Christopher Glenn Wilson

Affiliations: 
Pediatrics and Neurosciences Case Western Reserve University, Cleveland Heights, OH, United States 
Area:
Neural control of breathing
Website:
http://neurosciences.case.edu/faculty/wilson/index
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"Christopher Wilson"
Mean distance: 17.07 (cluster 6)
 

Parents

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Ann C. Bonham grad student 1992-1996 UC Davis
Jeffrey C. Smith post-doc 1996-2001 NINDS
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Publications

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Williams PA, Wilson CG. (2020) Effects of Inflammation on the Developing Respiratory System: Focus on Hypoglossal (XII) Neuron Morphology, Brainstem Neurochemistry, and Control of Breathing. Respiratory Physiology & Neurobiology. 103389
Getsy PM, Mayer CA, MacFarlane PM, et al. (2019) Acute lung injury in neonatal rats causes postsynaptic depression in nucleus tractus solitarii second-order neurons. Respiratory Physiology & Neurobiology. 103250
Palahnuk SB, Abdala JA, Gospodarev VV, et al. (2019) Preparation of Rhythmically-active In Vitro Neonatal Rodent Brainstem-spinal Cord and Thin Slice. Journal of Visualized Experiments : Jove
Williams PA, Bellinger DL, Wilson CG. (2018) Changes in the morphology of hypoglossal motor neurons in the brainstem of developing rats. Anatomical Record (Hoboken, N.J. : 2007)
Williams PA, Dalton C, Wilson CG. (2018) Modeling Hypoglossal Motoneurons in the Developing Rat. Respiratory Physiology & Neurobiology
Diekman CO, Thomas PJ, Wilson CG. (2017) Eupnea, tachypnea, and autoresuscitation in a closed-loop respiratory control model. Journal of Neurophysiology. jn.00170.2017
Ribeiro AP, Mayer CA, Wilson CG, et al. (2017) Intratracheal LPS administration attenuates the acute hypoxic ventilatory response: role of brainstem IL-1β receptors. Respiratory Physiology & Neurobiology
Fietkiewicz C, Shafer GO, Platt EA, et al. (2016) Variability in respiratory rhythm generation: In vitro and in silico models Communications in Nonlinear Science and Numerical Simulation. 32: 158-168
Mayer CA, Wilson CG, MacFarlane PM. (2015) Changes in carotid body and nTS neuronal excitability following neonatal sustained and chronic intermittent hypoxia exposure. Respiratory Physiology & Neurobiology. 205: 28-36
Bierman AM, Tankersley CG, Wilson CG, et al. (2014) Perinatal hyperoxic exposure reconfigures the central respiratory network contributing to intolerance to anoxia in newborn rat pups. Journal of Applied Physiology (Bethesda, Md. : 1985). 116: 47-53
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