会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • SPINAL ROD
    • 脊柱
    • WO2010030772A1
    • 2010-03-18
    • PCT/US2009/056503
    • 2009-09-10
    • LIFE SPINE, INC.BUTLER, Michael, S.
    • BUTLER, Michael, S.
    • A61F2/30
    • A61B17/701A61B17/7011A61B17/7032A61B17/7083
    • A spine or spinal rod has a cross-section defining angled sides that cooperate with a spinal rod opening of a spinal rod holder. In one form, the spine rod has an essentially pentagonal cross-section that thus essentially defines angled sides or side surfaces that interact with the spinal rod holder opening to positively seat the spine rod into the spinal rod holder and prevent spine rod from rotation. In the pentagonal cross- section form, the spine rod has a top or posterior side/side surface, a bottom or anterior side/side surface, a first lateral side/side surface, a second lateral side/side surface, a first angled sub-lateral side/side surface and a second angled sub-lateral side/side surface. The first and second angled sub-lateral sides/side surfaces provide contact with angled sides of the spine rod holder opening. In another form, the spine rod has an essentially V-shaped cross-section that defines sides/side surfaces that interact with the spinal rod holder opening. Preferably, but not necessarily, the spine rod is formed of PEEK. Other bio-compatible materials, however, may be used.
    • 脊柱或脊柱杆具有限定与脊柱杆保持器的脊柱杆开口配合的成角度的侧面的横截面。 在一种形式中,脊柱具有基本上五边形的横截面,因此基本上限定与脊柱杆保持器开口相互作用的成角度的侧面或侧表面,以将脊柱杆正向地置于脊柱杆保持器中并防止脊柱旋转。 在五边形横截面形式中,脊柱具有顶部或后侧/侧表面,底部或前侧/侧表面,第一侧面/侧表面,第二侧面/侧表面,第一倾斜子 侧面/侧面和第二倾斜的副侧面/侧面。 第一和第二倾斜的副侧面/侧表面提供与脊柱保持器开口的成角度的侧面的接触。 在另一种形式中,脊柱具有基本上V形的横截面,其限定与脊柱杆保持器开口相互作用的侧/侧表面。 脊柱优选但不一定是由PEEK形成的。 然而,可以使用其它生物相容性材料。
    • 2. 发明申请
    • SELF-CONTAINED ASSEMBLY FOR INSTALLATION OF ORTHOPEDIC IMPLANT COMPONENTS ONTO AN ORTHOPEDIC IMPLANT
    • 用于安装正齿植入物的自体植入物的自包装
    • WO2009120985A2
    • 2009-10-01
    • PCT/US2009/038602
    • 2009-03-27
    • LIFE SPINE, INC.BUTLER, Michael, S.PREDICK, Daniel
    • BUTLER, Michael, S.PREDICK, Daniel
    • A61B17/58
    • A61B17/7035A61B17/7032A61B2090/037
    • A self-contained orthopedic implant component assembly provides for concerted or concerted and independent installation of orthopedic components onto an orthopedic implant. The assembly includes a first orthopedic component formation for installation of a first orthopedic component thereof onto the orthopedic implant and a second orthopedic component formation for installation of a second orthopedic component thereof onto the orthopedic implant. The second orthopedic implant formation is carried by the first orthopedic implant formation such that installation of the first orthopedic implant formation into the orthopedic implant at least partially installs the second orthopedic implant formation into the orthopedic implant. One or both of the first and second orthopedic component formations includes a component driver for receipt of installation torque whereby application of rotational torque installs the orthopedic component(s) onto the orthopedic implant. A component driver is detachable from its formation during or after installation of the corresponding orthopedic component depending on form of the self- contained orthopedic implant component assembly.
