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    • 2. 发明申请
    • Spinal Rod Connector Assembly For A Vertebral Bone Screw
    • 用于椎骨螺钉的脊柱连接器组件
    • US20090234391A1
    • 2009-09-17
    • US12403875
    • 2009-03-13
    • Michael S. ButlerBrian D. Hartsell
    • Michael S. ButlerBrian D. Hartsell
    • A61B17/70
    • A61B17/7037A61B17/7038A61B17/7041
    • A spinal rod connector provides single step locking of a spinal rod relative to a bone screw. The single step lock-up is in line with the vertebral bone screw while still allowing for effectively 3600 of rotation of a portion of the spinal rod connector assembly with the spinal rod (but functionally 180° or +/−90° of the 0° position depicted in the various figures). The present spinal rod connector assembly utilizes components having V-shapes of various angles to provide holding of the spinal rod. A pulling and compression force locks the spinal rod onto the spinal rod connector and thus relative to the vertebral bone screw to which the spinal rod connector assembly is attached. The present spinal rod connector allows easy sliding down on guides of the spinal rod connector assembly since spinal rod rotation locks up from the rod being pulled towards the vertebral bone screw.
    • 脊柱杆连接器提供相对于骨螺钉的脊柱杆的单步锁定。 单步锁定与椎骨螺钉一致,同时仍然允许脊柱杆连接器组件的一部分与脊柱杆的有效3600旋转(但是功能上为0°的180°或+/- 90° 位置)。 本发明的脊柱杆连接器组件使用具有各种角度的V形的部件来提供脊柱杆的保持。 拉力和压缩力将脊柱杆锁定到脊椎杆连接器上并且因此将脊髓杆连接器组件附接到脊椎骨螺钉。 目前的脊柱杆连接器允许在脊柱杆连接器组件的引导件上容易地向下滑动,因为脊柱杆旋转锁定从杆被拉向椎骨螺钉。
    • 3. 发明申请
    • Spinal Cross-Connector With Spinal Extensor Muscle Curvature
    • 脊柱交叉连接器与脊柱拉伸肌肉曲率
    • US20090177234A1
    • 2009-07-09
    • US12348279
    • 2009-01-03
    • Michael S. ButlerBrian D. Hartsell
    • Michael S. ButlerBrian D. Hartsell
    • A61B17/70
    • A61B17/7052
    • A spinal cross connector is configured for connection between spinal rods and provides allowance or space for spinal extensor muscles once the spinal process has been removed. The cross connector has curved first and second connection members that are adjustable in length and rotation relative to one another. A first clamping member is provided on the first connection member and defines first and second arcuate jaws that are adapted to clamp onto a first spinal rod. A second clamping member is provided on the second connection member and defines first and second arcuate jaws that are adapted to clamp onto a second spinal rod. Both the first and second clamping members are rotatable and thus provide the rotational adjustment. The cross-connector also provides easy in situ sizing and adjustability.
    • 脊柱交叉连接器被配置为用于脊椎杆之间的连接,并且一旦脊柱过程被移除就为脊柱伸肌提供允许或空间。 十字连接器具有弯曲的第一和第二连接构件,该第一和第二连接构件的长度和相对于彼此的旋转是可调节的。 第一夹紧构件设置在第一连接构件上并且限定适于夹紧到第一脊柱杆上的第一和第二弓形夹爪。 第二夹紧构件设置在第二连接构件上并且限定适于夹紧到第二脊柱杆上的第一和第二弓形夹爪。 第一和第二夹紧构件都是可旋转的,因此提供旋转调节。 交叉连接器还提供容易的原位尺寸和可调性。
    • 6. 发明授权
    • Expandable spinal spacer
    • 可扩展脊柱垫片
    • US08177813B2
    • 2012-05-15
    • US12234634
    • 2008-09-20
    • Michael S. ButlerBrian D. Hartsell
    • Michael S. ButlerBrian D. Hartsell
    • A61B17/70
    • A61B17/7065A61B17/70A61B2017/00557
    • A spinal spacer or stenotic device is expandable, inflated and/or filled in situ or ex vivo through the addition of a biocompatible fill material into the spinal implant once inserted or implanted in like manner to an angioplasty bag. Once implanted, expansion or inflation of the present expandable spinal spacer distracts the spine (creates spacing). The present expandable spinal spacer can operate as an interspinous, interspinous process, or intralaminar spinal spacer. In general the present expandable spinal space creates and/or maintains spacing between vertebrae or components of vertebrae. The present expandable spinal spacer is formed of a generally pliable biocompatible material that is collapsible and expandable/fillable. Preferably, but not necessarily, the biocompatible material is a mesh or weave type material, although other materials may be used.
