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Oscillating networks: modeling the pyloric circuit of the stomatogastric ganglion.

, , , and . IJCNN, page 175-180. IEEE, (1990)

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Oscillating networks: modeling the pyloric circuit of the stomatogastric ganglion., , , and . IJCNN, page 175-180. IEEE, (1990)Oscillating Networks: Control of Burst Duration by Electrically Coupled Neurons., , and . Neural Comput., 3 (4): 487-497 (1991)Overview of the stomatogastric nervous system, and . Dynamic Biological Networks: The Stomatogastric łdots, (January 1992)Invertebrate muscles: Thin and thick filament structure; molecular basis of contraction and łdots, , and . Prog Neurobiol, (January 2008)Neuronal Model Output Fitness Function., and . Encyclopedia of Computational Neuroscience, Springer, (2014)Muscle response to changing neuronal input in the lobster (Panulirus interruptus) stomatogastric system: slow muscle properties can transform rhythmic input into tonic output, and . J Neurosci, 18 (9): 3433--42 (May 1998)Hill-type muscle model parameters determined from experiments on single muscles show large animal-to-animal variation., , , , and . Biol. Cybern., 106 (10): 559-571 (2012)Using Complicated, Wide Dynamic Range Driving to Develop Models of Single Neurons in Single Recording Sessions, and . J Neurophys, 99 (4): 1871 (April 2008)Muscle anatomy is a primary determinant of muscle relaxation dynamics in the lobster (Panulirus interruptus) stomatogastric system, , , , and . J Comp Physiol, 193 (11): 1101--1113 (October 2007)Variation Is the Spice of Life. Focus on ℌCycle-to-Cycle Variability of Neuromuscular Activity łdots. J Neurophys, (January 2004)