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Mechanical characterization of the mouse diaphragm with optical coherence elastography reveals fibrosis-related change of direction-dependent muscle tissue stiffness

机译:光学相干弹性成像对小鼠mouse肌的机械表征揭示了与纤维化相关的方向依赖性肌肉组织硬度变化

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The diaphragm, composed of skeletal muscle, plays an important role in respiration through its dynamic contraction. Genetic and molecular studies of the biomechanics of mouse diaphragm can provide great insights into an improved understanding and potential treatment of the disorders that lead to diaphragm dysfunction (i.e. muscular dystrophy). However, due to the small tissue size, mechanical assessment of mouse diaphragm tissue under its proper physiological conditions has been challenging. Here, we present the application of noncontact optical coherence elastography (OCE) for quantitative elastic characterization of ex vivo mouse diaphragm. Phase-sensitive optical coherence tomography was combined with a focused air-puff system to capture and measure the elastic wave propagation from tissue surface. Experiments were performed on wildtype and dystrophic mouse diaphragm tissues containing different levels of fibrosis. The OCE measurements of elastic wave propagation were conducted along both the longitudinal and transverse axis of the muscle fibers. Cross-correlation of the temporal displacement profiles from different spatial locations was utilized to obtain the propagation time delay, which was used to calculate the wave group velocity and to further quantify the tissue Young's modulus. Prior to and after OCE assessment, peak tetanic force was measured to monitor viability of the tissue during the elasticity measurements. Our experimental results indicate a positive correlation between fibrosis level and tissue stiffness, suggesting this elastic-wave-based OCE method could be a useful tool to monitor mechanical properties of skeletal muscle under physiological and pathological conditions.
机译:由骨骼肌组成的隔膜通过其动态收缩在呼吸中起着重要作用。小鼠diaphragm肌生物力学的遗传学和分子研究可以为深入理解和潜在治疗导致diaphragm肌功能障碍(即肌肉营养不良)的疾病提供更好的见识。但是,由于组织较小,因此在其适当的生理条件下对小鼠diaphragm肌组织进行机械评估一直是一项挑战。在这里,我们提出非接触光学相干弹性成像(OCE)在离体小鼠隔膜定量弹性表征中的应用。相敏光学相干断层扫描与聚焦气吹系统相结合,以捕获和测量从组织表面传播的弹性波。在含有不同水平纤维化的野生型和营养不良的小鼠diaphragm肌组织上进行了实验。沿着肌肉纤维的纵轴和横轴进行弹性波传播的OCE测量。利用来自不同空间位置的时间位移剖面的互相关来获得传播时间延迟,该传播时间延迟用于计算波群速度并进一步量化组织的杨氏模量。在OCE评估之前和之后,在弹性测量过程中测量峰值破伤力以监测组织的活力。我们的实验结果表明纤维化水平和组织硬度之间呈正相关,表明这种基于弹性波的OCE方法可能是在生理和病理条件下监测骨骼肌力学性能的有用工具。

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