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Modular tumor prostheses: are current stem designs suitable for distal femoral reconstruction? A biomechanical implant stability analysis in Sawbones

机译:模块化肿瘤假体:目前的茎设计适用于远侧股骨重建吗? 锯骨的生物力学植入物稳定性分析

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Introduction High loosening rates after distal femoral replacement may be due to implant design not adapted to specific anatomic and biomechanical conditions. Materials and methods A modular tumor system (MUTARS, Implantcast GmbH) was implanted with either a curved hexagonal or a straight tapered stems in eight Sawbones in two consecutively generated bone defect (10 cm and 20 cm proximal to knee joint level). Implant-bone-interface micromotions were measured to analyze main fixation areas and to characterize the fixation pattern. Results Although areas of highest relative micromotions were measured distally in all groups, areas and lengths of main fixation differed with respect to stem design and bone defect size. Regardless of these changes, overall micromotions could only be reduced with extending bone defects in case of tapered stems. Conclusions The tapered design may be favorable in larger defects whereas the hexagonal may be advantageous in defects located more distally.
机译:引言远端股骨置换后的高松动率可能是由于植入物设计不适用于特异性解剖和生物力学条件。 材料和方法在两个连续产生的骨缺损(10cm和20cm至膝关节水平近端)中,将模块化肿瘤系统(mutars,Implantcast GmbH)植入八个锯片中的弯曲六边形或直锥形茎。 测量植入骨界面微调以分析主固定区域并表征固定图案。 结果尽管在所有基团中,远端测量相对微调的区域,主要固定的区域和长度相对于茎设计和骨缺陷尺寸不同。 无论这些变化如何,只有在锥形茎的情况下,才能通过延伸骨缺陷来降低总体微调。 结论锥形设计可能在较大的缺陷中有利,而六边形在更远侧位于位于位于的缺陷中可能是有利的。

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