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Models of oculomotor control /

This monograph is a structured review of models of oculomotor control systems that is geared toward biomedical engineers, vision scientists, and optometry students. It aims to provide the biomedical engineer with a thorough understanding of how various engineering control principles are applied to o...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Hung, George K.
Formato: Electrónico eBook
Idioma:Inglés
Publicado: River Edge, NJ : World Scientific, ©2001.
Temas:
Acceso en línea:Texto completo

MARC

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245 1 0 |a Models of oculomotor control /  |c George K. Hung. 
260 |a River Edge, NJ :  |b World Scientific,  |c ©2001. 
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504 |a Includes bibliographical references (pages 113-123) and index. 
520 |a This monograph is a structured review of models of oculomotor control systems that is geared toward biomedical engineers, vision scientists, and optometry students. It aims to provide the biomedical engineer with a thorough understanding of how various engineering control principles are applied to oculomotor systems, and the non-engineer with knowledge of how various physiological and clinical concepts can be represented quantitatively and efficiently by control system models. Basic control system concepts and oculomotor physiology are first introduced, along with a glossary, to provide backgro. 
505 0 |a Introduction. Basic anatomy and physiology of eye movements. Basic measurement terms. Basic control system concepts. Eye movement measurement techniques -- Static analysis techniques. Accommodation system. Vergence system. Linear analysis of relationship between AC and ACG. Nonlinear analysis of AC/A using the phoria and fixation. Proximal model. Sensitivity analysis of accommodation and vergence interactions -- Dynamic analysis techniques. Main sequence. Accommodation system -- Root locus analysis. Vergence dual-mode dynamic model. Accommodative dual-mode dynamic characteristics. Adaptation model of accommodation and vergence. Nearwork-induced transient myopia (NITM) model. Refractive error development model. Saccade-vergence interactions dynamic model. Summary remarks. 
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