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定向障碍效应、循环小核糖核酸以及基因易感性对静态姿势稳定性的影响。

Disorientation effects, circulating small ribonucleic acid, and genetic susceptibility on static postural stability.

作者信息

Turner Ashley, Markey Michael, Le Peter, Reiter Ali, Cox Cyndy, Simmons Stacy, Rao M B, Altman Lorenna, Davis Kermit, Huber Dustin, Dufour Jonathan S, Marras William, Bhattacharya Amit

机构信息

Department of Environmental and Public Health Sciences, University of Cincinnati, Cincinnati, OH, USA.

Department of Biochemistry and Molecular Biology, Wright State University, Dayton, OH, USA.

出版信息

Heliyon. 2023 Mar 11;9(3):e14413. doi: 10.1016/j.heliyon.2023.e14413. eCollection 2023 Mar.

Abstract

BACKGROUND

Motion Sickness increases risk of performance deficits and safety of flight concerns. The etiology of motion sickness is poorly understood. Here, we attempted to quantify the physiological effects of motion sickness on static balance and determine the genetic predictors associated with these effects.

METHODS

16 subjects underwent a disorientation stimulus to induce motion sickness. Motion sickness susceptibility was identified using the Motion Sickness Susceptibility Questionnaire. Postural balance outcomes were measured using two tasks, and small ribonucleic acid profiles were assessed with blood draws before motion sickness stimulus. Differences in postural sway before and after the stimulus as well as effect modification of susceptibility were assessed. A random forest followed by regression tree analysis was constructed for each postural sway variable to determine top genetic and covariate predictors.

FINDINGS

Significant differences existed in mean postural balance responses between before and after stimulus. Individuals with longer stimulus survival experienced a greater (but insignificant) perception of sway, even if not displaying increased sway for all conditions. Circulation small ribonucleic acids were differentially expressed between individuals with long and short stimulus survival, many of these microRNA have purported targets in genes related to vestibular disorders.

INTERPRETATION

We found motion sickness produces transient motor dysfunction in a healthy military population. Small ribonucleic acids were differentially expressed between subjects with long and short stimulus survival times.

摘要

背景

晕动病会增加飞行中表现下降的风险以及引发对飞行安全的担忧。晕动病的病因目前尚不清楚。在此,我们试图量化晕动病对静态平衡的生理影响,并确定与这些影响相关的基因预测指标。

方法

16名受试者接受了定向障碍刺激以诱发晕动病。使用晕动病易感性问卷来确定晕动病易感性。通过两项任务测量姿势平衡结果,并在晕动病刺激前采集血液样本评估小核糖核酸谱。评估刺激前后姿势摆动的差异以及易感性的效应修正。针对每个姿势摆动变量构建随机森林,随后进行回归树分析,以确定顶级基因和协变量预测指标。

研究结果

刺激前后的平均姿势平衡反应存在显著差异。刺激持续时间较长的个体即使在所有条件下未表现出摆动增加,也会有更大(但不显著)的摆动感知。循环小核糖核酸在刺激持续时间长和短的个体之间存在差异表达,其中许多微小核糖核酸在与前庭疾病相关的基因中有假定的靶点。

解读

我们发现晕动病会在健康军人人群中产生短暂的运动功能障碍。小核糖核酸在刺激持续时间长和短的受试者之间存在差异表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7bfe/10036646/7fbf0221eefc/gr1.jpg

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