review article | Q7318358 |
scholarly article | Q13442814 |
P50 | author | Alban de Kerchove d'Exaerde | Q58661148 |
Serge N. Schiffmann | Q41130800 | ||
P2093 | author name string | Pierre F Durieux | |
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Locomotor activity in D2 dopamine receptor-deficient mice is determined by gene dosage, genetic background, and developmental adaptations | Q28594346 | ||
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Parvalbumin neurons and gamma rhythms enhance cortical circuit performance | Q29619163 | ||
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Postsynaptic TRPV1 triggers cell type–specific long-term depression in the nucleus accumbens | Q30500199 | ||
Expression of Cre recombinase in dopaminoceptive neurons | Q33268100 | ||
Differential excitability and modulation of striatal medium spiny neuron dendrites | Q33382961 | ||
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Expression of the transcription factor deltaFosB in the brain controls sensitivity to cocaine | Q33875193 | ||
Increased sensitivity to cocaine by cholinergic cell ablation in nucleus accumbens | Q33949384 | ||
Local circuit neurons in the striatum regulate neural and behavioral responses to dopaminergic stimulation | Q34066535 | ||
Distinct subclasses of medium spiny neurons differentially regulate striatal motor behaviors | Q34093012 | ||
Disruption of CREB function in brain leads to neurodegeneration | Q34124865 | ||
Cholinergic interneurons control local circuit activity and cocaine conditioning | Q34155319 | ||
Striatal cell type-specific overexpression of DeltaFosB enhances incentive for cocaine | Q34186133 | ||
A synthetic optogenetic transcription device enhances blood-glucose homeostasis in mice | Q34195097 | ||
BAC to the future: the use of bac transgenic mice for neuroscience research | Q34457226 | ||
Is there a common molecular pathway for addiction? | Q34463226 | ||
Cocaine-induced dendritic spine formation in D1 and D2 dopamine receptor-containing medium spiny neurons in nucleus accumbens | Q34480282 | ||
Dopaminergic control of corticostriatal long-term synaptic depression in medium spiny neurons is mediated by cholinergic interneurons. | Q34521936 | ||
Transient neuronal inhibition reveals opposing roles of indirect and direct pathways in sensitization | Q34679428 | ||
Dopamine D2 receptor overexpression alters behavior and physiology in Drd2-EGFP mice | Q34780457 | ||
Studying gene function in eukaryotes by conditional gene inactivation | Q34995452 | ||
Impairment of reward-related learning by cholinergic cell ablation in the striatum | Q35147443 | ||
The basal ganglia and motor control | Q35593766 | ||
Dichotomous anatomical properties of adult striatal medium spiny neurons | Q35607269 | ||
Functional diversity and specificity of neostriatal interneurons. | Q35974955 | ||
Deletion of GAD67 in dopamine receptor-1 expressing cells causes specific motor deficits | Q35990118 | ||
Neurotransmitters and neuromodulators in the basal ganglia | Q36586002 | ||
Basal ganglia macrocircuits | Q36820559 | ||
Habits, rituals, and the evaluative brain | Q37193050 | ||
Cell type-specific regulation of DARPP-32 phosphorylation by psychostimulant and antipsychotic drugs | Q37332784 | ||
Striatal plasticity and basal ganglia circuit function | Q37336143 | ||
Neuromedin B and gastrin-releasing peptide excite arcuate nucleus neuropeptide Y neurons in a novel transgenic mouse expressing strong Renilla green fluorescent protein in NPY neurons | Q37351322 | ||
Mesencephalic dopamine neurons regulate the expression of neuropeptide mRNAs in the rat forebrain | Q37413174 | ||
D1 and D2 dopamine receptor mRNA in rat brain | Q37419023 | ||
Excitatory and inhibitory synapses in neuropeptide Y-expressing striatal interneurons | Q37422261 | ||
Looking BAC at striatal signaling: cell-specific analysis in new transgenic mice. | Q37600135 | ||
A CamKIIalpha iCre BAC allows brain-specific gene inactivation. | Q38295532 | ||
FACS-array profiling of striatal projection neuron subtypes in juvenile and adult mouse brains | Q38315630 | ||
Rapid rewiring of arcuate nucleus feeding circuits by leptin. | Q38342803 | ||
Neuropeptide Y-mediated inhibition of proopiomelanocortin neurons in the arcuate nucleus shows enhanced desensitization in ob/ob mice. | Q38344033 | ||
