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Annual Review of Physiology|January 1, 1993
Formal approaches to understanding biological oscillatorsW O Friesen, G D Block, C G HockerJournal of Neurophysiology|August 10, 2001
Functional analyses of the leech swim oscillatorW O Friesen, C G HockerJournal of Comparative Physiology. A, Sensory, Neural, and Behavioral Physiology|November 21, 2000
Functionally heterogeneous segmental oscillators generate swimming in the medical leechC G Hocker, X Yu, W O FriesenThe American Journal of Physiology|June 1, 1984
What is a biological oscillator?W O Friesen, G D BlockThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|December 16, 1998
Rhythmic properties of the hamster suprachiasmatic nucleus in vivoS Yamazaki, M C Kerbeshian, C G Hocker, et al.The Journal of Experimental Biology|October 26, 2010
Physiology of water motion detection in the medicinal leechW O FriesenNeuroscience and Biobehavioral Reviews|January 1, 1994
Reciprocal inhibition: a mechanism underlying oscillatory animal movementsW O FriesenCurrent Opinion in Neurobiology|December 13, 2001
Sensory and central mechanisms control intersegmental coordinationW O Friesen, J CangThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|October 12, 2000
Sensory modification of leech swimming: rhythmic activity of ventral stretch receptors can change intersegmental phase relationshipsJ Cang, W O FriesenJournal of Comparative Physiology. A, Sensory, Neural, and Behavioral Physiology|October 1, 1986
Initiation of swimming activity by trigger neurons in the leech subesophageal ganglion. I. Output connections of Tr1 and Tr2P D Brodfuehrer, W O FriesenPageof 12