1. Georges, A, Booker, JG. Traumatic brain injury. StatPearls. 2020. Available at:
https://www.ncbi.nlm.nih.gov/books/NBK459300/ Google Scholar2. Centers for Disease Control and Prevention (CDC) . Symptoms of Traumatic Brain Injury (TBI). 2019. Available at:
https://www.cdc.gov/traumaticbraininjury/symptoms.html Google Scholar3. Catroppa, C, Anderson, V, Beauchamp, MH, Yeates, KO. New frontiers in pediatric traumatic brain injury: An evidence base for clinical practice. Routledge Taylor and Francis Group; 2016.
Google Scholar |
Crossref4. Mioni, G, Grondin, S, Stablum, F. Temporal dysfunction in traumatic brain injury patients: primary or secondary impairment? Front Hum Neurosci. 2014;8(30 April):269. doi:
10.3389/fnhum.2014.00269 Google Scholar |
Crossref |
Medline5. Ariza, M, Pueyo, R, Junqué, C, et al. Differences in visual versus verbal memory impairments as a result of focal temporal lobe damage in patients with traumatic brain injury. Brain Inj. 2006;20(10):1053‐1059.
https://doi.org/10.1080/02699050600909862 Google Scholar |
Crossref |
Medline6. Jang, SH, Ha, JW, Kim, HY, Seo, YS. Recovery of injured Broca’s portion of arcuate fasciculus in the dominant hemisphere in a patient with traumatic brain injury. Medicine (Baltimore). 2017;69(51):e9183. doi:
10.1097/MD.0000000000009183 Google Scholar |
Crossref7. Hunt, RF, Boychuk, JA, Smith, BN. Neural circuit mechanisms of post-traumatic epilepsy. Front Cell Neurosci. 2013;7: (18 June)89.
https://doi.org/10.3389/fncel.2013.00089 Google Scholar |
Crossref |
Medline |
ISI8. Szaflarski, JP, Nazzal, Y, Dreer, LE. Post-traumatic epilepsy: current and emerging treatment options. Neuropsychiatr Dis Treat. 2014;10 (11 August):1469‐1477. doi:
10.2147/NDT.S50421 Google Scholar |
Crossref |
Medline9. Garga, N, Lowenstein, DH. Posttraumatic epilepsy: a major problem in desperate need of major advances. Am Epilepsy Soc. 2006;6(1):1‐5.
https://doi.org/10.1111/j.1535-7511.2005.00083.x Google Scholar10. Sharma, S, Tiarks, G, Haight, J, Bassuk, AG. Neuropathophysiological mechanisms and treatment strategies for post-traumatic epilepsy. Front Mol Neurosci. 2021;14(23 February):15.
https://doi.org/10.3389/fnmol.2021.612073 Google Scholar |
Crossref11. Chen, AJ, Novakovic-Agopian, T. Interventions to improve cognitive functioning after TBI. Trauma Brain Inj. 2012:273‐312.
https://doi.org/10.1007/978-0-387-87887-4_15 Google Scholar |
Crossref12. Hammond, DC . What is neurofeedback? J Neurother. 2008;10(4):25‐36.
https://doi.org/10.1300/J184v10n04_04 Google Scholar |
Crossref13. May, G, Benson, R, Balon, R, Boutros, N. Neurofeedback and traumatic brain injury: a literature review. Ann Clin Psychiatry. 2013;25(4):289‐296. PMID: 24199220.
Google Scholar |
Medline14. Gray, SN . An overview of the use of neurofeedback biofeedback for the treatment of symptoms of traumatic brain injury in military and civilian populations. Med Acupunct. 2017;29(4):215‐219. doi:
10.1089/acu.2017.1220 Google Scholar |
Crossref |
Medline15. Egner, T, Sternman, B. Neurofeedback treatment of epilepsy: from basic rationale to practical application. Expert Rev Neurother. 2014;6(2):247‐257.
https://doi.org/10.1586/14737175.6.2.247 Google Scholar |
Crossref16. Marzbani, H, Marateb, HR, Mansourian, M. Neurofeedback: a comprehensive review on system design, methodology, and clinical applications. Basic Clin Neurosci. 2016;7(2):143‐158. doi:
10.15412/J.BCN.03070208 Google Scholar |
Crossref |
Medline17. Huang, L, Obenaus, A. Hyperbaric oxygen therapy for traumatic brain injury. Med Gas Res. 2011;1(6 September):21.
