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Diffusion tensor imaging and diffusion modeling: Application to monitoring changes in the medial gastrocnemius in disuse atrophy induced by unilateral limb suspension

机译:扩散张量成像和扩散模型:在单侧肢体悬架中诱导的非嗜酸性萎缩中的内侧胃肠炎的变化的应用

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Background Diffusion tensor imaging (DTI) assesses underlying tissue microstructure, and has been applied to studying skeletal muscle. Unloading of the lower leg causes decreases in muscle force, mass, and muscle protein synthesis as well as changes in muscle architecture. Purpose To monitor the change in DTI indices in the medial gastrocnemius (MG) after 4‐week unilateral limb suspension (ULLS) and to explore the feasibility of extracting tissue microstructural parameters based on a two‐compartment diffusion model. Study Type Prospective cohort study. Subjects Seven moderately active subjects (29.1?±?5.7 years). Field Strength/Sequence 3T, single‐shot fat‐suppressed echo planar spin echo sequence. Assessment Suspension‐related changes in the DTI indices (eigenvalues: λ 1 , λ 2 , λ 3 , fractional anisotropy; coefficient of planarity) were statistically analyzed. Changes in model‐derived tissue parameters (muscle fiber circularity and diameter, intracellular volume fraction, and residence time) after suspension are qualitatively discussed. Statistical Tests Changes in the DTI indices of the MG between pre‐ and postsuspension were assessed using repeated‐measures two‐way analysis of variance (ANOVA). Results All the eigenvalues (λ 1 : P ?=?0.025, λ 2 : P ?=?0.035, λ 3 : P ?=?0.049) as well as anisotropic diffusion coefficient ( P ?=?0.029) were significantly smaller post‐ULLS. Diffusion modeling revealed that fibers were more circular (circularity index increased from 0.55 to 0.95) with a smaller diameter (diameter decreased from 82–60 μm) postsuspension. Data Conclusion We have shown that DTI indices change with disuse and modeling can relate these voxel level changes to changes in the tissue microarchitecture. Level of Evidence : 2 Technical Efficacy : Stage 1 J. Magn. Reson. Imaging 2018.
机译:背景技术扩散张量成像(DTI)评估底层组织微观结构,并已应用于研究骨骼肌。卸下小腿导致肌肉力量,质量和肌肉蛋白质合成的变化以及肌肉建筑的变化。目的在4周单侧肢体悬架(ULLS)之后监测内侧腓肠肌(MG)中的DTI指数的变化,并探讨基于双隔室扩散模型提取组织微结构参数的可行性。研究类型预期队列研究。主题七个中度有效的主题(29.1?±5.7岁)。场强/序列3T,单次脂肪抑制回声平面旋转回波序列。统计分析了DTI索引中的评估悬浮件(特征值:λ1,λ2,λ3,分数各向异性)。定性地讨论了悬浮后模型衍生的组织参数(肌纤维圆形和直径,细胞内体积分数和停留时间)的变化。使用重复措施对方差的双向分析(ANOVA)进行评估,评估统计测试MG之间的MG的DTI索引的变化。结果所有特征值(λ1:p≤0.025,λ2:p?= 0.035,λ3:p?=?0.049)以及各向异性扩散系数(p?= 0.029)显着较小ulls。扩散模型显示,纤维更圆形(圆形指数从0.55升至0.95),直径较小(直径从82-60μm降低)后期。数据结论我们已经表明,DTI指数因废弃和建模而变化可以将这些体素水平变化与组织微体系结构的变化相关。证据水平:2技术疗效:第1阶段J. MANG。恢复。 2018年成像。

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    Muscle Imaging and Modeling LabDepartment of Radiology UC San DiegoSan Diego California USA;

    Physics San Diego State UniversityCalifornia USA;

    Muscle Imaging and Modeling LabDepartment of Radiology UC San DiegoSan Diego California USA;

    School of Graduate Entry Medicine and Health University of NottinghamDerby UK;

    Department of RadiologyUC San DiegoSan Diego California USA;

    Muscle Imaging and Modeling LabDepartment of Radiology UC San DiegoSan Diego California USA;

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