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1.
Biomedicines ; 12(3)2024 Feb 26.
Artigo em Inglês | MEDLINE | ID: mdl-38540133

RESUMO

Traumatic Brain Injury (TBI) remains a leading cause of morbidity and mortality among all ages; despite the advances, understanding pathophysiological responses after TBI is still complex, involving multiple mechanisms. Previous reviews have focused on potential targets; however, the research on potential targets has continuously grown in the last five years, bringing even more alternatives and elucidating previous mechanisms. Knowing the key and updated pathophysiology concepts is vital for adequate management and better outcomes. This article reviews the underlying molecular mechanisms, the latest updates, and future directions for pathophysiology-based TBI management.

2.
Clin Neurol Neurosurg ; 241: 108305, 2024 06.
Artigo em Inglês | MEDLINE | ID: mdl-38713964

RESUMO

OBJECTIVE: Establish the evolution of the connectome before and after resection of motor area glioma using a comparison of connectome maps and high-definition differential tractography (DifT). METHODS: DifT was done using normalized quantitative anisotropy (NQA) with DSI Studio. The quantitative analysis involved obtaining mean NQA and fractional anisotropy (FA) values for the disrupted pathways tracing the corticospinal tract (CST), and white fiber network changes over time. RESULTS: We described the baseline tractography, DifT, and white matter network changes from two patients who underwent resection of an oligodendroglioma (Case 1) and an IDH mutant astrocytoma, grade 4 (Case 2). CASE 1: There was a slight decrease in the diffusion signal of the compromised CST in the immediate postop. The NQA and FA values increased at the 1-year follow-up (0.18 vs. 0.32 and 0.35 vs. 0.44, respectively). CASE 2: There was an important decrease in the immediate postop, followed by an increase in the follow-up. In the 1-year follow-up, the patient presented with radiation necrosis and tumor recurrence, increasing NQA from 0.18 in the preop to 0.29. Fiber network analysis: whole-brain connectome comparison demonstrated no significant changes in the immediate postop. However, in the 1-year follow up there was a notorious reorganization of the fibers in both cases, showing the decreased density of connections. CONCLUSIONS: Connectome studies and DifT constitute new potential tools to predict early reorganization changes in a patient's networks, showing the brain plasticity capacity, and helping to establish timelines for the progression of the tumor and treatment-induced changes.


Assuntos
Neoplasias Encefálicas , Conectoma , Imagem de Tensor de Difusão , Estudos de Viabilidade , Glioma , Humanos , Imagem de Tensor de Difusão/métodos , Conectoma/métodos , Neoplasias Encefálicas/cirurgia , Neoplasias Encefálicas/diagnóstico por imagem , Neoplasias Encefálicas/patologia , Glioma/cirurgia , Glioma/diagnóstico por imagem , Glioma/patologia , Masculino , Pessoa de Meia-Idade , Adulto , Córtex Motor/diagnóstico por imagem , Córtex Motor/cirurgia , Córtex Motor/fisiopatologia , Tratos Piramidais/diagnóstico por imagem , Feminino , Oligodendroglioma/cirurgia , Oligodendroglioma/diagnóstico por imagem , Oligodendroglioma/patologia , Astrocitoma/cirurgia , Astrocitoma/diagnóstico por imagem , Astrocitoma/patologia
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