David A. Robinson’s Modeling the Oculomotor Control System

- Volume 267

Forfatter: info mangler
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  • Bog, hardback
  • Engelsk

Beskrivelse

Modelling: The Oculomotor Systems, Volume 269 in the Progress in Brain Research serial highlights new advances in the field with this new volume presenting interesting chapters on topics including The function and phylogeny of eye movements, The behavior of motoneurons, Statics of plant mechanics, Dynamics of plant mechanics, The functional operation of the vestibulo-ocular reflex, Basic framework of the vestibulo-ocular reflex, Oculomotor signals, Signal processing in the vestibulo-ocular reflex, Plasticity and repair of the vestibulo-ocular reflex, The behavior of the optokinetic system, Models of the optokinetic system, Neurophysiology of the optokinetic system, and much more.

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  • Vægt1000 g
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    10 cm
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    19,1 cm
    23,4 cm

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    Plant Drift Model Adaptation Feedback Hysteresis Plasticity Stabilization Instability Innervation Superior colliculus Fixation Cerebellum Motor learning Strabismus Oscillations After-images Nystagmus Purkinje cells Substantia nigra Transfer function Vor Motoneurons Algorithm Smooth Pursuit Saccades Active-state tension Active braking Burst neurons Cerebellar flocculus Double-step target jump Express Saccades Eye-head movements Eye-head tracking dead zone Dorsolateral pontine nuclei Feedback control model Extraocular Muscles Flocculus Cortical area MT Cross-species comparison Gaze Purkinje cells Hypometria Dynamic overshoot Eye Position Medium-lead burst neurons Force–velocity curves Length-tension-innervation Frontal Eye Fields Neural adaptation Neural noise Nucleus of the optic tract Nucleus prepositus hypoglossi Muscle fibers Medial Longitudinal Fasciculus Neural Integrator Microsaccades Orbital tissues Optokinetic Optokinetic system Omnipause neurons Pursuit system Plant models Refractoriness Parietal Lobe Pause neurons Reticular formation Periodic alternating nystagmus Saccade Amplitude Sample-and-hold Predictive mechanisms Saccade duration Quick phase Quick phases Self-rotation Semicircular Canals Stretch afferents Saccade Latency Three-dimensional behavior Supplemental motor area Length–tension curves Vestibular neurons Optokinetic Nystagmus Muscle tissues Oculomotoneurons Medial thalamus Quantitative hypothesis Peak eye velocity Rotational vectors Pulse-step innervation Push-Pull Slant saccades Visual Feedback Velocity storage Vestibular Nucleus

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