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    • 1. 发明授权
    • Bilateral lamina implant
    • 双侧椎板植入物
    • US08986357B2
    • 2015-03-24
    • US13247617
    • 2011-09-28
    • Harm-Iven JensenHelmut D. Link
    • Harm-Iven JensenHelmut D. Link
    • A61B17/70A61B17/88
    • A61B17/7074A61B17/7071A61B17/888
    • A reinforcing implant for the lamina of a vertebra includes a transverse support, one anchoring device for the right-hand side and one anchoring device for the left-hand side of the lamina of the vertebra. An expansion element with a guide device and cheek elements is provided, the cheek elements being mounted to be longitudinally movable along the guide device. Bearing surfaces for the lamina are formed on outer faces of the cheek elements directed away from each other, and a return stop for the cheek elements is provided. At least one of the cheek elements is provided with an aligning device for modifying the orientation of its bearing surface relative to the guide device. In this way, a secure anchoring of the reinforcing implant on the resected surfaces produced during a laminectomy can be achieved, with precise adaptation of the reinforcing implant to the actual anatomical conditions following the laminectomy.
    • 用于椎骨椎板的加强植入物包括横向支撑件,用于右侧的一个锚定装置和用于椎骨椎板左侧的一个锚定装置。 提供了具有引导装置和颊部元件的膨胀元件,所述颊部元件被安装成沿引导装置纵向移动。 在彼此指向的面颊元件的外表面上形成用于层板的轴承表面,并且提供用于颊部元件的返回止动件。 至少一个面颊元件设置有对准装置,用于相对于引导装置改变其支承表面的取向。 以这种方式,可以实现在椎板切除术期间产生的加强植入物在切除的表面上的牢固锚固,其中加强植入物与椎板切除术之后的实际解剖条件具有精确的适应性。
    • 5. 发明授权
    • Joint endoprosthesis
    • 关节内假体
    • US5944759A
    • 1999-08-31
    • US926952
    • 1997-09-10
    • Helmut D. Link
    • Helmut D. Link
    • A61F2/30A61F2/38
    • A61F2/30965A61F2/389A61F2002/3895
    • Joint endoprosthesis with a prosthesis part which on one side forms a slide surface (1), on the other side is to be connected to the bone without any bend-resistant intermediate spacer, and is made of a polymer material which favors sliding, such as polyethylene. The prosthesis part has a centrally situated area (3) in which it is mainly exposed to the loading and wear. The prosthesis part is essentially plate-shaped. It contains a reinforcement element which exhibits tensile strength, surrounds the main area of loading and wear and lies at least partially within the third of the thickness remote from the slide surface.
    • 具有假体部分的联合内假体,其一侧形成滑动表面(1),在另一侧上将被连接到骨骼上而没有任何抗弯中间间隔物,并且由有利于滑动的聚合物材料制成,例如 聚乙烯 假体部分具有中心定位的区域(3),其中主要暴露于装载和磨损。 假体部分基本上是板状的。 它包含一个显示拉伸强度的增强元件,围绕主要的装载和磨损区域,至少部分地位于远离滑动表面的厚度的三分之一内。
    • 6. 发明授权
    • Hip joint endoprosthesis with a stem to be anchored in the femur
    • 髋关节内假体,其中一个茎锚定在股骨中
    • US4645506A
    • 1987-02-24
    • US623785
    • 1984-06-22
    • Helmut D. Link
    • Helmut D. Link
    • A61F2/30A61F2/36A61F2/32
    • A61F2/367A61F2/30734
    • A hip joint endoprosthesis has a downward tapering stem (1) which is to be anchored in the femur and is composed of a main part (7) connected to the condyle head (4) and of a plurality of wedge pieces (10) which are movably guided longitudinally along the main part by means of cooperating guide surfaces (11,12). The friction on the guide surfaces between the main part (7) and the wedge pieces (10) is smaller than the friction caused by the outer surface (13), formed for promoting adhesion, of wedge pieces (10) on the bone. When the medullary cavity receiving the prosthesis stem widens, the load on the main part (7) causes an expansion of the wedge pieces (10) and hence an adaptation of the shape of the prosthesis.
