Spring junction and assembly methods for spinal device
    1.
    发明申请
    Spring junction and assembly methods for spinal device 有权
    脊柱装置的弹簧接头和装配方法

    公开(公告)号:US20070032123A1

    公开(公告)日:2007-02-08

    申请号:US11196102

    申请日:2005-08-03

    IPC分类号: H01R4/24

    摘要: Spinal stabilization devices, systems and methods are provided that include a spring junction wherein a structural member is mountable to a spine attachment fastener and a resilient element is affixed to the structural member along an attachment region of the resilient element. The attachment region is disposed physically separately with respect to an active region of the resilient element. The attachment region can include a weld region produced via an E-beam welding process involving temperatures of 1000° F. or greater, wherein a heat-affected zone adjacent the weld region is disposed physically separately with respect to the active region. The resilient element may be a coil spring including bend regions adjacent its outermost (i.e., last) coils wherein the material of the coil spring initially bends away from the last coil, then bends back toward the last coil before terminating near the last coil.

    摘要翻译: 提供了脊柱稳定装置,系统和方法,其包括弹簧接头,其中结构构件可安装到脊柱附接紧固件,并且弹性元件沿着弹性元件的附接区域固定到结构构件。 附接区域相对于弹性元件的有源区域物理地分开设置。 附接区域可以包括通过涉及1000°F或更高的温度的电子束焊接工艺产生的焊接区域,其中与焊接区域相邻的热影响区域相对于活性区域物理上分开设置。 弹性元件可以是包括与其最外面(即最后)线圈相邻的弯曲区域的螺旋弹簧,其中螺旋弹簧的材料最初弯曲离开最后的线圈,然后在终止在最后的线圈附近之前向后弯曲回到最后的线圈。

    Spring junction and assembly methods for spinal device
    2.
    发明授权
    Spring junction and assembly methods for spinal device 有权
    脊柱装置的弹簧接头和装配方法

    公开(公告)号:US07713288B2

    公开(公告)日:2010-05-11

    申请号:US11196102

    申请日:2005-08-03

    IPC分类号: A61B17/70

    摘要: Spinal stabilization devices, systems and methods are provided that include a spring junction wherein a structural member is mountable to a spine attachment fastener and a resilient element is affixed to the structural member along an attachment region of the resilient element. The attachment region is disposed physically separately with respect to an active region of the resilient element. The attachment region can include a weld region produced via an E-beam welding process involving temperatures of 1000° F. or greater, wherein a heat-affected zone adjacent the weld region is disposed physically separately with respect to the active region. The resilient element may be a coil spring including bend regions adjacent its outermost (i.e., last) coils wherein the material of the coil spring initially bends away from the last coil, then bends back toward the last coil before terminating near the last coil.

    摘要翻译: 提供了脊柱稳定装置,系统和方法,其包括弹簧接头,其中结构构件可安装到脊柱附接紧固件,并且弹性元件沿着弹性元件的附接区域固定到结构构件。 附接区域相对于弹性元件的有源区域物理地分开设置。 附接区域可以包括通过涉及1000°F或更高的温度的电子束焊接工艺产生的焊接区域,其中与焊接区域相邻的热影响区域相对于活性区域物理上分开设置。 弹性元件可以是包括与其最外面(即最后)线圈相邻的弯曲区域的螺旋弹簧,其中螺旋弹簧的材料最初弯曲离开最后的线圈,然后在终止在最后的线圈附近之前向后弯曲回到最后的线圈。

    Integral Spring Junction
    4.
    发明申请
    Integral Spring Junction 审中-公开
    积分弹簧接头

    公开(公告)号:US20100222819A1

    公开(公告)日:2010-09-02

    申请号:US12776913

    申请日:2010-05-10

    IPC分类号: A61B17/70

    摘要: Spinal stabilization devices, systems and methods are provided that include a spring junction wherein a structural member is mountable to a spine attachment fastener and a resilient element is affixed to the structural member along an attachment region of the resilient element. The attachment region is disposed physically separately with respect to an active region of the resilient element. The attachment region can include a weld region produced via an E-beam welding process involving temperatures of 1000° F. or greater, wherein a heat-affected zone adjacent the weld region is disposed physically separately with respect to the active region. The resilient element may be a coil spring including bend regions adjacent its outermost (i.e., last) coils wherein the material of the coil spring initially bends away from the last coil, then bends back toward the last coil before terminating near the last coil.

    摘要翻译: 提供了脊柱稳定装置,系统和方法,其包括弹簧接头,其中结构构件可安装到脊柱附接紧固件,并且弹性元件沿着弹性元件的附接区域固定到结构构件。 附接区域相对于弹性元件的有源区域物理地分开设置。 附接区域可以包括通过涉及1000°F或更高的温度的电子束焊接工艺产生的焊接区域,其中与焊接区域相邻的热影响区域相对于活性区域物理上分开设置。 弹性元件可以是包括与其最外面(即最后)线圈相邻的弯曲区域的螺旋弹簧,其中螺旋弹簧的材料最初弯曲离开最后的线圈,然后在终止在最后的线圈附近之前向后弯曲回到最后的线圈。