scholarly article | Q13442814 |
P819 | ADS bibcode | 2008PNAS..105.2187T |
P356 | DOI | 10.1073/PNAS.0710628105 |
P932 | PMC publication ID | 2538896 |
P698 | PubMed publication ID | 18245383 |
P5875 | ResearchGate publication ID | 5607568 |
P2093 | author name string | Z Josh Huang | |
Hang Hu | |||
Zhenjun Tan | |||
Ariel Agmon | |||
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P433 | issue | 6 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 2187-2192 | |
P577 | publication date | 2008-02-01 | |
P1433 | published in | Proceedings of the National Academy of Sciences of the United States of America | Q1146531 |
P1476 | title | Robust but delayed thalamocortical activation of dendritic-targeting inhibitory interneurons | |
P478 | volume | 105 |
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Q50078108 | Diversity and connectivity of layer 5 somatostatin-expressing interneurons in the mouse barrel cortex. |
Q36532623 | Division of labor in frontal eye field neurons during presaccadic remapping of visual receptive fields |
Q92801193 | Elfn1-Induced Constitutive Activation of mGluR7 Determines Frequency-Dependent Recruitment of Somatostatin Interneurons |
Q39573756 | Excitatory and inhibitory STDP jointly tune feedforward neural circuits to selectively propagate correlated spiking activity. |
Q48174012 | Fast activation of feedforward inhibitory neurons from thalamic input and its relevance to the regulation of spike sequences in the barrel cortex. |
Q39052988 | Fifty shades of inhibition. |
Q35367801 | Focal cortical lesions induce bidirectional changes in the excitability of fast spiking and non fast spiking cortical interneurons |
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Q34067369 | From dendrite to soma: dynamic routing of inhibition by complementary interneuron microcircuits in olfactory cortex |
Q37167275 | GABAergic Interneurons in the Neocortex: From Cellular Properties to Circuits |
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Q37094059 | Hearing loss differentially affects thalamic drive to two cortical interneuron subtypes |
Q100506462 | Hippocampal inputs engage CCK+ interneurons to mediate endocannabinoid-modulated feed-forward inhibition in the prefrontal cortex |
Q26747549 | Inhibitory Circuits in Cortical Layer 5 |
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Q57063065 | Inhibitory Interneurons Regulate Temporal Precision and Correlations in Cortical Circuits |
Q48375328 | Intrinsic properties of and thalamocortical inputs onto identified corticothalamic-VPM neurons. |
Q34064172 | LTS and FS inhibitory interneurons, short-term synaptic plasticity, and cortical circuit dynamics |
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Q30488660 | Long-term sensory deprivation selectively rearranges functional inhibitory circuits in mouse barrel cortex. |
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Q48622917 | Microcircuits of excitatory and inhibitory neurons in layer 2/3 of mouse barrel cortex |
Q37668009 | Molecular and Cellular Mechanisms of Rapid-Acting Antidepressants Ketamine and Scopolamine |
Q30504606 | Multiple clusters of release sites formed by individual thalamic afferents onto cortical interneurons ensure reliable transmission. |
Q64915138 | Neuronal cell-subtype specificity of neural synchronization in mouse primary visual cortex. |
Q39014196 | Neurophysiology and Regulation of the Balance Between Excitation and Inhibition in Neocortical Circuits |
Q37379359 | Not all that glitters is gold: off-target recombination in the somatostatin-IRES-Cre mouse line labels a subset of fast-spiking interneurons |
Q48249625 | POm Thalamocortical Input Drives Layer-Specific Microcircuits in Somatosensory Cortex |
Q47883573 | PV+ Cells Enhance Temporal Population Codes but not Stimulus-Related Timing in Auditory Cortex. |
Q33530953 | Pathway-specific feedforward circuits between thalamus and neocortex revealed by selective optical stimulation of axons |
Q35999614 | Postnatal maturation of somatostatin-expressing inhibitory cells in the somatosensory cortex of GIN mice |
Q35871297 | Properties of precise firing synchrony between synaptically coupled cortical interneurons depend on their mode of coupling |
Q33953300 | Pyramidal neurons are "neurogenic hubs" in the neurovascular coupling response to whisker stimulation. |
Q37155476 | Reduced brain somatostatin in mood disorders: a common pathophysiological substrate and drug target? |
Q52866186 | Response Patterns of GABAergic Neurons in the Anterior Piriform Cortex of Awake Mice. |
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Q35794766 | Short-term plasticity of unitary inhibitory-to-inhibitory synapses depends on the presynaptic interneuron subtype |
Q89207188 | Sparse bursts optimize information transmission in a multiplexed neural code |
Q40901749 | Spatiotemporal alterations of cortical network activity by selective loss of NOS-expressing interneurons. |
Q34211153 | Spiking in auditory cortex following thalamic stimulation is dominated by cortical network activity |
Q34793501 | Submillisecond firing synchrony between different subtypes of cortical interneurons connected chemically but not electrically |
Q34147873 | Synaptic properties of thalamic input to layers 2/3 and 4 of primary somatosensory and auditory cortices |
Q35226446 | Synaptic properties of thalamic input to the subgranular layers of primary somatosensory and auditory cortices in the mouse |
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Q36908512 | Thalamocortical Innervation Pattern in Mouse Auditory and Visual Cortex: Laminar and Cell-Type Specificity |
Q26741113 | The Current Status of Somatostatin-Interneurons in Inhibitory Control of Brain Function and Plasticity |
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Q35307766 | The mediodorsal thalamus drives feedforward inhibition in the anterior cingulate cortex via parvalbumin interneurons. |
Q36567468 | Three groups of interneurons account for nearly 100% of neocortical GABAergic neurons |
Q46325577 | Two calretinin-positive GABAergic cell types in layer 2/3 of the mouse neocortex provide different forms of inhibition |
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Q34403231 | Visual representations by cortical somatostatin inhibitory neurons--selective but with weak and delayed responses |
Q37958911 | What can we get from 'barrels': the rodent barrel cortex as a model for studying the establishment of neural circuits. |
Q34432930 | mGluR5 in cortical excitatory neurons exerts both cell-autonomous and -nonautonomous influences on cortical somatosensory circuit formation. |
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