Hermissenda Learning
Blackwell and Farley (2008) Hermissenda. Scholarpedia 3(7):4090
Blackwell (2006) Subcellular, cellular, and circuit mechanisms underlying classical conditioning in Hermissenda.
Anat Rec B New Anat 289: 25-37 Abstract
Blackwell (2006) Ionic currents underlying difference in light response between photoreceptors.
J Neurophys 95: 3060-7 Abstract
Blackwell (2004) Paired Turbulence and Light do not Produce a Supralinear Calcium Increase in Hermissenda. J Comput Neurosci 17: 79-97 Abstract
Mo and Blackwell (2003) Comparison of Hermissenda type A and type B photoreceptor's
response to light. J Neurosci 23: 8020-8. Abstract
Blackwell (2002) The effect of intensity and duration on the light induced currents in Hermissenda type B photoreceptor. J Neurosci 22: 4217-4228 Abstract
Blackwell (2002) Calcium waves and closure of leak potassium currents caused by GABA stimulation of the type B photoreceptor of Hermissenda. J Neurophys 87: 776-792 Abstract
Blackwell (2000) Evidence for a distinct light-induced caclium-dependent potassium current in Hermissenda. J Comput Neurosci 9: 149-170 Abstract
Blackwell and Alkon (1999) Ryanodine receptor modulation of in vitro associative learning in Hermissenda. Brain Res 822: 114-125 Abstract
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Basal Ganglia
Hjorth, Blackwell, Kotaleski (2009) Gap junctions between striatal fast-spiking interneurons regulate spiking activity and synchronization as a function of cortical activity. J Neurosci 29: 5276-86 Abstract
Lindskog, Kim, Wikstrom, Blackwell, Kotaleski (2006)
Transient calcium and dopamine increase PKA activity and DARPP-32 phosphorylation.
PLoS Comput Biol. 2:e119.Abstract
Gustafson, Gireesh-Dharmaraj, Czubayko, Blackwell, Plenz (2006) A comparative voltage and current-clamp analysis of feedback and feedforward synaptic transmission in the striatal microcircuit in vitro. J Neurophys 95: 737-52 Abstract
Kotaleski, Plenz, Blackwell (2006) Using potassium currents to solve signal-to-noise problems in inhibitory feedforward networks of the striatum.
J Neurophys 95: 331-41Abstract
Blackwell, Plenz (2003) Quantitative estimate of synaptic inputs to striatal neurons during up and down states in vitro. J Neurosci 23: 9123-32 Abstract
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Modeling/Software
Oliveira, Terrin, Di Bennedetto, Koh, Kim, Zaccolo, Blackwell (2009) NeuroRD: novel software for stochastic modeling of microdomains of signaling molecules. Submitted
Ferrante M, Blackwell KT, Migliore M, Ascoli GA. (2008) Computational models of neuronal biophysics and the characterization of potential neuropharmacological targets. Curr Med Chem. 15:2456-71 Abstract
Blackwell K.T. (2006) An efficient stochastic diffusion algorithm for modeling second messengers in dendrites and spines.
J Neurosci Methods 157: 142-53 Abstract
Blackwell (2005) A New Era in Computational Neuroscience. Neuroinformatics 3: 163-166
Kotaleski, J.H., Lester D., Blackwell K.T. (2002) Subcellular interactions between parallel fibre and climbing fibre signals in Purkinje cells predict sensitivity of classical conditioning to interstimulus interval. Integrative Physiol and Behav Sci 37: 265-292 Abstract
Blackwell K.T., Hellgren Kotaleski J (2002) Modeling the dynamics of second messenger pathways. In Neuroscience Databases: A Practical Guide, Ed. R. Kotter. Kluwer Academic Publishers, Norwell, MA PDF file
Yang, Blackwell (2000) Analog pattern matching in a dendritic spine model based on phosphorylation of potassium channels. Network: Comput Neural Systems 11: 281-297 Abstract
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