Margaret Barnes-Davies, PhD

Affiliations: 
University of Leicester, Leicester, England, United Kingdom 
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"Margaret Barnes-Davies"
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Publications

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Sinclair JL, Barnes-Davies M, Kopp-Scheinpflug C, et al. (2017) Strain-specific differences in the development of neuronal excitability in the mouse ventral nucleus of the trapezoid body. Hearing Research. 354: 28-37
Tong H, Kopp-Scheinpflug C, Pilati N, et al. (2013) Protection from noise-induced hearing loss by Kv2.2 potassium currents in the central medial olivocochlear system. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 33: 9113-21
Sterenborg JC, Pilati N, Sheridan CJ, et al. (2010) Lateral olivocochlear (LOC) neurons of the mouse LSO receive excitatory and inhibitory synaptic inputs with slower kinetics than LSO principal neurons. Hearing Research. 270: 119-26
Song P, Yang Y, Barnes-Davies M, et al. (2005) Acoustic environment determines phosphorylation state of the Kv3.1 potassium channel in auditory neurons. Nature Neuroscience. 8: 1335-42
Barnes-Davies M, Barker MC, Osmani F, et al. (2004) Kv1 currents mediate a gradient of principal neuron excitability across the tonotopic axis in the rat lateral superior olive. The European Journal of Neuroscience. 19: 325-33
Barnes-Davies M, Owens S, Forsythe ID. (2001) Calcium channels triggering transmitter release in the rat medial superior olive. Hearing Research. 162: 134-45
Doughty JM, Barnes-Davies M, Rusznák Z, et al. (1998) Contrasting Ca2+ channel subtypes at cell bodies and synaptic terminals of rat anterioventral cochlear bushy neurones. The Journal of Physiology. 512: 365-76
Forsythe ID, Tsujimoto T, Barnes-Davies M, et al. (1998) Inactivation of presynaptic calcium current contributes to synaptic depression at a fast central synapse. Neuron. 20: 797-807
Forsythe ID, Barnes-Davies M. (1997) Synaptic transmission: well-placed modulators. Current Biology : Cb. 7: R362-5
Tsujimoto T, Forsythe ID, Barnes-Davies M, et al. (1997) 317 Inactivation of presynaptic calcium current underlying synaptic depression Neuroscience Research. 28: S58
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