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ACCURACY OF CARTILAGE GEOMETRY RECONSTRUCTION FROM VOLUMETRIC CT DATA: A PHANTOM STUDY

机译:VolumeTric CT数据软骨几何重建的准确性:幻影研究

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Segmentation of medical image data is often used for the construction of computational models to study the mechanics of diarthrodial joints such as the hip and knee. The analyst must demonstrate that the reconstructed geometry is an accurate representation of the true continuum to ensure model validity. This becomes especially important for computational modeling of joint contact, which requires accurate reconstruction of articular cartilage. Although volumetric computed tomography (CT) is often used to image diarthrodial joints, the lower bounds for detecting articular cartilage thickness and the influence of imaging parameters on the ability to image cartilage have not been reported. The use of contrast agent (CT arthrography) is necessary to visualize the surface of articular cartilage in live patients. Thus, it is of primary interest to quantify the accuracy of CT arthrography to demonstrate the feasibility of patient-specific modeling. The objectives of this study were to assess the accuracy and detection limits of CT for measuring simulated cartilage thickness using a phantom and to quantify changes in accuracy due to alterations in contrast agent concentration, imaging plane direction, spatial resolution and joint spacing.
机译:医学图像数据的分割通常用于构建计算模型,以研究臀部和膝关节等腹腔接头的力学。分析师必须证明重建的几何形状是真正连续体的准确表示,以确保模型有效性。这对于关节接触的计算建模尤为重要,这需要准确地重建关节软骨。尽管体积计算断层扫描(CT)通常用于图像术语,但尚未报告用于检测特性软骨厚度的下界和成像参数对图像软骨的能力的影响。使用造影剂(CT氨基棱镜)是为了可视化活患者的关节软骨表面。因此,量化CTαROPRORARALARALAGE的准确性是主要的兴趣,以证明患者特异性建模的可行性。本研究的目的是评估CT的精度和检测限制,用于使用幽灵测量模拟软骨厚度,并通过造影剂浓度,成像平面方向,空间分辨率和关节间隔的改变来量化精度的变化。

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