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33 results on '"Vaibhav P. Pai"'

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1. Embryos assist morphogenesis of others through calcium and ATP signaling mechanisms in collective teratogen resistance

2. Information integration during bioelectric regulation of morphogenesis of the embryonic frog brain

3. Screening Biophysical Sensors and Neurite Outgrowth Actuators in Human Induced-Pluripotent-Stem-Cell-Derived Neurons

4. HCN2 Channel-Induced Rescue of Brain Teratogenesis via Local and Long-Range Bioelectric Repair

5. HCN2 Rescues brain defects by enforcing endogenous voltage pre-patterns

6. HCN4 ion channel function is required for early events that regulate anatomical left-right patterning in a nodal and lefty asymmetric gene expression-independent manner

7. The brain is required for normal muscle and nerve patterning during early Xenopus development

8. Coordinating heart morphogenesis: A novel role for hyperpolarization-activated cyclic nucleotide-gated (HCN) channels during cardiogenesis in Xenopus laevis

9. Shaping the Future of Research: a perspective from junior scientists [v2; ref status: indexed, http://f1000r.es/4yc]

10. Neurally Derived Tissues in Xenopus laevis Embryos Exhibit a Consistent Bioelectrical Left-Right Asymmetry

11. Information integration during bioelectric regulation of morphogenesis in the embryonic frog brain

12. HCN2 channel-induced rescue of brain, eye, heart and gut teratogenesis caused by nicotine, ethanol and aberrant notch signalling

13. Shaping the Future of Research: a perspective from junior scientists [version 2; referees: 2 approved]

14. Shaping the Future of Research: a perspective from junior scientists [version 1; referees: 1 approved, 1 approved with reservations]

15. Preventing Ethanol-Induced Brain and Eye Morphology Defects Using Optogenetics

16. HCN4 ion channel function is required for early events that regulate anatomical left-right patterning in a nodal and lefty asymmetric gene expression-independent manner

17. From non-excitable single-cell to multicellular bioelectrical states supported by ion channels and gap junction proteins: Electrical potentials as distributed controllers

18. HCN2 Rescues brain defects by enforcing endogenous voltage pre-patterns

19. Genome‐wide analysis reveals conserved transcriptional responses downstream of resting potential change inXenopusembryos, axolotl regeneration, and human mesenchymal cell differentiation

20. Coordinating heart morphogenesis: A novel role for hyperpolarization-activated cyclic nucleotide-gated (HCN) channels during cardiogenesis in Xenopus laevis

21. Intraluminal volume homeostasis

22. In vitro multipotent differentiation and barrier function of a human mammary epithelium

23. Biphasic Regulation of Mammary Epithelial Resistance by Serotonin through Activation of Multiple Pathways

24. Mammary gland homeostasis employs serotonergic regulation of epithelial tight junctions

25. Local and long-range endogenous resting potential gradients antagonistically regulate apoptosis and proliferation in the embryonic CNS

26. Endogenous Gradients of Resting Potential Instructively Pattern Embryonic Neural Tissue via Notch Signaling and Regulation of Proliferation

27. The Type 7 Serotonin Receptor, 5-HT7, Is Essential in the Mammary Gland for Regulation of Mammary Epithelial Structure and Function

28. A response to NIH request for information on optimizing funding policies and other strategies to improve the impact and sustainability of biomedical research

30. Transmembrane voltage potential controls embryonic eye patterning in Xenopus laevis

31. Intraluminal volume homeostasis: A common sertonergic mechanism among diverse epithelia

32. Multiple Cellular Responses to Serotonin Contribute to Epithelial Homeostasis

33. Altered serotonin physiology in human breast cancers favors paradoxical growth and cell survival

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