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    • 1. 发明申请
    • IMPLANTABLE MEDICAL DEVICE LEAD
    • 可植入医疗器械引线
    • US20100331938A1
    • 2010-12-30
    • US12825647
    • 2010-06-29
    • John L. SommerKenneth C. GardeskiXiaonan ShenJon D. Schell
    • John L. SommerKenneth C. GardeskiXiaonan ShenJon D. Schell
    • A61N1/05
    • A61N1/056A61N1/05A61N1/0534A61N1/0551A61N1/0558A61N1/086
    • An implantable lead including a lead body including an outer surface, a proximal end, a distal end, and at least one electrode; an electrically insulating member that extends axially over a first portion of the outer surface of the lead body between the proximal end and distal end, the electrically insulating member defining at least one aperture that exposes a first portion of the at least one electrode when in a first position over the lead body; and a reinforcement member formed at least partially of a different material than the insulating member and coupled to the insulating member, the reinforcement member extending axially over the outer surface of the lead body between the insulating member and proximal end. The reinforcement member may be configured to transfer at least one of a radial or axial force from a proximal portion of the reinforcement member to the insulating member, wherein the at least one of radial or axial force transferred to the insulating member is sufficient to move the insulating member over the outer surface of the lead body. In some examples, the lead may further include a deployable lobe member configured to anchor the reinforcement member and insulating member adjacent a tissue site within a patient.
    • 一种可植入引线,包括:引线本体,其包括外表面,近端,远端和至少一个电极; 电绝缘构件,其在所述近端和远端之间轴向延伸到所述引线本体的外表面的第一部分上方,所述电绝缘构件限定在至少一个孔处暴露所述至少一个电极的第一部分, 领先身体的第一位; 至少部分地由与所述绝缘构件不同的材料形成并且与所述绝缘构件连接的加强构件,所述加强构件在所述绝缘构件和所述绝缘构件与所述绝缘构件之间的所述引线本体的外表面上轴向延伸。 加强构件可以构造成将径向或轴向力中的至少一个从加强构件的近侧部分传递到绝缘构件,其中传递到绝缘构件的径向或轴向力中的至少一个足以使 绝缘构件在引线体的外表面上。 在一些示例中,引线还可包括可展开的隆起部件,其构造成将加强部件和绝缘部件固定在患者体内的组织部位附近。
    • 2. 发明授权
    • Implantable medical device lead with selectively exposed electrodes and reinforcement member
    • 植入式医疗器械引线带有选择性暴露的电极和加强构件
    • US08340783B2
    • 2012-12-25
    • US12825647
    • 2010-06-29
    • John L. SommerKenneth C. GardeskiXiaonan ShenJon D. Schell
    • John L. SommerKenneth C. GardeskiXiaonan ShenJon D. Schell
    • A61N1/05
    • A61N1/056A61N1/05A61N1/0534A61N1/0551A61N1/0558A61N1/086
    • An implantable lead including a lead body including an outer surface, a proximal end, a distal end, and at least one electrode; an electrically insulating member that extends axially over a first portion of the outer surface of the lead body between the proximal end and distal end, the electrically insulating member defining at least one aperture that exposes a first portion of the at least one electrode when in a first position over the lead body; and a reinforcement member formed at least partially of a different material than the insulating member and coupled to the insulating member, the reinforcement member extending axially over the outer surface of the lead body between the insulating member and proximal end. The reinforcement member may be configured to transfer at least one of a radial or axial force from a proximal portion of the reinforcement member to the insulating member, wherein the at least one of radial or axial force transferred to the insulating member is sufficient to move the insulating member over the outer surface of the lead body. In some examples, the lead may further include a deployable lobe member configured to anchor the reinforcement member and insulating member adjacent a tissue site within a patient.
    • 一种可植入引线,包括:引线本体,其包括外表面,近端,远端和至少一个电极; 电绝缘构件,其在所述近端和远端之间轴向延伸到所述引线本体的外表面的第一部分上方,所述电绝缘构件限定在至少一个孔处暴露所述至少一个电极的第一部分, 领先身体的第一位; 至少部分地由与所述绝缘构件不同的材料形成并且与所述绝缘构件连接的加强构件,所述加强构件在所述绝缘构件和所述绝缘构件与所述绝缘构件之间的所述引线本体的外表面上轴向延伸。 加强构件可以构造成将径向或轴向力中的至少一个从加强构件的近侧部分传递到绝缘构件,其中传递到绝缘构件的径向或轴向力中的至少一个足以使 绝缘构件在引线体的外表面上。 在一些示例中,引线还可包括可展开的隆起部件,其构造成将加强部件和绝缘部件固定在患者体内的组织部位附近。
    • 3. 发明授权
    • Wireless cardiac pulsatility sensing
    • 无线心脏搏动检测
    • US08244339B2
    • 2012-08-14
    • US12852740
    • 2010-08-09
    • Xiaonan ShenCan Cinbis
    • Xiaonan ShenCan Cinbis
    • A61B5/04
    • A61B5/6846A61B5/0245A61B5/0538A61N1/3937A61N1/3956A61N1/3987
    • An implantable medical device system and associated method monitor changes in transimpedance in a body tissue due to changes in cardiac pulsatility. A first dipole is used to deliver a non-stimulating electrical current. The first dipole includes a first electrode and a second electrode adapted to be deployed along a first body location. A second dipole is used to measure a voltage resulting from the non-stimulating electrical current being conducted through a portion of a patient's body. The second dipole includes a third electrode and a fourth electrode different than the first electrode and the second electrode and adapted to be deployed along a second body location spaced apart from the first body location.
    • 可植入医疗装置系统和相关方法监测由于心脏搏动的变化而导致的身体组织中的跨阻抗变化。 第一偶极子用于传递非刺激电流。 第一偶极子包括适于沿着第一身体位置展开的第一电极和第二电极。 使用第二偶极子来测量通过患者身体的一部分传导的非刺激性电流产生的电压。 第二偶极子包括不同于第一电极和第二电极的第三电极和第四电极,并且适于沿着与第一主体位置间隔开的第二主体位置展开。
    • 5. 发明申请
    • WIRELESS CARDIAC PULSATILITY SENSING
    • 无线心脏脉搏传感
    • US20120035490A1
    • 2012-02-09
    • US12852740
    • 2010-08-09
    • Xiaonan ShenCan Cinbis
    • Xiaonan ShenCan Cinbis
    • A61B5/0464A61B5/053
    • A61B5/6846A61B5/0245A61B5/0538A61N1/3937A61N1/3956A61N1/3987
    • An implantable medical device system and associated method monitor changes in transimpedance in a body tissue due to changes in cardiac pulsatility. A first dipole is used to deliver a non-stimulating electrical current. The first dipole includes a first electrode and a second electrode adapted to be deployed along a first body location. A second dipole is used to measure a voltage resulting from the non-stimulating electrical current being conducted through a portion of a patient's body. The second dipole includes a third electrode and a fourth electrode different than the first electrode and the second electrode and adapted to be deployed along a second body location spaced apart from the first body location.
    • 可植入医疗装置系统和相关方法监测由于心脏搏动的变化而导致的身体组织中的跨阻抗变化。 第一偶极子用于传递非刺激电流。 第一偶极子包括适于沿着第一身体位置展开的第一电极和第二电极。 使用第二偶极子来测量通过患者身体的一部分传导的非刺激性电流产生的电压。 第二偶极子包括不同于第一电极和第二电极的第三电极和第四电极,并且适于沿着与第一主体位置间隔开的第二主体位置展开。