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与即刻和急性爆炸超压暴露相关的神经认知功能缺陷

Neurocognitive Performance Deficits Related to Immediate and Acute Blast Overpressure Exposure.

作者信息

LaValle Christina R, Carr Walter S, Egnoto Michael J, Misistia Anthony C, Salib Jonathan E, Ramos Alejandro N, Kamimori Gary H

机构信息

Blast Induced Neurotrauma Branch, Center for Military Psychiatry and Neuroscience Research, Walter Reed Army Institute of Research, Silver Spring, MD, United States.

出版信息

Front Neurol. 2019 Sep 13;10:949. doi: 10.3389/fneur.2019.00949. eCollection 2019.

Abstract

Addressing the concerns surrounding blast injury for the military community is a pressing matter. Specifically, sub-concussive blast effects, or those blast effects which do not yield a medical diagnosis but can result in symptom reporting and negative self-reported outcomes, are becoming increasingly important. This work evaluates explosive blast overpressure and impulse effects at the sub-concussive level on neurocognitive performance assessed with the Defense Automated Neurobehavioral Assessment (DANA) across seven breacher training courses conducted by the US Military. The results reported here come from 202 healthy, male military volunteer participants. Findings indicate that the neurocognitive task appearing most sensitive to identifying performance change is the DANA Procedural Reaction Time (PRT) subtask which may involve a sufficient level of challenge to reliably detect a small, transient cognitive impairment among a healthy undiagnosed population. The blast characteristic that was consistently associated with performance change was peak overpressure. Overall, this study provides evidence that increasing blast overpressure, defined as peak overpressure experienced in a training day, can lead to transient degradations in neurocognitive performance as seen on the DANA PRT subtask, which may generalize to other capabilities.

摘要

解决军事群体中与爆炸伤相关的问题是一项紧迫的任务。具体而言,亚震荡性爆炸效应,即那些不会产生医学诊断但可能导致症状报告和负面自我报告结果的爆炸效应,正变得越来越重要。这项研究评估了在美国军方举办的七次爆破手训练课程中,亚震荡水平下的爆炸超压和冲量效应,这些效应通过国防自动化神经行为评估(DANA)来评估神经认知表现。这里报告的结果来自202名健康的男性军事志愿者参与者。研究结果表明,对识别表现变化最敏感的神经认知任务是DANA程序反应时间(PRT)子任务,该子任务可能涉及足够程度的挑战,以便在健康的未被诊断人群中可靠地检测到轻微的、短暂的认知障碍。与表现变化始终相关的爆炸特征是峰值超压。总体而言,本研究提供了证据,即训练日经历的峰值超压所定义的增加的爆炸超压,可导致如DANA PRT子任务中所见的神经认知表现的短暂下降,这可能会扩展到其他能力。

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