Area of research
Neurology · Cellular and Molecular Neuroscience
Research interest
Research interests include Intracranial Aneurysms: Treatment and Complications, Vascular Malformations Diagnosis and Treatment, Intracerebral and Subarachnoid Hemorrhage Research, and Neurosurgical Procedures and Complications.
Subclinical imaging changes in cerebral cavernous angiomas during prospective surveillance
Comprehensive transcriptome analysis of cerebral cavernous malformation across multiple species and genotypes
Biomarkers of cavernous angioma with symptomatic hemorrhage
Transcriptome clarifies mechanisms of lesion genesis versus progression in models of Ccm3 cerebral cavernous malformations
Atorvastatin Treatment of Cavernous Angiomas with Symptomatic Hemorrhage Exploratory Proof of Concept (AT CASH EPOC) Trial
Plasma Biomarkers of Inflammation and Angiogenesis Predict Cerebral Cavernous Malformation Symptomatic Hemorrhage or Lesional Growth
Trial Readiness in Cavernous Angiomas With Symptomatic Hemorrhage (CASH)
Phenotypic characterization of murine models of cerebral cavernous malformations
Endothelial TLR4 and the microbiome drive cerebral cavernous malformations
Thrombospondin1 (TSP1) replacement prevents cerebral cavernous malformations
CSF inflammatory response after intraventricular hemorrhage
Surgical Performance in Minimally Invasive Surgery Plus Recombinant Tissue Plasminogen Activator for Intracerebral Hemorrhage Evacuation Phase III Clinical Trial
Plasma Biomarkers of Inflammation Reflect Seizures and Hemorrhagic Activity of Cerebral Cavernous Malformations
Quantitative susceptibility mapping as a monitoring biomarker in cerebral cavernous malformations with recent hemorrhage
Vascular permeability and iron deposition biomarkers in longitudinal follow-up of cerebral cavernous malformations
B-Cell Depletion Reduces the Maturation of Cerebral Cavernous Malformations in Murine Models
Peripheral Plasma Vitamin D and Non-HDL Cholesterol Reflect the Severity of Cerebral Cavernous Malformation Disease
Micro-computed tomography in murine models of cerebral cavernous malformations as a paradigm for brain disease