Detecting age-related changes in skeletal muscle mechanics using ultrasound shear wave elastography

剪切模量 肱二头肌 弹性成像 肘部 弹性模量 医学 超声波 材料科学 生物力学 口腔正畸科 物理医学与康复 解剖 复合材料 放射科
作者
Filiz Ateş,Justus Marquetand,Manuela Zimmer
出处
期刊:Scientific Reports [Nature Portfolio]
卷期号:13 (1) 被引量:2
标识
DOI:10.1038/s41598-023-47468-z
摘要

Aging leads to a decline in muscle mass and force-generating capacity. Ultrasound shear wave elastography (SWE) is a non-invasive method to capture age-related muscular adaptation. This study assessed biceps brachii muscle (BB) mechanics, hypothesizing that shear elastic modulus reflects (i) passive muscle force increase imposed by length change, (ii) activation-dependent mechanical changes, and (iii) differences between older and younger individuals. Fourteen healthy volunteers aged 60-80 participated. Shear elastic modulus, surface electromyography, and elbow torque were measured at five elbow positions in passive and active states. Data collected from young adults aged 20-40 were compared. The BB passive shear elastic modulus increased from flexion to extension, with the older group exhibiting up to 52.58% higher values. Maximum elbow flexion torque decreased in extended positions, with the older group 23.67% weaker. Significant effects of elbow angle, activity level, and age on total and active shear elastic modulus were found during submaximal contractions. The older group had 20.25% lower active shear elastic modulus at 25% maximum voluntary contraction. SWE effectively quantified passive and activation-dependent BB mechanics, detecting age-related alterations at rest and during low-level activities. These findings suggest shear elastic modulus as a promising biomarker for identifying altered muscle mechanics in aging.
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