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    • 3. 发明授权
    • Collar bore configuration for dynamic spinal stabilization assembly
    • 用于动态脊柱稳定装配的轴环配置
    • US08109975B2
    • 2012-02-07
    • US11668746
    • 2007-01-30
    • Michael S. VeldmanThomas A. CarlsJonathan M. Dewey
    • Michael S. VeldmanThomas A. CarlsJonathan M. Dewey
    • A61B17/70
    • A61B17/7008A61B17/702
    • A dynamic spinal stabilization assembly includes at least one mounting collar with a bore therethrough along a longitudinal axis, and a spinal rod slidably extending through the bore. The bore includes a medially disposed first section of reduced size that tapers both inwardly and outwardly relative to the axis, and respective end sections of relatively larger size. The bore may be defined by an interior wall that convexly curves toward the axis in the first section, advantageously with a constant non-zero radius of curvature. The bore profile helps minimize potential binding that may occur between the collar and the rod. The rod is coupled to bone anchoring elements, with at least one such connection being via the collar.
    • 动态脊柱稳定组件包括至少一个安装环,其具有沿着纵向轴线穿过其中的孔,以及可滑动地延伸穿过所述孔的脊柱杆。 孔包括中间设置的尺寸减小的第一部分,其相对于轴线向内和向外逐渐变细,以及相对较大尺寸的相应端部部分。 孔可以由在第一部分中朝向轴线凸形弯曲的内壁限定,有利地具有恒定的非零曲率半径。 孔型材有助于最小化可能在套环和杆之间发生的结合。 杆连接到骨锚定元件上,其中至少一个这样的连接经由套环。
    • 9. 发明授权
    • Devices and methods for grasping an elongated medical element
    • 用于抓住细长医疗元件的装置和方法
    • US08016830B2
    • 2011-09-13
    • US11335389
    • 2006-01-19
    • Michael S. VeldmanHarold Sparr Taylor
    • Michael S. VeldmanHarold Sparr Taylor
    • A61F2/46A61F5/04B43K27/04
    • A61B17/7083A61B17/162A61B17/8869A61B2017/00477
    • Devices to grasp a medical element that may include a first member, a second member that fits within the first member, and a locking element. The first and second members may move relative to one another to move the locking element between locked and unlocked positions. In an unlocked position, the device may move along the element. In the locked position, the device may lock to the element and motion is prevented. In one application, the device can be placed in the locked position to maintain a desired amount of tension on the element. Methods of grasping the medical element may include moving the first and second members relative to each other thereby moving the locking element to grasp and release the medical element.
    • 用于抓住可包括第一构件,装配在第一构件内的第二构件和锁定元件的医疗元件的装置。 第一和第二构件可以相对于彼此移动以将锁定元件在锁定位置和解锁位置之间移动。 在解锁位置,设备可以沿着元件移动。 在锁定位置,设备可以锁定到元件,并且防止运动。 在一个应用中,该装置可以被放置在锁定位置以保持元件上所需的张力量。 抓住医疗元件的方法可以包括相对于彼此移动第一和第二构件,从而移动锁定元件以抓住并释放医疗元件。
    • 10. 发明授权
    • Variable stiffness support members
    • 可变刚度支撑构件
    • US07875059B2
    • 2011-01-25
    • US11624401
    • 2007-01-18
    • Christopher M. PattersonMichael S. VeldmanRandall Allard
    • Christopher M. PattersonMichael S. VeldmanRandall Allard
    • A61B17/70
    • A61B17/7031A61B17/7004A61B17/705A61B2017/00526
    • Spinal support members having varying stiffnesses are disclosed. In one embodiment, an elongated spinal prosthetic includes a pair of curved elongated portions. The portions are formed of materials having different stiffness characteristics such that the stiffness of the prosthetic varies along its length. In another embodiment, an elongated spinal implant includes a pair of threadedly engaged elongated sections. The first section is formed of a first material having a first rigidity. The second section has an inner portion formed of the first material and an outer portion formed of a second material. The second material is less rigid than the first material. In another embodiment, a modular spinal rod is provided. The modular spinal rod includes a pair of connectable rod portions with different stiffness characteristics. In yet another embodiment, a kit for a modular spinal rod includes a plurality of connectable modular rod portions having different stiffness characteristics.
    • 公开了具有变化的刚度的脊柱支撑构件。 在一个实施例中,细长的脊椎假体包括一对弯曲的细长部分。 这些部分由具有不同刚度特性的材料形成,使得假肢的刚度沿其长度变化。 在另一个实施例中,细长脊柱植入物包括一对螺纹接合的细长部分。 第一部分由具有第一刚性的第一材料形成。 第二部分具有由第一材料形成的内部部分和由第二材料形成的外部部分。 第二种材料刚性比第一种材料硬。 在另一个实施例中,提供了一种模块化脊柱杆。 模块化脊柱杆包括具有不同刚度特性的一对可连接杆部分。 在另一个实施例中,用于模块化脊柱杆的套件包括具有不同刚度特性的多个可连接的模块化杆部分。