https://doi.org/10.1186/2045-9912-1-21 Google Scholar |
Crossref |
Medline18. Hu, Q, Manaenko, A, Xu, T, Guo, Z, Tang, J, Zhang, JH. Hyperbaric oxygen therapy for traumatic brain injury: bench-to-bedside. Med Gas Res. 2016;6(2):102‐110. doi:
10.4103/2045-9912.184720 Google Scholar |
Crossref |
Medline19. Vlodavksy, E, Palzur, E, Soustiel, JF. Hyperbaric oxygen therapy reduces neuroinflammation and expression of matrix metalloproteinase-9 in the rat model of traumatic brain injury. Neuropathol Appl Neurobiol. 2006;32(1):40‐50.
https://doi.org/10.1111/j.1365-2990.2005.00698.x Google Scholar |
Crossref |
Medline20. Kraitsy, K, Uecal, M, Grossauer, S, et al. Repetitive long-term hyperbaric oxygen treatment (HBOT) administered after experimental traumatic brain injury in rats induces significant remyelination and a recovery of sensorimotor function. PLoS One. 2014;9(5):e97750.
https://doi.org/10.1371/journal.pone.0097750 Google Scholar |
Crossref |
Medline21. Sternman, MB, Friar, L. Suppression of seizures in an epileptic following sensorimotor EEG feedback training. Electroencephalogr Clin Neurophysiol. 1972;33(1):89‐95.
https://doi.org/10.1016/0013-4694(72)90028-4 Google Scholar |
Crossref |
Medline22. Fridriksson, J, Fillmore, P, Guo, D, Rorden, C. Chronic broca’s aphasia is caused by damage to broca’s and wernicke’s areas. Cereb Cortex. 2015;25(12):4689‐4696. doi:
10.1093/cercor/bhu152 Google Scholar |
Crossref |
Medline23. Sreedharan, S, Arun, KM, Sylaja, PN, Kesavadas, C, Sitaram, R. Functional connectivity of language regions of stroke patients with expressive aphasia during real-time functional magnetic resonance imaging based neurofeedback. Brain Connect. 2019;9(8):613‐626.
https://doi.org/10.1089/brain.2019.0674 Google Scholar |
Crossref |
Medline24. Gaudet, I, Husser, A, Vannasing, P, Gallagher, A. Functional brain connectivity in children revealed by EEG and MEG: a systematic review. Front Hum Neurosci. 2020;14(12 March):62.
https://doi.org/10.3389/fnhum.2020.00062 Google Scholar |
Crossref |
Medline25. Rajakumari, P, Reddy, M, Jamuna, N, Indira, DM, Thennarasu, KM. Neurofeedback training to enhance learning and memory in patient with traumatic brain injury: a single case study. Indian J Neurotrauma. 2009;6(1):87–60.
https://doi.org/10.1016/S0973-0508(09)80037-3 Google Scholar26. Richman, M . Combat personnel with brain injuries pinpoints abnormal brain waves: Finding could help target brain-stimulation therapies. Science Daily. 2019. Available at:
https://www.sciencedaily.com/releases/2019/05/190509153430.htm Google Scholar27. Wang, C, Costano, ME, Rapp, PE, Darmon, D, Nathan, DE, Keyser, DO. Disrupted gamma synchrony after mild traumatic brain injury and its correlation with white matter abnormality. Front Neurol. 2017;8(30 October):571. doi:
10.3389/fneur.2017.00571 Google Scholar |
Crossref |
Medline28. Bola, M, Gall, C, Moewes, C, Fedorov, A, Hinrichs, H, Sabel, BA. Brain functional connectivity network breakdown and restoration in blindness. Neurology. 2014;83(6):542‐551.
https://doi.org/10.1212/WNL.0000000000000672 Google Scholar |
Crossref |
Medline29. Bola, M, Gall, C, Sabel, BA. Disturbed temporal dynamics of brain synchronization in vision loss. Cortex. 2015;67:134‐146.
https://doi.org/10.1016/j.cortex.2015.03.020 Google Scholar |
Crossref |
Medline
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