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脑震荡综合评估中的功能、结构和神经毒性生物标志物

Functional, Structural, and Neurotoxicity Biomarkers in Integrative Assessment of Concussions.

作者信息

Dambinova Svetlana A, Maroon Joseph C, Sufrinko Alicia M, Mullins John David, Alexandrova Eugenia V, Potapov Alexander A

机构信息

Brain Biomarkers Research Laboratory, DeKalb Medical Center , Decatur, GA , USA.

Neurological Surgery, University of Pittsburgh , Pittsburgh, PA , USA.

出版信息

Front Neurol. 2016 Oct 5;7:172. doi: 10.3389/fneur.2016.00172. eCollection 2016.

Abstract

Concussion is a complex, heterogeneous process affecting the brain. Accurate assessment and diagnosis and appropriate management of concussion are essential to ensure that athletes do not prematurely return to play or others to work or active military duty, risking re-injury. To date, clinical diagnosis relies primarily on evaluating subjects for functional impairment using instruments that include neurocognitive testing, subjective symptom report, and neurobehavioral assessments, such as balance and vestibular-ocular reflex testing. Structural biomarkers, defined as advanced neuroimaging techniques and biomarkers assessing neurotoxicity and immunoexcitotoxicity, may complement the use of functional biomarkers. We hypothesize that neurotoxicity AMPA, NMDA, and kainite receptor biomarkers might be utilized as a part of comprehensive approach to concussion evaluations, with the goal of increasing diagnostic accuracy and facilitating treatment planning and prognostic assessment.

摘要

脑震荡是一个影响大脑的复杂、异质性过程。准确评估、诊断和妥善处理脑震荡对于确保运动员不会过早重返赛场,或其他人不会过早恢复工作或现役军事任务,从而避免再次受伤至关重要。迄今为止,临床诊断主要依靠使用包括神经认知测试、主观症状报告以及神经行为评估(如平衡和前庭眼反射测试)等工具来评估受试者的功能损害。结构生物标志物,定义为先进的神经成像技术以及评估神经毒性和免疫兴奋性毒性的生物标志物,可能会补充功能生物标志物的使用。我们假设,神经毒性AMPA、NMDA和海人藻酸受体生物标志物可能会被用作脑震荡评估综合方法的一部分,目标是提高诊断准确性并促进治疗计划制定和预后评估。

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