首页> 外文期刊>Calcified tissue international. >Fuzzy logic structure analysis of trabecular bone of the calcaneus to estimate proximal femur fracture load and discriminate subjects with and without vertebral fractures using high-resolution magnetic resonance imaging at 1.5 T and 3 T.
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Fuzzy logic structure analysis of trabecular bone of the calcaneus to estimate proximal femur fracture load and discriminate subjects with and without vertebral fractures using high-resolution magnetic resonance imaging at 1.5 T and 3 T.

机译:使用1.5 T和3 T高分辨率磁共振成像对跟骨小梁骨进行模糊逻辑结构分析,以估计股骨近端骨折负荷并区分有无椎体骨折的受试者。

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Newly developed fuzzy logic-derived structural parameters were used to characterize trabecular bone architecture in high-resolution magnetic resonance imaging (HR-MRI) of human cadaver calcaneus specimens. These parameters were compared to standard histomorphological structural measures and analyzed concerning performance in discriminating vertebral fracture status and estimating proximal femur fracture load. Sets of 60 sagittal 1.5 T and 3.0 T HR-MRI images of the calcaneus were obtained in 39 cadavers using a fast gradient recalled echo sequence. Structural parameters equivalent to bone histomorphometry and fuzzy logic-derived parameters were calculated using two chosen regions of interest. Calcaneal, spine, and hip bone mineral density (BMD) measurements were also obtained. Fracture status of the thoracic and lumbar spine was assessed on lateral radiographs. Finally, mechanical strength testing of the proximal femur was performed. Diagnostic performance in discriminating vertebral fracture status and estimating femoral fracture load was calculated using regression analyses, two-tailed t-tests of significance, and receiver operating characteristic (ROC) analyses. Significant correlations were obtained at both field strengths between all structural and fuzzy logic parameters (r up to 0.92). Correlations between histomorphological or fuzzy logic parameters and calcaneal BMD were mostly significant (r up to 0.78). ROC analyses demonstrated that standard structural parameters were able to differentiate persons with and without vertebral fractures (area under the curve [A(Z)] up to 0.73). However, none of the parameters obtained in the 1.5-T images and none of the fuzzy logic parameters discriminated persons with and without vertebral fractures. Significant correlations were found between fuzzy or structural parameters and femoral fracture load. Using multiple regression analysis, none of the structural or fuzzy parameters were found to add discriminative value to BMD alone. In summary significant correlations were obtained at both field strengths between all structural and fuzzy logic parameters. However, fuzzy logic-based calcaneal parameters were not well suited for vertebral fracture discrimination. Although significant correlations were found between fuzzy or structural parameters and femoral fracture load, multiple regression analysis showed limited improvement for estimating femoral failure load in addition to femoral BMD alone. Local femoral measurements are still needed to estimate femoral bone strength. Overall, parameters obtained at 3.0 T performed better than those at 1.5 T.
机译:在人类尸体跟骨标本的高分辨率磁共振成像(HR-MRI)中,新开发的模糊逻辑衍生的结构参数用于表征小梁骨结构。将这些参数与标准组织形态学结构方法进行比较,并分析其在区分椎体骨折状态和估计股骨近端骨折负荷方面的性能。使用快速梯度回波序列在39具尸体中获得了60组跟骨的矢状1.5 T和3.0 T HR-MRI图像。使用两个选定的感兴趣区域来计算与骨骼组织形态计量学等效的结构参数和模糊逻辑衍生的参数。还获得了骨,脊柱和髋骨矿物质密度(BMD)的测量值。在侧面X光片上评估胸椎和腰椎的骨折状态。最后,进行了股骨近端的机械强度测试。使用回归分析,显着性的两尾t检验和接受者操作特征(ROC)分析,计算出可辨别椎骨骨折状态和估计股骨骨折负荷的诊断性能。在所有结构强度和模糊逻辑参数之间的两个场强处均获得了显着的相关性(r高达0.92)。组织形态学或模糊逻辑参数与跟骨BMD之间的相关性最显着(r高达0.78)。 ROC分析表明,标准结构参数能够区分有无椎体骨折的人(曲线[A(Z)]下的面积最大为0.73)。然而,在1.5-T图像中没有获得任何参数,也没有模糊逻辑参数可以区分有或没有椎骨骨折的人。发现模糊或结构参数与股骨骨折负荷之间存在显着相关性。使用多元回归分析,没有发现任何结构或模糊参数可为BMD增添判别力。总之,在所有结构和模糊逻辑参数之间的两个场强处均获得了显着的相关性。然而,基于模糊逻辑的跟骨参数不适用于椎骨骨折鉴别。尽管发现模糊或结构参数与股骨骨折负荷之间存在显着相关性,但多元回归分析显示,除单独使用股骨BMD以外,用于评估股骨破坏负荷的改进有限。仍需要局部股骨测量以估计股骨强度。总体而言,在3.0 T下获得的参数表现优于在1.5 T下获得的参数。

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