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    • 4. 发明申请
    • TRANSVASCULAR LEAD WITH PROXIMAL FORCE RELIEF
    • 具有临时强制救助的横向导弹
    • US20080183265A1
    • 2008-07-31
    • US11669039
    • 2007-01-30
    • Mark J. BlyRandy W. Westlund
    • Mark J. BlyRandy W. Westlund
    • A61N1/05
    • A61N1/057A61N1/0573
    • A medical electrical lead for implantation in a patient's internal jugular vein at a target location and adjacent a vagus nerve. The lead comprises a proximal region having a proximal stiffness and a distal region. The distal region has a distal stiffness and a first spiral configured to retain the distal region in the internal jugular vein. A transition region is interposed between the proximal and distal regions and has a transitional stiffness. An electrode is coupled to the distal region. The proximal stiffness is less than the distal stiffness so as to reduce an amount of force transferred from the proximal region to the distal region. The transitional stiffness is less than the distal stiffness and greater than the proximal stiffness.
    • 一种用于在目标位置处植入患者颈内静脉并邻近迷走神经的医用电线。 引线包括具有近端刚度和远侧区域的近端区域。 远端区域具有远端刚度,第一螺旋构造成将远侧区域保持在颈内静脉内。 过渡区域介于近端区域和远端区域之间,具有过渡刚度。 电极连接到远端区域。 近端刚度小于远端刚度,以便减少从近端区域传递到远端区域的力的量。 过渡刚度小于远端刚度,大于近端刚度。
    • 5. 发明申请
    • METHOD AND APPARATUS FOR DELIVERING A TRANSVASCULAR LEAD
    • 用于输送透明导线的方法和装置
    • US20080183186A1
    • 2008-07-31
    • US11669042
    • 2007-01-30
    • Mark J. BlyRandy W. Westlund
    • Mark J. BlyRandy W. Westlund
    • A61N1/05
    • A61N1/056A61N1/36114A61N1/372
    • A lead delivery system for delivering a medical electrical lead to an internal jugular vein (IJV) through a subclavian vein. An inner catheter extends from a proximal end to a distal end. The inner catheter includes an inner catheter curve configured to direct the distal end to the IJV when positioned in the subclavian vein. The stiffness of the inner catheter decreases in an inner catheter transition region in a direction from the proximal end to the distal end. An outer catheter extends from a proximal end to a distal end and is sized to slide over the inner catheter. The outer catheter includes an outer catheter curve. The stiffness of the outer catheter decreases in an outer catheter transition region in a direction from the proximal end to the distal end. The system further comprises a guidewire having a distal end and a proximal end. The guidewire is sized to slide through the inner catheter to a desired location in the IJV and the guidewire stiffness decreases in a guidewire transition region in a direction from the guidewire proximal end to the guidewire distal end. A method of delivering a medical electrical lead to a target location within an IJV.
    • 一种用于通过锁骨下静脉将医用电导线输送到颈内静脉(IJV)的引导系统。 内导管从近端延伸到远端。 内导管包括内导管曲线,其构造成当定位在锁骨下静脉中时将远端引导至IJV。 内导管的刚度在从近端到远端的方向上在内导管过渡区域中减小。 外导管从近端延伸到远端,并且其尺寸设计成在内导管上滑动。 外导管包括外导管曲线。 外导管的刚度在从近端到远端的方向上在外导管过渡区域中减小。 该系统还包括具有远端和近端的导丝。 导丝的尺寸设计成能够通过内导管滑动到IJV中的所需位置,并且导丝刚度在从导丝线近端到导丝线远端的方向上在导丝过渡区域中减小。 将医用电导线传送到IJV内的目标位置的方法。
    • 8. 发明授权
    • Coronary venous lead having fixation mechanism
    • 冠状静脉导管具有固定机制
    • US06178356B1
    • 2001-01-23
    • US09280128
    • 1999-03-26
    • Stuart A. ChastainBruce A. TockmanRandy W. WestlundLili Liu
    • Stuart A. ChastainBruce A. TockmanRandy W. WestlundLili Liu
    • A61N105
    • A61N1/057A61N2001/0585
    • A body implantable lead for placement in a selected coronary vein includes a resilient retention structure for inhibiting displacement of the lead because of heart beat action, breathing or other body movement. The retention structure includes a plurality of resilient projections that are attached to the lead body and which are adapted to project at a predetermined acute angle to the axis of the lead body when unconstrained. Prior to being routed through the vascular system, the projections can be bonded to the lead body to provide a low profile with a biodegradable adhesive. Following exposure to body fluids, the adhesive dissolves, releasing the projections so that they can engage the walls of the vein in which the lead is disposed.
    • 用于放置在所选择的冠状静脉中的身体可植入引线包括弹性保持结构,用于抑制由于心跳动作,呼吸或其他身体运动引起的位移。 保持结构包括多个弹性突起,其附接到引线主体并且适于在不受约束时以与引线主体的轴线成预定的锐角突出。 在被引导通过血管系统之前,突起可以结合到引线主体以通过可生物降解的粘合剂提供低轮廓。 在暴露于体液后,粘合剂溶解,释放突起使得它们可以与引导物置于其中的静脉的壁接合。
    • 10. 发明授权
    • Implantable tissue stimulator incorporating deposited multilayer
capacitor
    • 包含沉积的多层电容器的植入式组织刺激器
    • US5935154A
    • 1999-08-10
    • US986342
    • 1997-12-08
    • Randy W. Westlund
    • Randy W. Westlund
    • A61N1/375A61N1/39
    • A61N1/3956A61N1/375
    • An implantable tissue stimulator includes a polymer film capacitor adhered to an inside wall surface of the stimulator's case or housing in a way that minimizes the size and weight of the stimulator device. The energy storage capacitor for the tissue stimulator comprises a monolithic, multi-layer device and where the polymer is a suitable acrylate of a known formulation, over 1500 parallel plate capacitor electrodes can be built it with the height dimension of the resulting capacitor being less than about 3 mms. Instead of forming the capacitor on the inner surface of the stimulator's case in situ, such a capacitor can be formed on a mold member corresponding in shape to the inner surface of the stimulator's case and inserted into the stimulator's case following removal from the mold.
    • 可植入组织刺激器包括以最小化刺激器装置的尺寸和重量的方式粘附到刺激器壳体或壳体的内壁表面的聚合物膜电容器。 用于组织刺激器的储能电容器包括单片多层器件,并且其中聚合物是已知配方的合适的丙烯酸酯,其中可以构建超过1500个平行平板电容器电极,其中所得电容器的高度尺寸小于 约3公里。 代替在现场的刺激器壳体的内表面上形成电容器,这样的电容器可以形成在与激发器壳体的内表面相对应的模具构件上,并且在从模具中移除之后插入刺激器的壳体中。