Scott J Cruikshank
Scott J Cruikshank
Assistant Professor, Department of Neurobiology, University of Alabama at Birmingham
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Cited by
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Synaptic basis for intense thalamocortical activation of feedforward inhibitory cells in neocortex
SJ Cruikshank, TJ Lewis, BW Connors
Nature neuroscience 10 (4), 462-468, 2007
Pathway-specific feedforward circuits between thalamus and neocortex revealed by selective optical stimulation of axons
SJ Cruikshank, H Urabe, AV Nurmikko, BW Connors
Neuron 65 (2), 230-245, 2010
Potent block of Cx36 and Cx50 gap junction channels by mefloquine
SJ Cruikshank, M Hopperstad, M Younger, BW Connors, DC Spray, ...
Proceedings of the National Academy of Sciences 101 (33), 12364-12369, 2004
A corticothalamic switch: controlling the thalamus with dynamic synapses
SR Crandall, SJ Cruikshank, BW Connors
Neuron 86 (3), 768-782, 2015
Auditory thalamocortical synaptic transmission in vitro
SJ Cruikshank, HJ Rose, R Metherate
Journal of neurophysiology 87 (1), 361-384, 2002
Thalamic control of layer 1 circuits in prefrontal cortex
SJ Cruikshank, OJ Ahmed, TR Stevens, SL Patrick, AN Gonzalez, ...
Journal of Neuroscience 32 (49), 17813-17823, 2012
Differential modulation of auditory thalamocortical and intracortical synaptic transmission by cholinergic agonist
CY Hsieh, SJ Cruikshank, R Metherate
Brain research 880 (1-2), 51-64, 2000
Thalamocortical inputs trigger a propagating envelope of gamma-band activity in auditory cortex in vitro
R Metherate, SJ Cruikshank
Experimental Brain Research 126, 160-174, 1999
Evidence for the Hebbian hypothesis in experience-dependent physiological plasticity of neocortex: a critical review
SJ Cruikshank, NM Weinberger
Brain Research Reviews 22 (3), 191-228, 1996
Parvalbumin and calbindin are differentially distributed within primary and secondary subregions of the mouse auditory forebrain
SJ Cruikshank, HP Killackey, R Metherate
Neuroscience 105 (3), 553-569, 2001
Stimulation at a site of auditory-somatosensory convergence in the medial geniculate nucleus is an effective unconditioned stimulus for fear conditioning.
SJ Cruikshank, JM Edeline, NM Weinberger
Behavioral neuroscience 106 (3), 471, 1992
Receptive-field plasticity in the adult auditory cortex induced by Hebbian covariance
SJ Cruikshank, NM Weinberger
The Journal of neuroscience 16 (2), 861, 1996
Infrabarrels are layer 6 circuit modules in the barrel cortex that link long-range inputs and outputs
SR Crandall, SL Patrick, SJ Cruikshank, BW Connors
Cell reports 21 (11), 3065-3078, 2017
Two dynamically distinct circuits drive inhibition in the sensory thalamus
RI Martinez-Garcia, B Voelcker, JB Zaltsman, SL Patrick, TR Stevens, ...
Nature 583 (7818), 813-818, 2020
Abrupt maturation of a spike-synchronizing mechanism in neocortex
MA Long, SJ Cruikshank, MJ Jutras, BW Connors
Journal of Neuroscience 25 (32), 7309-7316, 2005
Electrical and chemical synapses between relay neurons in developing thalamus
SC Lee, SJ Cruikshank, BW Connors
The Journal of Physiology 588 (13), 2403-2415, 2010
Stability of electrical coupling despite massive developmental changes of intrinsic neuronal physiology
PRL Parker, SJ Cruikshank, BW Connors
Journal of Neuroscience 29 (31), 9761-9770, 2009
Connexon connexions in the thalamocortical system
SJ Cruikshank, CE Landisman, JG Mancilla, BW Connors
Progress in brain research 149, 41-57, 2005
Bypassing interneurons: inhibition in neocortex
BW Connors, SJ Cruikshank
Nature neuroscience 10 (7), 808-810, 2007
In vivo Hebbian and basal forebrain stimulation treatment in morphologically identified auditory cortical cells
SJ Cruikshank, NM Weinberger
Brain research 891 (1-2), 78-93, 2001
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