Lea Ziskind-Conhaim

University of Wisconsin, Madison, Madison, WI 
Physiology, Spinal, Electrophysiology
"Lea Ziskind-Conhaim"
Mean distance: 16.97 (cluster 6)
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Ziskind-Conhaim L, Hochman S. (2017) Diversity of molecularly-defined spinal interneurons engaged in mammalian locomotor pattern generation. Journal of Neurophysiology. jn.00322.2017
Ziskind-Conhaim L. (2013) Neuronal correlates of the dominant role of GABAergic transmission in the developing mouse locomotor circuitry. Annals of the New York Academy of Sciences. 1279: 43-53
Mavlyutov TA, Epstein ML, Verbny YI, et al. (2013) Lack of sigma-1 receptor exacerbates ALS progression in mice. Neuroscience. 240: 129-34
Mavlyutov TA, Epstein ML, Liu P, et al. (2012) Development of the sigma-1 receptor in C-terminals of motoneurons and colocalization with the N,N'-dimethyltryptamine forming enzyme, indole-N-methyl transferase. Neuroscience. 206: 60-8
Wu L, Sonner PM, Titus DJ, et al. (2011) Properties of a distinct subpopulation of GABAergic commissural interneurons that are part of the locomotor circuitry in the neonatal spinal cord. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 31: 4821-33
Ziskind-Conhaim L, Mentis GZ, Wiesner EP, et al. (2010) Synaptic integration of rhythmogenic neurons in the locomotor circuitry: the case of Hb9 interneurons. Annals of the New York Academy of Sciences. 1198: 72-84
Hinckley CA, Wiesner EP, Mentis GZ, et al. (2010) Sensory modulation of locomotor-like membrane oscillations in Hb9-expressing interneurons. Journal of Neurophysiology. 103: 3407-23
Mavlyutov TA, Epstein ML, Andersen KA, et al. (2010) The sigma-1 receptor is enriched in postsynaptic sites of C-terminals in mouse motoneurons. An anatomical and behavioral study. Neuroscience. 167: 247-55
Wang D, Poon T, McMahon S, et al. (2009) Hybrid voltage sensor imaging from genetically targeted neurons in hippocampal and spinal cord slices (Journal of Neurophysiology (2009) DOI:10.1152/jn.00569.2009) Journal of Neurophysiology. 102: 3779
Ziskind-Conhaim L, Wu L, Wiesner EP. (2008) Persistent sodium current contributes to induced voltage oscillations in locomotor-related hb9 interneurons in the mouse spinal cord. Journal of Neurophysiology. 100: 2254-64
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