Association of Risk-Taking Behaviors, Vestibular Provocation and Action Boundary Perception Following Sport-Related Concussion in Adolescents.

IF 2.8 3区 医学 Q3 NEUROSCIENCES Brain Sciences Pub Date : 2025-02-22 DOI:10.3390/brainsci15030229
Shawn R Eagle, Anthony P Kontos, Shawn D Flanagan, Christopher Connaboy
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Abstract

Background/Objectives: The purpose of this study was to evaluate the association between risk-taking behaviors, vestibular symptoms/impairment and perception-action coupling behavior in recently concussed adolescents. Methods: This study utilized a cross-sectional design to evaluate the early effects of concussion on 12-18-year-old adolescents (n = 47) recruited from a concussion specialty clinic at their presenting clinical appointment. The Perception-Action Coupling Task (PACT) was used to assess action boundary perception by evaluating the participant's ability to quickly and accurately determine whether a virtual "ball" fits in a virtual "hole". Accuracy, response time and inverse efficiency were evaluated at the 0.8 and 1.2 ratios of ball-hole pairings, where 0.8 indicates the ball was slightly smaller than the hole and 1.2 indicates the ball was slightly larger than the hole. The Balloon Analog Risk Task (BART) is a computerized test which measures risk-taking behavior by "pumping" up a balloon. Each pump provides a small amount of virtual money into their bank; the goal is to make as much money as possible without popping the virtual balloon. The Vestibular Ocular Motor Screening (VOMS) tool is a brief screening tool designed to identify ocular or vestibular dysfunction following sport-related concussion, where horizontal/vertical vestibular ocular reflex (VOR) and visual motion sensitivity (VMS) are the primary vestibular outcomes. Pearson correlation matrices were developed to evaluate the association between BART, VOMS and PACT outcomes within the study cohort of concussed adolescents. Results: PACT inverse efficiency at the 1.2 ball-hole ratio was significantly correlated with all three VOMS outcomes (r = 0.33-0.37). The standard deviation of pump reaction time during BART was significantly correlated with accuracy (r = -0.47) and inverse efficiency (r = 0.42) at the 1.2 ratio. The standard deviation of the total number of pumps during BART was significantly correlated with PACT response time at the 1.2 ratio (r = 0.34). Horizontal VOR correlated with balloons collected (r = -0.30) and balloons popped (r = -0.30). Conclusions: The results of this study suggest that risk-taking behaviors and vestibular symptoms/impairment are associated with worse action boundary perception in adolescents following concussion. This relationship is more pronounced in male adolescents than females.

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青少年运动性脑震荡后的冒险行为、前庭刺激和行动边界感知之间的关联。
背景/目的:本研究的目的是评估最近脑震荡青少年的冒险行为、前庭症状/损伤和感知-行动耦合行为之间的关系。方法:本研究采用横断面设计来评估脑震荡对12-18岁青少年(n = 47)的早期影响,这些青少年来自脑震荡专科诊所,在他们的临床预约中招募。感知-行动耦合任务(PACT)通过评估参与者快速准确地判断虚拟“球”是否适合虚拟“洞”的能力来评估动作边界感知。在球孔比为0.8和1.2的情况下,对精度、响应时间和逆效率进行了评价,其中0.8表示球比孔略小,1.2表示球比孔略大。气球模拟风险任务(BART)是一种计算机化的测试,通过给气球“充气”来衡量冒险行为。每次抽吸都会为他们的银行提供少量虚拟货币;他们的目标是在不戳破虚拟气球的情况下赚到尽可能多的钱。前庭眼运动筛查(VOMS)工具是一种简单的筛查工具,用于识别运动相关脑震荡后的眼部或前庭功能障碍,其中水平/垂直前庭眼反射(VOR)和视觉运动敏感性(VMS)是主要的前庭结果。采用Pearson相关矩阵来评估脑震荡青少年研究队列中BART、VOMS和PACT结果之间的关联。结果:1.2球孔比时PACT逆效率与所有三个VOMS结果显著相关(r = 0.33-0.37)。在BART期间,泵反应时间的标准差与准确性(r = -0.47)和逆效率(r = 0.42)呈1.2比显著相关。BART期间水泵总数的标准差与PACT响应时间在1.2比下显著相关(r = 0.34)。水平VOR与气球收集(r = -0.30)和气球爆裂(r = -0.30)相关。结论:本研究结果表明,青少年脑震荡后的冒险行为和前庭症状/损伤与较差的动作边界感知有关。这种关系在男性青少年中比在女性青少年中更为明显。
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来源期刊
Brain Sciences
Brain Sciences Neuroscience-General Neuroscience
CiteScore
4.80
自引率
9.10%
发文量
1472
审稿时长
18.71 days
期刊介绍: Brain Sciences (ISSN 2076-3425) is a peer-reviewed scientific journal that publishes original articles, critical reviews, research notes and short communications in the areas of cognitive neuroscience, developmental neuroscience, molecular and cellular neuroscience, neural engineering, neuroimaging, neurolinguistics, neuropathy, systems neuroscience, and theoretical and computational neuroscience. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Electronic files or software regarding the full details of the calculation and experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material.
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