Analysis of the gait generation principle by a simulated quadruped model with a CPG incorporating vestibular modulation
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Computer Science,Biotechnology
Link
http://link.springer.com/content/pdf/10.1007/s00422-013-0572-4.pdf
Reference73 articles.
1. Alexander RM (1989) Optimization and gaits in the locomotion of vertebrates. Physiol Rev 69:1199–1227
2. Alexander RM (2003) Modelling approaches in biomechanics. Philos Trans R Soc B 358:1429–1435
3. Andersson O, Grillner S (1983) Peripheral control of the cat’s step cycle. II Entrainment of the central pattern generators for locomotion by sinusoidal hip movements during fictive locomotion. Acta Physiol Scand 118:229–239
4. Aoi S, Yamashita T, Tsuchiya K (2001) Hysteresis in the gait transition of a quadruped investigated using simple body mechanical and oscillator network models. Phys Rev E 83:061909-1–061909-12
5. Bal T, Nagy F, Moulins M (1988) The pyloric central pattern generator in Crustacea: a set of conditional neuronal oscillators. J Comp Physiol A 163:715–727
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