首页> 外文OA文献 >Combining motor imagery with action observation training does not lead to a greater autonomic nervous system response than motor imagery alone during simple and functional movements: a randomized controlled trial
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Combining motor imagery with action observation training does not lead to a greater autonomic nervous system response than motor imagery alone during simple and functional movements: a randomized controlled trial

机译:与动作观察训练的电动机图像相结合,不会在简单且功能性的运动期间单独的运动图像导致更大的自主神经系统响应:随机对照试验

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摘要

Both motor imagery (MI) and action observation (AO) trigger the activation of the neurocognitive mechanisms that underlie the planning and execution of voluntary movements in a manner that resembles how the action is performed in a real way. The main objective of the present study was to compare the autonomic nervous system (ANS) response in an isolated MI group compared to a combined MI + AO group. The mental tasks were based on two simple movements that are recorded in the revised movement imagery questionnaire in third-person perspective. The secondary objective of the study was to test if there was any relationship between the ANS variables and the ability to generate mental motor imagery, the mental chronometry and the level of physical activity. The main outcomes that were measured were heart rate, respiratory rate and electrodermal activity. A Biopac MP150 system, a measurement device of autonomic changes, was used for the quantification and evaluation of autonomic variables. Forty five asymptomatic subjects were selected and randomized in three groups: isolated MI, MI + AO and control group (CG). In regards to the activation of the sympathetic nervous system (SNS), no differences were observed between MI and MI + AO groups (p > .05), although some differences were found between both groups when compared to the CG (p < .05). Additionally, even though no associations were reported between the ANS variables and the ability to generate mental motor imagery, moderate-strong positive associations were found in mental chronometry and the level of physical activity. Our results suggest that MI and MI + AO, lead to an activation of the SNS, although there are no significant differences between the two groups. Based on results obtained, we suggest that tasks of low complexity, providing a visual input through the AO does not facilitates their subsequent motor imagination. A higher level of physical activity as well as a longer time to perform mental task, seem to be associated with a greater increase in the ANS response.
机译:电动机图像(MI)和动作观察(AO)都触发了神经认知机制的激活,使得规划和执行自愿运动的方式,类似于如何以实际方式进行行动。与组合的MI + AO组相比,本研究的主要目的是比较分离的MI组中的自主神经系统(ANS)反应。精神任务基于两个简单的动作,记录在第三人称视角下的修订运动图像调查问卷中。该研究的二级目的是测试ANS变量与生成精神电机图像的能力,精神上的时性和身体活动水平之间存在任何关系。测量的主要结果是心率,呼吸速率和电熨斗活动。 BIOPAC MP150系统,自主变化的测量装置,用于量化和评估自主变量。选择四十五个无症状受试者并三组随机分类:分离的MI,MI + AO和对照组(CG)。关于激活交感神经系统(SNS),在MI和MI + AO基团之间没有观察到差异(P> .05),尽管与CG相比,两组之间发现了一些差异(P <.05 )。此外,即使在ANS变量和产生精神电机图像的能力之间没有报告任何关联,在精神间符和身体活动水平中发现了中等强度的阳性关联。我们的结果表明,MI和MI + AO,导致SNS的激活,尽管两组之间没有显着差异。基于获得的结果,我们建议通过AO提供低复杂性的任务,不促进其后续的电动机想象。更高水平的身体活动以及执行心理任务的更长的时间似乎与ANS响应的更大增加相关。

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