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    • 12. 发明授权
    • Systems and methods for identifying landmarks on orthopedic implants
    • 用于识别矫形外科植入物的地标的系统和方法
    • US08784425B2
    • 2014-07-22
    • US12547716
    • 2009-08-26
    • Nicholas S. RitcheyHenry B. FaberNathaniel Kelley GrusinJames K. RainsGene Edward AustinTobias SchwägliWilliam M. Ricci
    • Nicholas S. RitcheyHenry B. FaberNathaniel Kelley GrusinJames K. RainsGene Edward AustinTobias SchwägliWilliam M. Ricci
    • A61B17/58A61B17/17
    • A61B17/1707A61B5/05A61B5/06A61B5/062A61B5/1127A61B17/1725A61B2034/2051A61B2034/2072A61B2090/0813
    • Systems (10, 110, 1010, 1110) for identifying landmarks (31, 131, 1028, 1128) on orthopedic implants (30, 130, 1024, 1124) are disclosed. The systems (10, 110, 1010, 1110) include a field generator (16, 116, 1016, 1116) for generating a magnetic field and an orthopedic implant (30, 130, 1024, 1124) located within the magnetic field. The implant (30, 130, 1024, 1124) includes at least one landmark (31, 131, 1028, 1128), an optional removable probe (1029, 1129) and a first magnetic sensor (32, 132, 1026, 1126). The systems (10, 110, 1010, 1110) further include a landmark identifier (18, 118, 1016, 1116) with an optional second magnetic sensor (20, 120, 1020, 1120) and a processor (12, 112, 1012, 1112) for comparing sensor data from the first sensor (32, 132, 1026,1126) and second sensor (20, 120, 1020, 1120) or data from the first sensor (32, 132, 1026,1126) and landmark identifier (18, 118, 1016, 1116) using the set distance to calculate the position of the landmark identifier (18, 118, 1016, 1116) relative to the at least one landmark (31, 131, 1028,1128). The disclosed systems (10, 110, 1010, 1110) allow for blind targeting of one or more landmarks (31, 131, 1028, 1128).
    • 公开了用于识别整形外科植入物(30,130,1024,1124)上的地标(31,131,1028,1128)的系统(10,110,1010,1110)。 系统(10,110,1010,1110)包括用于产生磁场的场发生器(16,116,1016,1116)和位于磁场内的整形外科植入物(30,130,1024,1124)。 植入物(30,130,1024,1124)包括至少一个界标(31,131,108,1128),可选的可移除探针(1029,1129)和第一磁传感器(32,132,1026,1126)。 系统(10,110,1010,1110)还包括具有可选的第二磁传感器(20,120,1020,1120)和处理器(12,112,1012,1110)的地标识别符(18,118,1016,1116) 用于比较来自第一传感器(32,132,102,1126)和第二传感器(20,120,1020,1120)的传感器数据或来自第一传感器(32,132,1012,1126)的数据和地标标识符( 18,118,1016,1116),使用所设置的距离来计算相对于所述至少一个地标(31,131,1028,1128)的地标标识符(18,118,1016,1116)的位置。 所公开的系统(10,110,1010,1110)允许对一个或多个地标(31,131,1028,1128)进行盲目瞄准。
    • 18. 发明申请
    • ORTHOPAEDIC IMPLANT AND FASTENER ASSEMBLY
    • 矫形植入物和紧固件组件
    • US20100331843A1
    • 2010-12-30
    • US12494860
    • 2009-06-30
    • Nathaniel Kelley Grusin
    • Nathaniel Kelley Grusin
    • A61B17/56
    • A61B17/7266A61B17/7225A61B17/7233A61B17/725A61B17/7283A61B17/744A61B17/746A61B17/8061
    • Treating fractures using one or both of an implant, such as an intramedullary nail, and a fastening assembly, such as a lag screw and compression screw assembly. The implant in some embodiments has a proximal section with a transverse aperture having a non-circular cross-section that may be shaped to selectively constrain the fastening assembly within the transverse aperture. Two or more components of the fastening assembly may be received to slide, in a controlled way, in the transverse aperture of the implant, and to cooperate to resist a force moment applied thereto. Without the presence of one of the components, such as the lag screw, another component, such as the compression screw may not resist a force moment applied thereto. In some implementations, an engaging member and a compression device of the fastening assembly are configured so that the compression device interacts with a portion of the implant and a portion of the engaging member to enable controlled movement between first and second bone fragments. This configuration is useful for, among other things, compressing a fracture.
    • 使用植入物(例如髓内钉)中的一个或两个以及紧固组件(例如拉力螺钉和压缩螺钉组件)来治疗骨折。 在一些实施例中,植入物具有近端部分,其具有横截面孔,该横截面孔具有非圆形横截面,该横截面可被成形为选择性地将紧固组件约束在横向孔内。 可以接收紧固组件的两个或更多个部件,以受控的方式在植入物的横向孔中滑动,并配合以抵抗施加到其上的力矩。 在不存在诸如拉杆螺钉的部件之一的情况下,诸如压紧螺钉的另一部件可能不能抵抗施加到其上的力矩。 在一些实施方式中,紧固组件的接合构件和压缩装置被构造成使得压缩装置与植入物的一部分和接合构件的一部分相互作用,以实现第一和第二骨碎片之间的受控运动。 这种配置对于压缩骨折尤为重要。
    • 19. 发明授权
    • Orthopaedic implant and fastener assembly
    • 矫形植入物和紧固件组件
    • US08449544B2
    • 2013-05-28
    • US12494860
    • 2009-06-30
    • Nathaniel Kelley Grusin
    • Nathaniel Kelley Grusin
    • A61B17/72A61B17/88
    • A61B17/7266A61B17/7225A61B17/7233A61B17/725A61B17/7283A61B17/744A61B17/746A61B17/8061
    • Treating fractures using one or both of an implant, such as an intramedullary nail, and a fastening assembly, such as a lag screw and compression screw assembly. The implant in some embodiments has a proximal section with a transverse aperture having a non-circular cross-section that may be shaped to selectively constrain the fastening assembly within the transverse aperture. Two or more components of the fastening assembly may be received to slide, in a controlled way, in the transverse aperture of the implant, and to cooperate to resist a force moment applied thereto. Without the presence of one of the components, such as the lag screw, another component, such as the compression screw may not resist a force moment applied thereto. In some implementations, an engaging member and a compression device of the fastening assembly are configured so that the compression device interacts with a portion of the implant and a portion of the engaging member to enable controlled movement between first and second bone fragments. This configuration is useful for, among other things, compressing a fracture.
    • 使用植入物(例如髓内钉)中的一个或两个以及紧固组件(例如拉力螺钉和压缩螺钉组件)来治疗骨折。 在一些实施例中,植入物具有近端部分,其具有横截面孔,该横截面孔具有非圆形横截面,该横截面可被成形为选择性地将紧固组件约束在横向孔内。 可以接收紧固组件的两个或更多个部件,以受控的方式在植入物的横向孔中滑动,并配合以抵抗施加在其上的力矩。 在不存在诸如拉杆螺钉的部件之一的情况下,诸如压紧螺钉的另一部件可能不能抵抗施加到其上的力矩。 在一些实施方案中,紧固组件的接合构件和压缩装置被构造成使得压缩装置与植入物的一部分和接合构件的一部分相互作用以实现第一和第二骨碎片之间的受控运动。 这种配置对于压缩骨折尤为重要。