Neurogenesis

Vascular endothelial growth factor increases the intracellular magnesium

Endocrinology / Neuroscience / Neurology / Electrophysiology / Animal Behavior / Stem Cells / Traumatic Brain Injury / Neurogenesis / Migration / Microcirculation / Calcium / Enzyme Inhibitors / Biological Chemistry / Flavonoids / Stem Cell / Gene expression / Extracellular Matrix / Animal Production / Cell Culture / Cell Division / Signal Transduction / Pathophysiology / Biological Sciences / Transplantation / Microvascular Physiology / In Vitro / Cell Differentiation / Neurovascular / Humans / Brain Circulation / Mice / VEGF / Animals / Male / Polymerase Chain Reaction / Statistical Significance / Astrocyte / Vascular endothelium / Perfusion / Skin / Acute Pancreatitis / Chemotaxis / Matrix metalloproteinases (MMPs) / Nickel / Fibroblast Growth Factor / Clinical Sciences / CHEMICAL SCIENCES / Middle Aged / mRna expression levels / Cerebral / Adult / Endothelial cell / Protease Inhibitors / Time Factors / Myocyte / Veterinary Sciences / Cell Proliferation / Surgical / Growth Factor / Vascular Permeability / Cell Survival / Subventricular Zone / Neurosciences / Rana temporaria / islets of Langerhans / Vascular Endothelial Growth Factor / Adenosine Triphosphate / Matrix Metalloproteinase / Vascular Resistance / Transforming Growth Factor / Brain injuries / Neuropsychological Tests / Stem Cells / Traumatic Brain Injury / Neurogenesis / Migration / Microcirculation / Calcium / Enzyme Inhibitors / Biological Chemistry / Flavonoids / Stem Cell / Gene expression / Extracellular Matrix / Animal Production / Cell Culture / Cell Division / Signal Transduction / Pathophysiology / Biological Sciences / Transplantation / Microvascular Physiology / In Vitro / Cell Differentiation / Neurovascular / Humans / Brain Circulation / Mice / VEGF / Animals / Male / Polymerase Chain Reaction / Statistical Significance / Astrocyte / Vascular endothelium / Perfusion / Skin / Acute Pancreatitis / Chemotaxis / Matrix metalloproteinases (MMPs) / Nickel / Fibroblast Growth Factor / Clinical Sciences / CHEMICAL SCIENCES / Middle Aged / mRna expression levels / Cerebral / Adult / Endothelial cell / Protease Inhibitors / Time Factors / Myocyte / Veterinary Sciences / Cell Proliferation / Surgical / Growth Factor / Vascular Permeability / Cell Survival / Subventricular Zone / Neurosciences / Rana temporaria / islets of Langerhans / Vascular Endothelial Growth Factor / Adenosine Triphosphate / Matrix Metalloproteinase / Vascular Resistance / Transforming Growth Factor / Brain injuries / Neuropsychological Tests

Restoration of Progranulin Expression Rescues Cortical Neuron Generation in an Induced Pluripotent Stem Cell Model of Frontotemporal Dementia

Neurogenesis / Gene expression / Transcriptome / Cell line / Cell Differentiation / Humans / Mutation / Neurons / Haploinsufficiency / Phenotype / Time Factors / Frontotemporal Dementia / Biological markers / Neural Stem Cells / Induced Pluripotent Stem Cells / Gene expression profiling / Humans / Mutation / Neurons / Haploinsufficiency / Phenotype / Time Factors / Frontotemporal Dementia / Biological markers / Neural Stem Cells / Induced Pluripotent Stem Cells / Gene expression profiling

A transiently expressed connexin is essential for anterior neural plate development in Ciona intestinalis

Neurogenesis / Development / Biological Sciences / Animals / Time Factors / Cell communication / Ciona Intestinalis / Cell communication / Ciona Intestinalis

Restoration of Progranulin Expression Rescues Cortical Neuron Generation in an Induced Pluripotent Stem Cell Model of Frontotemporal Dementia

Neurogenesis / Gene expression / Transcriptome / Cell line / Cell Differentiation / Humans / Mutation / Neurons / Haploinsufficiency / Phenotype / Time Factors / Frontotemporal Dementia / Biological markers / Neural Stem Cells / Induced Pluripotent Stem Cells / Gene expression profiling / Humans / Mutation / Neurons / Haploinsufficiency / Phenotype / Time Factors / Frontotemporal Dementia / Biological markers / Neural Stem Cells / Induced Pluripotent Stem Cells / Gene expression profiling

Doublecortin expression in focal cortical dysplasia in epilepsy

Neurogenesis / Malformations of Cortical Development / Epilepsy / Immunohistochemistry / Adolescent / Western blotting / Temporal Lobe / Neuropeptides / Humans / Child / Female / Animals / Male / Infant / Neurons / Cortical Plasticity / Epilepsia / Cortical Development / Clinical Sciences / Autopsy / Fluorescent Antibody Technique / Adult / Tuberous sclerosis / Neocortex / Neurosciences / Gray Matter / Giant Cells / Western blotting / Temporal Lobe / Neuropeptides / Humans / Child / Female / Animals / Male / Infant / Neurons / Cortical Plasticity / Epilepsia / Cortical Development / Clinical Sciences / Autopsy / Fluorescent Antibody Technique / Adult / Tuberous sclerosis / Neocortex / Neurosciences / Gray Matter / Giant Cells

Synapse elimination in olivo-cerebellar explants occurs during a critical period and leaves an indelible trace in Purkinje cells

Electrophysiology / Neurogenesis / Multidisciplinary / Patch-clamp and imaging techniques / Brain / Cerebellum / Mice / Animals / Time Factors / SYNAPSES / Purkinje Cells / Cerebellum / Mice / Animals / Time Factors / SYNAPSES / Purkinje Cells

Area-specific temporal control of corticospinal motor neuron differentiation by COUP-TFI

Neurogenesis / Motor neuron / Multidisciplinary / Temporal Lobe / Thalamus / Mice / Animals / Mice / Animals

Area-specific temporal control of corticospinal motor neuron differentiation by COUP-TFI

Neurogenesis / Motor neuron / Multidisciplinary / Temporal Lobe / Thalamus / Mice / Animals / Mice / Animals

Associative learning increases adult neurogenesis during a critical period

Psychology / Cognitive Science / Neurogenesis / Hippocampus / Classical Conditioning / Animals / Male / Neurons / European / Rats / Cell Survival / Neurosciences / Blinking / Psychomotor Performance / Animals / Male / Neurons / European / Rats / Cell Survival / Neurosciences / Blinking / Psychomotor Performance

Protein kinase C activation decreases peripheral actin network density and increases central nonmuscle myosin II contractility in neuronal growth cones

Neurogenesis / Signal Transduction / Biological Sciences / Animals / Phosphorylation / Neurons / Actin Cytoskeleton / Muscle contraction / Neurons / Actin Cytoskeleton / Muscle contraction
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