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    • 94. 发明授权
    • Advanced coupling device using shape-memory technology
    • 先进的耦合器件采用形状记忆技术
    • US06254602B1
    • 2001-07-03
    • US09408197
    • 1999-09-29
    • Jeff R. Justis
    • Jeff R. Justis
    • A61B1756
    • A61B17/7037A61B17/7032A61B17/7035A61B2017/00867F16B1/0014Y10S606/911
    • An advanced coupling device using shape-memory technology. The coupling device includes a coupling element defining a longitudinal passage extending therethrough, the passage bounded by a side wall having a first end and an opposing second end, the side wall defining a first slot extending from the first end toward the second end, and a second slot extending from the second end toward the first end, and wherein a portion of the second slot is positioned proximately adjacent and longitudinally overlapping a portion of the first slot. The device further includes a compression element at least partially formed of a shape-memory material and being disposed about at least a portion of the coupling element. The compression element has a configuration which contracts about the coupling element and compresses the side wall against a member disposed within the passage to limit movement of the member relative to the coupling element.
    • 一种使用形状记忆技术的先进的耦合装置。 联接装置包括限定通过其延伸穿过的纵向通道的联接元件,该通道由具有第一端和相对的第二端的侧壁限定,该侧壁限定从第一端向第二端延伸的第一狭槽,以及 所述第二槽从所述第二端朝向所述第一端延伸,并且其中所述第二槽的一部分定位成邻近所述第一槽的一部分并且纵向重叠。 该装置还包括至少部分地由形状记忆材料形成并围绕联接元件的至少一部分设置的压缩元件。 压缩元件具有围绕联接元件收缩并且将侧壁压靠在设置在通道内的构件上以限制构件相对于联接元件的移动的构造。
    • 97. 发明申请
    • SPINOUS PROCESS IMPLANT WITH TEMPORARILY EXTENDED POST
    • 旋转过程植入与延期扩张
    • US20130197581A1
    • 2013-08-01
    • US13361497
    • 2012-01-30
    • Jeff R. JustisGregory C. MarikCharles S. Sullivan
    • Jeff R. JustisGregory C. MarikCharles S. Sullivan
    • A61B17/70A61B17/88
    • A61B17/7068
    • Spinous process implants and methods relate to a spinal implant with two plates that are connected together by a post. The implant is configured for each plate to be positioned on outer lateral sides of spinous processes with the post extending through the interspinous space. The second of the two plates includes a bore that receives the post, and that plate is movable along the length of the post, and selectively lockable in position. A guide is removably attached to the distal end of the post and acts to guide the placement of the second plate during assembly, particularly assembly in situ during surgery. The guide is advantageously flexible, or at least more flexible than the post, so that the guide may be routed conveniently during surgery. The guide is removable from the distal end of the post after assembly, prior to closing the surgical site.
    • 脊椎植入物和方法涉及一种脊柱植入物,两个板块通过柱连接在一起。 植入物构造成使得每个板被定位在棘突的外侧面上,柱延伸穿过椎间盘间隙。 两个板中的第二个板包括一个容纳柱的孔,该板可以沿柱的长度移动,并可选择性地锁定就位。 引导件可移除地附接到柱的远端,并且用于在组装期间引导第二板的放置,特别是在手术期间原位组装。 引导件有利地是柔性的,或至少比柱子更灵活,使得引导件可以在手术期间方便地布置。 在组装之后,在关闭手术部位之前,引导件可从柱的远端移除。
    • 99. 发明申请
    • SYSTEMS AND METHODS FOR MINIMALLY INVASIVE SURGICAL PROCEDURES
    • 微创外科手术的系统和方法
    • US20110218581A1
    • 2011-09-08
    • US12715908
    • 2010-03-02
    • Jeff R. Justis
    • Jeff R. Justis
    • A61B17/88
    • A61B17/7085A61B17/708A61B17/7083A61B17/7086
    • One nonlimiting embodiment of the present application is directed to a system for positioning a connecting element adjacent one or more bones or bony portions, such as the spinal column, through a minimally invasive surgical approach. The system generally includes a number of bone anchors engageable to the one or more bones or bony portions and a number of anchor extenders removably engaged to the bone anchors. A connecting element inserter instrument is engageable with one of the anchor extenders and is movable along a longitudinal axis of the anchor extender. As the inserter instrument is moved along the longitudinal axis toward the bone anchors, a leading end of the connecting element is rotated away from the longitudinal axis and the connecting element is positioned at a location adjacent the number of bone anchors in a minimally invasive surgical procedure. However, in other embodiments, different forms and applications are envisioned.
    • 本申请的一个非限制性实施例涉及一种用于通过微创手术方法将连接元件邻近一个或多个骨骼或骨部分(例如脊柱)定位的系统。 该系统通常包括可接合到一个或多个骨骼或骨部分的多个骨锚固件以及可拆卸地接合到骨锚固件的多个锚定器延伸器。 连接元件插入器具可与锚定器延伸器中的一个接合,并且可沿锚定延伸器的纵向轴线移动。 当插入器械沿着纵向轴线朝向骨锚固件移动时,连接元件的前端从纵向轴线旋转,并且连接元件以微创外科手术方式定位在与骨锚固件数量相邻的位置 。 然而,在其他实施例中,可以想到不同的形式和应用。
    • 100. 发明授权
    • Anchor extenders for minimally invasive surgical procedures
    • 用于微创外科手术的锚定器
    • US07947046B2
    • 2011-05-24
    • US11820964
    • 2007-06-21
    • Jeff R. JustisJohn D. Pond, Jr.Larry T. McBride, Jr.
    • Jeff R. JustisJohn D. Pond, Jr.Larry T. McBride, Jr.
    • A61B17/70
    • A61B17/88A61B17/7089
    • Systems for positioning a connecting element adjacent the spinal column in minimally invasive surgical procedures include one or more extenders removably engaged to one or more anchors engaged to a bony segment. The anchor extenders provide a reference to the respective anchor locations within the patient even when the anchor is obstructed by skin and/or tissue of the patient. An inserter can be movably mounted to the one or more anchor extenders, or an inserter can be employed without mounting to the one or more anchor extenders. In either form, the inserter is operable to position a stabilization element relative to the anchors for engagement to the anchors to stabilize the bony segment to which the anchors are engaged. At least one of the one or more anchor extenders includes a reduction assembly that is operable to move one or more portions of the bony segment while maintaining the minimally invasive character of the procedure.
    • 用于在微创手术过程中用于定位邻近脊柱的连接元件的系统包括可拆卸地接合到接合到骨段的一个或多个锚的一个或多个延伸器。 即使当锚固体被患者的皮肤和/或组织阻塞时,锚定器延伸器提供对患者内的相应锚定位置的参考。 插入器可以可移动地安装到一个或多个锚定器延伸器,或者可以使用插入器而不安装到一个或多个锚定器延伸器。 在任一种形式中,插入器可操作以相对于锚固件定位稳定元件以与锚固件接合以稳定锚固件所接合的骨段。 所述一个或多个锚定器延伸器中的至少一个包括还原组件,其可操作以移动所述骨段的一个或多个部分,同时保持所述程序的微创特征。