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Items: 1 to 20 of 261

1.

Presynaptic interneuron subtype- and age-dependent modulation of GABAergic synaptic transmission by beta-adrenoceptors in rat insular cortex.

Koyanagi Y, Yamamoto K, Oi Y, Koshikawa N, Kobayashi M.

J Neurophysiol. 2010 May;103(5):2876-88. doi: 10.1152/jn.00972.2009. Epub 2010 Mar 24.

2.

Postsynaptic cell type-dependent cholinergic regulation of GABAergic synaptic transmission in rat insular cortex.

Yamamoto K, Koyanagi Y, Koshikawa N, Kobayashi M.

J Neurophysiol. 2010 Oct;104(4):1933-45. doi: 10.1152/jn.00438.2010. Epub 2010 Aug 4.

3.

Presynaptic and postsynaptic modulation of glutamatergic synaptic transmission by activation of alpha(1)- and beta-adrenoceptors in layer V pyramidal neurons of rat cerebral cortex.

Kobayashi M, Kojima M, Koyanagi Y, Adachi K, Imamura K, Koshikawa N.

Synapse. 2009 Apr;63(4):269-81. doi: 10.1002/syn.20604.

PMID:
19116948
5.

Fast-spiking cell to pyramidal cell connections are the most sensitive to propofol-induced facilitation of GABAergic currents in rat insular cortex.

Koyanagi Y, Oi Y, Yamamoto K, Koshikawa N, Kobayashi M.

Anesthesiology. 2014 Jul;121(1):68-78. doi: 10.1097/ALN.0000000000000183.

PMID:
24577288
6.

Kinetics of GABAB autoreceptor-mediated suppression of GABA release in rat insular cortex.

Kobayashi M, Takei H, Yamamoto K, Hatanaka H, Koshikawa N.

J Neurophysiol. 2012 Mar;107(5):1431-42. doi: 10.1152/jn.00813.2011. Epub 2011 Dec 21.

8.

Histamine H3 Heteroreceptors Suppress Glutamatergic and GABAergic Synaptic Transmission in the Rat Insular Cortex.

Takei H, Yamamoto K, Bae YC, Shirakawa T, Kobayashi M.

Front Neural Circuits. 2017 Nov 9;11:85. doi: 10.3389/fncir.2017.00085. eCollection 2017.

9.

Presynaptic cell type-dependent regulation of GABAergic synaptic transmission by nitric oxide in rat insular cortex.

Yamamoto K, Takei H, Koyanagi Y, Koshikawa N, Kobayashi M.

Neuroscience. 2015 Jan 22;284:65-77. doi: 10.1016/j.neuroscience.2014.09.062. Epub 2014 Oct 5.

PMID:
25286388
10.

Major differences in inhibitory synaptic transmission onto two neocortical interneuron subclasses.

Bacci A, Rudolph U, Huguenard JR, Prince DA.

J Neurosci. 2003 Oct 22;23(29):9664-74.

11.
12.

Age-dependent enhancement of inhibitory synaptic transmission in CA1 pyramidal neurons via GluR5 kainate receptors.

Xu C, Cui C, Alkon DL.

Hippocampus. 2009 Aug;19(8):706-17. doi: 10.1002/hipo.20544.

PMID:
19123252
13.

Pre- and postsynaptic effects of norepinephrine on γ-aminobutyric acid-mediated synaptic transmission in layer 2/3 of the rat auditory cortex.

Salgado H, Garcia-Oscos F, Martinolich L, Hall S, Restom R, Tseng KY, Atzori M.

Synapse. 2012 Jan;66(1):20-8. doi: 10.1002/syn.20979. Epub 2011 Oct 11.

PMID:
21905124
14.
15.

Developmental profile of GABAA-mediated synaptic transmission in pyramidal cells of the somatosensory cortex.

Kobayashi M, Hamada T, Kogo M, Yanagawa Y, Obata K, Kang Y.

Eur J Neurosci. 2008 Sep;28(5):849-61. doi: 10.1111/j.1460-9568.2008.06401.x. Epub 2008 Aug 8.

PMID:
18691332
16.

GABAB receptor- and metabotropic glutamate receptor-dependent cooperative long-term potentiation of rat hippocampal GABAA synaptic transmission.

Patenaude C, Chapman CA, Bertrand S, Congar P, Lacaille JC.

J Physiol. 2003 Nov 15;553(Pt 1):155-67. Epub 2003 Sep 8.

17.

PKC activators enhance GABAergic neurotransmission and paired-pulse facilitation in hippocampal CA1 pyramidal neurons.

Xu C, Liu QY, Alkon DL.

Neuroscience. 2014 May 30;268:75-86. doi: 10.1016/j.neuroscience.2014.03.008. Epub 2014 Mar 15.

PMID:
24637095
18.

NMDA receptor activation enhances inhibitory GABAergic transmission onto hippocampal pyramidal neurons via presynaptic and postsynaptic mechanisms.

Xue JG, Masuoka T, Gong XD, Chen KS, Yanagawa Y, Law SK, Konishi S.

J Neurophysiol. 2011 Jun;105(6):2897-906. doi: 10.1152/jn.00287.2010. Epub 2011 Apr 6.

19.

Opioid subtype- and cell-type-dependent regulation of inhibitory synaptic transmission in the rat insular cortex.

Yokota E, Koyanagi Y, Yamamoto K, Oi Y, Koshikawa N, Kobayashi M.

Neuroscience. 2016 Dec 17;339:478-490. doi: 10.1016/j.neuroscience.2016.10.004. Epub 2016 Oct 8.

PMID:
27725218
20.

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