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I became a Lecturer at Bristol in 2016

近期论文

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Dykes, I, 2014, ‘Left Right Patterning, Evolution and Cardiac Development’. Journal of Cardiovascular Development and Disease , vol 1., pp. 52-72 Dykes, IM, van Bueren, KL, Ashmore, RJ, Floss, T, Wurst, W, Szumska, D, Bhattacharya, S & Scambler, PJ, 2014, ‘HIC2 is a novel dosage-dependent regulator of cardiac development located within the distal 22q11 deletion syndrome region’. Circulation Research, vol 115., pp. 23-31 Dykes, IM, Tempest, L, Lee, S-I & Turner, EE, 2011, ‘Brn3a and Islet1 act epistatically to regulate the gene expression program of sensory differentiation’. The Journal of neuroscience : the official journal of the Society for Neuroscience, vol 31., pp. 9789-99 Dykes, IM, Lanier, J, Eng, SR & Turner, EE, 2010, ‘Brn3a regulates neuronal subtype specification in the trigeminal ganglion by promoting Runx expression during sensory differentiation’. Neural Development, vol 5., pp. 3 Lanier, J, Dykes, IM, Nissen, S, Eng, SR & Turner, EE, 2009, ‘Brn3a regulates the transition from neurogenesis to terminal differentiation and represses non-neural gene expression in the trigeminal ganglion’. Developmental Dynamics, vol 238., pp. 3065-79 Sun, Y, Dykes, IM, Liang, X, Eng, SR, Evans, SM & Turner, EE, 2008, ‘A central role for Islet1 in sensory neuron development linking sensory and spinal gene regulatory programs’. Nature Neuroscience, vol 11., pp. 1283-93 Eng, SR, Dykes, IM, Lanier, J, Fedtsova, N & Turner, EE, 2007, ‘POU-domain factor Brn3a regulates both distinct and common programs of gene expression in the spinal and trigeminal sensory ganglia’. Neural Development, vol 2., pp. 3 Dykes, IM & Macagno, ER, 2006, ‘Molecular characterization and embryonic expression of innexins in the leech Hirudo medicinalis’. Development genes and evolution, vol 216., pp. 185-97 Dykes, IM & Davies, JA, 2004, ‘Cloning and expression of a leech complexin’. Gene Expression Patterns, vol 4., pp. 93-7 Dykes, IM, Freeman, FM, Bacon, JP & Davies, JA, 2003, ‘Molecular basis of gap junctional communication in the CNS of the leech Hirudo medicinalis’. Journal of Neuroscience, vol 24., pp. 886-94

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