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    • 4. 发明授权
    • Orthopedic plate
    • 矫形板
    • US08231663B2
    • 2012-07-31
    • US12804775
    • 2010-07-29
    • David B. KayLee A. StrnadDustin DucharmeG. Martin Wynkoop
    • David B. KayLee A. StrnadDustin DucharmeG. Martin Wynkoop
    • A61B17/80
    • A61B17/8061A61B17/8066A61B17/8085
    • The present invention relates to an orthopedic plate and screw system and instruments for surgical fixation of a small bone or bones including specifically the small bones of the spine. The plate facilitates three dimensional contouring to provide for a variety of applications and to accommodate individual variation in bone shape. The plate has a modified x shape including a central trunk portion including one or more screw holes along a longitudinal axis and a set of divergent upper and an oppositely extending set of divergent lower arms, each arm including screw holes which are placed at a radially equal distance but which diverging asymmetrically from the longitudinal axis relative to its paired upper or lower mate. The screws of the system are self-starting, self-tapping screws including the option of partial or full cannulation. In a further embodiment, the plate is intended for use through the length of the spine.
    • 本发明涉及一种整形外科和螺钉系统以及用于小骨或骨骼手术固定的器械,特别是脊柱的小骨。 该板促进三维轮廓以提供各种应用并适应骨形状的个体变化。 板具有改变的x形状,其包括中心主体部分,其包括沿着纵向轴线的一个或多个螺钉孔和一组发散的上部和相对延伸的一组发散的下臂,每个臂包括螺钉孔,放置在径向相等的位置 但是从纵轴相对于其成对的上下配对不对称地发散。 系统的螺钉是自启动,自攻螺钉,包括部分或全部插管选项。 在另一实施例中,该板旨在通过脊柱的长度使用。
    • 5. 发明授权
    • Orthopedic plate for use in small bone repair
    • 矫形板用于小骨修复
    • US08100954B2
    • 2012-01-24
    • US12802169
    • 2010-06-01
    • David B. KayLee A. StrnadDustin DucharmeG. Martin Wynkoop
    • David B. KayLee A. StrnadDustin DucharmeG. Martin Wynkoop
    • A61B17/80
    • A61B17/8061A61B17/8066A61B17/8085
    • The present invention relates to an orthopedic plate and screw system and instruments for surgical fixation of a small bone or bones. The plate facilitates three dimensional contouring to provide for a variety of applications and to accommodate individual variation in bone shape. The plate has a modified x shape including a central trunk portion including one or more screw holes along a longitudinal axis and a set of divergent upper and an oppositely extending set of divergent lower arms, each arm including screw holes which are placed at a radially equal distance but which diverging asymmetrically from the longitudinal axis relative to its paired upper or lower mate. The screws of the system are self-starting, self-tapping screws including the option of partial or full cannulation.
    • 本发明涉及一种矫形板和螺钉系统以及用于小骨或骨骼外科固定的器械。 该板促进三维轮廓以提供各种应用并适应骨形状的个体变化。 板具有改变的x形状,其包括中心主体部分,其包括沿着纵向轴线的一个或多个螺钉孔和一组发散的上部和相对延伸的一组发散的下臂,每个臂包括螺钉孔,放置在径向相等的位置 但是从纵轴相对于其成对的上下配对不对称地发散。 系统的螺钉是自启动,自攻螺钉,包括部分或全部插管选项。
    • 6. 发明申请
    • Orthopedic plate
    • 矫形板
    • US20100305618A1
    • 2010-12-02
    • US12804775
    • 2010-07-29
    • David B. KayLee A. StrnadDustin DucharmeG. Martin Wynkoop
    • David B. KayLee A. StrnadDustin DucharmeG. Martin Wynkoop
    • A61B17/80
    • A61B17/8061A61B17/8066A61B17/8085
    • The present invention relates to an orthopedic plate and screw system and instruments for surgical fixation of a small bone or bones including specifically the small bones of the spine. The plate facilitates three dimensional contouring to provide for a variety of applications and to accommodate individual variation in bone shape. The plate has a modified x shape including a central trunk portion including one or more screw holes along a longitudinal axis and a set of divergent upper and an oppositely extending set of divergent lower arms, each arm including screw holes which are placed at a radially equal distance but which diverging asymmetrically from the longitudinal axis relative to its paired upper or lower mate. The screws of the system are self-starting, self-tapping screws including the option of partial or full cannulation. In a further embodiment, the plate is intended for use through the length of the spine.
