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    • 2. 发明申请
    • Bone grafts
    • 骨移植
    • US20050165483A1
    • 2005-07-28
    • US10766504
    • 2004-01-27
    • Eddie RayLawrence BoydJames Van HoeckBradley CoatesJeffrey Poyner
    • Eddie RayLawrence BoydJames Van HoeckBradley CoatesJeffrey Poyner
    • A61F2/00A61F2/44A61F2/28
    • A61F2/446A61F2/44A61F2/4455A61F2310/00023
    • Spinal spacers 20 are provided for fusion of a motion segment. The spacers include a load bearing member 21 having a wall 22 sized for engagement within a space between adjacent vertebrae to maintain the space and an effective amount of an osteogenic composition to stimulate osteoinduction. The osteogenic composition includes a substantially pure osteogenic factor in, a pharmaceutically acceptable carrier. In one embodiment the load bearing member includes a bone graft impregnated in an osteogenic composition. In another embodiment, the osteogenic composition 30 is packed within a chamber 25 defined in the graft. Any suitable configuration of a bone graft is contemplated, including bone dowels, D-shaped spacers and cortical rings. A spinal spacer 300 for engagement between vertebrae is also provided which includes a body 301 formed of a bone composition. The body 301 includes a first end 311, an opposite second 315 end, a superior face 335 defining a superior vertebral engaging surface 337 and an inferior face 338 defining an inferior vertebral engaging surface 340. At least one of the vertebral engaging surfaces defines a set of migration resistance grooves 350. Each of the grooves 350 includes a first face 355 defining an angle of no more than about 90 degrees relative to the engaging surface 340 and a second opposing sloped face 360. The first and second faces 355, 360 define an arcuate pocket 370 therebetween for trapping vertebral bone to resist migration of the spacer 300. In one embodiment, the grooves 350 are arranged in series in that all of the second faces 360 slope in the same direction.
    • 提供脊柱间隔件20用于运动段的融合。 间隔件包括具有壁22的承载构件21,该壁22的尺寸设置成用于接合在相邻椎骨之间的空间中,以维持空间和有效量的成骨组合物以刺激骨诱导。 成骨组合物包括药学上可接受的载体中基本上纯的成骨因子。 在一个实施例中,承载构件包括浸渍在成骨组合物中的骨移植物。 在另一个实施方案中,成骨组合物30包装在限定在移植物中的腔室25内。 涵盖骨移植物的任何合适构型,包括骨榫,D形间隔物和皮质环。 还提供了用于椎骨之间的接合的脊椎间隔件300,其包括由骨组合物形成的主体301。 主体301包括第一端311,相对的第二315端,限定上脊椎接合表面337的上表面335和限定下椎骨接合表面340的下表面338。 椎骨接合表面中的至少一个限定一组迁移阻力槽350。 每个凹槽350包括第一面355,其相对于接合表面340和第二相对的倾斜面360限定出不超过约90度的角度。 第一和第二面355,360在其间限定弓形袋370,用于捕获椎骨以抵抗间隔物300的迁移。 在一个实施例中,凹槽350串联设置,因为所有的第二面360在相同的方向上倾斜。
    • 10. 发明授权
    • Posterior incremental spinal fixation system
    • 后增量脊柱固定系统
    • US08906067B2
    • 2014-12-09
    • US13426184
    • 2012-03-21
    • Vincent C. TraynelisGregory MarikBradley Coates
    • Vincent C. TraynelisGregory MarikBradley Coates
    • A61B17/70
    • A61B17/7005A61B17/7008A61B17/7037
    • A spinal fixation device may include a bone anchoring member, a rod receiver, and an connection member. The rod receiver may include a channel for receiving a rod projection from a first adjacent fixation assembly. The rod receiver may have a central axis such that the channel is generally perpendicular to the central axis. The connection member may have a rod projection configured to extend to a second adjacent fixation assembly. The rod receiver may be coupled to the connection member and rotatable about the central axis of the rod receiver. The interior fixation assembly may be axially fixed such that the bone anchoring member, the rod receiver and the connection member are not translatably movable relative to each other.
    • 脊柱固定装置可以包括骨锚固构件,杆接收器和连接构件。 杆接收器可以包括用于从第一相邻固定组件接收杆突起的通道。 杆接收器可以具有中心轴线,使得通道大致垂直于中心轴线。 连接构件可以具有延伸到第二相邻固定组件的杆突起。 杆接收器可以联接到连接构件并且可围绕杆接收器的中心轴线旋转。 内固定组件可以轴向固定,使得骨锚固构件,杆接收器和连接构件不能相对于彼此可平移地移动。