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    • 1. 发明授权
    • Bone screw retention in a spinal implant
    • 脊柱植入物中的骨螺钉保持力
    • US09351768B2
    • 2016-05-31
    • US13593862
    • 2012-08-24
    • James A. RinnerDaniel PredickMichael S. Butler
    • James A. RinnerDaniel PredickMichael S. Butler
    • A61B17/70A61B17/80
    • A61B17/7059A61B17/8042
    • A spinal implant has a mechanism for inhibiting a bone screw used in attaching the spinal implant to the spine from backing out from the spinal implant once the bone screw has been received in the spinal implant. The spinal implant has a bone screw bore defining a bore wall in which is disposed a resilient closed curve band or ring. The resilient closed curve band has a plurality of resilient segments that extend into the bore. Each one of the plurality of resilient segments form a spring that allows a head of a bone screw to ingress there through but prevents the head of the bone screw from egress there from. The resilient closed curve band forms a retention ring that is received in one or more slots, channels, grooves or the like in the bore hole wall. The plurality of resilient segments are formed as arcs, curves and/or configured arcs/curves that extend radially inward from outer arced or curved portions of the retention ring.
    • 一旦骨螺钉已被接收在脊柱植入物中,脊柱植入物具有用于抑制用于将脊柱植入物附接到脊柱的骨螺钉从脊柱植入物退出的机构。 脊柱植入物具有限定孔壁的骨螺钉孔,其中设置有弹性闭合曲线带或环。 弹性闭合曲线带具有延伸到孔中的多个弹性段。 多个弹性段中的每一个形成弹簧,该弹簧允许骨螺钉的头部进入其中,但是防止骨螺钉的头部从那里流出。 弹性闭合曲线带形成保持环,其被容纳在钻孔壁中的一个或多个槽,通道,凹槽等中。 多个弹性段形成为从保持环的外弧形或弯曲部分径向向内延伸的弧,曲线和/或构造的弧/曲线。
    • 3. 发明申请
    • Bone Screw Retention in a Spinal Implant
    • 脊髓植入物中的骨螺钉保留
    • US20130053887A1
    • 2013-02-28
    • US13593862
    • 2012-08-24
    • Daniel PredickMichael S. Butler
    • Daniel PredickMichael S. Butler
    • A61B17/70
    • A61B17/7059A61B17/8042
    • A spinal implant has a mechanism for inhibiting a bone screw used in attaching the spinal implant to the spine from backing out from the spinal implant once the bone screw has been received in the spinal implant. The spinal implant has a bone screw bore defining a bore wall in which is disposed a resilient closed curve band or ring. The resilient closed curve band has a plurality of resilient segments that extend into the bore. Each one of the plurality of resilient segments form a spring that allows a head of a bone screw to ingress there through but prevents the head of the bone screw from egress there from. The resilient closed curve band forms a retention ring that is received in one or more slots, channels, grooves or the like in the bore hole wall. The plurality of resilient segments are formed as arcs, curves and/or configured arcs/curves that extend radially inward from outer arced or curved portions of the retention ring.
    • 一旦骨螺钉已被接收在脊柱植入物中,脊柱植入物具有用于抑制用于将脊柱植入物附接到脊柱的骨螺钉从脊柱植入物退出的机构。 脊柱植入物具有限定孔壁的骨螺钉孔,其中设置有弹性闭合曲线带或环。 弹性闭合曲线带具有延伸到孔中的多个弹性段。 多个弹性段中的每一个形成弹簧,该弹簧允许骨螺钉的头部进入其中,但是防止骨螺钉的头部从那里流出。 弹性闭合曲线带形成保持环,其被容纳在钻孔壁中的一个或多个槽,通道,凹槽等中。 多个弹性段形成为从保持环的外弧形或弯曲部分径向向内延伸的弧,曲线和/或构造的弧/曲线。
    • 4. 发明授权
    • Posterior cervical cross connector assemblies
    • 后颈椎交叉连接器组件
    • US08246665B2
    • 2012-08-21
    • US12645110
    • 2009-12-22
    • Michael S. ButlerDaniel Predick
    • Michael S. ButlerDaniel Predick
    • A61B17/70A61B17/04A61B17/86A61F2/08
    • A61B17/7037A61B17/7049A61B17/705
    • A spinal cross connector head assembly and a cross connector assembly utilizing the spinal cross connector head assembly are configured for fixation to an existing spinal rod bone screw head. The spinal cross connector head assembly has one or more components which incorporate one or more breakaway portions that aid in the installation of the cross connector head assembly onto a polyaxial spinal rod bone screw assembly. The spinal cross connector assembly includes first and second spinal cross connector head assemblies each of which is configured for fixation to existing, adjacent spinal rod screw heads and connection with a cross connector rod. Each spinal cross connector rod head assembly has a dual breakaway system including a cross connector head component having a breakaway collar that, once detached, provides a polyaxial cross connector head, and a set screw component having a breakaway set screw that, once detached, provides fixation of the orientation of the polyaxial cross connector head relative to the polyaxial spinal rod bone screw head.
