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    • 12. 发明申请
    • SLIDER LOCKING MECHANISM FOR PEDICLE SCREWS
    • 滑块锁紧机构
    • US20100256689A1
    • 2010-10-07
    • US12416953
    • 2009-04-02
    • Keith E. Miller
    • Keith E. Miller
    • A61B17/86
    • A61B17/7032
    • Systems, devices and methods are provided for locking a spinal rod in a top loading pedicle screw. In one form, the device includes a slider geometrically shaped to secure the spinal rod in the bone screw in its final resting position. Engagement pins located on the slider mate with notches located on the bone screw that both provisionally, and eventually, lock the spinal rod in the bone construct. The device replaces threaded set screw designs that have been known to incur cross threading problems. Thus, the device can also make spinal rod tightening faster and easier when compared to a threaded set screw.
    • 提供系统,装置和方法用于将脊柱杆锁定在顶部装载椎弓根螺钉中。 在一种形式中,该装置包括几何形状的滑块,以将脊椎杆固定在骨螺钉中处于其最终静止位置。 位于滑块上的接合销与位于骨螺钉上的切口配合,临时并最终将脊柱杆锁定在骨构件中。 该设备取代已知会引起交叉线程问题的螺纹固定螺钉设计。 因此,与螺纹固定螺钉相比,该装置还可以使脊柱杆紧固更快更容易。
    • 16. 发明授权
    • Spinal rod extenders and methods of use
    • 脊柱扩张器和使用方法
    • US08728124B2
    • 2014-05-20
    • US13071838
    • 2011-03-25
    • Keith E Miller
    • Keith E Miller
    • A61B17/70
    • A61B17/705A61B17/7014
    • A spinal rod assembly may be formed by attaching an extension portion onto a spinal rod that extends along a longitudinal axis. The extension portion may include a rod coupler that attaches to the spinal rod with a first coupling that includes a first degree of rotational freedom and a first degree of translational freedom in positioning the rod coupler relative to the spinal rod along the longitudinal axis. The extension portion may further include an extender rod including an elongated rod body that may be secured to the rod coupler using a second coupling that includes at least a second degree of rotational freedom in positioning the extender rod relative to the rod coupler about an axis substantially perpendicular to the longitudinal axis. The extension portion may be assembled in situ to a spinal rod that has been previously secured to vertebral bodies in a patient.
    • 脊柱杆组件可以通过将延伸部分附接到沿着纵向轴线延伸的脊柱杆上而形成。 所述延伸部分可以包括杆联接器,所述杆联接器具有第一联接件,所述第一联接器包括第一程度的自由度,以及沿所述纵向轴线相对于所述脊柱杆定位所述杆联接器的第一程度的平移自由度。 延伸部分还可以包括一个延长杆,该延伸杆包括细长的杆体,该细长杆体可以使用第二联接器固定到杆联接器上,该第二联接器包括至少第二程度的旋转自由度,以使得延伸杆相对于杆联接器绕轴线基本上 垂直于纵轴。 延伸部分可以原位组装到先前已经固定到患者体内椎体的脊柱杆上。
    • 19. 发明申请
    • SPINAL IMPLANT SYSTEM AND METHOD
    • 脊柱植入系统和方法
    • US20130103094A1
    • 2013-04-25
    • US13280462
    • 2011-10-25
    • Jeffrey W. BealeLarry T. McBrideKeith E. Miller
    • Jeffrey W. BealeLarry T. McBrideKeith E. Miller
    • A61B17/70A61B17/88
    • A61B17/7076A61B17/708A61B17/7082
    • A spinal implant system includes a first member including at least one wall, which includes a first axial end surface, a second axial end surface and an outer surface including a locking cavity. A second member includes a first extension defining an inner surface and a second extension defining an inner surface, the inner surfaces defining a first cavity therebetween. At least one of the inner surfaces includes a first angled portion and a second angled portion. A third member is disposed in the first cavity, and includes a first arm and a second arm, at least one of the arms includes a protrusion. The third member is configured for axial translation relative between a first orientation and a second orientation. Methods of use are disclosed.
    • 脊柱植入系统包括包括至少一个壁的第一构件,其包括第一轴向端面,第二轴向端面和包括锁定腔的外表面。 第二构件包括限定内表面的第一延伸部和限定内表面的第二延伸部,所述内表面在它们之间限定第一腔。 内表面中的至少一个包括第一倾斜部分和第二倾斜部分。 第三构件设置在第一空腔中,并且包括第一臂和第二臂,至少一个臂包括突起。 第三构件构造成在第一取向和第二取向之间进行轴向平移。 公开了使用方法。