形形状的多电极阵列。 系统和方法保持电极阵列和心脏组织之间的接触部位,同时传送表示由所选择的环形区域中的电极的双极对检测的电气事件的信号。 系统和方法将信号显示为图形信息,其表示由所选择的环面区域上的电极的双极对检测的心房和心室电描记图复合体之间的时间差。 显示心房和心室复合体之间的最小时间间隔的双极电极对识别辅助通路的区域。 利用该信息,系统和方法将能量传送到所选择的一对的电极中的一个或多个以消除所选择的环带区域中的组织。
    • 6. 发明申请
    • BALLOON CATHETER WITH INTEGRATED STOP FEATURE FOR PRECISE STENT PLACEMENT, FOR OSTIAL, RENAL AND OTHER LOCATIONS
    • 具有集成停止特征的气囊导管,用于精密静脉放置,用于动态,肾脏和其他位置
    • US20120197378A1
    • 2012-08-02
    • US13365165
    • 2012-02-02
    • Russell A. Houser
    • Russell A. Houser
    • A61F2/84A61M29/02
    • A61M25/104A61F2/95A61F2/958A61F2002/821A61F2250/0098A61M2025/0183A61M2025/1047A61M2025/1056A61M2025/107A61M2025/1072A61M2025/1095
    • Systems and methods for delivering a medical device to a vessel within a mammalian body are provided. The medical device may have a tubular body with an interior and an exterior surface. A delivery device may include a balloon assembly having one or more balloons, with a proximal and portion with the medical device mounted thereon. When the balloon assembly is partially inflated the proximal portion has a larger diameter than the distal portion which may be inserted into the vessel. The proximal portion may have a sufficiently large diameter that prevents it from being inserted into the vessel and permits it to function as a stop. The balloon assembly may be further inflated to deploy the medical device within the vessel. The medical device diameter may expand and optionally contact the interior surface of the vessel when deployed. Alternatively, the invention may be configured to dilate tissue, without deploying a medical device.
    • 提供了用于将医疗装置递送到哺乳动物体内的血管的系统和方法。 医疗装置可以具有带有内部和外部表面的管状体。 递送装置可以包括具有一个或多个气囊的球囊组件,其中安装有近端和附接有医疗装置的部分。 当气囊组件部分地膨胀时,近端部分具有比可以插入容器的远端部分更大的直径。 近端部分可以具有足够大的直径,防止其插入血管并允许其作为停止。 气囊组件可以进一步膨胀以将医疗装置部署在容器内。 当部署时,医疗装置直径可以膨胀并任选地接触容器的内表面。 或者,本发明可以被配置为在不展开医疗装置的情况下扩张组织。
    • 8. 发明申请
    • Arteriotomy Closure Devices and Techniques
    • 动脉闭塞装置和技术
    • US20080114394A1
    • 2008-05-15
    • US11933129
    • 2007-10-31
    • Russell A. HouserWilliam D. Hare
    • Russell A. HouserWilliam D. Hare
    • A61B17/03
    • A61B17/0057A61B17/00491A61B2017/00637A61B2017/00659A61B2017/00862A61B2017/00867A61B2017/2925
    • An arterial closure system includes an arterial closure device (“ACD”) and a deployment tool. The arterial closure device includes a first member forming an enlargement around the circumference of the arterial closure device and being configured to be received against an outer surface of a vessel, a connecting member having a smaller outer diameter than the first member, extending from the first member, and being configured to be positioned within an arteriotomy of a vessel, and a longitudinal channel configured to receive a tube and passing between the first member and the connecting member. The deployment tool includes a handle, a contacting section, and an extension that extends between the handle and the contacting section. The contacting section is designed to mate with the arterial closure device to advance the arterial closure device over the tube and deploy the arterial closure device within the vessel.
