Callen Hyland, Ph.D.
Affiliations: | 2014 | Yale University, New Haven, CT |
Area:
Cell Biology, General BiophysicsGoogle:
"Callen Hyland"Mean distance: (not calculated yet)
Parents
Sign in to add mentorPaul Forscher | grad student | 2014 | Yale | |
(Substrate Composition and Mechanical Engagement in Neuron Regeneration.) |
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Publications
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Zhang Y, Zhang XF, Fleming MR, et al. (2016) Kv3.3 Channels Bind Hax-1 and Arp2/3 to Assemble a Stable Local Actin Network that Regulates Channel Gating. Cell |
Hyland C, Mertz AF, Forscher P, et al. (2014) Dynamic peripheral traction forces balance stable neurite tension in regenerating Aplysia bag cell neurons. Scientific Reports. 4: 4961 |
Hyland C, Dufresne ER, Dufrense ER, et al. (2014) Regeneration of Aplysia bag cell neurons is synergistically enhanced by substrate-bound hemolymph proteins and laminin. Scientific Reports. 4: 4617 |
Hyland C, Dufresne ER, Forscher P. (2014) Erratum: CORRIGENDUM: Regeneration of Aplysia Bag Cell Neurons is Synergistically Enhanced by Substrate-Bound Hemolymph Proteins and Laminin Scientific Reports. 4 |
Yang Q, Zhang XF, Van Goor D, et al. (2013) Protein kinase C activation decreases peripheral actin network density and increases central nonmuscle myosin II contractility in neuronal growth cones. Molecular Biology of the Cell. 24: 3097-114 |
Zhang Y, Brown MR, Hyland C, et al. (2012) Regulation of neuronal excitability by interaction of fragile X mental retardation protein with slack potassium channels. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 32: 15318-27 |
Zhang XF, Hyland C, Van Goor D, et al. (2012) Calcineurin-dependent cofilin activation and increased retrograde actin flow drive 5-HT-dependent neurite outgrowth in Aplysia bag cell neurons. Molecular Biology of the Cell. 23: 4833-48 |
Van Goor D, Hyland C, Schaefer AW, et al. (2012) The role of actin turnover in retrograde actin network flow in neuronal growth cones. Plos One. 7: e30959 |