Jessica L Verpeut, Ph.D.

Affiliations: 
2005-2010 Animal Science and Psychology Pennsylvania State University, State College, PA, United States 
 2010-2015 Animal Science Rutgers University, The State University of New Jersey 
 2015- Neuroscience Princeton University, Princeton, NJ 
Area:
cerebellum, neural circuits, development, autism
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Parents

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Paul A. Bartell research assistant 2009-2010 Penn State
Nicholas T. Bello grad student 2010-2015 Rutgers, New Brunswick
Samuel S.-H. Wang post-doc 2015- Princeton
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Publications

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d'Oleire Uquillas F, Sefik E, Li B, et al. (2024) Multimodal evidence for cerebellar influence on cortical development in autism: structural growth amidst functional disruption. Molecular Psychiatry
Verpeut JL, Oostland M. (2024) The significance of cerebellar contributions in early-life through aging. Frontiers in Computational Neuroscience. 18: 1449364
Rudolph S, Badura A, Lutzu S, et al. (2023) Cognitive-Affective Functions of the Cerebellum. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 43: 7554-7564
Verpeut JL, Bergeler S, Kislin M, et al. (2023) Cerebellar contributions to a brainwide network for flexible behavior in mice. Communications Biology. 6: 605
Maturana CJ, Chan A, Verpeut JL, et al. (2023) Local and systemic administration of AAV vectors with alphaherpesvirus latency-associated promoter 2 drives potent transgene expression in mouse liver, kidney, and skeletal muscle. Journal of Virological Methods. 314: 114688
Maturana CJ, Verpeut JL, Engel EA. (2022) Correction: Single-Cell Quantification of Triple-AAV Vector Genomes Coexpressed in Neurons. Current Protocols. 2: e499
Maturana CJ, Verpeut JL, Engel EA. (2022) Single-Cell Quantification of Triple-AAV Vector Genomes Coexpressed in Neurons. Current Protocols. 2: e430
Pisano TJ, Hoag AT, Dhanerawala ZM, et al. (2022) Automated high-throughput mouse transsynaptic viral tracing using iDISCO+ tissue clearing, light-sheet microscopy, and BrainPipe. Star Protocols. 3: 101289
Klibaite U, Kislin M, Verpeut JL, et al. (2022) Deep phenotyping reveals movement phenotypes in mouse neurodevelopmental models. Molecular Autism. 13: 12
Pisano TJ, Dhanerawala ZM, Kislin M, et al. (2021) Homologous organization of cerebellar pathways to sensory, motor, and associative forebrain. Cell Reports. 36: 109721
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