Story C. Landis

Affiliations: 
National Institute of Neurological Disorders and Stroke, Bethesda, MD, United States 
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"Story Landis"
Mean distance: 12.37 (cluster 6)
 
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Publications

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Potter DD, Landis SC, Furshpan EJ. (2008) Adrenergiccholinergic Dual Function in Cultured Sympathetic Neurons of the Rat Development of the Autonomic Nervous System. 123-150
Guidry G, Willison BD, Blakely RD, et al. (2005) Developmental expression of the high affinity choline transporter in cholinergic sympathetic neurons. Autonomic Neuroscience : Basic & Clinical. 123: 54-61
Asmus SE, Tian H, Landis SC. (2001) Induction of cholinergic function in cultured sympathetic neurons by periosteal cells: cellular mechanisms. Developmental Biology. 235: 1-11
Guidry G, Landis SC. (2000) Absence of cholinergic sympathetic innervation from limb muscle vasculature in rats and mice. Autonomic Neuroscience : Basic & Clinical. 82: 97-108
Tian H, Habecker B, Guidry G, et al. (2000) Catecholamines are required for the acquisition of secretory responsiveness by sweat glands. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 20: 7362-9
Asmus SE, Parsons S, Landis SC. (2000) Developmental changes in the transmitter properties of sympathetic neurons that innervate the periosteum. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 20: 1495-504
Brennan C, Rivas-Plata K, Landis SC. (1999) The p75 neurotrophin receptor influences NT-3 responsiveness of sympathetic neurons in vivo. Nature Neuroscience. 2: 699-705
Francis N, Farinas I, Brennan C, et al. (1999) NT-3, like NGF, is required for survival of sympathetic neurons, but not their precursors. Developmental Biology. 210: 411-27
Rios M, Habecker B, Sasaoka T, et al. (1999) Catecholamine synthesis is mediated by tyrosinase in the absence of tyrosine hydroxylase Journal of Neuroscience. 19: 3519-3526
Francis NJ, Landis SC. (1999) Cellular and molecular determinants of sympathetic neuron development. Annual Review of Neuroscience. 22: 541-66
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