John B. Reppas, Ph.D.

Harvard University, Cambridge, MA, United States 
Visual system
"John Reppas"
Mean distance: 13.81 (cluster 17)


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R Clay Reid grad student 2002 Harvard
 (Saccadic eye movements and early vision.)
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Kiani R, Cueva CJ, Reppas JB, et al. (2015) Natural grouping of neural responses reveals spatially segregated clusters in prearcuate cortex. Neuron. 85: 1359-73
Kiani R, Cueva CJ, Reppas JB, et al. (2014) Dynamics of neural population responses in prefrontal cortex indicate changes of mind on single trials. Current Biology : Cb. 24: 1542-7
Reppas JB, Newsome WT. (2007) Brain stimulation: feeling the buzz. Current Biology : Cb. 17: R358-60
Reppas JB, Usrey WM, Reid RC. (2002) Saccadic eye movements modulate visual responses in the lateral geniculate nucleus. Neuron. 35: 961-74
Usrey WM, Reppas JB, Reid RC. (1999) Specificity and strength of retinogeniculate connections. Journal of Neurophysiology. 82: 3527-40
Usrey WM, Reppas JB, Reid RC. (1998) Paired-spike interactions and synaptic efficacy of retinal inputs to the thalamus. Nature. 395: 384-7
Tootell RB, Mendola JD, Hadjikhani NK, et al. (1997) Functional analysis of V3A and related areas in human visual cortex. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 17: 7060-78
Reppas JB, Niyogi S, Dale AM, et al. (1997) Representation of motion boundaries in retinotopic human visual cortical areas. Nature. 388: 175-9
Brandt SA, Reppas JB, Paie AM, et al. (1997) Eye movement related activation in extrastriate cortex revealed by fmri Investigative Ophthalmology and Visual Science. 38: S653
Nobes CD, Reppas JB, Markus A, et al. (1996) Active p21Ras is sufficient for rescue of NGF-dependent rat sympathetic neurons. Neuroscience. 70: 1067-79
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