日常人工重力可部分缓解与头低后仰卧床有关的前庭处理变化。

IF 4.4 1区 物理与天体物理 Q1 MULTIDISCIPLINARY SCIENCES npj Microgravity Pub Date : 2024-03-12 DOI:10.1038/s41526-024-00367-7
G D Tays, K E Hupfeld, H R McGregor, N E Beltran, Y E De Dios, E Mulder, J J Bloomberg, A P Mulavara, S J Wood, R D Seidler
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引用次数: 0

摘要

微重力改变了前庭信号,减轻了身体负荷,推动了感觉的重新配重。减重效果可以通过头朝下倾斜卧床(HDT)来模拟。人工重力(AG)被认为是应对 HDT 和太空飞行相关衰减的综合对策。在这里,我们研究了每天 30 分钟的人工重力对抵消 60 天 HDT 所带来的大脑和行为变化的效果。两组人每天通过短臂离心机接受30分钟的AG治疗(每种情况8人),可以连续进行一次,也可以分6次进行,每次5分钟。为了提高统计能力,我们将这两组合并(AG;n = 16)。另一组作为 HDT 的对照组,没有 AG(CTRL;n = 8)。我们通过收集前庭刺激过程中的 fMRI 扫描数据,研究 HDT 和 AG 如何影响前庭处理。我们在 HDT 之前、期间和之后收集了这些数据。我们首先评估了 12 个感兴趣区(ROI)的大脑激活情况,然后进行了探索性的全脑分析。AG组在小脑ROI的前庭刺激过程中没有显示出激活的变化,而CTRL组则显示出HDT特有的激活减少。接受AG治疗且左前庭皮质激活在HDT前后变化不大的患者,在HDT后的平衡表现更好。全脑分析发现,CTRLs 右侧前中央回和右侧额叶下回在 HDT 前和 HDT 期间的激活增加,而 AG 保持了 HDT 前的激活水平。这些结果表明,AG 可以缓解前庭处理过程中的激活变化,而这种变化与更好的平衡表现有关。
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Daily artificial gravity partially mitigates vestibular processing changes associated with head-down tilt bedrest.

Microgravity alters vestibular signaling and reduces body loading, driving sensory reweighting. The unloading effects can be modelled using head-down tilt bedrest (HDT). Artificial gravity (AG) has been hypothesized to serve as an integrated countermeasure for the declines associated with HDT and spaceflight. Here, we examined the efficacy of 30 min of daily AG to counteract brain and behavior changes from 60 days of HDT. Two groups received 30 min of AG delivered via short-arm centrifuge daily (n = 8 per condition), either in one continuous bout, or in 6 bouts of 5 min. To improve statistical power, we combined these groups (AG; n = 16). Another group served as controls in HDT with no AG (CTRL; n = 8). We examined how HDT and AG affect vestibular processing by collecting fMRI scans during vestibular stimulation. We collected these data prior to, during, and post-HDT. We assessed brain activation initially in 12 regions of interest (ROIs) and then conducted an exploratory whole brain analysis. The AG group showed no changes in activation during vestibular stimulation in a cerebellar ROI, whereas the CTRL group showed decreased activation specific to HDT. Those that received AG and showed little pre- to post-HDT changes in left vestibular cortex activation had better post-HDT balance performance. Whole brain analyses identified increased pre- to during-HDT activation in CTRLs in the right precentral gyrus and right inferior frontal gyrus, whereas AG maintained pre-HDT activation levels. These results indicate that AG could mitigate activation changes in vestibular processing that is associated with better balance performance.

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来源期刊
npj Microgravity
npj Microgravity Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
7.30
自引率
7.80%
发文量
50
审稿时长
9 weeks
期刊介绍: A new open access, online-only, multidisciplinary research journal, npj Microgravity is dedicated to publishing the most important scientific advances in the life sciences, physical sciences, and engineering fields that are facilitated by spaceflight and analogue platforms.
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