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推挤仪和应变成像评估肱二头肌肌硬度在离心与向心收缩后的变化。

Changes in biceps brachii muscle hardness assessed by a push-in meter and strain elastography after eccentric versus concentric contractions.

机构信息

Institute of Physical Education, Keio University, Address 4-1-1, Hiyoshi, Kouhoku-ku, Yokohama, 223-8521, Japan.

Department of Sport and Health Science, School of Sport and Health Science, Tokai Gakuen University, Aichi, Japan.

出版信息

Sci Rep. 2022 Jun 2;12(1):9214. doi: 10.1038/s41598-022-13184-3.

Abstract

Changes in biceps brachii muscle hardness assessed by a push-in meter (PM) and strain elastography (SE) were compared between eccentric (ECC) and concentric contractions (CON) of the elbow flexors to test the hypothesis that muscle hardness would increase greater after ECC. Ten men performed 5 sets of 10 ECC with their non-dominant arms and 5 sets of 10 CON with their dominant arms using a dumbbell corresponding to 50% of maximum voluntary isometric contraction (MVIC) force at 90º elbow flexion. Before and 1-4 days after the exercise, MVIC force, elbow joint angles, upper-arm circumference, and muscle soreness as muscle damage makers, and biceps brachii muscle hardness at maximally extended elbow joint by PM and SE were measured. Changes in these measures over time were compared between ECC and CON. All muscle damage markers showed greater changes after ECC than CON (p < 0.001). Muscle hardness assessed by PM and SE increased (p < 0.05) and peaked at 4 days post-ECC with 154.4 ± 90.0% (PM) and 156.2 ± 64.2% (SE) increases from the baseline, but did not change significantly after CON. The changes in muscle hardness post-ECC were correlated between PM and SE (r = 0.752, p < 0.001). A correlation (p < 0.001) between the normalized changes in resting elbow joint angle and changes in muscle hardness assessed by PM (r = - 0.772) or SE (r = - 0.745) was also found. These results supported the hypothesis and suggest that the increases in muscle hardness after ECC were associated with muscle damage (increased muscle stiffness), and PM and SE detected muscle hardness changes similarly.

摘要

通过推挤计(PM)和应变成像(SE)评估肱二头肌肌肉硬度的变化,比较了肘屈肌的离心(ECC)和向心(CON)收缩之间的差异,以检验肌肉硬度在 ECC 后会增加更多的假设。10 名男性使用与非主导手臂的最大随意等长收缩(MVIC)力的 50%相对应的哑铃,以 90°肘屈曲进行 5 组 10 次 ECC,以主导手臂进行 5 组 10 次 CON。在运动前和运动后 1-4 天,测量 MVIC 力、肘关节角度、上臂周长和肌肉酸痛作为肌肉损伤标志物,以及 PM 和 SE 测量的最大伸展肘关节时的肱二头肌肌肉硬度。比较 ECC 和 CON 之间随时间的这些变化。所有肌肉损伤标志物在 ECC 后比 CON 变化更大(p<0.001)。PM 和 SE 评估的肌肉硬度增加(p<0.05),在 ECC 后 4 天达到峰值,与基线相比分别增加了 154.4±90.0%(PM)和 156.2±64.2%(SE),但 CON 后无明显变化。ECC 后肌肉硬度的变化在 PM 和 SE 之间呈相关性(r=0.752,p<0.001)。还发现了静息肘关节角度的归一化变化与 PM(r=-0.772)或 SE(r=-0.745)评估的肌肉硬度变化之间的相关性(p<0.001)。这些结果支持了假设,并表明 ECC 后肌肉硬度的增加与肌肉损伤(肌肉僵硬增加)有关,并且 PM 和 SE 检测到的肌肉硬度变化相似。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1797/9163354/671d50da7ebb/41598_2022_13184_Fig1_HTML.jpg

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