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Journal of Neurophysiology|February 13, 2001
The role of sensory signals from the insect coxa-trochanteral joint in controlling motor activity of the femur-tibia jointT Akay, U Bässler, P Gerharz, et al.Journal of Computational Neuroscience|September 1, 1996
Distributed processing on the basis of parallel and antagonistic pathways simulation of the femur-tibia control system in the stick insectA E Sauer, R B Driesang, A Büschges, et al.Journal of Neurobiology|January 7, 2000
Neuromuscular plasticity in the locust after permanent removal of an excitatory motoneuron of the extensor tibiae muscleA Büschges, S Djokaj, D Bässler, et al.Brain Research. Brain Research Reviews|May 1, 1993
The femur-tibia control system of stick insects--a model system for the study of the neural basis of joint controlU BässlerBiological Cybernetics|January 1, 1985
Leg movements of stick insects walking with five legs on a treadwheel and with one leg on a motor-driven belt. I. General results and 1:1-coordinationE Foth, U BässlerBiological Cybernetics|January 1, 1985
Leg movements of stick insects walking with five legs on a treadwheel and with one leg on a motor-driven belt. II. Leg coordination when step-frequencies differ from leg to legE Foth, U BässlerBrain Research|April 18, 1998
Inhibitory synaptic drive patterns motoneuronal activity in rhythmic preparations of isolated thoracic ganglia in the stick insectA BüschgesJournal of Neurobiology|August 1, 1995
Role of local nonspiking interneurons in the generation of rhythmic motor activity in the stick insectA BüschgesJournal of Neurophysiology|October 6, 1997
Plasticity of synaptic connections in sensory-motor pathways of the adult locust flight systemH Wolf, A BüschgesJournal of Neurobiology|December 24, 1997
Sensorimotor pathways involved in interjoint reflex action of an insect legD Hess, A BüschgesPageof 3