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    • 6. 发明申请
    • SPINAL CORRECTION TENSIONING SYSTEM
    • 脊柱矫正系统
    • US20100331884A1
    • 2010-12-30
    • US12490845
    • 2009-06-24
    • Hugh D. Hestad
    • Hugh D. Hestad
    • A61B17/70A61B17/88
    • A61B17/7028A61B17/702A61B17/7022A61B17/7032A61B17/704A61B17/7046
    • A vertebral column correction system for correcting a spinal deformity without fusing the joint segments is disclosed. The vertebral column correction system may have first and second vertebral anchors secured to first and second vertebrae. The vertebral column correction system may further comprise one or more intermediate vertebral anchors secured to vertebrae between the first and second vertebrae. A connection member may be disposed within a head portion of the vertebral anchors. At least a portion of the connection member may be a flexible member, such as a flexible cord, configured for tensioning between at least two vertebral anchors for providing a desired amount of tension to apply a correctional force to the spinal column. A spring member, or other tensioning member, may maintain the tension of the connection member.
    • 公开了一种用于校正脊柱畸形而不使接合部分熔合的脊柱校正系统。 脊柱校正系统可以具有固定到第一和第二椎骨的第一和第二椎骨锚固件。 脊柱校正系统还可以包括固定到第一和第二椎骨之间的椎骨的一个或多个中间椎骨锚固件。 连接构件可以设置在椎骨锚的头部内。 连接构件的至少一部分可以是柔性构件,例如柔性绳索,其构造成用于在至少两个椎骨锚固件之间张紧,以提供期望量的张力以向脊柱施加矫正力。 弹簧构件或其他张紧构件可以保持连接构件的张力。
    • 7. 发明授权
    • System and method for minimally invasive spinal surgery
    • 微创脊柱手术的系统和方法
    • US07648521B2
    • 2010-01-19
    • US11686453
    • 2007-03-15
    • Hugh D. Hestad
    • Hugh D. Hestad
    • A61B17/70
    • A61B17/7085A61B17/7031A61B17/7032
    • A system for installing a cross member between first and second anchor members within a patient's body generally includes first and second docking members configured to be removably coupled to the respective first and second anchor members. Each docking member has a first end with an opening, a second end, and a body extending between the first and second ends. The body includes an outer surface with an opening, and a bore extends from the opening on the first end of the body to the opening on the outer surface. The openings on the outer surface of each docking member are configured to be aligned so that the bore in the first docking member is able to direct a wire member into the bore in the second docking member. A method for minimally invasive surgery using the system is also disclosed.
    • 用于在患者体内的第一和第二锚定构件之间安装横向构件的系统通常包括构造成可拆卸地联接到相应的第一和第二锚定构件的第一和第二对接构件。 每个对接构件具有带有开口,第二端和在第一和第二端之间延伸的主体的第一端。 主体包括具有开口的外表面,并且孔从主体的第一端上的开口延伸到外表面上的开口。 每个对接构件的外表面上的开口被构造成对准,使得第一对接构件中的孔能够将线构件引导到第二对接构件中的孔中。 还公开了一种使用该系统进行微创手术的方法。
    • 8. 发明申请
    • SPINE STIFFENING DEVICE AND ASSOCIATED METHOD
    • 脊柱刺激装置及相关方法
    • US20090012562A1
    • 2009-01-08
    • US11618943
    • 2007-01-02
    • Hugh D. HestadJohn Otte
    • Hugh D. HestadJohn Otte
    • A61B17/70
    • A61B17/7031A61B17/7058
    • In various embodiments, a spinal stabilization system has a first and a second vertebral anchor each adapted to be coupled to one of a first and a second vertebrae. The system also includes a flexible connecting element coupled to each of the first and second vertebral anchors and extending between the vertebral anchors. The connecting element has a central member and a brace positioned about the central member and the central member is stiffer than the brace to provide the needed combination of support and stiffness to the construct while offering flexibility. These and other various embodiments of this invention offer an improvement over known systems by providing stabilization of the vertebral column while allowing for flexibility and axial dampening.
    • 在各种实施例中,脊柱稳定系统具有第一和第二椎骨锚固件,每个锚固件适于联接到第一和第二椎骨中的一个。 该系统还包括耦合到第一和第二椎骨锚固件中的每一个并且在椎骨锚固件之间延伸的柔性连接元件。 连接元件具有中心构件和围绕中心构件定位的支架,并且中心构件比支架更硬,以在提供灵活性的同时向构造提供支撑和刚度所需的组合。 本发明的这些和其它各种实施例通过提供椎骨柱的稳定性同时允许柔性和轴向阻尼来提供对已知系统的改进。