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Development and psychopathology, ISSN 0954-5794, 2018, Volume 30, Issue 3, pp. 763 - 772
Functional circuits of the human brain emerge and change dramatically over the second half of gestation. It is possible that variation in neural functional... 
Special Issue Articles | Gyrus Cinguli/embryology | Pregnancy Trimester, Second | Humans | Neural Pathways/embryology | Infant | Male | Reference Values | Pregnancy Trimester, Third | Nerve Net/embryology | Prefrontal Cortex/embryology | Psychomotor Disorders/embryology | Pregnancy | Magnetic Resonance Imaging | Brain/embryology | Sex Factors | Brain Mapping | Female | Child Development | Motor Cortex/embryology | Sensorimotor Cortex/embryology | Infant, Newborn | Temporal Lobe/embryology | SPECTROSCOPY | MRI | BEHAVIOR | PSYCHOLOGY, DEVELOPMENTAL | FUNCTIONAL CONNECTIVITY | PREMATURE | MILESTONES | SEX-DIFFERENCES | BIRTH | GENDER-DIFFERENCES | AGE | Nerve Net - embryology | Brain - embryology | Psychomotor Disorders - embryology | Prefrontal Cortex - physiopathology | Sensorimotor Cortex - embryology | Gyrus Cinguli - embryology | Neural Pathways - embryology | Neural Pathways - physiopathology | Psychomotor Disorders - physiopathology | Nerve Net - physiopathology | Prefrontal Cortex - embryology | Brain - physiopathology | Motor Cortex - physiopathology | Sensorimotor Cortex - physiopathology | Temporal Lobe - embryology | Temporal Lobe - physiopathology | Gyrus Cinguli - physiopathology | Motor Cortex - embryology | Cortex (cingulate) | Nuclear magnetic resonance--NMR | Motor ability | Fetuses | Sex differences | Gender differences | Ontogeny | Infants | Gestation | Prefrontal cortex | Males | Flexibility | Babies | Brain research | Newborn babies | Functional morphology | Neural networks | Sensorimotor system | Behavior | Females | Cortex (temporal)
Journal Article
Brain structure and function, ISSN 1863-2653, 2007
Journal
Science (American Association for the Advancement of Science), ISSN 1095-9203, 2008, Volume 319, Issue 5861, pp. 304 - 309
The earliest step in creating the cerebral cortex is the specification of neuroepithelium to a cortical fate. Using mouse genetic mosaics and timed... 
Hems | Neuroscience | Lymphocytes | Neurons | Stem cells | Research Articles | Chimeras | Cell separation | Identity | Mosaic | Embryos | MOUSE HIPPOCAMPUS | FOREBRAIN | GENE | MULTIDISCIPLINARY SCIENCES | DENTATE GYRUS | GRANULE CELLS | CAJAL-RETZIUS CELLS | EXPRESSION | CEREBRAL-CORTEX | DORSAL | DROSOPHILA | Embryonic Stem Cells - metabolism | Organizers, Embryonic - physiology | Homeodomain Proteins - metabolism | Neuroepithelial Cells - cytology | Cerebral Cortex - cytology | Cerebral Cortex - metabolism | Organizers, Embryonic - embryology | Dentate Gyrus - embryology | Epithelium - embryology | Gene Expression Regulation, Developmental | Recombination, Genetic | Prosencephalon - metabolism | Pyramidal Cells - cytology | Dentate Gyrus - metabolism | Hippocampus - embryology | Epithelium - metabolism | Telencephalon - cytology | Embryonic Induction | Telencephalon - embryology | Transcription Factors - genetics | Hippocampus - cytology | Homeodomain Proteins - genetics | Mice, Knockout | Transcription Factors - metabolism | Dentate Gyrus - cytology | Animals | Cerebral Cortex - embryology | Pyramidal Cells - embryology | Cell Aggregation | LIM-Homeodomain Proteins | Mice | Neuroepithelial Cells - metabolism | Mutation | Prosencephalon - embryology | Chimera | Cerebral cortex | Genetic aspects | Research | Cell differentiation | Epithelium | Brain | Genetics | Neurosciences | Cellular biology | Rodents
Journal Article
Journal Article
Science (American Association for the Advancement of Science), ISSN 0036-8075, 12/2004, Volume 306, Issue 5705, pp. 2255 - 2257
In the developing brain, transcription factors (TFs) direct the formation of a diverse array of neurons and glia. We identifed 1445 putative TFs in the mouse... 