    • 一个独立的整形外科植入物部件组件提供整形外科植入物的协调一致和独立安装的整形外科组件。 该组件包括用于将其第一矫形部件安装到整形外科植入物上的第一矫形部件结构和用于将其第二整形外科部件安装到矫形外科植入物上的第二矫形部件结构。 所述第二整形外科植入物形成由所述第一矫形植入物构造承载,使得所述第一整形外科植入物结构至所述整形外科植入物的安装至少部分地将所述第二矫形外科植入物部分安装到所述整形外科植入物中。 第一和第二矫形部件结构中的一个或两个包括用于接收安装扭矩的部件驱动器,由此施加旋转扭矩将矫形部件安装到整形外科植入物上。 组件驱动器在安装相应的整形外科组件期间或之后,根据自包含的整形外科植入部件组件的形状可从其形成中脱离。
    • 4. 发明申请
    • SPINAL CROSS-CONNECTOR WITH SPINAL EXTENSOR MUSCLE CURVATURE
    • 脊柱交叉连接器与脊椎扩展肌肉曲线
    • WO2009089123A1
    • 2009-07-16
    • PCT/US2009/030061
    • 2009-01-03
    • LIFE SPINE, INC.BUTLER, Michael, S.HARTSELL, Brian, D.
    • BUTLER, Michael, S.HARTSELL, Brian, D.
    • 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。
    • 5. 发明申请
    • SPINAL INTERBODY DISTRACTOR
    • 脊柱内分泌器
    • WO2009042978A1
    • 2009-04-02
    • PCT/US2008/078038
    • 2008-09-27
    • LIFE SPINE, INC.BUTLER, Michael, S.HARTSELL, Brian, D.
    • BUTLER, Michael, S.HARTSELL, Brian, D.
    • A61F2/44
    • A61F2/4455A61B2017/0256A61F2002/30131A61F2002/30166A61F2002/30904A61F2002/4475A61F2230/0013A61F2230/0028
    • A spinal interbody distractor is provided that is configured to provide distraction of adjacent vertebrae after implantation within a spinal disc cavity through manual rotation of the distractor once implanted. Such implantation is preferably, but not necessarily, through minimally invasive surgical techniques. In one form, the distractor is configured to be rotated 90 degrees to 180 degrees after implantation to provide distraction of adjacent vertebrae. The distractor has a lateral side to lateral side height of a first length and a superior end to inferior end height of a second length that is greater than the first length. This configuration allows the distractor to be inserted into a spinal disc cavity having an opening with a height that is smaller than an end height of the spinal disc cavity after implantation thereof, thereby providing distraction of adjacent vertebrae.
    • 提供了一种脊椎体间牵引器,其被配置为通过一旦植入一分钟的手动旋转来在植入后在脊椎盘腔内提供相邻椎骨的牵引。 这种植入优选但不一定通过微创手术技术。 在一种形式中,牵引器被配置为在植入之后旋转90度至180度以提供相邻椎骨的牵引。 牵引器具有第一长度的横向侧向侧向高度以及大于第一长度的第二长度的上端至下端高度。 这种构造允许牵引器插入具有开口的脊椎盘腔中,所述开口的高度在植入后小于脊椎盘腔的端部高度,从而提供相邻椎骨的分离。
    • 6. 发明申请
    • SPINAL CROSS-CONNECTOR
    • 脊柱交叉连接器
    • WO2009012186A1
    • 2009-01-22
    • PCT/US2008/069899
    • 2008-07-12
    • LIFE SPINE, INC.BUTLER, Michael, S.BUCCI, Kara, A.HARTSELL, Brian, D.
    • BUTLER, Michael, S.BUCCI, Kara, A.HARTSELL, Brian, D.
