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    • 2. 发明申请
    • MINIMALLY INVASIVE LEAD SYSTEM FOR VAGUS NERVE STIMLATION
    • 用于VAGUS神经刺激的最小入侵引导系统
    • US20120022617A1
    • 2012-01-26
    • US13186203
    • 2011-07-19
    • Bruce A. TockmanJuan Gabriel Hincapie OrdonezLili Liu
    • Bruce A. TockmanJuan Gabriel Hincapie OrdonezLili Liu
    • A61N1/372
    • A61N1/36114A61N1/0556A61N1/0558A61N1/36185
    • A system including two neurostimulation leads can be used for stimulating a select region of a nerve within a nerve bundle. For example, two leads can be used to stimulate a select region of the vagus nerve located within a patient's carotid sheath. The first neurostimulation is positioned within the carotid sheath and the second neurostimulation lead is positioned external to the carotid sheath. Each of the first and second neurostimulation leads includes at least one electrode defining an electrode array about the select region of the nerve. The electrode array, and more particularly, the different possible electrode vector combinations provided by the first and second neurostimulation leads facilitate steering of stimulation current density fields as needed or desired between the electrodes to effectively and efficiently treat a particular medical, psychiatric, or neurological disorder.
    • 包括两个神经刺激引线的系统可用于刺激神经束内的神经的选择区域。 例如,可以使用两个引线来刺激位于患者颈动脉鞘内的迷走神经的选择区域。 第一神经刺激位于颈动脉鞘内,第二神经刺激引线位于颈动脉鞘外。 第一和第二神经刺激引线中的每一个包括限定围绕神经的选择区域的电极阵列的至少一个电极。 电极阵列,更具体地,由第一和第二神经刺激引线提供的不同的可能的电极向量组合有助于在电极之间根据需要或期望的刺激电流密度场的转向,以有效和有效地治疗特定的医学,精神病学或神经障碍 。
    • 3. 发明授权
    • Minimally invasive lead system for vagus nerve stimulation
    • 迷走神经刺激微创引导系统
    • US08620450B2
    • 2013-12-31
    • US13186203
    • 2011-07-19
    • Bruce A. TockmanJuan Gabriel Hincapie OrdonezLili Liu
    • Bruce A. TockmanJuan Gabriel Hincapie OrdonezLili Liu
    • A61N1/372
    • A61N1/36114A61N1/0556A61N1/0558A61N1/36185
    • A system including two neurostimulation leads can be used for stimulating a select region of a nerve within a nerve bundle. For example, two leads can be used to stimulate a select region of the vagus nerve located within a patient's carotid sheath. The first neurostimulation is positioned within the carotid sheath and the second neurostimulation lead is positioned external to the carotid sheath. Each of the first and second neurostimulation leads includes at least one electrode defining an electrode array about the select region of the nerve. The electrode array, and more particularly, the different possible electrode vector combinations provided by the first and second neurostimulation leads facilitate steering of stimulation current density fields as needed or desired between the electrodes to effectively and efficiently treat a particular medical, psychiatric, or neurological disorder.
    • 包括两个神经刺激引线的系统可用于刺激神经束内的神经的选择区域。 例如,可以使用两个引线来刺激位于患者颈动脉鞘内的迷走神经的选择区域。 第一神经刺激位于颈动脉鞘内,第二神经刺激引线位于颈动脉鞘外。 第一和第二神经刺激引线中的每一个包括限定围绕神经的选择区域的电极阵列的至少一个电极。 电极阵列,更具体地,由第一和第二神经刺激引线提供的不同的可能的电极向量组合有助于在电极之间根据需要或期望的刺激电流密度场的转向,以有效和有效地治疗特定的医学,精神病学或神经障碍 。
    • 5. 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。