Jill R. Crittenden, Ph.D.

Affiliations: 
Massachusetts Institute of Technology, Cambridge, MA, United States 
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Parents

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Miriam 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
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