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    • 72. 发明申请
    • EXPANDABLE INTERSPINOUS PROCESS SPACER
    • 可扩展的互动过程间隔
    • US20100222816A1
    • 2010-09-02
    • US12645289
    • 2009-12-22
    • Josef GabelbergerZoher BootwalaJustin Coppes
    • Josef GabelbergerZoher BootwalaJustin Coppes
    • A61B17/70
    • A61B17/7065A61B17/7071
    • An expandable interspinous process spacer implant for insertion and/or implantation between a spinous process of a superior vertebral body and a spinous process of an inferior vertebral body, the implant comprising multiple pairs of legs joined in a scissor-like fashion and pivotally coupled to each other by one or more pins, where each leg has multiple slots along its longitudinal axis. The implant further may include a pair of bearing surfaces coupled between the legs via cross pins and a first plate and second plate each of which is coupled to a pair of roller pins disposed between a pair of slots on the legs where rotation of a fastener in the fastener holes of the first and second plate results in the first plate and the second plate being drawn toward each other causing the expansion of the height of the implant.
    • 一种用于在上椎体的棘突和下椎体的棘突之间插入和/或植入的可扩展的棘突间间隔植入物,所述植入物包括以剪刀状方式连接并可枢转地联接到每个 另一个由一个或多个销钉组成,其中每个支腿沿其纵向轴线具有多个槽。 植入物还可以包括一对通过十字销连接在腿部之间的支承表面,第一板和第二板联接到一对辊销上,该对销钉设置在腿上的一对槽之间, 第一和第二板的紧固件孔导致第一板,并且第二板被拉向彼此,导致植入物的高度的膨胀。
    • 74. 发明申请
    • PERCUTANEOUS TECHNIQUE AND IMPLANT FOR EXPANDING THE SPINAL CANAL
    • PERCUTANEOUS技术和植入物用于扩展脊柱
    • US20100198277A1
    • 2010-08-05
    • US12755569
    • 2010-04-07
    • D. Greg Anderson
    • D. Greg Anderson
    • A61B17/56
    • A61B17/8685A61B17/1617A61B17/1631A61B17/1637A61B17/1671A61B17/7071A61B17/8004A61B2017/22038
    • The present invention expands a spinal canal by drilling a cylindrical passage in each pedicle of a vertebra, making a circumferential pedicle cut (osteotomy) through each pedicle from within the passage, separating each pedicle cut by inserting an implant into the passage which distracts the pedicle cut to expand the spinal canal, and securing each pedicle cut, allowing the vertebra to heal with the spinal canal expanded. The implant includes an outer sleeve, an inner bolt, and expandable flanges. The outer sleeve includes an upper portion and a lower portion, with the expandable flanges connected to the lower portion and housed within the upper portion. Rotation of the inner bolt causes the upper and lower portions of the outer sleeve to separate, causing the pedicle cut to widen and the expandable flanges to radially extend into and stabilize the widened pedicle cut to effectuate expansion of the spinal canal.
    • 本发明通过在椎骨的每个椎弓根中钻一个圆柱形通道来扩张椎管,从通道内通过每个椎弓根切割圆形椎弓根(截骨),通过将植入物插入通道中分离每个椎弓根,从而分散椎弓根 切割扩大椎管,并确保每个椎弓根切割,允许椎骨与脊柱扩张愈合。 植入物包括外套筒,内螺栓和可膨胀凸缘。 外套筒包括上部和下部,其中可膨胀凸缘连接到下部并容纳在上部中。 内螺栓的旋转导致外套筒的上部和下部分离,导致椎弓根切割加宽,并且可扩张的凸缘径向延伸进入并稳定加宽的椎弓根切割,以实现椎管的扩张。
    • 75. 发明申请
    • LAMINOPLASTY APPARATUS AND METHODS
    • LAMINOPLASTY装置和方法
    • US20100185239A1
    • 2010-07-22
    • US12355230
    • 2009-01-16
    • Chetan PatelEeric TruumeesHenry Brown
    • Chetan PatelEeric TruumeesHenry Brown
    • A61B17/70A61B17/58
    • A61B17/7071A61B17/7062
    • A simple yet effective adjustable laminoplasty implant and procedure includes a member positioned within or through a hole formed through a spinous process, and an elongated element is provided with a medial end coupled to the member and a lateral end configured for engagement with a bone mass fixation device. The elongated element may be a bent rod. The rod may have a medial end with a cross-section that is smaller than that of the lateral end. The member positioned within or through a hole formed through a spinous process may be a sleeve with angled endcaps. The endcaps may include bone-engaging teeth. Alternatively, the sleeve may have a central bore and barbs that engage with surrounding bone when an elongated member is inserted in the bore. The mass fixation device may a pedicle screw. The pedicle screw may be configured to receive a transverse rod. Alternatively, the mass fixation device may itself be a rod. Method of performing a laminoplasty In accordance with the invention are also disclosed.
    • 简单而有效的可调式椎板成形术植入物和手术包括定位在通过棘突形成的孔内或穿过通过棘突形成的孔中的构件,并且细长元件设置有联接到构件的中间端和被构造成与骨块固定 设备。 细长元件可以是弯曲杆。 杆可具有中间端,其横截面小于侧端的横截面。 定位在通过棘突形成的孔内或穿过孔的构件可以是具有成角度的端盖的套筒。 端盖可以包括骨接合齿。 或者,当细长构件插入孔中时,套筒可以具有中心孔和倒钩,其与周围的骨接合。 质量固定装置可以是椎弓根螺钉。 椎弓根螺钉可以构造成接收横杆。 或者,质量固定装置本身可以是杆。 执行椎板成形术的方法也公开了根据本发明。
    • 80. 发明授权
    • Supplemental spine fixation device and method
    • 补充脊柱固定装置及方法
    • US07621939B2
    • 2009-11-24
    • US11092862
    • 2005-03-29
    • James F. ZuchermanKen Y. HsuCharles J. WinslowHenry A. Klyce
    • James F. ZuchermanKen Y. HsuCharles J. WinslowHenry A. Klyce
    • A61F2/30
    • A61K31/37A61B17/66A61B17/7047A61B17/7065A61B17/7068A61B17/7071
    • A supplemental spine fixation device and method is used in association with a primary spine fixation device. The supplemental spine fixation device includes a guide and spacer for distracting apart adjacent spinous processes and the device has hook members which hook about the first and second spinous processes. With the spinous processes distracted and the hook members about the spinous processes, the hook members can be rigidly secured to a hub in order to rigidly affix the spinous processes about the spacer. The rigidity between the spinous processes assures that the vertebral bodies will be held rigidly in place in order to promote bone growth and fusion. Further additional freedom of movement between the spacer and hub is accomplished with the spacer being pivotably mounted relative to the hub. The hooks have a tissue distracting lead-in guide for allowing the hooks to be easily urged between spinous processes.
    • 辅助脊柱固定装置和方法与主要脊柱固定装置相关联使用。 补充脊柱固定装置包括用于分散相邻棘突的引导件和间隔件,并且该装置具有钩绕第一和第二棘突的钩构件。 随着棘突和钩构件围绕棘突的分离,钩构件可以刚性地固定到轮毂上,以便使围绕隔离物的棘突刚性地固定。 棘突之间的刚性确保了椎体将被刚性地保持在适当位置以促进骨生长和融合。 间隔件和轮毂之间的进一步额外的移动自由度是通过间隔件相对于轮毂可枢转地安装来实现的。 钩具有组织分散的引入引导件,用于允许钩在棘突之间容易地被推动。