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基于模型的 RSA 准确性对种植体表面模型质量高低的依赖性。

Dependence of model-based RSA accuracy on higher and lower implant surface model quality.

出版信息

Biomed Eng Online. 2013 Apr 16;12:32. doi: 10.1186/1475-925X-12-32.

Abstract

BACKGROUND

Model-based Roentgen Stereophotogrammetric Analysis (MBRSA) allows the accurate in vivo measurement of the relative motion between an implant and the surrounding bone (migration), using pose-estimation algorithms and three dimensional geometric surface models of the implant. The goal of this study was thus to investigate the effect of surface model resolution on the accuracy of the MBRSA method.

METHODS

Four different implant geometries (knee femoral and tibial components, and two different hip stems) were investigated, for each of which two reversed engineering (RE) models of differing spatial digitizing resolution were generated. Accuracy of implant migration measurement using MBRSA was assessed in dependence on surface model resolution using an experimental phantom-model set up.

RESULTS

When using the lower quality RE models, the worst bias observed ranged from -0.048 to 0.037 mm, and -0.057 to 0.078 deg for translation and rotation respectively. For higher quality reverse engineering models, bias ranged from -0.042 to 0.048 mm, and -0.449 to 0.029 deg. The pair-wise comparisons of digitizing resolution (higher vs. lower quality) within the different implant type revealed significant differences only for the hip stems (p < 0.001).

CONCLUSION

The data suggest that the application of lower resolution RE models for MBRSA is a viable alternative method for the in vivo measurement of implant migration, in particular for implants with non symmetrical geometries (total knee arthroplasty). Implants with larger length to width aspect ratio (total hip arthroplasty) may require high resolution RE models in order to achieve acceptable accuracy. Conversely, for some axis the bias for translation are clearly worse for translation, and are marginally better for rotations using the lower resolution RE models instead of the higher ones. However, performed box plots ranges were well within what has been reported in the literature. The observed lower accuracy and precision of the measurements for hip stem components for rotations about the superior-inferior direction is presumably the result of the nature of the MBRSA method. This well known effect within MBRSA for rotations about the axis of symmetry of axially-symmetric objects do not change the contour of the projected image to as large a degree as motion about a non-symmetric axes. It is not possible to detected this small motion as accurately using pose-estimation methods. This may affect the "higher" accuracy for the applied lower resolution RE models.

摘要

背景

基于模型的放射立体摄影测量分析(MBRSA)使用姿势估计算法和植入物的三维几何表面模型,允许对植入物和周围骨骼(迁移)之间的相对运动进行准确的体内测量。因此,本研究的目的是研究表面模型分辨率对 MBRSA 方法准确性的影响。

方法

研究了四种不同的植入物几何形状(膝关节股骨和胫骨组件,以及两种不同的髋关节柄),为每种几何形状生成了两个具有不同空间数字化分辨率的逆向工程(RE)模型。使用实验性的模型设置评估了 MBRSA 中使用表面模型分辨率对植入物迁移测量的准确性。

结果

当使用质量较低的 RE 模型时,观察到的最大偏差范围为-0.048 至 0.037 毫米,平移和旋转分别为-0.057 至 0.078 度。对于高质量的逆向工程模型,偏差范围为-0.042 至 0.048 毫米,平移和旋转分别为-0.449 至 0.029 度。在不同植入物类型内对数字化分辨率(较高与较低质量)进行的两两比较仅显示髋关节柄存在显著差异(p<0.001)。

结论

数据表明,对于 MBRSA 应用较低分辨率的 RE 模型是一种可行的替代方法,可用于植入物迁移的体内测量,特别是对于具有非对称几何形状的植入物(全膝关节置换)。具有较大长径比(全髋关节置换)的植入物可能需要高分辨率的 RE 模型才能达到可接受的准确性。相反,对于某些轴,使用较低分辨率的 RE 模型代替较高分辨率的 RE 模型进行平移时的偏差明显更差,而进行旋转时的偏差则更好。但是,所进行的箱线图范围完全在文献中报道的范围内。髋关节柄组件在上下方向上旋转时测量精度和精度较低,这可能是 MBRSA 方法的性质所致。在 MBRSA 中,对于沿对称轴旋转的轴对称物体,这种众所周知的效果不会像沿非对称轴运动那样大程度地改变投影图像的轮廓。使用姿势估计方法无法如此准确地检测到这种小运动。这可能会影响应用较低分辨率 RE 模型的“更高”准确性。

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