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首页> 外文期刊>Journal of Medical Engineering >A Digital Model to Simulate Effects of Bone Architecture Variations on Texture at Spatial Resolutions of CT, HR-pQCT, andμCT Scanners
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A Digital Model to Simulate Effects of Bone Architecture Variations on Texture at Spatial Resolutions of CT, HR-pQCT, andμCT Scanners

机译:在CT,HR-pQCT和μCT扫描仪的空间分辨率下模拟骨骼结构变化对纹理的影响的数字模型

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The quantification of changes in the trabecular bone structure induced by musculoskeletal diseases like osteoarthritis, osteoporosis, rheumatoid arthritis, and others by means of a texture analysis is a valuable tool which is expected to improve the diagnosis and monitoring of a disease. The reaction of texture parameters on different alterations in the architecture of the fine trabecular network and inherent imaging factors such as spatial resolution or image noise has to be understood in detail to ensure an accurate and reliable determination of the current bone state. Therefore, a digital model for the quantitative analysis of cancellous bone structures was developed. Five parameters were used for texture analysis: entropy, global and local inhomogeneity, local anisotropy, and variogram slope. Various generic structural changes of cancellous bone were simulated for different spatial resolutions. Additionally, the dependence of the texture parameters on tissue mineralization and noise was investigated. The present work explains changes in texture parameter outcomes based on structural changes originating from structure modifications and reveals that a texture analysis could provide useful information for a trabecular bone analysis even at resolutions below the dimensions of single trabeculae.
机译:通过肌理分析来量化由诸如骨骼关节炎,骨质疏松症,类风湿性关节炎等肌肉骨骼疾病引起的小梁骨结构变化是一种有价值的工具,有望改善疾病的诊断和监测。必须详细了解质地参数对精细小梁网络的结构中的不同变化和固有成像因素(例如空间分辨率或图像噪声)的反应,以确保准确可靠地确定当前的骨骼状态。因此,开发了用于定量分析松质骨结构的数字模型。五个参数用于纹理分析:熵,全局和局部不均匀性,局部各向异性和变异函数斜率。针对不同的空间分辨率模拟了松质骨的各种通用结构变化。此外,还研究了纹理参数对组织矿化和噪声的依赖性。本工作解释了基于结构修改产生的结构变化而导致的纹理参数结果的变化,并揭示了即使在低于单个小梁尺寸的分辨率下,纹理分析也可以为小梁骨分析提供有用的信息。

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