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DIFFERENCES BETWEEN PRINCIPAL STRAIN DIRECTIONS AND MUSCLE FIBER DIRECTIONS IN THE CONTRACTING BICEPS BRACII MEASURED WITH CPC-MRI

机译:用CPC-MRI测量合约二头肌Brachii的主应变方向和肌纤维方向之间的差异

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Skeletal muscle exhibit non-uniform internal architectures and our research goals are to relate these to their internal mechanics during contraction to provide a better understanding of muscle function, verify muscle models and permit more sophisticated interpretation of the functional effects of injury. Our previous studies have developed a novel method to calculate 2D Lagrangian strain field of skeletal muscle from the CPC-MRI [1]. The objective of this study is to apply CPC-MRI to derive Lagrangian strain fields for the normal biceps brachii and to determine its minimum principal strain directions in vivo during contraction. We will then compare them to the muscle fiber directions or pennation angles measured by a parallel ultrasound study. If we assume the muscle force is mainly transmitted along fiber directions, we would expect that the minimum principal strain directions are the same as fiber directions. Comparisons between different regions of the muscle and flexion angles will also be made.
机译:骨骼肌表现出非均匀的内部架构和我们的研究目标是在收缩期间将这些目标与其内部机制联系起来,以更好地了解肌肉功能,验证肌肉模型,并允许更复杂的对伤害功能影响的复杂解释。我们以前的研究开发了一种从CPC-MRI [1]中计算骨骼肌的2D拉格朗日应变场的新方法。本研究的目的是应用CPC-MRI以导出普通二头肌BRACHII的拉格朗日应变场,并在收缩期间确定其体内的最小主应变方向。然后,我们将它们与通过并行超声研究测量的肌肉纤维方向或钢圈角度进行比较。如果我们假设肌肉力主要沿着纤维方向传输,我们期望最小主应变方向与光纤方向相同。还将制造不同区域之间的比较。

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