Raddy L. Ramos

NYIT/NYCOM, Glen Head, NY, United States 
Cortical development
"Raddy Ramos"
Mean distance: 13.72 (cluster 6)
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Cuoco JA, Esposito AW, Moriarty S, et al. (2017) Malformation of the Posterior Cerebellar Vermis Is a Common Neuroanatomical Phenotype of Genetically Engineered Mice on the C57BL/6 Background. Cerebellum (London, England)
Toia AR, Cuoco JA, Esposito AW, et al. (2016) Divergence and inheritance of neocortical heterotopia in inbred and genetically-engineered mice. Neuroscience Letters
Ramos RL, Toia AR, Pasternack D, et al. (2016) Neuroanatomical Characterization of the Cellular and Axonal Architecture of Subcortical Band Heterotopia in the BXD29-Tlr4(lps-2J)/J Mouse Cortex. Neuroscience
Van Dine SE, Siu NY, Toia A, et al. (2015) Spontaneous malformations of the cerebellar vermis: Prevalence, inheritance, and relationship to lobule/fissure organization in the C57BL/6 lineage. Neuroscience. 310: 242-51
Ramos RL, Siu NY, Brunken WJ, et al. (2014) Cellular and axonal constituents of neocortical molecular layer heterotopia. Developmental Neuroscience. 36: 477-89
Gilbert ME, Ramos RL, McCloskey DP, et al. (2014) Subcortical band heterotopia in rat offspring following maternal hypothyroxinaemia: structural and functional characteristics. Journal of Neuroendocrinology. 26: 528-41
Yang Q, Chen CC, Ramos RL, et al. (2014) Intrinsic properties of and thalamocortical inputs onto identified corticothalamic-VPM neurons. Somatosensory & Motor Research. 31: 78-93
Steger RM, Ramos RL, Cao R, et al. (2013) Physiology and morphology of inverted pyramidal neurons in the rodent neocortex. Neuroscience. 248: 165-79
Ramos RL, Van Dine SE, George E, et al. (2013) Molecular layer heterotopia of the cerebellar vermis in mutant and transgenic mouse models on a C57BL/6 background. Brain Research Bulletin. 97: 63-8
Mangaru Z, Salem E, Sherman M, et al. (2013) Neuronal migration defect of the developing cerebellar vermis in substrains of C57BL/6 mice: cytoarchitecture and prevalence of molecular layer heterotopia. Developmental Neuroscience. 35: 28-39
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