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1.
World Neurosurg ; 107: 612-622, 2017 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-28823656

RESUMO

OBJECTIVE: This study aimed to characterize pyramidal tract shift in different regions of the brain during glioma resection and its association with head position and tumor location. METHODS: From 2008-2013, 14 patients presenting at the National Neuroscience Institute with high-grade glioma (World Health Organization III or IV) underwent preoperative and intraoperative diffusion tensor imaging. A novel method of placing landmarks along the preoperative and intraoperative tracts, with anterior commissure as the origin, was used to determine pyramidal tract shift. Shift was evaluated in x (lateromedial), y (anteroposterior), and z (craniocaudal) directions for 3 brain regions: brainstem, around third and lateral ventricles, and above ventricles. Shift radius is calculated as the distance between preoperative and postoperative landmarks. RESULTS: Mean shift radius was 2.72 ± 0.55, 2.98 ± 0.53, and 4.04 ± 0.58 mm at the brainstem, third and lateral ventricles, and above the ventricles, respectively (P < 0.001). Only shift in the y direction (P < 0.03) and shift radius (P < 0.03) were significantly different among regions. Head position during surgery strongly influenced shift radius above the ventricles (P < 0.005), but tumor location had no significant effect. The z-direction shift did not differ significantly among regions. CONCLUSION: Direction of pyramidal tract shift in 3 dimensions is unpredictable; hence shift radius is a more clinical useful concept. Shift radius was largest above the ventricles and was strongly influenced by head position, with a trend for temporal lobe tumors to exhibit larger shifts.


Assuntos
Neoplasias Encefálicas/patologia , Glioma/patologia , Tratos Piramidais/patologia , Adulto , Pontos de Referência Anatômicos , Feminino , Lobo Frontal/patologia , Cabeça , Humanos , Imageamento por Ressonância Magnética , Masculino , Pessoa de Meia-Idade , Posicionamento do Paciente , Lobo Temporal/patologia
2.
Neurobiol Dis ; 82: 455-465, 2015 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-26149348

RESUMO

This study developed a novel system combining a 16-channel micro-electrocorticography (µECoG) electrode array and functional photoacoustic microscopy (fPAM) to examine changes in neurovascular functions following transient ischemic attack (TIA) in rats. To mimic the pathophysiology of TIA, a modified photothrombotic ischemic model was developed by using 3 min illumination of 5 mW continuous-wave (CW) green laser light focusing on a distal branch of the middle cerebral artery (MCA). Cerebral blood volume (CBV), hemoglobin oxygen saturation (SO2), somatosensory evoked potentials (SSEPs) and alpha-to-delta ratio (ADR) were measured pre- and post-ischemia over a focal cortical region (i.e., 1.5×1.5 mm(2)). Unexpectedly, the SO2, peak-to-peak amplitude (PPA) of SSEPs and ADR recovered and achieved levels greater than the baseline values at the 4th hour post-ischemia induction without any intervention, whereas the CBV value only partially recovered. In other words, transient ischemia led to increased neural activity when the relative CBV was reduced, which may further compromise neural integrity or lead to subsequent vascular disease. This novel µECoG-fPAM system complements currently available imaging techniques and represents a promising technology for studying neurovascular coupling in animal models.


Assuntos
Córtex Cerebral/fisiopatologia , Circulação Cerebrovascular/fisiologia , Eletrocorticografia/métodos , Ataque Isquêmico Transitório/fisiopatologia , Microscopia Acústica/métodos , Técnicas Fotoacústicas/métodos , Ritmo alfa , Animais , Volume Sanguíneo , Córtex Cerebral/irrigação sanguínea , Córtex Cerebral/patologia , Ritmo Delta , Modelos Animais de Doenças , Estimulação Elétrica , Eletrocorticografia/instrumentação , Eletrodos Implantados , Desenho de Equipamento , Potenciais Somatossensoriais Evocados , Ataque Isquêmico Transitório/patologia , Lasers , Masculino , Microscopia Acústica/instrumentação , Artéria Cerebral Média , Técnicas Fotoacústicas/instrumentação , Ratos Sprague-Dawley , Fatores de Tempo
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