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A novel intramedullary callus distraction system for the treatment of femoral bone defects

机译:一种新颖的髓内call骨牵引系统用于治疗股骨缺损

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摘要

An intramedullary device has some advantages over external fixation in callus distraction for bone defect reconstruction. There are difficulties controlling motorized intramedullary devices and monitoring the distraction rate which may lead to poor results. The aim of this study was to design a fully implantable and non-motorized simple distraction nail for the treatment of bone defects. The fully implantable device comprises a tube-in-tube system and a wire pulling mechanism for callus distraction. For the treatment of femoral bone defects, a traction wire, attached to the device at one end, is fixed to the tibial tubercle at its other end. Flexion of the knee joint over a predetermined angle generates a traction force on the wire triggering bone segment transport. This callus distraction system was implanted into the femur of four human cadavers (total 8 femora), and bone segment transport was conducted over 60-mm defects with radiographic monitoring. All bone segments were transported reliably to the docking site. From these preliminary results, we conclude that this callus distraction system offers an alternative to the current intramedullary systems for the treatment of bone defects.
机译:在骨缺损重建的骨med转移中,髓内装置比外固定具优势。在控制电动髓内装置和监测分心率方面存在困难,这可能导致不良结果。这项研究的目的是设计一种完全可植入且非机动的简单牵引钉来治疗骨缺损。完全可植入的设备包括一个套管系统和一个用于拉长愈伤组织的拉线机构。为了治疗股骨缺损,将一根牵引线一端固定在该装置上,另一端固定在胫骨结节上。膝关节在预定角度上的弯曲会在钢丝上产生牵引力,从而触发骨节段的运输。该愈伤组织牵引系统被植入到四个人类尸体的股骨中(总共8个股骨),并通过放射线照相术对60毫米以上的缺损进行了骨段运输。所有骨段均可靠地运输到对接位置。从这些初步结果,我们得出结论,该骨us牵引系统为目前的髓内系统提供了替代方案,可用于治疗骨缺损。

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