    • 动脉闭合系统包括动脉闭合装置(“ACD”)和展开工具。 动脉闭合装置包括第一构件,其形成围绕动脉闭合装置的圆周的放大部,并且构造成抵靠容器的外表面容纳,具有比第一构件更小的外径的连接构件,其从第一构件 并且被构造成定位在血管的动脉切开术内,以及构造成接收管并在第一构件和连接构件之间通过的纵向通道。 展开工具包括手柄,接触部分和在手柄和接触部分之间延伸的延伸部。 接触部分被设计成与动脉闭合装置配合,以将动脉闭合装置推进到管上并将动脉闭合装置展开在血管内。
    • 9. 发明授权
    • Patches and collars for medical applications and methods of use
    • 用于医疗应用和使用方法的补丁和项圈
    • US06726696B1
    • 2004-04-27
    • US10183396
    • 2002-06-28
    • Russell A. HouserWilliam D. Hare
    • Russell A. HouserWilliam D. Hare
    • A61B1704
    • A61F2/0063A61B17/00491A61B17/0057A61B18/14A61B2017/00526A61B2017/00637A61B2017/00654A61B2017/00862A61B2017/00867A61F2/06A61F2/2481A61F2002/2484
    • The invention relates to applying a patch to a tissue surface within a mammalian body that includes retaining the patch to a deployment device, advancing the deployment device to the tissue surface, pressing the patch against the tissue surface, and manipulating the deployment device to separate the deployment device from the patch and leave the patch against the tissue surface. The patch includes at least one layer of a biocompatible polymer, at least one layer of a biocompatible superelastic/shape memory material, and at least one layer of a biocompatible adherent material. The deployment device includes a handle section and a deployment section, and the deployment section is configured to retain the patch for delivery of the patch to the tissue surface. The patch may include one or more arms, a base, and barbs extending from the arms, and advancing the deployment device to the tissue surface may include advancing the deployment device to the tissue surface of the heart for treatment of, for example, congestive heart failure.
    • 本发明涉及将贴片应用于哺乳动物体内的组织表面,其包括将贴片保持在展开装置上,将展开装置推进到组织表面,将贴片压靠在组织表面上,以及操纵展开装置以分开 展开装置,并将贴片贴在组织表面上。 补片包括至少一层生物相容性聚合物,至少一层生物相容性超弹性/形状记忆材料层和至少一层生物相容性粘附材料。 所述展开装置包括手柄部分和展开部分,并且所述展开部分构造成保持所述贴片以将所述贴片输送到所述组织表面。 补片可以包括从臂延伸的一个或多个臂,底座和倒钩,并且将展开装置推进到组织表面可以包括将展开装置推进到心脏的组织表面以治疗例如充血性心脏 失败。
    • 10. 发明授权
    • Shoes and braces with superelastic supports
    • 鞋子和支架具有超弹性支撑
    • US06718656B2
    • 2004-04-13
    • US09898577
    • 2001-07-03
    • Russell A. HouserJames G. Whayne
    • Russell A. HouserJames G. Whayne
    • A43B714
    • A43B7/1415A43B13/187A61F5/14
    • Described are shoes, orthodic appliances, and anatomic braces containing superelastic support members for enhanced performance. The superelastic supports provide dynamic response to deflection. As such, the superelastic supports incorporated in the soles of shoes enhance walking, running, jumping, kicking, or other motion involving the foot. The superelastic supports may be incorporated in the body of shoes to reinforce the ankle joint. The embodiments of the invention also provide superelastic supports in braces to reinforce or stabilize the knees, ankles, elbows, wrists, shoulders, back, neck, hips, or other anatomy commonly associated with a degree of twisting, rotation, bending, or other desired motion. The braces also intensify the motion of anatomic structures, apply a specific resistance at the joint to strengthen the muscles during training or rehabilitation, and/or immobilize or stabilize joints, bones, or other anatomic structures during healing of an injury.
    • 描述的是鞋子,正统器具和包含超弹性支撑构件的解剖支架,用于增强性能。 超弹性支撑提供对偏转的动态响应。 因此,结合在鞋底中的超弹性支撑件增强了涉及脚的步行,跑步,跳跃,踢脚或其他运动。 超弹性支撑件可以结合在鞋体中以加强踝关节。 本发明的实施例还提供支架中的超弹性支撑,以加强或稳定膝盖,脚踝,肘部,手腕,肩部,背部,颈部,臀部或其他解剖结构,通常与扭转,旋转,弯曲或其他期望的程度相关联 运动。 支架还加强了解剖结构的运动,在关节处施加特异性阻力以在训练或康复期间加强肌肉,和/或在伤口愈合期间固定或稳定关节,骨骼或其他解剖结构。