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    • 1. 发明申请
    • FIXATION DEVICE
    • 固定装置
    • WO2008098728A2
    • 2008-08-21
    • PCT/EP2008001025
    • 2008-02-11
    • STRYKER TRAUMA GMBHSIMON BERNDHOFFMANN CARSTENKEMPER JAKOB
    • SIMON BERNDHOFFMANN CARSTENKEMPER JAKOB
    • A61B17/74A61B17/80
    • A61B17/746A61B17/748A61B17/8033A61B17/8042A61B17/8047A61B17/8685
    • A hip fracture device providing distance limited dynamization, load controlled dynamization and combinations of both dynamization methods by varying components. The components may be varied interoperatively. A bone plate having a plurality of openings for receiving a compression bone screw or a cortical screw. An end cap, threadably insertable in the opening and having a layer of polymeric material interposed between the end cap and the top of the head such that the compression of the polymeric material would allow slight axial movement of the screw. Alternatively, a locking ring adapted to attach to the head of the screw and having ridges that have shape complimentary to the depressions and fit in the depressions when the locking ring is attached to the head.
    • 髋骨骨折装置提供距离有限的动力学,负荷控制的动力学和通过变化的组件的两种动力学方法的组合。 这些组件可以互操作地变化。 一种骨板,具有用于接收压缩骨螺钉或皮质螺钉的多个开口。 端盖,可螺纹地插入开口中,并且具有介于端盖和头部顶部之间的聚合材料层,使得聚合材料的压缩将允许螺杆的轻微的轴向移动。 或者,锁定环适于附接到螺钉的头部,并且具有当锁定环附接到头部时具有与凹部互补的形状并且配合在凹部中的脊的脊。
    • 2. 发明申请
    • HIP FRACTURE DEVICE WITH STATIC LOCKING MECHANISM ALLOWING COMPRESSION
    • 具有静态锁定机构的HIP断裂装置允许压缩
    • WO2008128663A3
    • 2008-12-31
    • PCT/EP2008002893
    • 2008-04-11
    • STRYKER TRAUMA GMBHSIMON BERNDKEMPER JAKOBHOFFMANN CARSTEN
    • SIMON BERNDKEMPER JAKOBHOFFMANN CARSTEN
    • A61B17/74A61B17/80
    • A61B17/74A61B17/746A61B17/8042A61B17/8685
    • A bone plate (20, 20A) having a plurality of openings for receiving a compression bone screw (24) or a cortical screw (25). An end cap (28, 40), threadably insertable in the opening and having a layer of polymeric material (44) interposed between the end cap and the top of the head such that the compression of the polymeric material would allow slight axial movement of the screw. Alternatively, a locking ring (52, 72) adapted to attach to the head of the screw (50, 70) and having shape complimentary to the features formed on the head (58, 82). The locking ring and the bone screw being assembled together and being insertable in the bone (22) simultaneously using a dedicated instrument. Compression may be applied to a bone fracture by turning the bone screw alone after the locking ring has reached its final axial position.
    • 一种骨板(20,20A),具有用于接收压缩骨螺钉(24)或皮层螺钉(25)的多个开口。 端盖(28,40),其可螺纹地插入开口中并且具有介于端盖和头部顶部之间的聚合物材料层(44),使得聚合物材料的压缩将允许轻微的轴向运动 拧。 或者,适于附接到螺钉(50,70)的头部并且具有与形成在头部(58,82)上的特征互补的形状的锁定环(52,72)。 锁定环和骨螺钉组装在一起并且可以使用专用仪器同时插入到骨头(22)中。 通过在锁定环已经到达其最终轴向位置之后单独转动骨螺钉,可以将压缩应用于骨折。
    • 3. 发明专利
    • Stereotactic apparatus for locking nail, and locking nail
    • 用于锁定指甲和锁定钉的立体设备
    • JP2005095617A
    • 2005-04-14
    • JP2004260869
    • 2004-09-08
    • Stryker Trauma Gmbhストリーカー トラウマ ゲーエムベーハー
    • SIMON BERNDFULLGRAF RENE
    • A61B17/56A61B17/17A61B17/72
    • A61B17/1725A61B17/1707A61B17/72A61B2090/397
    • PROBLEM TO BE SOLVED: To provide a stereotactic apparatus for a locking nail, by which the position of a horizontal hole in the locking nail is correctly and highly reliably detected. SOLUTION: The stereotactic apparatus for the locking nail 40 includes two oscillation circuits arranged along a longitudinal direction. The apparatus comprises a guide cylinder for disposing a holing apparatus, etc., which is advanced to horizontal holes 42, 44. Three oscillation circuits 54 are arranged on a first plane 52 and to be respectively equal in distance from a first center 60. Three oscillation circuits 58 are arranged on a second plane 56, which is extended in parallel with the first plane 52, and to be respectively equal in distance from a second center 62. Both the planes 52, 56 are mutually oppositely arranged so as to allow the normal line of one surface to be extended through both the centers 62, 60. One pair of oscillation circuits 64, 66 are arranged at interval from a straight line 48 which is extended after passing through the both centers 62, 60. The straight line connecting the pair of oscillation circuits 64, 66 is substantially orthogonally crossed with the longitudinal direction of the locking nail 40 in a state where the stereotactic apparatus is aligned with the locking nail. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种用于锁定钉的立体定向装置,通过该立体定向装置可以正确且高度可靠地检测锁定钉中的水平孔的位置。 解锁方案:锁定钉40的立体定向装置包括沿纵向方向布置的两个振荡电路。 该装置包括用于设置推进到水平孔42,44的打孔装置等的引导圆筒。三个振荡电路54布置在第一平面52上并且分别与第一中心60距离相等。三 振荡电路58布置在第二平面56上,第二平面56与第一平面52平行延伸,并且分别与第二中心62相等。两个平面52,56彼此相对布置,以允许 一个表面的法线延伸穿过两个中心62,60。一对振荡电路64,66与直线48间隔布置,该直线48在穿过两个中心62,60之后延伸。直线连接 在立体定向装置与锁定钉对准的状态下,一对振荡电路64,66与锁定钉40的长度方向基本正交。 版权所有(C)2005,JPO&NCIPI
