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日常人工重力与感觉运动适应过程中的更大神经效率相关联。

Daily artificial gravity is associated with greater neural efficiency during sensorimotor adaptation.

机构信息

Department of Applied Physiology and Kinesiology, University of Florida, Gainesville, FL 32603, USA.

KBR, Houston, TX 77002, USA.

出版信息

Cereb Cortex. 2023 Jun 8;33(12):8011-8023. doi: 10.1093/cercor/bhad094.

Abstract

Altered vestibular signaling and body unloading in microgravity results in sensory reweighting and adaptation. Microgravity effects are well-replicated in head-down tilt bed rest (HDBR). Artificial gravity (AG) is a potential countermeasure to mitigate the effects of microgravity on human physiology and performance. We examined the effectiveness of daily AG for mitigating brain and/or behavioral changes in 60 days of HDBR. One group received AG for 30 minutes daily (AG; n = 16) and a control group spent the same time in HDBR but received no AG (CTRL; n = 8). All participants performed a sensorimotor adaptation task five times during fMRI scanning: twice prior to HDBR, twice during HDBR, and once following HDBR. The AG group showed similar behavioral adaptation effects compared with the CTRLs. We identified decreased brain activation in the AG group from pre to late HDBR in the cerebellum for the task baseline portion and in the thalamus, calcarine, cuneus, premotor cortices, and superior frontal gyrus in the AG group during the early adaptation phase. The two groups also exhibited differential brain-behavior correlations. Together, these results suggest that AG may result in a reduced recruitment of brain activity for basic motor processes and sensorimotor adaptation. These effects may stem from the somatosensory and vestibular stimulation that occur with AG.

摘要

在微重力环境下,前庭信号的改变和身体失重在导致感觉重新分配和适应方面起着重要作用。头低位卧床(HDBR)很好地模拟了微重力的影响。人工重力(AG)是一种减轻微重力对人体生理和性能影响的潜在对策。我们研究了每天使用 AG 来减轻 HDBR 60 天中大脑和/或行为变化的效果。一组人每天接受 30 分钟的 AG(AG 组,n=16),对照组则在 HDBR 期间花费相同的时间,但不接受 AG(CTRL 组,n=8)。所有参与者在 fMRI 扫描期间五次执行感觉运动适应任务:在 HDBR 之前进行两次,在 HDBR 期间进行两次,在 HDBR 之后进行一次。AG 组的行为适应效果与 CTRL 组相似。我们发现,与对照组相比,AG 组在 HDBR 早期和晚期的小脑在任务基线部分以及丘脑、距状裂、楔前叶、运动前皮质和额上回的大脑活动减少。两组还表现出不同的大脑-行为相关性。总之,这些结果表明,AG 可能导致基本运动过程和感觉运动适应的大脑活动减少。这些影响可能源于 AG 引起的躯体感觉和前庭刺激。

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