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  • He T., Singh V., Rumpal N. and Lnenicka, G.A. (2008) Differences in Ca2+ regulation for Is and Ib motor terminals in Drosophila larvae. Neuroscience (in press)
  • Feng X. Castracane, J. Tokranova, N. Gracias, A. Lnenicka, G. and Szaro, B.G. (2007) A living cell-based biosensor utilizing G-protein coupled receptors: Principles and detection methods. Biosensors and Bioelectronics 22:3230-3237.
  • Harrisingh M.C., Ying W., Lnenicka G.A., and Nitabach M.N. (2007) Intracellular Ca2+ regulates free-running circadian clock oscillation in vivo. J. Neuroscience 27:12489-12499.
  • Lnenicka, G.A., Theriault, K., and Monroe, R. (2006) Sexual differentiation of identified motor terminals in Drosophila larvae. J Neurobiol., 66(5):488-498.
  • Lnenicka G.A., Grizzaffi J., Lee B. and Rumpal N. (2006) Ca2+ dynamics along identified synaptic terminals in Drosophila larvae. J. Neurosci. 26:12283-12293.
  • Lnenicka, G.A., Spencer, G.M. and Keshishian, H. (2003) Effect of reduced impulse activity on the development of identified motor terminals in Drosophila larvae. J. Neurobiol. 54(2):337-345.
  • Morley, E.J., Hirsch, H., Hollocher, K. and Lnenicka G.A. (2003) Effects of chronic lead exposure on the neuromuscular junction in Drosophila larvae. Neurotoxicology 24(1):35-41.
  • Rumpal, N. and Lnenicka, G.A. (2003) Mechanisms of calcium clearance from growth cones generated by crayfish phasic and tonic motor axons. J. Neurophysiol. 89:3225-3234.
  • Pearce, J., Lnenicka, G.A. and Govind C.K. (2003) Regenerating crayfish motor axons assimilate glial cells and sprout in cultured explants. J. Comp. Neurol. 464: 449-462.
  • Fengler, B.T. and Lnenicka, G.A. (2002) Activity-dependent plasticity of calcium clearance from crayfish motor axons. J. Neurophysiol. 87(3): 1625-1628.
  • Lnenicka, G.A. and Morley, E.J. (2001) Activity-dependent development and plasticity of crustacean motor terminals. In “The Crustacean Nervous System.” Konrad Wiese (Ed.) Springer Verlag, Berlin Heidelberg New York.
  • Lnenicka, GA and Keshishian, H (2000) Identified motor terminals in Drosophila Larvae show distinct differences in morphology and physiology. J. Neurobiology 43:186-197.