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张力肌动描记图的分解及其在运动后增强后与转矩抽搐反应的比较。

Decomposition of tensiomyogram and comparison with torque twitch responses after post-activation potentiation.

机构信息

Faculty of Sport and Physical Education, University of Sarajevo, Sarajevo, Bosnia and Herzegovina.

Faculty of Sport, University of Ljubljana, Ljubljana, Slovenia.

出版信息

J Musculoskelet Neuronal Interact. 2022 Sep 1;22(3):316-325.

Abstract

OBJECTIVES

This study evaluates the effect of post-activation potentiation (PAP) after 5x5s maximal voluntary isometric contractions (activation stimulus, AS) on tensiomyography (TMG) and torque twitch contractile parameters of vastus lateralis (VL) and medialis (VM), respectively. Further, we validated the decomposition of TMG response to separate responses of three fiber types.

METHODS

15 healthy individuals participated in this study (40% women; age 19±2.3 years). A decomposition of VL TMG response was done after optimal fitting of three exponential curves.

RESULTS

We found main effects in contraction time (Tc) for muscle, method and time. Furthermore, we found interactions between musclemethod, methodtime and musclemethodtime. Compared to PRE AS, we found shorter TMG Tc in VL and VM during the first two minutes after AS. Torque Tc remained unchanged in VL, while it increased in VM within 30 seconds after AS. A decomposition of VL TMG response confirmed PAP effects being present only in decomposed type IIb muscle fibers.

CONCLUSION

The TMG is a sensitive method to detect PAP effects with a sensor mounted directly above the muscle belly. After the decomposition of the TMG signal to three separate muscle fiber phenotypes, we provided a non-invasive insight in the contribution of each muscle fiber phenotype to the PAP of the whole muscle.

摘要

目的

本研究评估了 5x5s 最大等长收缩(激活刺激,AS)后的后激活增强(PAP)对股外侧肌(VL)和股内侧肌(VM)的张力肌动描记法(TMG)和扭矩 twitch 收缩参数的影响。此外,我们验证了 TMG 响应的分解,以分离三种纤维类型的单独响应。

方法

15 名健康个体参加了这项研究(40%为女性;年龄 19±2.3 岁)。在对三个指数曲线进行最佳拟合后,对 VL 的 TMG 响应进行了分解。

结果

我们发现收缩时间(Tc)在肌肉、方法和时间方面存在主要影响。此外,我们还发现了肌肉方法、方法时间和肌肉方法时间之间的相互作用。与 PRE AS 相比,我们发现 AS 后前两分钟 VL 和 VM 的 TMG Tc 更短。VL 中的扭矩 Tc 保持不变,而 VM 中的扭矩 Tc 在 AS 后 30 秒内增加。VL TMG 响应的分解证实了 PAP 效应仅存在于分解的 IIb 型肌肉纤维中。

结论

TMG 是一种敏感的方法,可以检测到直接安装在肌肉上方的传感器的 PAP 效应。在 TMG 信号分解为三个单独的肌肉纤维表型后,我们提供了一种非侵入性的方法,可以深入了解每个肌肉纤维表型对整个肌肉的 PAP 的贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4299/9438518/cfd3af8e2fd3/JMNI-22-316-g001.jpg

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