Brain | Hormone receptors | Transcription factors | Databases | Neurons | Genes | Central nervous system | Reports | Genomes | Mice | In situ hybridization | DISORDER | PROFILES | MUTATIONS | GENE | MULTIDISCIPLINARY SCIENCES | SEQUENCE | Neocortex - anatomy & histology | Brain - embryology | Hypothalamus - growth & development | Corpus Striatum - embryology | Neocortex - embryology | Spinal Cord - metabolism | Thalamus - metabolism | Brain - anatomy & histology | Mesencephalon - metabolism | Spinal Cord - growth & development | Corpus Striatum - growth & development | Gene Expression Profiling | Brain - growth & development | Corpus Striatum - metabolism | Hypothalamus - anatomy & histology | Brain - metabolism | Neocortex - metabolism | Mesencephalon - anatomy & histology | In Situ Hybridization | Cloning, Molecular | Polymerase Chain Reaction | Rhombencephalon - embryology | Rhombencephalon - growth & development | Databases, Factual | Animals, Newborn | Hypothalamus - embryology | Corpus Striatum - anatomy & histology | Rhombencephalon - anatomy & histology | Neocortex - growth & development | Spinal Cord - anatomy & histology | Transcription Factors - genetics | DNA Primers | Transcription Factors - metabolism | Spinal Cord - embryology | Thalamus - embryology | Thalamus - growth & development | Animals | Hypothalamus - metabolism | Mesencephalon - embryology | Rhombencephalon - metabolism | Mesencephalon - growth & development | Thalamus - anatomy & histology | Genome | Genetic aspects | Genetic transcription | Research | Gene expression | Rodents | Genomics | Fluorescence in situ hybridization
Journal Article
Development (Cambridge), ISSN 1477-9129, 2008, Volume 135, Issue 3, pp. 579 - 588
Overexpression of zinc finger E-box binding homeobox transcription factor 1 (Zeb1) in cancer leads to epithelial-to-mesenchymal transition (EMT) and increased... 
Zeb1 | Epithelial-mesenchymal transition | Senescence | Transcription | TGF-BETA | transcription | PROTEIN DELTA-EF1 | ZINC-FINGER | PROLIFERATION | DEVELOPMENTAL BIOLOGY | E-CADHERIN | CANCER | senescence | COREPRESSOR | GENE | epithelial-mesenchymal transition | TRANSCRIPTION FACTOR | EXPRESSION | Embryo, Mammalian - drug effects | Brain - embryology | Cadherins - metabolism | Vimentin - metabolism | Homeodomain Proteins - metabolism | Mesoderm - drug effects | Cellular Senescence - drug effects | Cartilage - drug effects | Stem Cells - cytology | Mesoderm - cytology | Epithelium - embryology | Eye - embryology | Kruppel-Like Transcription Factors - metabolism | Mice, Mutant Strains | Vimentin - genetics | Cartilage - cytology | Eye - drug effects | Cadherins - genetics | Palate - cytology | Palate - drug effects | Repressor Proteins - metabolism | Epithelium - drug effects | Brain - cytology | Cartilage - embryology | Mesoderm - embryology | Gene Expression Regulation, Developmental - drug effects | Eye - cytology | Gene Dosage | Mutation - genetics | Homeodomain Proteins - genetics | Palate - embryology | Brain - drug effects | Transforming Growth Factor beta - pharmacology | Animals | Embryo, Mammalian - embryology | Embryo, Mammalian - cytology | Fibroblasts - drug effects | Cyclin-Dependent Kinase Inhibitor p16 - metabolism | Stem Cells - drug effects | Cell Proliferation - drug effects | Fibroblasts - cytology | Mice | Cyclin-Dependent Kinase Inhibitor p15 - metabolism | Kruppel-Like Transcription Factors - genetics | Zinc Finger E-box-Binding Homeobox 1
Journal Article
Science (American Association for the Advancement of Science), ISSN 1095-9203, 2010, Volume 330, Issue 6006, pp. 985 - 989
The orphan G protein-coupled receptor (GPCR) GPR124/tumor endothelial marker 5 is highly expressed in central nervous system (CNS) endothelium. Here, we show... 