    • A61B17/70
    • A61B17/7052
    • A spinal cross-connector (100) is configured for adjustable connection between spinal fixation devices such as spinal fixation rods (70,80) and allows for adjustment in length or distance between adjacent spinal rod clamping members (116. 136) and provides independent rotational adjustment of the two spinal rod clamping members (116 136) for individual and independent attachment thereof to the adjacent spinal rods of the spinal rod assembly The cross-connector (100) has first and second connection members (112, 114) that are adjustable in length and rotation relative to one another A first spinal rod clamping member (116) is provided on an end of the first connection member (112) and defines first and second arced jaws (118, 120) that are adapted to clamp onto a first spinal rod
    • 脊柱交叉连接器(100)构造成用于脊柱固定装置(例如脊柱固定杆)(70,80)之间的可调节连接,并允许在相邻的脊柱杆夹持构件(116,136)之间的长度或距离上进行调节,并提供独立旋转 两个脊柱杆夹紧构件(116,136)的调整,用于单独和独立地附接到脊椎杆组件的相邻脊柱杆。交叉连接器(100)具有第一和第二连接构件(112,114),其可调节 相对于彼此的长度和旋转第一脊柱杆夹紧构件(116)设置在第一连接构件(112)的端部上,并且限定第一和第二弧形夹爪(118,120),其适于夹紧在第一脊柱 竿
    • 8. 发明申请
    • STRUCTURE FOR JOINING AND RETAINING MULTI-PART ORTHOPEDIC IMPLANTS
    • 用于加工和保留多部分对位植入物的结构
    • WO2007098188A3
    • 2008-01-31
    • PCT/US2007004482
    • 2007-02-21
    • LIFE SPINE INCBUTLER MICHAEL SMILELLA MICHAEL J JR
    • BUTLER MICHAEL SMILELLA MICHAEL J JR
    • A61F2/30
    • A61F2/4465A61B17/7059A61F2002/30331A61F2002/3038A61F2002/305A61F2002/30604A61F2002/30772A61F2002/30904A61F2002/448A61F2220/0025A61F2220/0033
    • An orthopedic implant structure is provided for joining and retaining components of a multi-part orthopedic device. The orthopedic implant joining and retaining structure may be embodied in two or more components of the multi-part orthopedic device. In one form, the multi-part orthopedic implant structure is a resilient snap structure (36) such as a resilient flange (50) in one part (12a) and a channel structure (34) formed in another part (12b) of an orthopedic implant (10). A channel (40) of the channel structure (34) may have a cavity (42) formed at a rear of the channel (40) that accepts a configured lip (52) formed on an end of the resilient flange (50). According to another embodiment, the retaining structure includes resilient snap flanges (202) formed on an interconnection component (166) of the multi part orthopedic implant (160). A corresponding bore (198) in another part (164) of the multi-part orthopedic implant (160) receives the interconnection component (166).
    • 提供矫形植入物结构用于连接和保持多部分矫形装置的部件。 矫形植入物接合和保持结构可以体现在多部分矫形装置的两个或更多个部件中。 在一种形式中,多部分矫形植入物结构是弹性卡扣结构(36),例如在一个部分(12a)中的弹性凸缘(50)和形成在矫形外科的另一部分(12b)中的通道结构(34) 植入物(10)。 通道结构(34)的通道(40)可以具有形成在通道(40)的后部的空腔(42),该空腔接纳形成在弹性凸缘(50)的端部上的构造的唇缘(52)。 根据另一个实施例,保持结构包括形成在多部件矫形植入物(160)的互连部件(166)上的弹性卡扣凸缘(202)。 多部分整形外科植入物(160)的另一部分(164)中的对应孔(198)接收互连部件(166)。
    • 9. 发明申请
    • STRUCTURE FOR JOINING AND RETAINING MULTI-PART ORTHOPEDIC IMPLANTS
    • 用于加工和保留多部分对位植入物的结构
    • WO2007098188A2
    • 2007-08-30
    • PCT/US2007/004482
    • 2007-02-21
    • LIFE SPINE, LLCBUTLER, Michael, S.MILELLA, Michael, J., Jr.
    • BUTLER, Michael, S.MILELLA, Michael, J., Jr.
    • A61F2/30
    • A61F2/4465A61B17/7059A61F2002/30331A61F2002/3038A61F2002/305A61F2002/30604A61F2002/30772A61F2002/30904A61F2002/448A61F2220/0025A61F2220/0033
    • An orthopedic implant structure is provided for joining and retaining components of a multi-part orthopedic device. The orthopedic implant joining and retaining structure may be embodied in two or more components of the multi-part orthopedic device. In one form, the multi-part orthopedic implant structure is a resilient snap structure (36) such as a resilient flange (50) in one part (12a) and a channel structure (34) formed in another part (12b) of an orthopedic implant (10). A channel (40) of the channel structure (34) may have a cavity (42) formed at a rear of the channel (40) that accepts a configured lip (52) formed on an end of the resilient flange (50). According to another embodiment, the retaining structure includes resilient snap flanges (202) formed on an interconnection component (166) of the multi part orthopedic implant (160). A corresponding bore (198) in another part (164) of the multi-part orthopedic implant (160) receives the interconnection component (166).