    • 8. 发明专利
    • Sistema quirúrgico asistido por ordenador
    • ES2425378T3
    • 2013-10-15
    • ES10155104
    • 2010-03-01
    • STRYKER TRAUMA GMBH
    • BLAU ARNOKOHNEN MICHAELSIMON BERNDMUELLER-DANIELS HOLGER
    • A61B17/17A61B19/00A61F2/46
    • Sistema quirúrgico asistido por ordenador que comprende: un cuerpo de referencia (100; 200) en relación con un fémur (300), representando el cuerpo de referencia de formavirtual una posición de un clavo intramedular y su tornillo óseo (200; 210, 220) a aplicar al fémur como estructuraanatómica un dispositivo detector (3) que está adaptado para detectar una posición del cuerpo de referencia en relación con elfémur; detectar el cuerpo de referencia posicionado en relación con la estructura anatómica comprende tomar dosimágenes bidimensionales desde diferentes ángulos y generar una representación tridimensional en base a las dosimágenes bidimensionales, y determinar una posición espacial del cuerpo de referencia en relación con la estructuraanatómica en base a la representación tridimensional, una base de datos (4) que incluye información sobre el clavo intramedular virtual y el tornillo óseo; en el que la base de datos (4) incluye una pluralidad de conjuntos de datos para el clavo intramedular y su tornilloóseo (200; 210, 220), en el que los conjuntos de datos representan diversos clavos intramedulares y su tornillo óseo,un dispositivo de cálculo (5) que está adaptado para superponer la representación, con una representación virtual(200'; 210', 220') de un clavo intramedular y su tornillo óseo a aplicar en base a una emisión del dispositivo detector,y modificar de forma virtual la posición del cuerpo de referencia y optimizar la posición virtual del clavo intramedulary su tornillo óseo a aplicar con respecto al fémur para obtener un mejor ajuste con respecto a reglaspredeterminadas para intervalos admisibles para aplicar el clavo intramedular en relación con el fémur, en el quemodificar de forma virtual comprende seleccionar un clavo intramedular virtual (200; 210, 220) de la base de datosteniendo el clavo un orificio con una inclinación específica con respecto al eje longitudinal del clavo para alojar altornillo óseo, para conseguir el correcto posicionamiento del tornillo óseo implantado más adelante, en el que la selección esllevada a cabo por el sistema quirúrgico asistido por ordenador cuando busca una geometría óptima en la base dedatos y propone el tipo respectivo de clavo intramedular.
    • 10. 发明专利
    • SURGICAL TARGETING SYSTEM AND METHOD
    • CA2804812A1
    • 2012-01-19
    • CA2804812
    • 2010-07-16
    • STRYKER TRAUMA GMBH
    • BLAU ARNOSIMON BERNDKOHNEN MICHAEL
    • A61B17/17
    • Targeting system and device for positioning of a medical sub device with respect to a medical device, wherein a reference body is reproducibly positioned with respect to a targeting device coupling section and reproducibly positioned with respect to a targeting unit, wherein the targeting unit has a targeting direction and is adjustable with respect to the targeting device so that the targeting direction points toward a medical sub device receptacle of a medical device to be coupled to the targeting device coupling section, wherein the imaging system is positionable with respect to the targeting device such that the imaging system is capable of imaging a single two-dimensional view of the reference body and a medical sub device receptacle, wherein the evaluation unit is adapted to generate position data of the single two-dimensional view and to determine from the position data a lateral distance between the targeting direction and a receiving direction of a medical sub device receptacle of a medical device to be coupled.