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Development of intraoperative noninvasive force measuring system during femoral fracture reduction

机译:股骨骨折减少过程中的术中非侵入力测量系统的发展

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Fracture reduction is a critical step in minimally invasive surgery of displaced femoral fracture treatment. Skeletal traction and alignment for fracture reduction can be performed individually in the operation, which is a standard procedure for the surgeons in practice. The intraoperative counteracting soft tissue forces during the fracture reduction should be measured precisely for improvement of the operation. In this paper, a set of measurement system was developed to obtain the value of the forces. Forces of skeletal traction and alignment were measured by three individual sensors, and the corresponding results can be recorded instantaneously during the fracture reduction process. According to an experimental test, the maximum alignment force in X-axis and Y-axis direction were 48.4N and 240.1N, respectively. The maximum traction force was 379.7N, occurred because of the slight valgus positioning of the leg to be convenient to insert the intramedullary nail. The highest forces were mostly observed along the shaft axis for skeletal traction. The experimental results show the effectiveness of the proposed measurement system, and indicate the potential application in developing new instruments for the fracture reduction operation.
机译:裂缝减少是流离失所股骨骨折处理的微创手术的关键步骤。可以在操作中单独进行骨骼牵引和裂缝减少的对准,这是实践中外科医生的标准程序。应准确地测量骨折减少过程中的术中抵消软组织力以改善操作。在本文中,开发了一组测量系统以获得力的价值。通过三个单独的传感器测量骨骼牵引力和对准的力,并且相应的结果可以在断裂减少过程中瞬间记录。根据实验测试,X轴和Y轴方向的最大对准力分别为48.4n和240.1n。最大牵引力为379.7N,发生由于腿部的轻微旋流定位,方便插入髓内钉。沿轴轴沿骨骼牵引的最大力大多观察到最高力。实验结果表明了所提出的测量系统的有效性,并表明潜在应用于开发裂缝减少操作的新仪器。

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