Rinaldo D'Souza

Affiliations: 
Washington University, Saint Louis, St. Louis, MO 
Area:
Visual cortical circuits
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"Rinaldo D'Souza"
Mean distance: 14.84 (cluster 6)
 
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Parents

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Upinder Singh Bhalla research assistant 2005-2006 NCBS
Sukumar Vijayaraghavan grad student 2007-2011 University of Colorado, Denver
 (Modulation of olfactory bulb signaling by glomerular nicotinic acetylcholine receptors.)
Andreas Burkhalter post-doc 2012- Washington University
Harrison W. Gabel research scientist Washington University
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Publications

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Burkhalter A, Ji W, Meier AM, et al. (2024) Modular horizontal network within mouse primary visual cortex. Frontiers in Neuroanatomy. 18: 1364675
Moore JR, Nemera MT, D'Souza RD, et al. (2024) Non-CG DNA methylation and MeCP2 stabilize repeated tuning of long genes that distinguish closely related neuron types. Biorxiv : the Preprint Server For Biology
Burkhalter A, D'Souza RD, Ji W, et al. (2023) Integration of Feedforward and Feedback Information Streams in the Modular Architecture of Mouse Visual Cortex. Annual Review of Neuroscience
D'Souza RD, Wang Q, Ji W, et al. (2022) Hierarchical and nonhierarchical features of the mouse visual cortical network. Nature Communications. 13: 503
D'Souza RD, Bista P, Meier AM, et al. (2019) Spatial Clustering of Inhibition in Mouse Primary Visual Cortex. Neuron
Spindle MS, Parsa PV, Bowles SG, et al. (2018) A Dominant Role for the Beta 4 Nicotinic Receptor Subunit in Nicotinic Modulation of Glomerular Microcircuits in the Mouse Olfactory Bulb. Journal of Neurophysiology
D'Souza RD, Burkhalter A. (2017) A Laminar Organization for Selective Cortico-Cortical Communication. Frontiers in Neuroanatomy. 11: 71
D'Souza RD, Meier AM, Bista P, et al. (2016) Recruitment of inhibition and excitation across mouse visual cortex depends on the hierarchy of interconnecting areas. Elife. 5
Ji W, G?m?nu? R, Bista P, et al. (2015) Modularity in the Organization of Mouse Primary Visual Cortex. Neuron. 87: 632-43
Parsa PV, D'Souza RD, Vijayaraghavan S. (2015) Signaling between periglomerular cells reveals a bimodal role for GABA in modulating glomerular microcircuitry in the olfactory bulb. Proceedings of the National Academy of Sciences of the United States of America. 112: 9478-83
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