Quantitative pupillometry as a biomarker for prediction of return to play in mild traumatic brain injury: a Military Traumatic Brain Injury Initiative study.

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-07-01 DOI:10.3171/2024.4.FOCUS24140
Bradley A Dengler, Melissa Meister, Michael Aderman, Steven R Malvasi, Jeremy D Ross, Adele Fu, Thaddeus Haight, Viktor Bartanusz, Jason H Boulter, Jackson Rudolph, Kenneth L Cameron
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Abstract

Objective: This study aimed to determine the validity of quantitative pupillometry to predict the length of time for return to full activity/duty after a mild traumatic brain injury (mTBI) in a cohort of injured cadets at West Point.

Methods: Each subject received baseline (T0) quantitative pupillometry, in addition to evaluation with the Balance Error Scoring System (BESS), Standardized Assessment of Concussion (SAC), and Sport Concussion Assessment Tool 5th Edition Symptom Survey (SCAT5). Repeat assessments using the same parameters were conducted within 48 hours of injury (T1), at the beginning of progressive return to activity (T2), and at the completion of progressive return to activity protocols (T3). Pupillary metrics were compared on the basis of length of time to return to full play/duty and the clinical scores.

Results: The authors' statistical analyses found correlations between pupillometry measures at T1, including end-initial diameter and maximum constriction velocity, with larger change and faster constriction predicting earlier return to play. There was also an association with maximum constriction velocity at baseline (T0), predicting faster return to play.

Conclusions: The authors conclude that that pupillometry may be a valuable tool for assessing time to return to duty from mTBI by providing a measure of baseline resiliency to mTBI and/or autonomic dysfunction in the acute phase after mTBI.

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定量瞳孔测量法作为预测轻度脑外伤患者重返赛场的生物标志物:军事脑外伤倡议研究。
研究目的本研究旨在确定定量瞳孔测量法在预测西点军校受伤学员轻度脑损伤(mTBI)后恢复全面活动/工作所需时间方面的有效性:每个受试者都接受了基线(T0)定量瞳孔测量,此外还接受了平衡失误评分系统(BESS)、脑震荡标准化评估(SAC)和运动脑震荡评估工具第 5 版症状调查(SCAT5)的评估。在受伤后 48 小时内(T1)、开始逐步恢复活动(T2)和完成逐步恢复活动方案(T3)时,使用相同参数进行重复评估。根据恢复全面比赛/工作的时间长短和临床评分对瞳孔指标进行比较:作者的统计分析发现,T1时的瞳孔测量指标(包括末端内径和最大收缩速度)之间存在相关性,变化越大、收缩越快,预示着恢复比赛的时间越早。与基线(T0)时的最大收缩速度也有关联,预示着恢复比赛的速度更快:作者得出结论:瞳孔测量法可以测量 mTBI 和/或 mTBI 后急性期自律神经功能紊乱的基线恢复能力,是评估 mTBI 复出时间的重要工具。
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CiteScore
7.20
自引率
4.30%
发文量
567
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