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

2. Conserved roles for cytoskeletal components in determining laterality

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3. Optogenetics in Developmental Biology: using light to control ion flux-dependent signals in Xenopus embryos

4. Rab GTPases are required for early orientation of the left–right axis in Xenopus

5. Serotonin has early, cilia-independent roles in Xenopus left-right patterning

6. Early, nonciliary role for microtubule proteins in left–right patterning is conserved across kingdoms

7. Induction of Vertebrate Regeneration by a Transient Sodium Current

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

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

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

11. HDAC Activity Is Required during Xenopus Tail Regeneration

12. Histone Deacetylase activity is necessary for left-right patterning during vertebrate development

13. Transmembrane potential of GlyCl-expressing instructor cells induces a neoplastic-like conversion of melanocytes via a serotonergic pathway