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    • 3. 发明申请
    • ELECTRICAL STIMULATION LEAD WITH STIFFENERS HAVING VARYING STIFFNESS ZONES
    • 电刺激引导与具有变化的强度区域的强化剂
    • US20120279063A1
    • 2012-11-08
    • US13549736
    • 2012-07-16
    • Enri ZhulatiTerry D. DaglowBrian FranzSojan Abraham
    • Enri ZhulatiTerry D. DaglowBrian FranzSojan Abraham
    • H01R43/16
    • A61N1/0488A61N1/3605
    • In one embodiment, a neurostimulation lead comprises an elongated body of insulative material, comprising a first end portion and a second end portion; a plurality of terminals longitudinally positioned along the first end portion; a plurality of electrodes longitudinally positioned along the second end portion; a plurality of conductors electrically coupling the plurality of electrodes to the plurality of terminals; a flexible metal longitudinal stiffener positioned within the elongated body wherein the stiffener has a plurality of longitudinal zones and each zone has a different column strength, the column strength of one or more zones of the plurality of longitudinal zones being defined by cuts or gaps in the stiffener, the stiffener causing the neurostimulation lead to exhibit a greatest amount of column strength adjacent to one end portion of the elongated body and to transition to a lower column strength toward a medial portion of the elongated body.
    • 在一个实施例中,神经刺激引线包括细长的绝缘材料体,包括第一端部部分和第二端部部分; 沿所述第一端部纵向定位的多个端子; 沿所述第二端部纵向定位的多个电极; 将多个电极电耦合到多个端子的多个导体; 位于所述细长体内的柔性金属纵向加强筋,其中所述加强件具有多个纵向区域,并且每个区域具有不同的柱强度,所述多个纵向区域中的一个或多个区域的柱强度由所述多个纵向区域中的切口或间隙限定 加强件,引起神经刺激的加强件导致邻近细长主体的一个端部部分显示出最大量的柱强度,并朝着细长体的中间部分转变到较低的柱强度。
    • 4. 发明授权
    • Electrical stimulation lead with stiffeners having varying stiffness zones
    • 具有不同刚度区域的加强筋的电刺激引线
    • US08244372B1
    • 2012-08-14
    • US12416813
    • 2009-04-01
    • Enri ZhulatiTerry D. DaglowBrian FranzSojan Abraham
    • Enri ZhulatiTerry D. DaglowBrian FranzSojan Abraham
    • A61N1/00A61B5/01
    • A61N1/0488A61N1/3605
    • In one embodiment, a neurostimulation lead comprises an elongated body of insulative material, comprising a first end portion and a second end portion; a plurality of terminals longitudinally positioned along the first end portion; a plurality of electrodes longitudinally positioned along the second end portion; a plurality of conductors electrically coupling the plurality of electrodes to the plurality of terminals; a flexible metal longitudinal stiffener positioned within the elongated body wherein the stiffener has a plurality of longitudinal zones and each zone has a different column strength, the column strength of one or more zones of the plurality of longitudinal zones being defined by cuts or gaps in the stiffener, the stiffener causing the neurostimulation lead to exhibit a greatest amount of column strength adjacent to one end portion of the elongated body and to transition to a lower column strength toward a medial portion of the elongated body.
    • 在一个实施例中,神经刺激引线包括细长的绝缘材料体,包括第一端部部分和第二端部部分; 沿所述第一端部纵向定位的多个端子; 沿所述第二端部纵向定位的多个电极; 将多个电极电耦合到多个端子的多个导体; 位于所述细长体内的柔性金属纵向加强筋,其中所述加强件具有多个纵向区域,并且每个区域具有不同的柱强度,所述多个纵向区域中的一个或多个区域的柱强度由所述多个纵向区域中的切口或间隙限定 加强件,引起神经刺激的加强件导致邻近细长主体的一个端部部分显示出最大量的柱强度,并朝着细长体的中间部分转变到较低的柱强度。
    • 5. 发明授权
    • Electrical stimulation lead with stiffeners having varying stiffness zones
    • 具有不同刚度区域的加强筋的电刺激引线
    • US08532788B2
    • 2013-09-10
    • US13549736
    • 2012-07-16
    • Enri ZhulatiTerry D. DaglowBrian FranzSojan Abraham
    • Enri ZhulatiTerry D. DaglowBrian FranzSojan Abraham
    • A61N1/00
    • A61N1/0488A61N1/3605
    • In one embodiment, a neurostimulation lead comprises an elongated body of insulative material, comprising a first end portion and a second end portion; a plurality of terminals longitudinally positioned along the first end portion; a plurality of electrodes longitudinally positioned along the second end portion; a plurality of conductors electrically coupling the plurality of electrodes to the plurality of terminals; a flexible metal longitudinal stiffener positioned within the elongated body wherein the stiffener has a plurality of longitudinal zones and each zone has a different column strength, the column strength of one or more zones of the plurality of longitudinal zones being defined by cuts or gaps in the stiffener, the stiffener causing the neurostimulation lead to exhibit a greatest amount of column strength adjacent to one end portion of the elongated body and to transition to a lower column strength toward a medial portion of the elongated body.
    • 在一个实施例中,神经刺激引线包括细长的绝缘材料体,包括第一端部部分和第二端部部分; 沿所述第一端部纵向定位的多个端子; 沿所述第二端部纵向定位的多个电极; 将多个电极电耦合到多个端子的多个导体; 位于所述细长体内的柔性金属纵向加强筋,其中所述加强件具有多个纵向区域,并且每个区域具有不同的柱强度,所述多个纵向区域中的一个或多个区域的柱强度由所述多个纵向区域中的切口或间隙限定 加强件,引起神经刺激的加强件导致邻近细长主体的一个端部部分显示出最大量的柱强度,并朝着细长体的中间部分转变到较低的柱强度。
    • 6. 发明申请
    • COMPLIANT ELECTRICAL STIMULATION LEADS AND METHODS OF FABRICATION
    • 合适的电刺激引线和制造方法
    • US20070282411A1
    • 2007-12-06
    • US11694563
    • 2007-03-30
    • Brian FranzJohn Swanson
    • Brian FranzJohn Swanson
    • A61N1/05
    • A61N1/0551A61N1/0504A61N1/0558Y10T29/49208
    • In one embodiment, a neurostimulation lead for stimulating neural tissue of a patient, comprises: a lead body of insulative material; a plurality of electrodes; a plurality of terminals; a plurality of conductors, wherein the plurality of electrodes are electrically coupled to the plurality of terminals through the plurality of conductors; wherein the plurality of conductors are disposed in a helical manner in a repeating pattern of groups of conductors separated by gaps along a substantial length of the lead body, each gap being larger than an inter-conductor pitch within the groups of conductors; wherein the insulative material is a compliant material permitting elongation of the lead at low stretching forces and the insulative material of the lead body is fused through a substantial volume of the lead body and along a substantial length of the lead body.
    • 在一个实施方案中,用于刺激患者的神经组织的神经刺激引线包括:绝缘材料的引线体; 多个电极; 多个终端; 多个导体,其中所述多个电极通过所述多个导体电耦合到所述多个端子; 其中所述多个导体以螺旋形的方式设置在沿着所述引线体的相当长度的间隙分开的导体组的重复图案中,每个间隙大于所述导体组内的导体间间距; 其中所述绝缘材料是允许所述引线在低拉伸力下延伸的顺应性材料,并且所述引线体的绝缘材料通过所述引线体的大体积并沿着所述引线体的相当长度被熔合。