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研究领域

Her research interest lies in understanding how the generation of different neuron subtypes are controlled genetically both by factors acting intrinsically within developing progenitors and extrinsically by factors arising from the surrounding developing organ tissue. Focusing on the retinal neurons of the visual system, the lab studies neural development and regeneration in the zebrafish model making use of its accessibility, fast development, ease of molecular manipulations and in vivo time-lapse imaging capabilities.

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Feedback from each retinal neuron population drives expression of subsequent fate determinant genes without influencing the cell cycle exit timing. Journal of Comparative Neurology. 524. 2016 Imaging Retinal Progenitor Lineages in Developing Zebrafish Embryos. Cold Spring Harbor Protocols. 2013. 2013 Preparation of Transgenic Zebrafish Embryos for Imaging the Developing Retina. Cold Spring Harbor Protocols. 2013. 2013 Biasing Amacrine Subtypes in the Atoh7 Lineage through Expression of Barhl2. Journal of Neuroscience. 32. 2012 Fgf-Dependent Glial Cell Bridges Facilitate Spinal Cord Regeneration in Zebrafish. Journal of Neuroscience. 32. 2012

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