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Quantification of Trabecular Bone Anisotropy by Means of Tensor Scale

机译:用张量量表量化骨小梁的各向异性

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Trabecular bone (TB) is a network of interconnected struts and plates that constantly remodels to adapt dynamically to the stresses to which it is subjected in such a manner that the trabeculae are oriented along the major stress lines (Wolf's Law). Structural anisotropy can be expressed in terms of the fabric tensor. Next to bone density, TB has been found to be the largest determinant of bone biomechanical behavior. Existing methods, including mean intercept length (MIL), provide only a global statistical average of TB anisotropy and, generally, require a large sample volume. In this paper, we present a new method, based on the recently conceived notion of tensor scale, which provides regional information of TB orientation and anisotropy. Preliminary evaluation of the method in terms of its sensitivity to resolution and image rotation is reported. The characteristic differences between TB anisotropy computed from transverse and longitudinal sections have been studied and potential applications of the method to in vivo MR imaging are demonstrated. Finally, the ongoing extension of three-dimensional tensor scale in quantitative analysis of tissue morphology is discussed.
机译:骨小梁(TB)是由相互连接的支柱和板组成的网络,不断进行重塑以动态适应其承受的应力,使骨小梁沿着主要应力线定向(沃尔夫定律)。结构各向异性可以用织物张量表示。除了骨密度,结核病是决定骨生物力学行为的最大决定因素。现有方法(包括平均截距长度(MIL))仅提供TB各向异性的全局统计平均值,并且通常需要大量样本。在本文中,我们提出了一种基于最近构想的张量尺度的新方法,该方法提供了TB方向和各向异性的区域信息。报告了该方法对分辨率和图像旋转的敏感性的初步评估。研究了从横断面和纵断面计算出的TB各向异性之间的特征差异,并证明了该方法在体内MR成像中的潜在应用。最后,讨论了在组织形态定量分析中三维张量标度的扩展。

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