    • 脊髓间隔物或狭窄装置可以通过将插入或植入血管成形术袋中的生物相容性填充材料一次插入或植入脊柱植入体中而原位或离体扩张,充气和/或填充。 一旦植入,本发明的可扩张脊柱垫片的膨胀或膨胀分散脊柱(产生间距)。 本发明的可扩张脊椎间隔器可以作为棘突间棘突间隔或椎间盘内脊髓间隔器。 通常,本发明的可扩张脊柱空间产生和/或维持椎骨或椎骨部件之间的间隔。 本发明的可扩张脊椎间隔物由可折叠和可膨胀/可填充的通常柔韧的生物相容性材料形成。 优选但不是必需的,生物相容性材料是网状或编织型材料,尽管可以使用其它材料。
    • 8. 发明申请
    • Expandable Spinal Spacer
    • 可扩展脊柱间隔
    • US20090082808A1
    • 2009-03-26
    • US12234634
    • 2008-09-20
    • Michael S. ButlerBrian D. Hartsell
    • Michael S. ButlerBrian D. Hartsell
    • A61B17/70A61F2/44
    • A61B17/7065A61B17/70A61B2017/00557
    • A spinal spacer or stenotic device is expandable, inflated and/or filled in situ or ex vivo through the addition of a biocompatible fill material into the spinal implant once inserted or implanted in like manner to an angioplasty bag. Once implanted, expansion or inflation of the present expandable spinal spacer distracts the spine (creates spacing). The present expandable spinal spacer can operate as an interspinous, interspinous process, or intralaminar spinal spacer. In general the present expandable spinal space creates and/or maintains spacing between vertebrae or components of vertebrae. The present expandable spinal spacer is formed of a generally pliable biocompatible material that is collapsible and expandable/fillable. Preferably, but not necessarily, the biocompatible material is a mesh or weave type material, although other materials may be used.
    • 脊髓间隔物或狭窄装置可以通过将插入或植入血管成形术袋中的生物相容性填充材料一次插入或植入脊柱植入体中而原位或离体扩张,充气和/或填充。 一旦植入,本发明的可扩张脊柱垫片的膨胀或膨胀分散脊柱(产生间距)。 本发明的可扩张脊椎间隔器可以作为棘突间棘突间隔或椎间盘内脊髓间隔器。 通常,本发明的可扩张脊柱空间产生和/或维持椎骨或椎骨部件之间的间隔。 本发明的可扩张脊椎间隔物由可折叠和可膨胀/可填充的通常柔韧的生物相容性材料形成。 优选但不是必需的,生物相容性材料是网状或编织型材料,尽管可以使用其它材料。
    • 9. 发明授权
    • Spinal facet fastener
    • 脊柱小面紧固件
    • US08715321B2
    • 2014-05-06
    • US12572101
    • 2009-10-01
    • Michael S. ButlerBrian D. Hartsell
    • Michael S. ButlerBrian D. Hartsell
    • A61B17/70
    • A61B17/7064
    • A spinal implant includes a first leg configured to abut a surface of an inferior articular process of a first vertebra that forms one portion of a spinal facet joint between the first vertebra and an adjacent second vertebra, a second leg configured to abut a surface of a superior articular process of the adjacent second vertebrae that forms another portion of the spinal facet joint between the first vertebra and the adjacent second vertebra, and a cross-member connected between the first and second legs and maintaining the first and second legs in a spaced-apart relationship. The spinal implant may restrict flexion and/or extension of the spinal facet joint when received about the spinal facet joint.
    • 脊柱植入物包括构造成邻接形成第一椎骨的下关节突的表面的第一腿,所述第一脊椎形成在第一椎骨和相邻的第二椎骨之间形成脊柱小关节的一部分,第二腿构造成邻接第 相邻的第二椎骨的上关节进程形成在第一椎骨和相邻的第二椎骨之间的脊椎小关节的另一部分,以及连接在第一和第二腿之间并且将第一和第二腿保持间隔开的横向构件, 分开的关系。 脊柱植入物可以限制在接近脊椎小关节时脊柱小关节的弯曲和/或延伸。
    • 10. 发明授权
    • Instruments for installing multi-section intervertebral spinal implants
    • 用于安装多节段椎间植入物的仪器
    • US08475461B2
    • 2013-07-02
    • US12797360
    • 2010-06-09
    • Michael S. ButlerBrian D. Hartsell
    • Michael S. ButlerBrian D. Hartsell
    • A61B17/88A61B17/70
    • A61F2/4611A61F2002/4485A61F2002/4623A61F2002/4627
    • Instruments are provided for delivering and installing a multi-section spinal implant in-situ one section at a time by sequential deployment and assembling of the multi-section spinal implant sections into an intervertebral space. An advancement mechanism provides controlled deployment of individual implant sections from the instrument. Each instrument accepts a plurality of implant sections that are stacked on a deployment rod. Activation of the advancement mechanism advances a pusher against a rearward implant section of the implant section stack. This, in turn, advances all or some of the implant sections such that the forward most implant section exits the instrument. As the advancement mechanism is further activated, additional implant sections are deployed from the instrument. In this manner, a multi-section spinal implant of any number of implant sections may be delivered and assembled in situ. In one form, the advancement mechanism comprises an indexing mechanism. In another form, the advancement mechanism comprises a ratchet device provided on and between a trigger and an advancement tube.
    • 提供仪器用于通过将多部分脊柱植入部分顺序部署和组装到椎间空间中,一次部分地递送和安装多部分脊柱植入物。 推进机构提供来自仪器的单个植入物部分的受控部署。 每个器械接受堆叠在展开杆上的多个植入部分。 推进机构的激活使推进器抵靠植入部分堆叠的后部注入部分。 这进而推进所有或一些植入部分,使得最前面的植入部分离开器械。 随着推进机构的进一步活动,从仪器部署了额外的植入部分。 以这种方式,任何数量的植入部分的多部分脊柱植入物可以原位输送和组装。 在一种形式中,前进机构包括索引机构。 在另一种形式中,前进机构包括设置在扳机和推进管之间和之间的棘轮装置。