    • 脊椎交叉连接器头部组件和利用脊椎交叉连接头组件的交叉连接器组件被构造成用于固定到现有的脊柱杆骨螺钉头部。 脊柱交叉连接器头组件具有一个或多个部件,其包括一个或多个分离部分,其有助于将十字连接头组件安装到多轴脊柱骨骨螺钉组件上。 脊柱交叉连接器组件包括第一和第二脊柱交叉连接器头部组件,每个构件用于固定到现有的相邻脊柱杆螺钉头并与十字连接器杆连接。 每个脊柱交叉连接器杆头组件具有双重分离系统,其包括具有分离套环的十字连接器头部部件,该分离套环一旦被分离,提供多轴交叉连接器头部,以及具有分离式固定螺钉的固定螺钉部件, 固定多轴交叉连接器头相对于多轴脊柱杆骨螺钉头的方位。
    • 5. 发明授权
    • Posterior cross connector assembly
    • 后交叉连接器组件
    • US09131963B2
    • 2015-09-15
    • US13414076
    • 2012-03-07
    • Daniel Predick
    • Daniel Predick
    • A61B17/70
    • A61B17/7049A61B17/7052
    • A spinal rod cross connector assembly for connection to adjacent spinal rods provides polyaxial positioning of polyaxial heads of the cross connector assembly relative to each spinal rod and which allows adjustment and fixation of the span of a cross connector or arm of the cross connector assembly between the two polyaxial heads through movement of the cross member relative to only one polyaxial head. Each polyaxial head has a clamp that provides attachment to the respective spinal rod and which allows the body of the polyaxial head to rotate relative thereto. Fixation of the orientation of a polyaxial head is achieved through placement and interaction of a set screw in the polyaxial head. The arm is preferably integral with and extends from a lateral side of one of the polyaxial heads. The second one of the polyaxial heads receives the arm and allows length adjustment relative thereto.
    • 用于连接到相邻脊柱杆的脊柱杆交叉连接器组件提供了相对于每个脊柱杆的交叉连接器组件的多轴头的多轴定位,并且允许十字连接器组件的十字连接器或臂的跨度在 两个多轴头通过横向构件相对于仅一个多轴头的运动。 每个多轴头具有夹具,其提供到相应的脊柱杆的附接,并且允许多轴头的主体相对于其旋转。 通过多轴头中的固定螺钉的放置和相互作用来实现多轴头的定向的固定。 臂优选地与多轴头中的一个的横向侧成一体并且从其侧向延伸。 多轴头中的第二个接收臂并允许相对于其的长度调节。
    • 6. 发明申请
    • Spinal Implants For Lumbar Vertebra To Sacrum Fixation
    • 脊柱植入物用于腰椎到骶骨固定
    • US20120136390A1
    • 2012-05-31
    • US13306744
    • 2011-11-29
    • Michael S. ButlerDaniel Predick
    • Michael S. ButlerDaniel Predick
    • A61B17/70
    • A61B17/7067
    • A spinal implant is provided for posterior vertebral stabilization and/or fixation of a lumbar vertebra relative to the pelvis by attachment to the spinous process of a lumbar vertebra and to the sacrum of the pelvis. The posterior spinal implant has a spinous process attachment portion and a sacrum attachment portion formed by a first part having a first spinous process segment and a first sacrum segment and a second part having a second spinous process segment and a second sacrum segment. The first segments are carried on a first arm, while the second segments are carried on a second arm with the first and second arms adjustable relative to each other. The first and second spinous process segments and the first and second sacrum segments each have a plurality of inwardly extending spikes for respectively gripping or clamping against the sides of the spinous process and the sacrum.
    • 脊椎植入物被提供用于通过附着到腰椎和骨盆的骶骨的棘突来相对于骨盆来椎体后部稳定和/或固定腰椎。 后脊柱植入物具有棘突过程附接部分和由第一部分形成的棘突附接部分,第一部分具有第一棘突段和第一骶骨段,第二部分具有第二棘突段和第二骶骨段。 第一段被承载在第一臂上,而第二段被承载在第二臂上,其中第一和第二臂相对于彼此可调节。 第一和第二棘突部分以及第一和第二骶骨节段各自具有多个向内延伸的钉,用于分别夹紧或夹紧在棘突和骶骨的侧面。
    • 7. 发明授权
    • Self-contained assembly for installation of orthopedic implant components onto an orthopedic implant
    • 用于将整形外科植入物组件安装到整形外科植入物上的独立组件
    • US08100909B2
    • 2012-01-24
    • US12412701
    • 2009-03-27
    • Michael S. ButlerDaniel Predick
    • Michael S. ButlerDaniel Predick
    • A61B17/00
    • A61B17/7035A61B17/7032A61B2090/037
    • A self-contained orthopedic implant component assembly provides for concerted or concerted and independent installation of orthopedic components onto an orthopedic implant. The assembly includes a first orthopedic component formation for installation of a first orthopedic component thereof onto the orthopedic implant and a second orthopedic component formation for installation of a second orthopedic component thereof onto the orthopedic implant. The second orthopedic implant formation is carried by the first orthopedic implant formation such that installation of the first orthopedic implant formation into the orthopedic implant at least partially installs the second orthopedic implant formation into the orthopedic implant. One or both of the first and second orthopedic component formations includes a component driver for receipt of installation torque whereby application of rotational torque installs the orthopedic component(s) onto the orthopedic implant. A component driver is detachable from its formation during or after installation of the corresponding orthopedic component depending on form of the self-contained orthopedic implant component assembly.
