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通过大鼠内侧腓肠肌运动单位强直收缩分解研究连续刺激的抽搐样反应的动态变化。

Dynamic changes of twitchlike responses to successive stimuli studied by decomposition of motor unit tetanic contractions in rat medial gastrocnemius.

作者信息

Celichowski Jan, Raikova Rositsa, Aladjov Hristo, Krutki Piotr

机构信息

Department of Neurobiology, University School of Physical Education, Poznań, Poland; and

Department of Neurobiology, University School of Physical Education, Poznań, Poland; and Institute of Biophysics and Biomedical Engineering, Bulgarian Academy of Sciences, Sofia, Bulgaria.

出版信息

J Neurophysiol. 2014 Dec 15;112(12):3116-24. doi: 10.1152/jn.00895.2013. Epub 2014 Sep 24.

Abstract

Unfused tetanic contractions evoked by trains of stimuli at variable interpulse intervals (IPIs) were recorded for 10 fast fatigable (FF), 10 fast resistant (FR), and 10 slow (S) motor units (MUs) and subsequently decomposed with a mathematical algorithm into trains of twitch-shape responses to successive stimuli. The mean stimulation frequencies were matched for each MU to evoke tetani of similar fusion degrees, whereas the variability range of IPIs was in each case 50-150% of the mean IPI. Force and time parameters of decomposed twitches were analyzed and related to the first response. Considerable variability of the analyzed twitch parameters was observed in each MU, although the largest range of variability occurred in slow MUs. In general, the decomposed twitch responses had longer duration and higher force than single-twitch contractions, although for nine FF and six FR MUs some of the decomposed responses were slightly weaker (but not faster) than the first twitches of these MUs. Comparison of the strongest decomposed twitch to the first decomposed twitch revealed ratios of forces up to 2.35, 3.33, and 6.89 for FF, FR, and S MUs and ratios of force-time areas up to 3.54, 4.67, and 14.26 for FF, FR, and S MUs, whereas for the contraction times the ratios of the longest decomposed twitch to the first twitch amounted to 2.46, 2.07, and 3.52 for FF, FR, and S MUs, respectively. The results indicate that contractile responses to successive action potentials are considerably variable, especially for slow MUs.

摘要

在不同的脉冲间隔(IPI)下,通过刺激串诱发未融合的强直收缩,记录了10个快速易疲劳(FF)、10个快速抗疲劳(FR)和10个慢速(S)运动单位(MU)的情况,随后用数学算法将其分解为对连续刺激的一系列单收缩形状的反应。为每个运动单位匹配平均刺激频率,以诱发融合程度相似的强直收缩,而IPI的变化范围在每种情况下均为平均IPI的50 - 150%。分析了分解后的单收缩的力量和时间参数,并将其与第一个反应相关联。尽管在慢速运动单位中观察到的变化范围最大,但在每个运动单位中都观察到了所分析的单收缩参数的相当大的变异性。一般来说,分解后的单收缩反应比单收缩具有更长的持续时间和更高的力量,尽管对于9个FF和6个FR运动单位,一些分解后的反应比这些运动单位的第一个单收缩略弱(但不是更快)。将最强的分解单收缩与第一个分解单收缩进行比较,发现FF、FR和S运动单位的力量比分别高达2.35、3.33和6.89,FF、FR和S运动单位的力量 - 时间面积比分别高达3.54、4.67和14.26,而对于收缩时间,FF、FR和S运动单位最长分解单收缩与第一个单收缩的比值分别为2.46、2.07和3.52。结果表明,对连续动作电位的收缩反应变化很大,尤其是对于慢速运动单位。

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