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Journal of Neuroscience, ISSN 0270-6474, 03/2010, Volume 30, Issue 9, pp. 3398 - 3408
.... We investigated whether mAChR regulation of DA signaling varies with presynaptic activity and identified the mAChRs responsible in sensorimotor-versus limbic-associated striatum... 
KNOCK-OUT MICE | MEDIATED MODULATION | PRIMATE STRIATUM | M2-MUSCARINIC DRUGS | MIDBRAIN DOPAMINE | LONG-TERM POTENTIATION | AUTORECEPTOR FUNCTION | NICOTINIC ACETYLCHOLINE-RECEPTORS | NEUROSCIENCES | CAT CAUDATE-NUCLEUS | MONKEY STRIATUM | Receptor, Muscarinic M2 - genetics | Synaptic Transmission - physiology | Muscarinic Agonists - pharmacology | Nucleus Accumbens - metabolism | Basal Ganglia - metabolism | Receptor, Muscarinic M2 - drug effects | Electrophysiology | Receptors, Muscarinic - metabolism | Acetylcholine - metabolism | Corpus Striatum - cytology | Corpus Striatum - metabolism | Basal Ganglia - cytology | Receptors, Muscarinic - drug effects | Neostriatum - drug effects | Nucleus Accumbens - cytology | Neostriatum - metabolism | Synaptic Transmission - drug effects | Interneurons - cytology | Receptor, Muscarinic M4 - genetics | Dopamine - metabolism | Organ Culture Techniques | Receptors, Muscarinic - genetics | Receptors, Nicotinic - drug effects | Receptors, Nicotinic - metabolism | Neostriatum - cytology | Presynaptic Terminals - drug effects | Receptor, Muscarinic M2 - metabolism | Mice, Inbred C57BL | Interneurons - drug effects | Receptor, Muscarinic M4 - metabolism | Mice, Knockout | Patch-Clamp Techniques | Animals | Interneurons - metabolism | Receptor, Muscarinic M4 - drug effects | Corpus Striatum - drug effects | Presynaptic Terminals - metabolism | Mice | Nucleus Accumbens - drug effects | Basal Ganglia - drug effects
Journal Article
Journal Article
Journal of neuroscience research, ISSN 0360-4012, 2018, Volume 96, Issue 9, pp. 1518 - 1542
.... Therefore, we studied in rats convergence of basal ganglia circuits by depositing an anterograde neuroanatomical tracer into the ventral striatum together with a retrograde fluorescent tracer... 
b_open_article_in_toll_access_journal | inhibition | striato‐mesostriatal loops | neurophysiology | neuroanatomical tracing | dopaminergic neurons | Dopaminergic neurons | Neuroanatomical tracing | Striato-mesostriatal loops | Inhibition | Neurophysiology | STRIATONIGRAL PROJECTIONS | striato-mesostriatal loops | LASER-SCANNING MICROSCOPY | AXONAL BRANCHING PATTERNS | ANTEROGRADE DEGENERATION | NIGRA PARS RETICULATA | NIGROSTRIATAL NEURONS | SUBSTANTIA-NIGRA | NEUROSCIENCES | PREFRONTAL CORTEX | VENTRAL TEGMENTAL AREA | BASAL GANGLIA CIRCUITS | Brain - cytology | Rats, Wistar | Neuroanatomical Tract-Tracing Techniques | Male | Ventral Tegmental Area - cytology | Ventral Tegmental Area - physiology | Nucleus Accumbens - physiology | Brain - physiology | Corpus Striatum - cytology | Neural Pathways - physiology | Rats, Sprague-Dawley | Substantia Nigra - cytology | Dopaminergic Neurons - cytology | Animals | Nucleus Accumbens - cytology | Neural Pathways - cytology | Corpus Striatum - physiology | Dopaminergic Neurons - physiology | Female | Substantia Nigra - physiology | Tyrosine | Phenols | Tracers (Biology) | Neurons | Presynapse | Basal ganglia | Mesencephalon | Circuits | Substantia nigra | Cognitive ability | Fluorescence | Confocal microscopy | Stimulation | Tyrosine 3-monooxygenase | Fibers | Rodents | Sensorimotor system | Neostriatum | Dopamine receptors | Ventral tegmentum | Territory | Dopamine | Hydroxylase | Inhibition (psychology) | Anatomy | Ganglia | Emotions | Substrates | Nucleus accumbens | Functional integration | Microscopy | Amphetamines | Immunofluorescence
Journal Article
The Journal of cell biology, ISSN 1540-8140, 2005, Volume 168, Issue 3, pp. 415 - 427
Journal Article
Journal of Neuroscience, ISSN 0270-6474, 2014, Volume 34, Issue 13, pp. 4509 - 4518
Journal Article
Proceedings of the National Academy of Sciences - PNAS, ISSN 1091-6490, 2010, Volume 107, Issue 50, pp. 21824 - 21829
Journal Article
Journal of Neuroscience, ISSN 0270-6474, 09/2001, Volume 21, Issue 17, pp. 6706 - 6717
The findings that brain-derived neurotrophic factor (BDNF) promotes in vitro the survival and/or differentiation of postnatal subventricular zone (SVZ)... 
Cell proliferation | Intraventricular infusion | Postnatal neurogenesis | Brain-derived neurotrophic factor | Forebrain parenchyma | Subventricular zone | MOUSE-BRAIN | SUBEPENDYMAL CELLS | subventricular zone | NERVOUS-SYSTEM | cell proliferation | MULTIPOTENT PROGENITORS | intraventricular infusion | postnatal neurogenesis | GENERATED NEURONS | MAMMALIAN FOREBRAIN | NEUROSCIENCES | NEURAL STEM-CELLS | brain-derived neurotrophic factor | GROWTH-FACTOR | forebrain parenchyma | PRECURSOR CELLS | Thalamus - metabolism | Cell Count | Injections, Intraventricular | Bromodeoxyuridine | Lateral Ventricles - metabolism | Neurons - cytology | Lateral Ventricles - cytology | Corpus Striatum - cytology | Corpus Striatum - metabolism | Prosencephalon - drug effects | Tissue Distribution | Septum of Brain - cytology | Neurons - metabolism | Hypothalamus - drug effects | Prosencephalon - metabolism | Neurons - drug effects | Receptor, trkB - biosynthesis | Rats | Septum of Brain - metabolism | Septum of Brain - drug effects | Lateral Ventricles - drug effects | Microtubule-Associated Proteins - biosynthesis | Rats, Sprague-Dawley | Thalamus - drug effects | Cell Division - drug effects | Brain-Derived Neurotrophic Factor - administration & dosage | Antigens, Differentiation - biosynthesis | Phenotype | Animals | Hypothalamus - metabolism | Hypothalamus - cytology | Prosencephalon - cytology | Corpus Striatum - drug effects | Thalamus - cytology
Journal Article