Suppr超能文献

在高细胞外[K]或疲劳性收缩条件下,双脉冲起始的低频刺激对大鼠伸趾长肌的收缩益处。

Contractile benefits of doublet-initiated low-frequency stimulation in rat extensor digitorum longus muscle exposed to high extracellular [K] or fatiguing contractions.

机构信息

Department of Public Health, Aarhus University , Aarhus , Denmark.

Department of Biomedicine, Aarhus University , Aarhus , Denmark.

出版信息

Am J Physiol Cell Physiol. 2019 Jul 1;317(1):C39-C47. doi: 10.1152/ajpcell.00519.2018. Epub 2019 Apr 10.

Abstract

During dynamic contractions, high-frequency muscle activation is needed to achieve optimal power. This must be balanced against an increased excitation-induced accumulation of extracellular K, which can reduce excitability and ultimately may prevent adequate responses to high-frequency activation. Mean activation frequencies in vivo are often low (subtetanic), but activation patterns contain bursts of high (supratetanic) frequencies known as doublets, which enhance dynamic contraction in rested muscles at normal extracellular K concentration ([K]). Here, we examine how dynamic contractions in fast-twitch fibers stimulated by high frequency/doublets are affected during exposure to 11 mM [K] and during fatigue. Dynamic contractions were elicited by electrical stimulation in isolated rat extensor digitorum longus muscles incubated at 4 or 11 mM K. When stimulation frequency was maintained constant, an increase from 150 to 300 Hz enhanced maximal power (P), maximal velocity (), and rate of force development (RFD) at 4 mM K but only at 11 mM K. With the use of subtetanic frequency trains (50 Hz) with or without an initiating doublet (300 Hz), the addition of a doublet increased maximal force, P, , and RFD at both 4 and 11 mM K. Furthermore, a work-matched fatiguing protocol was performed comparing a doublet-initiated subtetanic train (DT) of 60 Hz with a constant-frequency train (CFT) of 71 Hz during 100 dynamic contractions. We found that DT produced higher power, velocity, and RFD than CFT throughout the fatiguing protocol. The results indicate that doublets enhance dynamic contraction in fast-twitch muscles stimulated at subtetanic frequency during both normal and fatiguing conditions.

摘要

在动态收缩过程中,需要高频肌肉激活以实现最佳功率。这必须与增加的兴奋诱导的细胞外 K 积累相平衡,这会降低兴奋性,并最终可能阻止对高频激活的充分反应。体内的平均激活频率通常较低(亚强直),但激活模式包含高频(超强直)爆发,称为双脉冲,这可以增强正常细胞外 K 浓度 ([K]) 下休息肌肉的动态收缩。在这里,我们研究了在 11 mM [K] 和疲劳期间,高频/双脉冲刺激的快肌纤维的动态收缩是如何受到影响的。在 4 或 11 mM K 孵育的分离大鼠伸趾长肌中,通过电刺激引发动态收缩。当刺激频率保持恒定时,从 150 Hz 增加到 300 Hz 会增强 4 mM K 时的最大功率 (P)、最大速度 () 和力发展速率 (RFD),但仅增强 11 mM K 时的 。使用亚强直频率的列车(50 Hz),有或没有起始双脉冲(300 Hz),添加双脉冲会增加最大力、P、和 4 和 11 mM K 时的 RFD。此外,进行了一项工作匹配的疲劳协议,比较了在 100 次动态收缩过程中,起始双脉冲的亚强直列车 (DT) 与恒定频率列车 (CFT) 的 71 Hz。我们发现,在整个疲劳协议中,DT 产生的功率、速度和 RFD 均高于 CFT。结果表明,双脉冲在正常和疲劳条件下刺激亚强直频率的快肌纤维时都可以增强动态收缩。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验