Vascular malformations | Angiogenesis | Receptors | Sprouts | REPORTS | Central nervous system | Forebrain | Telencephalon | Embryos | Endothelial cells | Endothelium | INACTIVATION | LETHALITY | GENE | ENDOTHELIUM | HEMORRHAGE | MULTIDISCIPLINARY SCIENCES | NEUROGENESIS | CENTRAL-NERVOUS-SYSTEM | MICE | BLOOD-BRAIN-BARRIER | ALPHA-V INTEGRINS | Blood Vessels - abnormalities | Receptors, G-Protein-Coupled - metabolism | Mesencephalon - metabolism | Glucose Transporter Type 1 - metabolism | Gene Deletion | Neural Tube - metabolism | Prosencephalon - blood supply | Prosencephalon - metabolism | Endothelial Cells - physiology | Rhombencephalon - embryology | Endothelium, Vascular - embryology | Telencephalon - metabolism | Rhombencephalon - blood supply | Mice, Transgenic | Mesencephalon - blood supply | Telencephalon - embryology | Embryonic Development | Blood-Brain Barrier - metabolism | Mice, Knockout | Neural Tube - blood supply | Telencephalon - blood supply | Animals | Mesencephalon - embryology | Endothelium, Vascular - metabolism | Rhombencephalon - metabolism | Mice | Receptors, G-Protein-Coupled - genetics | Neural Tube - embryology | Prosencephalon - embryology | Neovascularization, Physiologic | Cell Movement | Physiological aspects | Neovascularization | G proteins | Properties | Membrane proteins | Proteins | Nervous system | Brain research | Veins & arteries | Tropism | Control | Migration | Markers | Adhesion
Journal Article
Neuroimaging Clinics of North America, ISSN 1052-5149, 08/2019, Volume 29, Issue 3, p. xi
..., FACR, Consulting Editor Drs Huisman and Meoded have created a wonderful blend of topics that review the normal embryology of the brain and spine and explain... 
Neuroimaging | Brain - embryology | Brain - abnormalities | Humans
Journal Article
Journal Article
PLoS Biology, ISSN 1544-9173, 04/2017, Volume 15, Issue 4, p. e2001573
All vertebrate brains develop following a common Bauplan defined by anteroposterior (AP) and dorsoventral (DV) subdivisions, characterized by largely conserved... 
DEVELOPMENTAL EXPRESSION PATTERNS | PAIRED BOX GENE | BIOCHEMISTRY & MOLECULAR BIOLOGY | BIOLOGY | IN-SITU HYBRIDIZATION | ZIC GENES | CENTRAL-NERVOUS-SYSTEM | ZINC-FINGER GENE | INT-1 PROTOONCOGENE | HOMEOBOX GENE | ISTHMIC ORGANIZER | SONIC-HEDGEHOG | Brain - embryology | Lancelets - metabolism | Embryo, Nonmammalian - metabolism | Vertebrates - embryology | Embryo, Nonmammalian - embryology | In Situ Hybridization, Fluorescence | Male | Zebrafish | Chick Embryo | Mice, Knockout | Biological Evolution | Brain - metabolism | Animals | Gene Expression Regulation, Developmental | Models, Biological | Neural Tube - metabolism | Lancelets - embryology | Models, Genetic | Neural Tube - embryology | Body Patterning - genetics | Vertebrates - metabolism | Physiological aspects | Neural circuitry | Cerebellum | Brain | Pattern formation | Regulations | High resolution | Funding | Biological evolution | Colleges & universities | Competitiveness | Central nervous system | Nervous system | Evolutionary genetics | Hybridization | Floating | Inactivation | Visual system | Neural tube | Developmental stages | Technology | Cooperation | Genetics | Spawning behavior | Oceans | Spawning | Gene families | pax2 protein | Topology | Anatomy | Gene expression | Embryos | Editors | Mice | Aberration | Mutation | Fibroblast growth factor | Biomedical research | Separation | Methodology | Laboratories | Psychobiology | Circuits | Genes | Science | Editing | Forebrain | Homology | Biology | Visual perception | Neural plate | Zinc finger proteins | Supervision | Brain architecture | Markers | Zinc | Medicine | Vertebrates | Brain research | Writing | Diencephalon | Acquisitions & mergers | Tumors | Biologia molecular | Cervell | Tub neural | Molecular biology | Expressió gènica
Journal Article