首页> 外文期刊>Journal of orthopaedic trauma >Optimal location of a single distal interlocking screw in intramedullary nailing of distal third femoral shaft fractures.
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Optimal location of a single distal interlocking screw in intramedullary nailing of distal third femoral shaft fractures.

机译:股骨远端第三股骨干骨折的髓内钉内单个远端连锁螺钉的最佳位置。

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摘要

OBJECTIVE: This biomechanical study was done to determine the effect of the level of a single distal screw in a static intramedullary (IM) femoral nail on the stability of fixation of a fracture in the distal third of the femur. DESIGN: Fifteen composite fiberglass femora were osteotomized transversely in the distal third of the femur. A Grosse-Kempf nail was implanted into the femurs, which were divided into three groups of five specimens. Single screw distal nail locking was varied distal to the osteotomy site for each group at 2.5, 5.0, and 7.5 centimeters, respectively. INTERVENTION: All instrumented femurs were mounted on a servohydraulic testing machine and fitted with transducers to measure axial, rotational, and bending displacements. Specimens were cyclically loaded (one hertz) in simultaneous torsion (moment: +/- 10 newton-meters) and axial compression (amplitude: 2,000 newtons) for 500 cycles with a 250-pound abductor force. MAIN OUTCOME MEASUREMENT: Data from linear and rotational transducers were sampled at 100 hertz for five cycles before cycling, every 100 cycles of loading, and immediately after cycling. Custom computer software was developed to convert transducer signals into static and dynamic measurements of axial motion (in millimeters), rotation (in degrees), and angulation (in degrees). RESULTS: Osteotomy site dynamic rotation increased significantly in specimens locked at 7.5 centimeters when compared with the 2.5-centimeter group. There was minimal difference between the stability of the 5.0-centimeter and 7.5-centimeter groups. There was no significant change in position at the fracture site before or after cyclic loading with respect to axial shortening, rotation, or bending. Both dynamic axial and angular displacements were also unaffected by screw position. CONCLUSION: The location of a single distal interlocking screw in static IM nail fixation of distal third femur fractures can significantly affect rotational stability but not axial or angular fixation.
机译:目的:进行了这项生物力学研究,以测定静态髓内(IM)股骨钉中单个远端螺钉的水平对股骨远端三分之一处骨折固定稳定性的影响。设计:在股骨远端的三分之一处横向截骨15个复合玻璃纤维股骨。将Grosse-Kempf指甲植入股骨中,将其分为三组,每组五个标本。对于每组,分别在2.5厘米,5.0厘米和7.5厘米处,单螺钉远端指甲锁在截骨部位远端变化。干预措施:所有的股骨都安装在伺服液压测试机上,并装有换能器以测量轴向,旋转和弯曲位移。以250磅的外展力,以同时扭转(力矩:+/- 10牛顿米)和轴向压缩(振幅:2,000牛顿)的方式周期性地加载样品(一赫兹)500次。主要观察指标:线性,旋转换能器的数据在循环之前,加载的每100个循环中以及循环之后立即以100赫兹的采样率进行了五个循环。开发了定制计算机软件,以将换能器信号转换为轴向运动(以毫米为单位),旋转(以度为单位)和角度(以度为单位)的静态和动态测量值。结果:锁定在7.5厘米处的标本与2.5厘米组相比,截骨术部位的动态旋转显着增加。 5.0厘米和7.5厘米组的稳定性之间的差异很小。在循环载荷之前或之后,相对于轴向缩短,旋转或弯曲,骨折部位的位置没有明显变化。动态轴向位移和角度位移也不受螺钉位置的影响。结论:在远端第三股骨骨折的静态IM钉固定中,单个远端互锁螺钉的位置会显着影响旋转稳定性,但不会影响轴向或角度固定。

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