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    • 96. 发明申请
    • EXPANDABLE LAMINA SPINAL FUSION IMPLANT
    • 可膨胀的椎板融合植入物
    • US20110218572A1
    • 2011-09-08
    • US13033145
    • 2011-02-23
    • Beat LechmannLaura Villiger
    • Beat LechmannLaura Villiger
    • A61B17/70A61B17/56A61B17/88
    • A61B17/7062A61B17/7065
    • An expandable intervertebral implant comprises a caudal fixator including a caudal fixator body and a socket extending longitudinally upward from the caudal fixator body, a cranial fixator including a cranial fixator body and a core extending longitudinally downward from the cranial fixator body, and a circlip configured to fix the longitudinal position of the caudal fixator relative to the cranial fixator. The core can include outwardly-extending cranial ratchet ridges and can be configured to fit into the socket. The circlip can include inwardly-extending circlip ratchet ridges and can be configured to fit inside the socket. The implant can be configured to be installed into an intervertebral space between vertebrae of the spinal motion segment by attaching the implant to laminae of the vertebrae. The implant can be configured to be expanded after installation into the spinal motion segment, such that the implant extends between spinous processes of the vertebrae.
    • 可扩展的椎间植入物包括尾部固定器,其包括尾部固定器主体和从尾部固定器主体纵向向上延伸的插座,头颅固定器,其包括头颅固定器主体和从颅骨固定器主体纵向向下延伸的芯部,以及簧环, 固定尾座固定器相对于颅骨固定器的纵向位置。 芯可以包括向外延伸的颅棘轮脊,并且可以被配置成装配到插座中。 簧环可以包括向内延伸的簧环棘轮脊,并且可以被配置成装配在插座内。 植入物可以被配置成通过将植入物附接到椎骨的椎板而被安装到脊椎运动节段的椎骨之间的椎间空间中。 植入物可以被构造成在安装到脊柱运动段之后扩张,使得植入物在椎骨的棘突之间延伸。
    • 97. 发明授权
    • Intervertebral implant
    • 椎间植入物
    • US07862616B2
    • 2011-01-04
    • US12432088
    • 2009-04-29
    • Beat LechmannDominique BurkardChris M. J. CainClaude Mathieu
    • Beat LechmannDominique BurkardChris M. J. CainClaude Mathieu
    • A61F2/44
    • A61F2/4455A61B17/86A61F2/442A61F2/4465A61F2002/30383A61F2002/30426A61F2002/305A61F2002/30517A61F2002/30593A61F2002/30774A61F2002/30777A61F2002/30843A61F2220/0025A61F2310/00023
    • An intervertebral implant having a three-dimensional body (10) and a securing plate (1). The three-dimensional body (10) includes an upper side (1) and an underside (2) which are suitable for abutting the end plates of two adjacent vertebral bodies, a left side surface (3) and a right side surface (4), a front surface (5) and a rear surface (6), a horizontal middle plane (7) between the upper side (1) and the underside (2), and a vertical middle plane (12) extending from the front surface (5) to the rear surface (6). The three-dimensional body further includes a plurality of boreholes (9a) passing through the body (10), which are suitable for accommodating longitudinal fixation elements (20). The intervertebral implant also includes a front plate (8) displaceably disposed as an insert with the front side (5) of the three-dimensional body, the front plate (8) having a plurality of boreholes (9) in which the longitudinal fixation elements (20) can be anchored, and whose openings overlap with the openings of the boreholes of the three-dimensional body (10). A securing plate can be fastened essentially parallel to the front plate (8) at the three-dimensional body (10) in such a manner that the boreholes of the front plate (9) are covered at least partly by the securing plate (18). By virtue of the configuration of the intervertebral implant, a rigid, firm connection between the intervertebral implant and the longitudinal fixation elements used to fasten it, is possible.
    • 具有三维体(10)和固定板(1)的椎间植入物。 三维体(10)包括适于邻接两个相邻椎体的端板的上侧(1)和下侧(2),左侧表面(3)和右侧表面(4) ,前表面(5)和后表面(6),在上侧(1)和下侧(2)之间的水平中间平面(7)和从前表面(1)延伸的垂直中间平面 5)到后表面(6)。 三维体还包括穿过本体(10)的多个钻孔(9a),其适于容纳纵向固定元件(20)。 椎间植入物还包括前板(8),前板(8)可移动地设置成具有三维体前侧(5)的插入物,前板(8)具有多个钻孔(9),纵向固定元件 (20)可以被锚定,并且其开口与三维体(10)的钻孔的开口重叠。 紧固板可以在三维体(10)处基本上平行于前板(8)固定,使得前板(9)的钻孔至少部分地被固定板(18)覆盖, 。 通过椎间植入物的构型,椎间植入物和用于固定椎间植入物的纵向固定元件之间的刚性牢固的连接是可能的。
    • 98. 发明申请
    • BONE FIXATION ELEMENT
    • 骨固定元件
    • US20100087861A1
    • 2010-04-08
    • US12529691
    • 2008-04-09
    • Beat LechmannRoger Buerki
    • Beat LechmannRoger Buerki
    • A61B17/70A61B17/86
    • A61B17/7037A61B17/7002A61B17/7032A61B2017/00004A61B2017/00867
    • A bone fixation element (10) for use in spinal fixation facilitates insertion of a longitudinal spinal rod (45) in a rod-receiving channel (26) formed in the bone fixation element. The bone fixation element engages a coated spinal rod, preferably a dynamic spinal rod made from a generally non-biocompatible material such as nickel, cobalt chromium or Nitinol. The bone fixation element preferably incorporates first (120) and second (140) rod protectors to contact the coating on the spinal rod when the rod is received in the rod receiving channel of the hone fixation element. The first and second rod protectors are preferably constructed of a material having a hardness that is less than a hardness of a material of the coated spinal rod.
    • 用于脊柱固定的骨固定元件(10)有助于将纵向脊柱杆(45)插入形成在骨固定元件中的杆接收通道(26)中。 骨固定元件与涂覆的脊椎杆接合,优选地由通常为非生物相容的材料(例如镍,钴铬或镍钛诺)制成的动态脊柱杆。 骨固定元件优选地包括第一(120)和第二(140)杆保护器,以将杆接收在固定元件的杆接收通道中时与脊柱杆上的涂层接触。 第一和第二杆保护器优选地由具有小于所涂覆的脊椎杆的材料的硬度的硬度的材料构成。