    • 提供矫形植入物结构用于连接和保持多部分矫形装置的部件。 矫形植入物接合和保持结构可以体现在多部分矫形装置的两个或更多个部件中。 在一种形式中,多部分矫形植入物结构是弹性卡扣结构(36),例如在一个部分(12a)中的弹性凸缘(50)和形成在矫形外科的另一部分(12b)中的通道结构(34) 植入物(10)。 通道结构(34)的通道(40)可以具有形成在通道(40)的后部的空腔(42),该空腔接纳形成在弹性凸缘(50)的端部上的构造的唇缘(52)。 根据另一个实施例,保持结构包括形成在多部件矫形植入物(160)的互连部件(166)上的弹性卡扣凸缘(202)。 多部分整形外科植入物(160)的另一部分(164)中的对应孔(198)接收互连部件(166)。
    • 10. 发明申请
    • PEDICLE SCREW CONSTRUCTS FOR SPINE FIXATION SYSTEMS
    • 用于脊柱固定系统的螺钉螺钉结构
    • WO2005070165A2
    • 2005-08-04
    • PCT/US2005/000898
    • 2005-01-13
    • LIFE SPINE, LLCBUTLER, Michael, S.YOUSSEF, Jim, A.HILIBRAND, Alan, S.
    • BUTLER, Michael, S.YOUSSEF, Jim, A.HILIBRAND, Alan, S.
    • A61B17/56A61B17/58A61B17/70
    • A61B17/7038A61B17/7032A61B17/7034A61B17/7037
    • A pedicle screw coupling construct (31, 120, 140, 191, 260) for a pedicle screw construct (30, 190, 286) provides fixation of angular orientation (β, γ, θ) thereof relative to a pedicle screw (32) independent of fixation of a received spinal rod (25, 170, 250, 280) to the coupling construct (31, 120, 140, 191, 260). The pedicle screw construct (30, 190, 286) forms one component or element in a spinal fixation system. The independent fixation coupling construct also provides for fixation of the angular orientation of the coupling construct while the coupling construct has received the spinal rod. In another form, a coupling head or construct (31, 120, 140, 191, 260) is configured to allow a pedicle screw shaft (42) to pass therethrough but retain the pedicle screw head (44) for rotation of the coupling head about the pedicle screw head. The coupling head or construct (31, 120, 140, 191, 260) is also configured to allow at least a 45° arc of pivot or articulation about a pedicle screw shaft (42) relative to a longitudinal axis of a spinal rod (25, 170, 250, 280) received in the body. This allows the head with a received spinal rod to fold, bend or pivot relative to the pedicle screw shaft, particularly to a greater degree than the prior art.
    • 用于椎弓根螺钉构造(30,190,286)的椎弓根螺钉联接构造(31,120,140,​​191,260)提供了其相对于角度方向(β,γ,θ)的固定 与接收的脊柱杆(25,170,250,280)固定到联接构造(31,120,140,​​191,260)无关的椎弓根螺钉(32)。 椎弓根螺钉结构(30,190,286)在脊柱固定系统中形成一个部件或元件。 独立固定连接构造还提供了在连接构造已经接收脊柱杆时固定连接构造的角取向。 在另一种形式中,联接头或构造(31,120,140,​​191,260)被构造成允许椎弓根螺钉杆(42)穿过,但保持椎弓根螺钉头(44)以使联接头围绕其旋转 椎弓根螺钉头。 联接头或结构(31,120,140,​​191,260)也构造成允许至少45°角, 相对于容纳在身体中的脊柱杆(25,170,250,280)的纵向轴线围绕椎弓根螺钉杆(42)枢转或铰接弧形。 这允许具有接收的脊柱杆的头部相对于椎弓根螺钉轴折叠,弯曲或枢转,特别是比现有技术更大的程度。