Jill R. Crittenden, Ph.D.
Affiliations: | Massachusetts Institute of Technology, Cambridge, MA, United States |
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"Jill Crittenden"Mean distance: 13.62 (cluster 6) | S | N | B | C | P |
Parents
Sign in to add mentorMiriam E. Zolan | research assistant | Indiana University Bloomington (Cell Biology Tree) | |
Ronald L. Davis | grad student | MIT | |
Carol W. Greider | grad student | CSHL (Telomere and Telomerase Tree) | |
David Housman | post-doc | MIT | |
Ann M. Graybiel | research scientist | MIT |
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Publications
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Lazaridis I, Crittenden JR, Ahn G, et al. (2024) Striosomes Target Nigral Dopamine-Containing Neurons via Direct-D1 and Indirect-D2 Pathways Paralleling Classic Direct-Indirect Basal Ganglia Systems. Biorxiv : the Preprint Server For Biology |
Hueske E, Stine C, Yoshida T, et al. (2024) Developmental and adult striatal patterning of nociceptin ligand marks striosomal population with direct dopamine projections. Biorxiv : the Preprint Server For Biology |
Matsushima A, Pineda SS, Crittenden JR, et al. (2023) Transcriptional vulnerabilities of striatal neurons in human and rodent models of Huntington's disease. Nature Communications. 14: 282 |
Crittenden JR, Yoshida T, Venu S, et al. (2022) Cannabinoid Receptor 1 Is Required for Neurodevelopment of Striosome-Dendron Bouquets. Eneuro. 9 |
Thomsen M, Crittenden JR, Lindsley CW, et al. (2022) Effects of acute and repeated administration of the selective M PAM VU0152099 on cocaine versus food choice in male rats. Addiction Biology. 27: e13145 |
Crittenden JR, Zhai S, Sauvage M, et al. (2021) CalDAG-GEFI mediates striatal cholinergic modulation of dendritic excitability, synaptic plasticity and psychomotor behaviors. Neurobiology of Disease. 105473 |
Crittenden JR, Gipson TA, Smith AC, et al. (2021) Striatal transcriptome changes linked to drug-induced repetitive behaviors. The European Journal of Neuroscience |
Morigaki R, Lee JH, Yoshida T, et al. (2020) Spatiotemporal Up-Regulation of Mu Opioid Receptor 1 in Striatum of Mouse Model of Huntington's Disease Differentially Affecting Caudal and Striosomal Regions. Frontiers in Neuroanatomy. 14: 608060 |
Capponi S, Stöffler N, Irimia M, et al. (2019) Neuronal-specific microexon splicing of mRNA is directly regulated by SRRM4/nSR100. Rna Biology. 1-13 |
Crittenden JR, Skoulakis EMC, Goldstein ES, et al. (2018) is essential for normal mushroom body and wing development. Biology Open |