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肌肉对电刺激的适应性变化。

Variability in muscle adaptation to electrical stimulation.

机构信息

Department of Internal Medicine, Division of Endocrinology, Diabetology and -Metabolism, Molinette Hospital, University of Turin, Turin, Italy.

出版信息

Int J Sports Med. 2013 Jun;34(6):544-53. doi: 10.1055/s-0032-1321799. Epub 2013 Jan 7.

Abstract

The aims were to investigate the plasticity of the myosin heavy chain (MHC) phenotype following neuromuscular electrical stimulation (NMES) and to assess the correlation between MHC isoform distribution and muscle fibre conduction velocity (MFCV).14 men were subjected to 24 sessions of quadriceps NMES. Needle biopsies were taken from the dominant vastus lateralis and neuromuscular tests were performed on the dominant thigh before and after training. NMES significantly increased the quadriceps maximal force by 14.4±19.7% (P=0.02), vastus lateralis thickness by 10.7±8.6% (P=0.01), vastus lateralis MFCV by 11.1±3.5% (P<0.001), vastus medialis MFCV by 8.4±1.8% (P<0.001). The whole spectrum of possible MHC isoform adaptations to training was observed: fast-to-slow transition (4 subjects), bi-directional transformation from MHC-1 and MHC-2X isoforms toward MHC-2A isoform (7 subjects), shift toward MHC-2X (2 subjects), no MHC distribution change (1 subject). No significant correlation was observed between MHC-2 relative content and vastus lateralis MFCV (pre-training: R2=0.04, P=0.46; post-training: R2=0.02, P=0.67). NMES elicited distinct adaptations in the MHC composition and increased force, muscle thickness, and MFCV. The MHC isoform distribution did not correlate with MFCV, thus implying that the proportion of different fibre types cannot be estimated from this electrophysiological variable.

摘要

目的是研究神经肌肉电刺激(NMES)后肌球蛋白重链(MHC)表型的可塑性,并评估 MHC 同工型分布与肌纤维传导速度(MFCV)之间的相关性。14 名男性接受了 24 次股四头肌 NMES。在训练前后,从优势股外侧肌取针活检,并对优势大腿进行神经肌肉测试。NMES 显著增加了股四头肌最大力量 14.4±19.7%(P=0.02),股外侧肌厚度增加 10.7±8.6%(P=0.01),股外侧肌 MFCV 增加 11.1±3.5%(P<0.001),股中间肌 MFCV 增加 8.4±1.8%(P<0.001)。观察到训练对 MHC 同工型适应的整个可能范围:从快到慢的转变(4 个受试者),从 MHC-1 和 MHC-2X 同工型向 MHC-2A 同工型的双向转化(7 个受试者),向 MHC-2X 转移(2 个受试者),MHC 分布无变化(1 个受试者)。MHC-2 相对含量与股外侧肌 MFCV 之间未观察到显著相关性(训练前:R2=0.04,P=0.46;训练后:R2=0.02,P=0.67)。NMES 引起了 MHC 组成和力量、肌肉厚度和 MFCV 的明显适应。MHC 同工型分布与 MFCV 无关,因此意味着不同纤维类型的比例不能从这个电生理变量来估计。

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