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Brain Research|September 5, 1998
Generalisability of sensory gating during passive movement of the legsW R Staines, J D Brooke, P A Angerilli, et al.Neuroreport|November 25, 1996
Phasic modulation of somatosensory potentials during passive movementW R Staines, J D Brooke, P A Angerilli, et al.Experimental Brain Research|June 1, 1997
Movement-induced gain modulation of somatosensory potentials and soleus H-reflexes evoked from the leg. II. Correlation with rate of stretch of extensor muscles of the legW R Staines, J D Brooke, J E Misiaszek, et al.Brain Research|October 2, 2001
Medio-lateral balance adjustments preceding reflexive limb withdrawal are modified by postural demandsL R Bent, J R Potvin, J D Brooke, et al.Brain Research|May 15, 1995
Mechanisms within the human spinal cord suppress fast reflexes to control the movement of the legsJ D Brooke, W E McIlroy, D F Collins, et al.Neurobiology of Aging|November 1, 1989
Aging of human segmental oligosynaptic reflexes for control of leg movementJ D Brooke, R Singh, M K Wilson, et al.Journal of Electromyography and Kinesiology : Official Journal of the International Society of Electrophysiological Kinesiology|May 20, 2000
Upper limb H reflexes and somatosensory evoked potentials modulated by movementJ D Brooke, G Peritore, W R Staines, et al.Brain Research|May 29, 1995
Long-lasting conditioning of the human soleus H reflex following quadriceps tendon tapJ Cheng, J D Brooke, W R Staines, et al.Experimental Brain Research|June 1, 1997
Movement-induced gain modulation of somatosensory potentials and soleus H-reflexes evoked from the leg. I. Kinaesthetic task demandsW R Staines, J D Brooke, J Cheng, et al.Brain Research|April 17, 1995
Long-lasting inhibition of the human soleus H reflex pathway after passive movementJ E Misiaszek, J D Brooke, K B Lafferty, et al.Pageof 7