    • 一个独立的整形外科植入物部件组件提供整形外科植入物的协调一致和独立安装的整形外科组件。 该组件包括用于将其第一矫形部件安装到整形外科植入物上的第一矫形部件结构和用于将其第二整形外科部件安装到矫形外科植入物上的第二矫形部件结构。 所述第二整形外科植入物形成由所述第一矫形植入物构造承载,使得所述第一整形外科植入物结构至所述整形外科植入物的安装至少部分地将所述第二矫形外科植入物部分安装到所述整形外科植入物中。 第一和第二矫形部件结构中的一个或两个包括用于接收安装扭矩的部件驱动器,由此施加旋转扭矩将矫形部件安装到整形外科植入物上。 根据独立矫形外科植入部件组件的形状,组件驱动器在安装相应的矫形部件期间或之后可从其形成中脱离。
    • 8. 发明申请
    • Posterior Cervical Cross Connector Assemblies
    • 后颈椎交叉连接器组件
    • US20100160981A1
    • 2010-06-24
    • US12645110
    • 2009-12-22
    • Michael S. ButlerDaniel Predick
    • Michael S. ButlerDaniel Predick
    • A61B17/86
    • A61B17/7037A61B17/7049A61B17/705
    • A spinal cross connector head assembly and a cross connector assembly utilizing the spinal cross connector head assembly are configured for fixation to an existing spinal rod bone screw head. The spinal cross connector head assembly has one or more components which incorporate one or more breakaway portions that aid in the installation of the cross connector head assembly onto a polyaxial spinal rod bone screw assembly. The spinal cross connector assembly includes first and second spinal cross connector head assemblies each of which is configured for fixation to existing, adjacent spinal rod screw heads and connection with a cross connector rod. Each spinal cross connector rod head assembly has a dual breakaway system including a cross connector head component having a breakaway collar that, once detached, provides a polyaxial cross connector head, and a set screw component having a breakaway set screw that, once detached, provides fixation of the orientation of the polyaxial cross connector head relative to the polyaxial spinal rod bone screw head.
    • 脊椎交叉连接器头部组件和利用脊椎交叉连接头组件的交叉连接器组件被构造成用于固定到现有的脊柱杆骨螺钉头部。 脊柱交叉连接器头组件具有一个或多个部件,其包括一个或多个分离部分,其有助于将十字连接头组件安装到多轴脊柱骨骨螺钉组件上。 脊柱交叉连接器组件包括第一和第二脊柱交叉连接器头部组件,每个构件用于固定到现有的相邻脊柱杆螺钉头并与十字连接器杆连接。 每个脊柱交叉连接器杆头组件具有双重分离系统,其包括具有分离套环的十字连接器头部部件,该分离套环一旦被分离,提供多轴交叉连接器头部,以及具有分离式固定螺钉的固定螺钉部件, 固定多轴交叉连接器头相对于多轴脊柱杆骨螺钉头的方位。
    • 10. 发明申请
    • Directional Sequential Dilation System With Neuro Monitoring
    • 具有神经监测的定向顺序扩张系统
    • US20140172002A1
    • 2014-06-19
    • US14135238
    • 2013-12-19
    • Daniel Predick
    • Daniel Predick
    • A61M29/00
    • A61B17/3417A61B17/025A61B17/3421A61B2017/00261A61B2017/0262
    • A directional sequential dilation system includes a dilation tube assembly having a plurality of cylindrical, nesting directional dilation tubes including an initial cylindrical dilation tube that provides a passage for neuro-monitoring. Subsequent cylindrical directional dilation tubes sequentially increase in size including the increase in diameter. Each tube is configured to nest onto a previous cylindrical directional dilation tube via an off-centered structure formed in each of the subsequent cylindrical directional dilation tubes. The off-centered cutouts allow the subsequent cylindrical dilation tubes to dilate the soft tissue while at the same time sequentially migrate the incision dilation in a particular direction and distance from the initial cylindrical dilation tube insertion point (i.e. the initial neuro-monitoring insertion point). The directional sequential dilation system is particularly useful in spinal surgery.
    • 方向顺序扩张系统包括具有多个圆柱形嵌套定向扩张管的扩张管组件,其包括提供用于神经监测的通道的初始圆柱形扩张管。 随后的圆柱形定向膨胀管的尺寸依次增加,包括直径的增加。 每个管被构造成通过在每个随后的圆柱形定向膨胀管中形成的偏心结构嵌套在先前的圆柱形定向膨胀管上。 偏心切口允许随后的圆柱形扩张管扩张软组织,同时在与初始的圆柱形扩张管插入点(即初始神经监测插入点)的特定方向和距离上顺序地移动切口扩张, 。 方向顺序扩张系统在脊柱手术中特别有用。