首页> 外文期刊>Technology and health care: official journal of the European Society for Engineering and Medicine >Development of a fixation device for robot assisted fracture reduction of femoral shaft fractures: a biomechanical study.
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Development of a fixation device for robot assisted fracture reduction of femoral shaft fractures: a biomechanical study.

机译:机器人辅助股骨干骨折复位固定装置的开发:一项生物力学研究。

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摘要

Robot assisted fracture reduction of femoral shaft fractures provides precise alignment while reducing the amount of intraoperative imaging. The connection between the robot and the fracture fragment should allow conventional intramedullary nailing, be minimally invasive and provide interim fracture stability. In our study we tested three different reduction tools: a conventional External Fixator, a Reposition-Plate and a Three-Point-Device with two variations (a 40 degrees and a 90 degrees version). We measured relative movements between the tools and the bone fragments in all translation and rotation planes. The Three-Point-Device 90 degrees showed the smallest average relative displacement and was the only device able to withstand the maximum applied load of 70 Nm without failure of any bone fragment. The Three-Point-Device 90 degrees complies with all the stipulated requirements and is a suitable interface for robot assisted fracture reduction of femoral shaft fractures.
机译:机器人辅助的股骨干骨折复位术可在减少术中影像量的同时提供精确的对准。机器人与骨折片段之间的连接应允许常规的髓内钉固定,微创并提供临时的骨折稳定性。在我们的研究中,我们测试了三种不同的复位工具:常规的外部固定器,复位板和具有两种变化(40度和90度版本)的三点装置。我们测量了所有平移和旋转平面中工具与骨骼碎片之间的相对运动。 90度的三点装置显示出最小的平均相对位移,并且是唯一能够承受70 Nm的最大施加载荷而没有任何骨碎片破裂的装置。三点装置90度符合所有规定要求,是机器人辅助减少股骨干骨折的合适接口。

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