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ASSEMBLY OF OSSEOUS FRAGMENTS IN ORTHOPAEDIC SURGERY: THE NEED FOR NEW STANDARDS OF EVALUATION

机译:骨科手术中骨碎片的组装:新评估标准的需求

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摘要

In orthopaedic surgery, intra-operative bone machining and assembly of osseous fragments are two very important research areas. One of the most challenging applications is the treatment of malignant osseous tumors within the pelvis due to its complex tri-dimensional geometry. The conventional surgical procedure includes tumoral resection (cutting of the osseous tumor) and reconstruction by allograft (assembly of fragments). Accuracy of bone cutting and'osseous assembly has not yet been documented. This paper presents an experimental study on plastic bones, with experienced surgeons working under ideal conditions. The goal was to assess the accuracy by using geometrical parameters resulting from the surgical usual language: surgical margin for tumor cuttings, and maximal gap, gap volume and mean gap between the 2 osseous fragments. Both mean values and correlation between assembly parameters were relatively poor. Experienced surgeons did not manage to consistently perform accurate cuttings and osseous assemblies, even under ideal working conditions. The complex tri-dimensional architecture of the pelvis can mainly explain this inaccuracy. There is a need to adapt computer and robotic assisted technologies for tumor cuttings and osseous assemblies. Finally, our attempt to evaluate accuracy using simple geometrical parameters, was not satisfactory. There is a need to define new evaluation standards for these assemblies. We think that mechanical engineering tools like geometrical tolerances and mechanical fittings are more suitable for this problem of quality evaluation.
机译:在整形外科中,术中骨的机械加工和骨碎片的组装是两个非常重要的研究领域。最具挑战性的应用之一是由于其复杂的三维几何形状而在骨盆内治疗恶性骨肿瘤。传统的外科手术包括肿瘤切除(切开骨性肿瘤)和同种异体移植重建(碎片组装)。骨切割和骨质组装的准确性尚未得到证明。本文介绍了对塑料骨骼的实验研究,由经验丰富的外科医生在理想条件下工作。目的是通过使用外科手术常用语言得出的几何参数来评估准确性:肿瘤切开的手术切缘以及两个骨碎片之间的最大间隙,间隙体积和平均间隙。平均值和装配参数之间的相关性都相对较差。即使在理想的工作条件下,经验丰富的外科医生也无法始终如一地进行准确的切割和骨质组装。骨盆的复杂三维结构可以主要解释这种不准确性。需要使计算机和机器人辅助技术适应于肿瘤切割和骨集合。最后,我们使用简单的几何参数评估准确性的尝试并不令人满意。需要为这些组件定义新的评估标准。我们认为,诸如几何公差和机械配件之类的机械工程工具更适合此质量评估问题。

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