首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Use of vibrational optical coherence tomography to measure viscoelastic properties of muscle and tendon: A new method to follow musculoskeletal injury and pathology In vivo
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Use of vibrational optical coherence tomography to measure viscoelastic properties of muscle and tendon: A new method to follow musculoskeletal injury and pathology In vivo

机译:使用振动光学相干断层扫描来测量肌肉和肌腱的粘弹性特性:一种遵循肌肉骨骼损伤和体内病理学的新方法

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摘要

The biomechanical properties of muscles and tendons in vivo are important parameters needed to understand musculoskeletal physiology and pathology. Values of the shear moduli reported for human musculoskeletal components using elastographic techniques range from several KPa to about 100 KPa and are much lower than the tensile moduli measured in vivo which are reported to be as high as several hundred MPa at high strains. In this paper we report the results of a pilot study to measure the mechanical properties of human muscles and tendons non-invasively and non-destructively in vivo using vibrational optical coherence tomography (VOCT). VOCT is a non-invasive technique that uses audible sound and reflected infrared light to measure the resonant frequency of each tissue component. Using VOCT we report that the moduli at the biceps muscle-tendon junction are about 24-30 MPa even though moduli in other anatomic locations of muscle and tendons can vary by as much as 10 MPa. It is concluded that the modulus and stress exerted by tendons and muscles at the muscletendon junction are similar and that deposition of fibrous tissue at the junction will lead to reduced values of the modulus leading to tissue pathology and muscle injury.
机译:体内肌肉和肌腱的生物力学特性是理解肌肉骨骼生理学和病理学所需的重要参数。使用弹性成像技术报告的人体肌肉骨骼部件的剪切模量值范围从几KPa到大约100 KPa,远低于在体内测量的拉伸模量,据报告,在高应变下,拉伸模量高达几百MPa。在本文中,我们报告了一项初步研究的结果,该研究利用振动光学相干断层扫描(VOCT)在体内无创和无损地测量人体肌肉和肌腱的力学性能。VOCT是一种非侵入性技术,使用可听声音和反射红外光来测量每个组织成分的共振频率。使用VOCT,我们报告肱二头肌-肌腱连接处的模量约为24-30 MPa,尽管肌肉和肌腱的其他解剖位置的模量变化可能高达10 MPa。结论是,肌腱和肌肉在肌肉-内顿连接处施加的模量和应力相似,纤维组织在连接处的沉积将导致模量值降低,从而导致组织病理学和肌肉损伤。

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