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非骨水泥型股骨膝关节植入物的干涉配合及骨损伤评估

Evaluation of interference fit and bone damage of an uncemented femoral knee implant.

作者信息

Berahmani Sanaz, Hendriks Maartje, de Jong Joost J A, van den Bergh Joop P W, Maal Thomas, Janssen Dennis, Verdonschot Nico

机构信息

Radboud university medical center, Radboud Institute for Health Sciences, Orthopaedic Research Lab, P.O. Box 9101, 6500 HB Nijmegen, The Netherlands.

Radboud university medical center, Radboud Institute for Health Sciences, Orthopaedic Research Lab, P.O. Box 9101, 6500 HB Nijmegen, The Netherlands.

出版信息

Clin Biomech (Bristol). 2018 Jan;51:1-9. doi: 10.1016/j.clinbiomech.2017.10.022. Epub 2017 Oct 31.

Abstract

BACKGROUND

During implantation of an uncemented femoral knee implant, press-fit interference fit provides the primary stability. It is assumed that during implantation a combination of elastic and plastic deformation and abrasion of the bone will occur, but little is known about what happens at the bone-implant interface and how much press-fit interference fit is eventually achieved.

METHODS

Five cadaveric femora were prepared and implantation was performed by an experienced surgeon. Micro-CT- and conventional CT-scans were obtained pre- and post-implantation for geometrical measurements and to measure bone mineral density. Additionally, the position of the implant with respect to the bone was determined by optical scanning of the reconstructions. By measuring the differences in surface geometry, assessments were made of the cutting error, the actual interference fit, the amount of bone damage, and the effective interference fit.

FINDINGS

Our analysis showed an average cutting error of 0.67mm (SD 0.17mm), which pointed mostly towards bone under-resections. We found an average actual AP interference fit of 1.48mm (SD 0.27mm), which was close to the nominal value of 1.5mm.

INTERPRETATION

We observed combinations of bone damage and elastic deformation in all bone specimens, which showed a trend to be related with bone density. Higher bone density tended to lead to lower bone damage and higher elastic deformation. The results of the current study indicate different factors that interact while implanting an uncemented femoral knee component. This knowledge can be used to fine-tune design criteria of femoral components to achieve adequate primary stability for all patients.

摘要

背景

在非骨水泥型股骨膝关节植入物植入过程中,压配干涉配合提供主要稳定性。据推测,在植入过程中会发生骨的弹性和塑性变形以及磨损的组合,但对于骨-植入物界面处发生了什么以及最终实现了多少压配干涉配合知之甚少。

方法

准备了五具尸体股骨,由经验丰富的外科医生进行植入。在植入前后进行了微型CT和传统CT扫描,以进行几何测量并测量骨密度。此外,通过对重建图像进行光学扫描确定植入物相对于骨的位置。通过测量表面几何形状的差异,对切削误差、实际干涉配合、骨损伤量和有效干涉配合进行了评估。

结果

我们的分析显示平均切削误差为0.67mm(标准差0.17mm),主要指向骨切除不足。我们发现平均实际前后干涉配合为1.48mm(标准差0.27mm),接近标称值1.5mm。

解读

我们在所有骨标本中观察到了骨损伤和弹性变形的组合,显示出与骨密度相关的趋势。较高的骨密度往往导致较低的骨损伤和较高的弹性变形。本研究结果表明在植入非骨水泥型股骨膝关节组件时不同因素之间的相互作用。这些知识可用于微调股骨组件的设计标准,以实现所有患者的足够初始稳定性。

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