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A NEW ALGORITHM FOR TRABECULAR BONE THICKNESS COMPUTATION AT LOW RESOLUTION ACHIEVED UNDER IN VIVO CONDITION

机译:体内条件下低分辨率下骨小梁厚度计算的新算法

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摘要

Adult bone diseases, especially osteoporosis, lead to increased risk of fracture associated with substantial morbidity, mortality, and financial costs. Clinically, osteoporosis is defined by low bone mineral density (BMD); however, increasing evidence suggests that the micro-architectural quality of trabecular bone (TB) is an important determinant of bone strength and fracture risk. Accurate measurement of trabecular thickness and marrow spacing is of significant interest for early diagnosis of osteoporosis or treatment effects. Here, we present a new robust algorithm for computing TB thickness and marrow spacing at a low resolution achievable in vivo. The method uses a star-line tracing technique that effectively deals with partial voluming effects of in vivo imaging where voxel size is comparable to TB thickness. Experimental results on cadaveric ankle specimens have demonstrated the algorithm’s robustness (ICC>0.98) under repeat scans of multi-row detector computed tomography (MD-CT) imaging. It has been observed in experimental results that TB thickness and marrow spacing measures as computed by the new algorithm have strong association (R2 ∈{0.85, 0.87}) with TB’s experimental mechanical strength measures.
机译:成人骨骼疾病,尤其是骨质疏松症,导致骨折的风险增加,而发病率,死亡率和财务成本却很高。临床上,骨质疏松症的定义为低骨密度(BMD);然而,越来越多的证据表明,小梁骨(TB)的微结构质量是决定骨强度和骨折风险的重要因素。对于骨质疏松症的早期诊断或治疗效果,准确测量骨小梁的厚度和骨髓间隙非常重要。在这里,我们提出了一种新的健壮算法,可以在体内以较低的分辨率计算结核病的厚度和骨髓间距。该方法使用星线跟踪技术,可有效处理体内成像的局部体积效应,其中体素大小与TB厚度相当。在尸体脚踝样本上的实验结果表明,在多行检测器计算机断层扫描(MD-CT)成像的重复扫描下,该算法的鲁棒性(ICC> 0.98)。实验结果表明,新算法计算得到的结核菌厚度和骨髓间距与结核菌的实验机械强度有很强的相关性(R 2 ∈{0.85,0.87})。

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  • 期刊名称 other
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  • 年(卷),期 -1(2013),-1
  • 年度 -1
  • 页码 390–393
  • 总页数 12
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