Suppr超能文献

小脑兴奋性调节身体疲劳感知。

Cerebellar Excitability Regulates Physical Fatigue Perception.

机构信息

Department of Physical Medicine and Rehabilitation, Johns Hopkins University, Baltimore, Maryland 21287.

Kennedy Krieger Institute, Baltimore, Maryland 21287.

出版信息

J Neurosci. 2023 Apr 26;43(17):3094-3106. doi: 10.1523/JNEUROSCI.1406-22.2023. Epub 2023 Mar 13.

Abstract

Fatigue is the subjective sensation of weariness, increased sense of effort, or exhaustion and is pervasive in neurologic illnesses. Despite its prevalence, we have a limited understanding of the neurophysiological mechanisms underlying fatigue. The cerebellum, known for its role in motor control and learning, is also involved in perceptual processes. However, the role of the cerebellum in fatigue remains largely unexplored. We performed two experiments to examine whether cerebellar excitability is affected after a fatiguing task and its association with fatigue. Using a crossover design, we assessed cerebellar inhibition (CBI) and perception of fatigue in humans before and after "fatigue" and "control" tasks. Thirty-three participants (16 males, 17 females) performed five isometric pinch trials with their thumb and index finger at 80% maximum voluntary capacity (MVC) until failure (force <40% MVC; fatigue) or at 5% MVC for 30 s (control). We found that reduced CBI after the fatigue task correlated with a milder perception of fatigue. In a follow-up experiment, we investigated the behavioral consequences of reduced CBI after fatigue. We measured CBI, perception of fatigue, and performance during a ballistic goal-directed task before and after the same fatigue and control tasks. We replicated the observation that reduced CBI after the fatigue task correlated with a milder perception of fatigue and found that greater endpoint variability after the fatigue task correlated with reduced CBI. The proportional relation between cerebellar excitability and fatigue indicates a role of the cerebellum in the perception of fatigue, which might come at the expense of motor control. Fatigue is one of the most common and debilitating symptoms in neurologic, neuropsychiatric, and chronic illnesses. Despite its epidemiological importance, there is a limited understanding of the neurophysiological mechanisms underlying fatigue. In a series of experiments, we demonstrate that decreased cerebellar excitability relates to lesser physical fatigue perception and worse motor control. These results showcase the role of the cerebellum in fatigue regulation and suggest that fatigue- and performance-related processes might compete for cerebellar resources.

摘要

疲劳是一种主观的疲倦感、增加的努力感或疲惫感,在神经疾病中普遍存在。尽管它很常见,但我们对疲劳的神经生理机制的理解有限。小脑以其在运动控制和学习中的作用而闻名,也参与了知觉过程。然而,小脑在疲劳中的作用在很大程度上仍未得到探索。我们进行了两项实验,以检查疲劳任务后小脑兴奋性是否受到影响及其与疲劳的关系。使用交叉设计,我们在疲劳和对照任务前后评估了人类的小脑抑制(CBI)和疲劳感。33 名参与者(16 名男性,17 名女性)在拇指和食指上以 80%最大自主能力(MVC)进行了五次等长捏合试验,直到失败(力<40%MVC;疲劳)或以 5%MVC 进行 30 秒(对照)。我们发现疲劳任务后 CBI 的降低与疲劳感的减轻相关。在后续实验中,我们研究了疲劳后 CBI 降低的行为后果。我们在进行相同的疲劳和对照任务前后测量了 CBI、疲劳感和弹道目标导向任务的表现。我们复制了疲劳任务后 CBI 降低与疲劳感减轻相关的观察结果,并发现疲劳任务后终点变异性增加与 CBI 降低相关。小脑兴奋性与疲劳之间的比例关系表明小脑在疲劳感的调节中发挥作用,这可能以牺牲运动控制为代价。疲劳是神经、神经精神和慢性疾病中最常见和最使人虚弱的症状之一。尽管它具有流行病学意义,但对疲劳的神经生理机制的理解有限。在一系列实验中,我们证明小脑兴奋性的降低与体力疲劳感的减轻和运动控制的恶化有关。这些结果展示了小脑在疲劳调节中的作用,并表明疲劳和性能相关过程可能争夺小脑资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b90/10146467/d39a053840c0/SN-JNSJ230147F001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验