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    • 25. 发明申请
    • Patient-Specific Glenoid Guide With a Reusable Guide Holder
    • 具有可重复使用的引导支架的患者特异性螺旋导管
    • US20140257304A1
    • 2014-09-11
    • US13889869
    • 2013-05-08
    • BIOMET MANUFACTURING CORPORATION
    • Christopher EASH
    • A61B17/16
    • A61B17/1778A61B2017/568A61B2034/108
    • A glenoid device for preparing a shoulder joint of a patient includes a reusable guide holder having a body between an upper surface and a lower surface and a bore passing through the body of the guide holder. The glenoid device also includes a patient-specific glenoid guide having a body with an upper and lower surface. The lower surface of the patient-specific glenoid guide is configured as a negative surface of a glenoid face based on preoperative image scans of the shoulder joint of the patient. The upper face of the patient-specific glenoid guide is configured to be coupled and contact the lower face of the guide holder, such that the bore of the guide holder is aligned along a patient-specific bore through the body of the patient-specific glenoid guide and along a corresponding alignment axis of the patient-specific glenoid guide.
    • 用于制备患者的肩关节的关节圈装置包括具有在上表面和下表面之间的主体的可重复使用的引导保持器和穿过引导保持器的主体的孔。 关节盂装置还包括具有上表面和下表面的本体的患者专用关节盂引导件。 基于患者肩关节的术前图像扫描,患者专用关节盂引导件的下表面被构造为关节盂面的负表面。 患者专用关节盂引导件的上表面被构造成联接并接触引导保持器的下表面,使得引导保持器的孔沿着患者特定的孔对准,穿过患者特异性关节盂的主体 引导并沿着患者专用关节盂引导件的对应对准轴线。
    • 26. 发明申请
    • VARIABLE ANGLE HUMERAL COMPONENTS
    • 可变角度HUMERAL COMPONENTS
    • US20140107791A1
    • 2014-04-17
    • US13653844
    • 2012-10-17
    • BIOMET MANUFACTURING CORPORATION
    • Bryce A. IschNicholas J. KatranaNathan A. Winslow
    • A61F2/40
    • A61F2/4014A61F2002/30332A61F2002/30378A61F2002/30507A61F2002/30528A61F2002/30538F16B5/0216F16B5/0275
    • A variable angle locking system comprising a humeral component having an underside at least partially defined by a cavity; a humeral stem couplable to the humeral component; a first washer defining a first through-hole and including a threaded portion; an adaptor defining a second through-hole and having a shelf portion and an elongated second washer, the shelf portion being adapted to be received by the cavity of the humeral component; a spring washer positioned between the first washer and the elongated second washer and defining a third through-hole; and a screw configured to lock the humeral component to the humeral stem at more than one angle relative to a common axis defined by the first, second and third through-holes, the screw including a head portion having helical threads and an elongated shaft portion extending from the head portion.
    • 一种可变角度锁定系统,包括具有至少部分地由空腔限定的下侧的肱骨部件; 与肱骨组件相连的肱骨柄; 限定第一通孔并包括螺纹部分的第一垫圈; 限定第二通孔并具有搁架部分和细长的第二垫圈的适配器,所述搁架部分适于被所述肱骨部件的腔容纳; 定位在所述第一垫圈和所述细长的第二垫圈之间并限定第三通孔的弹簧垫圈; 以及螺钉,其构造成相对于由第一,第二和第三通孔限定的公共轴线以多于一个角度将肱骨部件锁定到肱骨杆,所述螺钉包括具有螺旋形螺纹的头部部分和延伸的细长轴部分 从头部。
    • 30. 发明申请
    • Distal Femoral Cutting Guide
    • 远端股骨切割指南
    • US20130178859A1
    • 2013-07-11
    • US13716914
    • 2012-12-17
    • Biomet Manufacturing Corporation
    • Duke A. FOXRobert MetzgerScott Twomey
    • A61B17/17
    • A61B17/155A61B17/1764
    • A method of positioning a femoral cutting guide on a distal end of a femur establishes at least a first reference plane to perform a distal femoral planar cut. The method includes inserting a mounting member into an intramedullary canal of the femur and coupling a bridge member to the mounting member. The method also includes placing a cutting guide member over a medial anterior portion of the distal femur. The cutting guide member has a first channel that establishes the first reference plane. The bridge member has a bridge channel. A wall of the bridge channel is inserted into the first channel of the cutting guide member. A mounting mechanism generates resistance between the bridge member and the cutting guide member. The resistance is overcome by positioning the cutting guide member relative to the femur.
    • 将股骨切割引导件定位在股骨的远端上的方法建立至少第一参考平面以执行远端股骨平面切割。 该方法包括将安装构件插入到股骨的髓内管中,并将桥构件连接到安装构件。 该方法还包括将切割引导构件放置在远端股骨的内侧前部上。 切割引导构件具有建立第一参考平面的第一通道。 桥梁桥具有桥梁通道。 桥梁通道的壁被插入切割引导构件的第一通道中。 安装机构在桥构件和切割引导构件之间产生电阻。 通过将切割引导构件相对于股骨定位来克服阻力。