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Titlebook: Cerebellum and Neuronal Plasticity; Mitchell Glickstein,Christopher Yeo,John Stein Conference proceedings 1987 Plenum Press, New York 1987

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The Role Of The Cerebellum In The Visual Guidance Of Movement,, and destined for the cerebellum. In humans some 5 million fibres leave the occipital and posterior parietal cortex on each side. They synapse with pontine neurones which project as mossy fibres, mainly to the contralateral cerebellar cortex. For comparison the whole pyramidal tract contains only a
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Climbing Fibre Activity Associated with Unperturbed And Perturbed Step Cycles During Skilled Locomowe give an account of some recent findings of our own regarding activity which occurs in climbing fibres in the lateral part of the anterior lobe vermis in association with unexpected perturbations imposed on the stepping movements of cats undertaking a skilled form of walking.
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Model of the Cerebellum as an Array Of Adjustable Pattern Generators,ther than being shaped by continuous feedback from the periphery. Other data suggest that these patterned outputs do not depend on the relatively sparse projection from the motor cortex to the RNm, but are more likely to depend on the prominent, somatotopically organized pathway from the nucleus int
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The Role Of The Cerebellum in Adaptive Regulation of the Vestibulo-Ocular Reflex,ents such movements from disrupting the retinal image. To achieve this the reflex generates compensatory eye movements to offset the head rotations. A striking feature of this reflex is that it operates open- loop: the semicircular canal receptors that sense the input (head rotation) are in no way i
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Quantitative Studies of Pontine Projections from Visual Cortical Areas in the Cat,ittle is known in this respect. This is understandable considering the extremely complex organization of the cortico-ponto-cerbellar pathway; each small part of the cortex projects to a number of widely separated column-like regions in the pontine nuclei, while pontine neurons projecting to a small
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