A Cre-inducible diphtheria toxin receptor mediates cell lineage ablation after toxin administration. | Q40418924 | ||
Striatal interneurones: chemical, physiological and morphological characterization | Q40991491 | ||
Neurobehavioural mechanisms of reward and motivation. | Q41049144 | ||
Parvalbumin neurons in the forebrain as revealed by parvalbumin-Cre transgenic mice | Q42448307 | ||
Conditional ablation of striatal neuronal types containing dopamine D2 receptor disturbs coordination of basal ganglia function. | Q42451194 | ||
Specificity of 192 IgG-saporin for NGF receptor-positive cholinergic basal forebrain neurons in the rat. | Q42453535 | ||
Immunolesioning: selective destruction of neurons using immunotoxin to rat NGF receptor | Q42464077 | ||
Targeted expression of a toxin gene to D1 dopamine receptor neurons by cre-mediated site-specific recombination. | Q42464233 | ||
Distinct roles of synaptic transmission in direct and indirect striatal pathways to reward and aversive behavior | Q42474126 | ||
Differential effects of suicide transport lesions of the striatonigral or striatopallidal pathways on subsets of striatal neurons | Q42475426 | ||
Adenosine A2 receptors regulate the gene expression of striatopallidal and striatonigral neurons | Q42482886 | ||
Selective lesioning of the basal forebrain cholinergic system by intraventricular 192 IgG-saporin: behavioural, biochemical and stereological studies in the rat. | Q42486015 | ||
Synaptic integration mediated by striatal cholinergic interneurons in basal ganglia function | Q42491215 | ||
Endocannabinoid-mediated rescue of striatal LTD and motor deficits in Parkinson's disease models | Q42508054 | ||
G(olf) and Gs in rat basal ganglia: possible involvement of G(olf) in the coupling of dopamine D1 receptor with adenylyl cyclase | Q42511423 | ||
P921 | main subject | striatum | Q1319792 |
P304 | page(s) | 40 | |
P577 | publication date | 2011-07-15 | |
P1433 | published in | Frontiers in Neuroanatomy | Q1893158 |
P1476 | title | Targeting neuronal populations of the striatum | |
P478 | volume | 5 |
Q37462660 | Adenosine signaling in striatal circuits and alcohol use disorders |
Q36595469 | Basal ganglia correlates of fatigue in young adults |
Q38181608 | Brain γ-aminobutyric acid: a neglected role in impulsivity |
Q36712146 | Chromatin immunoprecipitation and gene expression analysis of neuronal subtypes after fluorescence activated cell sorting |
Q48572411 | Continuous infusion of substance P into rat striatum alleviates nociceptive behavior via phosphorylation of extracellular signal-regulated kinase 1/2. |
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Q34544766 | Disrupted functional connectivity of the anterior cingulate cortex in cirrhotic patients without overt hepatic encephalopathy: a resting state fMRI study |
Q38667290 | ERK/MAPK Signaling Is Required for Pathway-Specific Striatal Motor Functions. |
Q37986616 | Genetics of dopamine receptors and drug addiction |
Q30512860 | Human embryonic stem cell-derived GABA neurons correct locomotion deficits in quinolinic acid-lesioned mice. |
Q38869552 | Lenticular nucleus correlates of general self-efficacy in young adults |
Q37047638 | Melatonin ameliorates injury and specific responses of ischemic striatal neurons in rats |
Q90353661 | Neural correlates of perceived physical and mental fatigability in older adults: A pilot study |
Q42505344 | Restoration of the striatal circuitry: from developmental aspects toward clinical applications. |
Q37047922 | Sex differences in the neural mechanisms mediating addiction: a new synthesis and hypothesis |
Q45302772 | Singular localization of sodium channel β4 subunit in unmyelinated fibres and its role in the striatum. |
Q35121495 | Specific reactions of different striatal neuron types in morphology induced by quinolinic acid in rats |
Q42637831 | Striatal adenosine A2A receptor neurons control active-period sleep via parvalbumin neurons in external globus pallidus. |
Q42111195 | Striatal signaling: two decades of progress. |
Q42505593 | Vasoactive intestinal peptide enhances striatal plasticity and prevents dopaminergic cell loss in Parkinsonian rats. |
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