肌肉内脂肪浸润影响老年妇女肌肉收缩时的机械特性。

Zimin Wang, Masashi Taniguchi, Junya Saeki, Masahide Yagi, Norihiko Murota, Kaede Nakazato, Nanami Niiya, Noriaki Ichihashi
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摘要

尽管有证据表明肌肉内脂肪浸润可能会影响肌肉力量,但其确切机制仍不清楚。本研究旨在确定肌肉内脂肪浸润是否会影响肌肉收缩时的机械特性,以及这些机械特性是否会介导肌肉内脂肪浸润与肌肉力量之间的关系。本研究纳入了 79 名健康的老年妇女,年龄为 75.1±6.8 岁。通过 B 型超声波检查测量了阔筋膜(VL)的回声强度(EI)作为肌肉内脂肪浸润指数。使用测力计评估了最大自主等长收缩强度(MVIC)。在不同的肌肉收缩条件下,使用超声剪切波弹性成像技术测量了VL的剪切弹性模量(G),这是一种机械性能指数,测量条件包括静止、15%、30% 和 45% MVIC(G0、G15、G30 和 G45)。为评估剪切弹性模量随肌肉收缩强度增加而增加的程度,计算了每位受试者肌肉收缩与剪切弹性模量之间的回归线斜率(Gslope)。结果表明,EI 与 G30 和 G45 显著相关,但与 G0 或 G15 无关。EI 可以解释 Gslope 的个体间差异。中介分析显示,EI 通过 Gslope 对 MVIC 的影响是显著的(间接影响 = -0.31,95% 置信区间 [-0.57, -0.12])。这些结果表明,EI 越大,肌肉收缩时的 G 值越低。此外,我们的结果表明,EI 和 MVIC 之间的关系是由 Gslope 介导的。
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Intramuscular fat infiltration influences mechanical properties during muscle contraction in older women.

Although evidence suggests that intramuscular fat infiltration may influence muscle strength, the precise mechanisms remain unclear. This study aimed to determine whether intramuscular fat infiltration affects muscle mechanical properties during contraction and whether these mechanical properties mediate the relationship between intramuscular fat infiltration and muscle strength. Seventy-nine healthy older women aged 75.1 ± 6.8 years were included in this study. The echo intensity (EI) of the vastus lateralis (VL) was measured as an intramuscular fat infiltration index using B-mode ultrasonography. Maximum voluntary isometric contraction strength (MVIC) was assessed using a dynamometer. The VL shear elastic modulus (G), a mechanical property index, was measured using ultrasound shear wave elastography under various muscle contraction conditions, at rest and at 15%, 30%, and 45% MVIC (G0, G15, G30, and G45). To evaluate the degree of increase in the shear elastic modulus with increasing muscle contraction intensity, the slope of the regression line (Gslope) between muscle contraction and shear elastic modulus was calculated for each participant. The results showed that EI was significantly associated with G30 and G45 but not with G0 or G15. The EI can significantly explain the inter-individual differences in Gslope. Mediation analysis revealed that the effect of EI on MVIC through Gslope was significant (indirect effect = -0.31, 95% confidence interval (-0.57, -0.12)). These findings suggest that a greater EI is associated with a lower G during muscle contraction. Furthermore, our results show that the relationship between EI and MVIC is mediated by Gslope.

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