    • 本发明涉及一种整形外科和螺钉系统以及用于小骨或骨骼手术固定的器械,特别是脊柱的小骨。 该板促进三维轮廓以提供各种应用并适应骨形状的个体变化。 板具有改变的x形状,其包括中心主体部分,其包括沿着纵向轴线的一个或多个螺钉孔和一组发散的上部和相对延伸的一组发散的下臂,每个臂包括螺钉孔,放置在径向相等的位置 但是从纵轴相对于其成对的上下配对不对称地发散。 系统的螺钉是自启动,自攻螺钉,包括部分或全部插管选项。 在另一实施例中,该板旨在通过脊柱的长度使用。
    • 9. 发明授权
    • Variable axis locking mechanism for use in orthopedic implants
    • 用于矫形植入物的变轴锁定机构
    • US08147530B2
    • 2012-04-03
    • US11713397
    • 2007-03-02
    • Lee A. StrnadAmanda MartinDustin Ducharme
    • Lee A. StrnadAmanda MartinDustin Ducharme
    • A61B17/80
    • A61B17/8047A61B17/8057A61B17/8605
    • A locking mechanism assembly to allow locking of a fastener in an orthopedic implant having its axis at a variable angle relative to the axis of a concavely rounded through opening in the implant. The assembly includes a convexly rounded ring shaped locking cam insert which mates with the through opening and further which includes an expansion slot. The cam insert includes two cam raceways on the inside that are engaged by cam members on the head of the fastener. The cam members increase radially and expand the insert in the through opening to hold it in position by friction. The cam insert further includes a stop member that inhibits the cam insert from rotating as the fastener is rotated in the cam insert and locks it into the desired position.
    • 一种锁定机构组件,用于允许将紧固件锁定在整形外科植入物中,所述矫形植入物具有相对于所述植入物中的凹入圆形通孔的轴线可变的角度。 组件包括与通孔相配合并且进一步包括扩展槽的凸形圆形环形锁定凸轮插入件。 凸轮插入件包括在内侧的两个凸轮滚道,凸轮滚道与紧固件的头部上的凸轮构件接合。 凸轮部件径向增大并使插入件在通孔中膨胀,以通过摩擦将其保持在适当的位置。 凸轮插入件还包括阻止凸轮插入件旋转的止动构件,因为紧固件在凸轮插入件中旋转并将其锁定到期望的位置。
    • 10. 发明授权
    • Method of making orthopedic implants and the orthopedic implants
    • 矫形植入物和矫形植入物的制作方法
    • US07603192B2
    • 2009-10-13
    • US11706616
    • 2007-02-13
    • Amanda MartinDustin DucharmeLee A. Strnad
    • Amanda MartinDustin DucharmeLee A. Strnad
    • G06F19/00A61F2/28
    • A61B17/8061A61B2017/00526B33Y80/00G06F19/00G16H50/50Y10S623/901
    • The present invention relates to a method of designing an orthopedic implant in which a plurality of samples of the bone are selected and a CT scan of each of the samples of the bone is taken so that the data from the CT scan can be used to generate a 3D graphical solid body model of each of the sample of the bone. The 3D graphical models are placed into a category of one or more of average, small, and large, and the center of mass and an X, Y and Z plane for each model is determined. The 3D graphical models for one category is assembled and aligned at the center of mass to create a categorized composite 3D graphical solid body model of the bone. The categorized composite 3D graphical model is sectioned at a specified interval to create a lofted contoured surface of a selected thickness which is cut to create a categorized implant profile. The categorized implant profile is graphically fit on the categorized composite 3D graphical model and on the 3D graphical model of each of the sample of the bone in a category to check for conformity to the surface of the bone. The categorized implant profile is used to create a design of the implant.
    • 本发明涉及一种设计整形外科植入物的方法,其中选择骨的多个样本,并且取得骨骼的每个样本的CT扫描,使得可以使用来自CT扫描的数据来产生 每个骨样本的3D图形实体模型。 3D图形模型被放置在一个或多个平均,小和大的类别中,并且确定每个模型的质心和X,Y和Z平面。 一个类别的3D图形模型在质量中心进行组装和对齐,以创建骨骼的分类复合3D图形实体模型。 分类的复合3D图形模型以指定的间隔进行分段,以创建被切割以产生分类植入物轮廓的所选厚度的放样轮廓表面。 分类的种植体轮廓图形地适合于分类复合3D图形模型和类别中每个骨样品的3D图形模型,以检查与骨表面的一致性。 分类的种植体轮廓用于创建植入物的设计。