发明名称 Composite material posterior dynamic stabilization spring rod
摘要 The present invention provides a Posterior Dynamic Stabilization (PDS) device that allows elongation, which is a critical requirement for a PDS device as it allows pedicles to travel naturally in flexion, extension, and lateral bending of the spine. This interpedicular travel preserves a more natural center of rotation unlike other PDS devices that simply allow bending. In particular, the invention involves a PDS spring rod, wherein the helix is created with composite flow molding (CFM) technology and comprises a polymer matrix reinforced with continuous carbon fibers, wherein the fibers are oriented substantially parallel to the centerline of the helix, thereby creating a high strength spring.
申请公布号 US9445844(B2) 申请公布日期 2016.09.20
申请号 US201012730473 申请日期 2010.03.24
申请人 DePuy Synthes Products, Inc. 发明人 Moumene Missoum;Fanger Jonathan;Flaherty Kevin
分类号 A61B17/70 主分类号 A61B17/70
代理机构 代理人
主权项 1. A posterior dynamic spinal stabilization system, comprising: a) a rod having a first end portion, an intermediate portion having a substantially helical portion having a centerline, and a second end portion, b) a first bone anchor having i) a shank and ii) a rod-receiving portion mated to the first end portion of the rod, c) a second bone anchor having i) a shank and ii) a rod-receiving portion mated to the second end portion of the rod, wherein the substantially helical portion of the rod comprises a polymer matrix reinforced with continuous fibers, wherein substantially all of the fibers are oriented substantially parallel to the centerline of the helical portion, wherein the rod is modular, and comprises separate intermediate portion and end portions, wherein the intermediate portion comprises a pair of threaded ends having a threadform, and wherein the threaded ends of the intermediate portion each comprise a polymer matrix reinforced with continuous fibers, wherein the fibers are oriented substantially parallel to a contour of the threadform.
地址 Raynham MA US