Ann L. Revill, Ph.D.

Affiliations: 
Physiological Sciences University of Arizona, Tucson, AZ 
Area:
skeletal muscles; coordinated movements
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"Ann Revill"
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Andrew Fuglevand grad student 2011 University of Arizona
 (Role of synaptic and non-synaptic mechanisms underlying motor neuron control.)
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Publications

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Revill AL, Katzell A, Del Negro CA, et al. (2021) KCNQ Current Contributes to Inspiratory Burst Termination in the Pre-Bötzinger Complex of Neonatal Rats . Frontiers in Physiology. 12: 626470
Revill AL, Chu NY, Ma L, et al. (2019) Postnatal development of persistent inward currents in rat XII motoneurons and their modulation by serotonin, muscarine and norepinephrine. The Journal of Physiology
Akins VT, Weragalaarachchi K, Picardo MCD, et al. (2017) Morphology of Dbx1 respiratory neurons in the preBötzinger complex and reticular formation of neonatal mice. Scientific Data. 4: 170097
Revill AL, Fuglevand AJ. (2016) Inhibition linearizes firing rate responses in human motor units: implications for the role of persistent inward currents. The Journal of Physiology
Vincen-Brown MA, Revill AL, Pilarski JQ. (2016) Activity-dependent plasticity in the isolated embryonic avian brainstem following manipulations of rhythmic spontaneous neural activity. Respiratory Physiology & Neurobiology
Revill AL, Vann NC, Akins VT, et al. (2015) Dbx1 precursor cells are a source of inspiratory XII premotoneurons. Elife. 4
Wang X, Hayes JA, Revill AL, et al. (2014) Laser ablation of Dbx1 neurons in the pre-Bötzinger complex stops inspiratory rhythm and impairs output in neonatal mice. Elife. 3: e03427
Alvares TS, Revill AL, Huxtable AG, et al. (2014) P2Y1 receptor-mediated potentiation of inspiratory motor output in neonatal rat in vitro. The Journal of Physiology. 592: 3089-111
Wang X, Hayes JA, Revill AL, et al. (2014) Author response: Laser ablation of Dbx1 neurons in the pre-Bötzinger complex stops inspiratory rhythm and impairs output in neonatal mice Elife
Revill AL, Fuglevand AJ. (2011) Effects of persistent inward currents, accommodation, and adaptation on motor unit behavior: a simulation study. Journal of Neurophysiology. 106: 1467-79
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