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骨骼肌形态和功能的体内成像:50 年的探索。

In vivo imaging of skeletal muscle form and function: 50 years of insight.

机构信息

Departments of Biomedical Engineering, Mechanical & Aerospace Engineering, Ophthalmology, and Orthopedic Surgery, University of Virginia, Charlottesville, VA, United States; Springbok Analytics, Charlottesville, VA, United States.

出版信息

J Biomech. 2023 Sep;158:111745. doi: 10.1016/j.jbiomech.2023.111745. Epub 2023 Jul 29.

Abstract

Skeletal muscle form and function has fascinated scientists for centuries. Our understanding of muscle function has long been driven by advancements in imaging techniques. For example, the sliding filament theory of muscle, which is now widely leveraged in biomechanics research, stemmed from observations made possible by scanning electron microscopy. Over the last 50 years, advancing in medical imaging, combined with ingenuity and creativity of biomechanists, have provide a wealth of new and important insights into in vivo human muscle function. Incorporation of in vivo imaging has also advanced computational modeling and allowed our research to have an impact in many clinical populations. While this review does not provide a comprehensive or meta-analysis of the all the in vivo muscle imaging work over the last five decades, it provides a narrative about the past, present, and future of in vivo muscle imaging.

摘要

骨骼肌的形态和功能让科学家们着迷了数个世纪。我们对肌肉功能的理解在很大程度上得益于成像技术的进步。例如,肌肉的滑动丝理论,现在广泛应用于生物力学研究,源于扫描电子显微镜使得这些观察成为可能。在过去的 50 年里,医学成像的进步,加上生物力学学家的聪明才智和创造力,为我们提供了大量关于体内人类肌肉功能的新的和重要的见解。体内成像的结合也推进了计算建模,并使我们的研究能够对许多临床人群产生影响。虽然这篇综述并没有对过去五十年所有的体内肌肉成像工作进行全面或荟萃分析,但它提供了一个关于体内肌肉成像过去、现在和未来的叙述。

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