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The Journal of Physiology|August 26, 2003
Contribution of Ca2+-dependent conductances to membrane potential fluctuations of medullary respiratory neurons of newborn rats in vitroHiroshi Onimaru, Klaus Ballanyi, Ikuo HommaThe Journal of Physiology|October 13, 2007
Anoxic persistence of lumbar respiratory bursts and block of lumbar locomotion in newborn rat brainstem spinal cordsGiuliano Taccola, Lucia Secchia, Klaus BallanyiThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|November 14, 2020
Mapping the Dynamic Recruitment of Spinal Neurons during Fictive LocomotionVladimir Rancic, Klaus Ballanyi, Simon GosgnachNeuroscience Research|July 29, 2021
Expiratory abdominal muscle nerve is active at flexor phase, while inspiratory phrenic nerve is not active during locomotion evoked by 5-HT and NMDA in the neonatal ratMakito Iizuka, Araya Ruangkittisakul, Klaus BallanyiBrain Sciences|May 28, 2022
NMDA Enhances and Glutamate Attenuates Synchrony of Spontaneous Phase-Locked Locus Coeruleus Network Rhythm in Newborn Rat Brain SlicesBijal Rawal, Vladimir Rancic, Klaus BallanyiRespiratory Physiology & Neurobiology|September 14, 2010
K(+) and Ca²(+) dependence of inspiratory-related rhythm in novel "calibrated" mouse brainstem slicesAraya Ruangkittisakul, Bogdan Panaitescu, Klaus BallanyiScience Signaling|November 11, 2010
Control of breathing by "nerve glue"Klaus Ballanyi, Bogdan Panaitescu, Araya RuangkittisakulAdvances in Experimental Medicine and Biology|March 11, 2010
Multiphoton/confocal Ca2+-imaging of inspiratory pre-Bötzinger complex neurons at the rostral or caudal surface of newborn rat brainstem slicesNicoleta Bobocea, Araya Ruangkittisakul, Klaus BallanyiAdvances in Experimental Medicine and Biology|March 11, 2010
Depression by Ca2+ and stimulation by K+ of fictive inspiratory rhythm in newborn rat brainstem slicesBogdan Panaitescu, Araya Ruangkittisakul, Klaus BallanyiNeuroscience Letters|May 12, 2009
Silencing by raised extracellular Ca2+ of pre-Bötzinger complex neurons in newborn rat brainstem slices without change of membrane potential or input resistanceBogdan Panaitescu, Araya Ruangkittisakul, Klaus BallanyiPageof 7