Klaus Ballanyi

University of Alberta, Edmonton, Alberta, Canada 
"Klaus Ballanyi"
Mean distance: 35622
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Rancic V, Haque F, Ballanyi K, et al. (2019) Using an upright preparation to identify and characterize locomotor related neurons across the transverse plane of the neonatal mouse spinal cord. Journal of Neuroscience Methods
Boakye PA, Rancic V, Whitlock KH, et al. (2019) Receptor-dependence of BDNF Actions in Superficial Dorsal Horn; Relation to Central Sensitization and Actions of Macrophage Colony Stimulating Factor 1 (CSF-1). Journal of Neurophysiology
Shen Y, Wu SY, Rancic V, et al. (2019) Genetically encoded fluorescent indicators for imaging intracellular potassium ion concentration. Communications Biology. 2: 18
Rawal B, Rancic V, Ballanyi K. (2019) TARP mediation of accelerated and more regular locus coeruleus network bursting in neonatal rat brain slices. Neuropharmacology. 148: 169-177
Qian Y, Rancic V, Wu J, et al. (2018) A bioluminescent Ca2+ indicator based on a topological variant of GCaMP6s. Chembiochem : a European Journal of Chemical Biology
Haque F, Rancic V, Zhang W, et al. (2018) WT1-expressing interneurons regulate left-right alternation during mammalian locomotor activity. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Rancic V, Rawal B, Panaitescu B, et al. (2018) Suction electrode recording in locus coeruleus of newborn rat brain slices reveals network bursting comprising summated non-synchronous spiking. Neuroscience Letters. 671: 103-107
Shen Y, Dana H, Abdelfattah AS, et al. (2018) A genetically encoded Ca2+ indicator based on circularly permutated sea anemone red fluorescent protein eqFP578. Bmc Biology. 16: 9
Boakye PA, Schmidt EKA, Rancic V, et al. (2017) Characterization of Superficial Dorsal Horn Neurons From "Tamamaki" Mice and Stability of Their Gad67-Egfp Phenotype in Defined-Medium Organotypic Culture. Neuroscience
Rajani V, Zhang Y, Jalubula V, et al. (2017) Release of ATP by preBötzinger complex astrocytes contributes to the hypoxic ventilatory response via a Ca(2+) -dependent P2Y1 receptor mechanism. The Journal of Physiology
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