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Cellular and Molecular Neurobiology, ISSN 0272-4340, 1/2019, Volume 39, Issue 1, pp. 1 - 10
Journal Article
Journal of Neuroscience Research, ISSN 0360-4012, 01/2020, Volume 98, Issue 1, pp. 105 - 120
Journal Article
Experimental Neurology, ISSN 0014-4886, 07/2012, Volume 236, Issue 1, pp. 69 - 78
Germinal matrix hemorrhage (GMH) is the most common neurological disease of premature newborns. GMH causes neurological sequelae such as cerebral palsy,... 
Cerebral palsy | Stroke | Hydrocephalus | Experimental | Neonatal rats | Germinal matrix hemorrhage | Mental retardation | Neurological dysfunction | PREMATURE-INFANTS | PRETERM INFANTS | VENTRICULAR DILATATION | CEREBROSPINAL-FLUID | NEUROSCIENCES | RAT MODEL | NEUROBEHAVIORAL PROFILES | EXPERIMENTAL INTRACEREBRAL HEMORRHAGE | HYPOXIA-ISCHEMIA | INTRAVENTRICULAR HEMORRHAGE | POSTNATAL-DEVELOPMENT | Animals, Newborn | Diagnosis, Differential | Hydrocephalus - diagnosis | Humans | Rats | Hydrocephalus - pathology | Telencephalon - embryology | Brain Injuries - physiopathology | Cerebral Hemorrhage - physiopathology | Rats, Sprague-Dawley | Brain Injuries - diagnosis | Cerebral Hemorrhage - diagnosis | Pregnancy | Animals | Collagen Type VII - toxicity | Hydrocephalus - physiopathology | Telencephalon - drug effects | Telencephalon - pathology | Female | Brain Injuries - pathology | Cerebral Hemorrhage - pathology | Infant, Newborn | Disease Models, Animal | Infant, Premature - physiology | Infants (Newborn) | Brain | Analysis | Thrombin | Hemorrhage | Mental illness | Injuries | Neonates | Animal models | Glial fibrillary acidic protein | Cognitive ability | Forebrain | Collagenase | Atrophy | Neurological diseases | Gliosis | vitronectin | Collagen | Hemoglobin | nitrotyrosine | Paralysis | Brain injury | Adducts | Germinal Matrix Hemorrhage | Mental Retardation | experimental | Cerebral Palsy
Journal Article
Experimental Neurology, ISSN 0014-4886, 10/2019, Volume 320, p. 113003
Germinal matrix hemorrhage (GMH) results from the rupture of the immature thin-walled blood vessels and consequent bleeding into the subependymal germinal... 
Astrogliosis | Glymphatic system | Aquaporin-4 | Germinal matrix hemorrhage | Post-hemorrhagic hydrocephalus | REACTIVE ASTROGLIOSIS | SCAR FORMATION | BRAIN-INJURY | NEUROSCIENCES | NEUROLOGICAL DEFICITS | RAT MODEL | NEUROPROTECTION | IN-VITRO | INTRAVENTRICULAR HEMORRHAGE | INTRACEREBRAL HEMORRHAGE
Journal Article
Journal of Cerebral Blood Flow & Metabolism, ISSN 0271-678X, 1/2019, Volume 39, Issue 1, pp. 97 - 107
CD200 has been reported to be neuroprotective in neurodegenerative diseases. However, the potential protective effects of CD200 in germinal matrix hemorrhage... 
Germinal matrix hemorrhage | CD200Receptor 1 | downstream of tyrosine kinase 1 | microglia | CD200 | ACTIVATION | CYCLOOXYGENASE-2 | BRAIN-INJURY | MRC OX-2 | MACROPHAGES | RECEPTOR | NEUROSCIENCES | CD200-DEFICIENT MICE | ENDOCRINOLOGY & METABOLISM | SUBARACHNOID HEMORRHAGE | MEMBRANE GLYCOPROTEIN | HEMATOLOGY | EXPRESSION
Journal Article
Neurological Research, ISSN 0161-6412, 11/2019, Volume 41, Issue 11, pp. 980 - 990
Background. As the survival of preterm infants has increased significantly, germinal matrix hemorrhage (GMH) has become an important public health issue.... 
Cannabidiol | germinal matrix hemorrhage | immunohistochemistry | inflammation | neuroprotection
Journal Article
Journal of Neuroscience Research, ISSN 0360-4012, 01/2020, Volume 98, Issue 1, pp. 121 - 128
Currently, there is no effective treatment for germinal matrix hemorrhage and intraventricular hemorrhage (GMH‐IVH), a common and often fatal stroke subtype in... 
phagocytosis | posthemorrhagic hydrocephalus | germinal matrix hemorrhage | neonatal brain hemorrhage | hematoma resolution | microglia/macrophages | Neonates | Blood coagulation | Stroke | Hydrocephalus | Therapeutic applications | Infants | Cerebrospinal fluid | Macrophages | Hemorrhage | Blood | Microglia | Blood clots | Neurological diseases | Head injuries | Blood circulation | Hematoma | Brain injury | Phagocytosis
Journal Article
Journal of Cerebral Blood Flow & Metabolism, ISSN 0271-678X, 9/2017, Volume 37, Issue 9, pp. 3135 - 3149
We aim to determine if direct thrombin inhibition by dabigatran will improve long-term brain morphological and neurofunctional outcomes and if potential... 
mammalian target of rapamycin | post-haemorrhagic ventricular dilatation | proteinase-activated receptors | post-haemorrhagic hydrocephalus | Germinal matrix haemorrhage | ROUTE | DIRECT THROMBIN INHIBITOR | BRAIN-INJURY | DRUG-DELIVERY | NEUROSCIENCES | EXPERIMENTAL INTRACEREBRAL HEMORRHAGE | PATHOGENESIS | ACTIVATED RECEPTOR 1 | INTRAVENTRICULAR HEMORRHAGE | INFANTS | ENDOCRINOLOGY & METABOLISM | NASAL CAVITY | HEMATOLOGY | Dabigatran - administration & dosage | Hydrocephalus - pathology | Intracranial Hemorrhages - pathology | Antithrombins - administration & dosage | Intracranial Hemorrhages - drug therapy | Dabigatran - therapeutic use | Hydrocephalus - physiopathology | Pyrroles - administration & dosage | Quinazolines - administration & dosage | Disease Models, Animal | Animals, Newborn | Intracranial Hemorrhages - physiopathology | Receptor, PAR-1 - antagonists & inhibitors | Antithrombins - therapeutic use | Extracellular Matrix - drug effects | Receptor, PAR-1 - agonists | Injections, Intraperitoneal | Hydrocephalus - etiology | Maze Learning - drug effects | Administration, Intranasal | Hydrocephalus - prevention & control | Pyrroles - pharmacology | Rotarod Performance Test | Animals | Oligopeptides - administration & dosage | Oligopeptides - pharmacology | Quinazolines - pharmacology | Extracellular Matrix - pathology | Intracranial Hemorrhages - complications | Original
Journal Article