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Contemporary image-based methods for measuring passive mechanical properties of skeletal muscles in vivo

机译:基于图像的肌肉肌肉被动力学性能的基于图像的基于图像的方法

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Skeletal muscles' primary function in the body is mechanical: to move and stabilize the skeleton. As such, their mechanical behavior is a key aspect of their physiology. Recent developments in medical imaging technology have enabled quantitative studies of passive muscle mechanics, ranging from measurements of intrinsic muscle mechanical properties, such as elasticity and viscosity, to three-dimensional muscle architecture and dynamic muscle deformation and kinematics. In this review we summarize the principles and applications of contemporary imaging methods that have been used to study the passive mechanical behavior of skeletal muscles. Elastography measurements can provide in vivo maps of passive muscle mechanical parameters, and both MRI and ultrasound methods are available (magnetic resonance elastography and ultrasound shear wave elastography, respectively). Both have been shown to differentiate between healthy muscle and muscles affected by a broad range of clinical conditions. Detailed muscle architecture can now be depicted using diffusion tensor imaging, which not only is particularly useful for computational modeling of muscle but also has potential in assessing architectural changes in muscle disorders. More dynamic information about muscle mechanics can be obtained using a range of dynamic MRI methods, which characterize the detailed internal muscle deformations during motion. There are several MRI techniques available (e.g., phase-contrast MRI, displacement-encoded MRI, and "tagged" MRI), each of which can be collected in synchrony with muscle motion and postprocessed to quantify muscle deformation. Together, these modern imaging techniques can characterize muscle motion, deformation, mechanical properties, and architecture, providing complementary insights into skeletal muscle function.
机译:身体的骨骼肌的主要功能是机械:移动和稳定骨骼。因此,它们的机械行为是他们生理学的关键方面。医学成像技术的最新发展使无源肌肉力学的定量研究能够从内在肌肉机械性能的测量,例如弹性和粘度,三维肌肉建筑和动态肌肉变形和运动学。在这篇综述中,我们总结了用于研究骨骼肌的被动力学行为的当代成像方法的原则和应用。弹性造影测量可以提供无源肌肉机械参数的体内图,MRI和超声波方法都可用(磁共振弹性缩影和超声剪切波弹性造影。两者都被证明可以区分受广泛临床条件影响的健康肌肉和肌肉。现在可以使用扩散张量成像来描绘详细的肌肉架构,这对于肌肉的计算建模特别有用,而且还具有评估肌肉障碍中的建筑变化的潜力。可以使用一系列动态MRI方法获得有关肌肉力学的更多动态信息,其在运动期间表征了详细的内部肌肉变形。有几种可用的MRI技术(例如,相位对比器MRI,位移编码的MRI和“标记为”MRI),每个MRI可以用肌肉运动的同步收集,并且后处理以量化肌肉变形。这些现代成像技术在一起可以表征肌肉运动,变形,机械性能和架构,为骨骼肌功能提供互补的见解。

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