    • 髋关节内假体具有向下倾斜的杆(1),其将被锚固在股骨中并且由连接到髁头(4)的主要部分(7)和多个楔形件(10)组成,所述楔块 通过配合的导向表面(11,12)沿着主要部分可纵向地引导。 在主要部分(7)和楔形件(10)之间的导向表面上的摩擦小于由楔形件(10)在骨头上形成的用于促进粘合的外表面(13)所引起的摩擦。 当接收假体茎的髓腔变宽时,主要部分(7)上的负荷导致楔形件(10)的膨胀并因此改变假体的形状。
    • 7. 发明授权
    • Holding stand for surgical instruments
    • 掌握手术器械
    • US4641749A
    • 1987-02-10
    • US816588
    • 1986-01-06
    • Helmut D. LinkArnold Keller
    • Helmut D. LinkArnold Keller
    • A61B50/20B65D85/24
    • A61B50/20
    • Holding stand for surgical instruments which has a comb bar having receiving recesses for instrument shafts. To secure or release simultaneously all of the instrument shafts in the associated receiving recesses, a locking bar is allocated to the comb bar, which locking bar is arranged adjacent and parallel to the comb bar and can be moved relative to the comb bar in the longitudinal direction and, at each receiving recess of the comb bar, has a locking lug which, as a result of the displacement, can be pushed over the instrument shaft or removed from the latter, which instrument shaft is located in the receiving recess.
    • 用于具有用于仪器轴的接收凹槽的梳齿的手术器械的支架。 为了同时固定或释放相关联的接收凹槽中的所有仪器轴,锁定杆被分配到梳齿条,该锁定杆邻近并平行于梳齿条布置,并且可以在纵向上相对于梳子条移动 方向,并且在梳齿条的每个接收凹槽处具有锁定凸耳,该凸耳作为移动的结果,可以被推到仪器轴上或者从仪器轴上移除,该仪器轴位于接收凹部中。
    • 10. 发明申请
    • BILATERALES LAMINA-IMPLANTAT
    • 双层拉链植入物
    • US20120078304A1
    • 2012-03-29
    • US13247617
    • 2011-09-28
    • Harm-Iven JENSENHelmut D. Link
    • Harm-Iven JENSENHelmut D. Link
    • A61B17/70
    • A61B17/7074A61B17/7071A61B17/888
    • A reinforcing implant for the lamina of a vertebra includes a transverse support, one anchoring device for the right-hand side and one anchoring device for the left-hand side of the lamina of the vertebra. An expansion element with a guide device and cheek elements is provided, the cheek elements being mounted to be longitudinally movable along the guide device. Bearing surfaces for the lamina are formed on outer faces of the cheek elements directed away from each other, and a return stop for the cheek elements is provided. At least one of the cheek elements is provided with an aligning device for modifying the orientation of its bearing surface relative to the guide device. In this way, a secure anchoring of the reinforcing implant on the resected surfaces produced during a laminectomy can be achieved, with precise adaptation of the reinforcing implant to the actual anatomical conditions following the laminectomy.
    • 用于椎骨椎板的加强植入物包括横向支撑件,用于右侧的一个锚定装置和用于椎骨椎板左侧的一个锚定装置。 提供了具有引导装置和颊部元件的膨胀元件,所述颊部元件被安装成沿引导装置纵向移动。 在彼此指向的面颊元件的外表面上形成用于层板的轴承表面,并且提供用于颊部元件的返回止动件。 至少一个面颊元件设置有对准装置,用于相对于引导装置改变其支承表面的取向。 以这种方式,可以实现在椎板切除术期间产生的加强植入物在切除的表面上的牢固锚固,其中加强植入物与椎板切除术之后的实际解剖条件具有精确的适应性。