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Nature Communications|September 26, 2017
The brain is required for normal muscle and nerve patterning during early Xenopus developmentCelia Herrera-Rincon, Vaibhav P Pai, Kristine M Moran, et al.
Nature Communications|March 10, 2018
HCN2 Rescues brain defects by enforcing endogenous voltage pre-patternsVaibhav P Pai, Alexis Pietak, Valerie Willocq, et al.
Medrxiv : the Preprint Server for Health Sciences|August 13, 2025
Genetically determined platelet traits impact stroke risk through multiple mechanisms and cell typesKim Ha, Katherine Hartmann, Renae L Judy, et al.
The International Journal of Developmental Biology|April 22, 2015
Left-right patterning in Xenopus conjoined twin embryos requires serotonin signaling and gap junctionsLaura N Vandenberg, Douglas J Blackiston, Adam C Rea, et al.
Immunological Reviews|July 12, 2022
Transcriptomics for child and adolescent tuberculosisMyrsini Kaforou, Claire Broderick, Ortensia Vito, et al.
Occupational Medicine (Oxford, England)|November 28, 2007
Comparison of three methods of pre-employment medical evaluationsShlomo Moshe, Michal Shilo, Yaron Yagev, et al.
Science Signaling|October 8, 2015
Serotonergic regulation of melanocyte conversion: A bioelectrically regulated network for stochastic all-or-none hyperpigmentationMaria Lobikin, Daniel Lobo, Douglas J Blackiston, et al.
Frontiers in Cellular Neuroscience|June 13, 2020
HCN2 Channel-Induced Rescue of Brain Teratogenesis via Local and Long-Range Bioelectric RepairVaibhav P Pai, Javier Cervera, Salvador Mafe, et al.
Nature Reviews. Molecular Cell Biology|April 20, 2019
Publisher Correction: A call for a better understanding of causation in cell biologyMariano Bizzarri, Douglas E Brash, James Briscoe, et al.
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