[1] Stein MB, Kessler RC, Heeringa SG,et al. Prospective longitudinal evaluation of the effect of deployment-acquired traumatic brain injury on posttraumatic stress and related disorders: results from the army study to assess risk and resilience in service members (Army STARRS)[J].Am J Psychiatry,2015, 172(11):1101-1111. [2] Reeves T M, Kao C Q, Phillips L L, et al. Presynaptic excitability changes following traumatic brain injury in the rat[J].J Neurosci Res,2015, 60(3):370-379. [3] Ji Y, Zhou Y, Pan J, et al. Temporal pattern of Toll-like receptor 9 upregulation in neurons and glial cells following cerebral ischemia reperfusion in mice[J].Int J Neurosci,2016, 126(3):269-277. [4] Biswas S, Kalil K. The microtubule-associated protein Tau mediates the organization of microtubules and their dynamic exploration of actin-rich lamellipodia and filopodia of cortical growth cones[J].J Neurosci,2018, 38(2):291-307. [5] 中国神经科学学会神经损伤与修复分会. 脑损伤神经功能损害与修复专家共识[J].中华神经创伤外科电子杂志, 2016, 2(2):100-104. [6] 任世龙, 李军, 任勇涛, 等. 磁敏感加权成像在轻型颅脑损伤患者中的诊断价值[J].临床神经外科杂志, 2016, 13(2):144-146. [7] Jellinger K A, Paulus W, Wrocklage C, et al. Effects of closed traumatic brain injury and genetic factors on the development of Alzheimer’s disease[J].Eur J Neurol,2015, 8(6):707-710. [8] Hicks SD, Johnson J, Carney MC, et al. Overlapping microRNA expression in saliva and cerebrospinal fluid accurately identifies pediatric traumatic brain injury[J].J Neurotrauma,2018, 35(1):64-72. [9] Takahara T, Arai Y, Kono Y, et al. A microtubule-associated protein MAP1B binds to and regulates localization of a calcium-binding protein ALG-2[J].Biochem Biophys Res Commun,2018, 497(2):492-498. [10] Liepert J. Update on pharmacotherapy for stroke and traumatic brain injury recovery during rehabilitation[J].Curr Opin Neurol,2016, 29(6):700-705. [11] Gyoneva S, Ransohoff RM. Inflammatory reaction after traumatic brain injury: therapeutic potential of targeting cell-cell communication by chemokines[J].Trends Pharmacol SCI,2015, 36(7):471-480.