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Extra info for Breathe, Walk and Chew: The Neural Challenge: Part II
Acta Physiologica Scandinavica, 120, 393–405. , Angel, M. , & McCrea, D. A. (1995). Ankle extensor group I afferents excite extensors throughout the hindlimb during fictive locomotion in the cat. Journal of Physiology, 487, 197–209. Halbertsma, J. M. (1983). The stride cycle of the cat: The modelling of locomotion by computerized analysis of automatic recordings. Acta Physiologica Scandinavica Supplement, 521, 1–75. Harkema, S. , Hurley, S. , Patel, U. , Requejo, P. , & Edgerton, V. R. (1997). Human lumbosacral spinal cord interprets loading during stepping.
1966). We were curious to see what effects adding electrical stimulation of the MLR would have on episodes of spontaneous fictive locomotion. Figure 2 shows an episode of spontaneous fictive locomotion followed by an episode of MLRevoked locomotion (see also Frigon and Gossard, 2009). 71 s) was extensordominated. 68 s) that was flexor-dominated. In seven trials in two cats, MLR stimulation did not appear to modify the ongoing spontaneous rhythm but replaced it with another rhythm. During the spontaneous locomotor episode shown in Fig.
I. Selverston & D. G. ), Neurons, networks and motor behaviour (pp. 61–73). Cambridge, MA: MIT Press. , Chen, C. , & Lund, J. P. (2003). Neurons of the trigeminal main sensory nucleus participate in the generation of rhythmic motor patterns. European Journal of Neuroscience, 17, 229–238. 29 Wetzel, M. , & Stuart, D. G. (1976). Ensemble characteristics of cat locomotion and its neural control. Progress in Neurobiology, 7, 1–98. Whelan, P. J. (1996). Control of locomotion in the decerebrate cat. Progress in Neurobiology, 49, 481–515.