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Blagotinšek, Ana Gostincar – Physics Teacher, 2023
Two misconceptions about the mechanism of image formation in the human eye are common among students and even in textbooks and other teaching materials. The first attributes all refraction to the eye lens; the second treats the eye as a pinhole camera. To reduce these persistent conceptions of students, a series of simple experiments is presented…
Descriptors: Vision, Science Instruction, Instructional Materials, Laboratory Experiments
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Oommen, Vinay; Kanthakumar, Praghalathan – Advances in Physiology Education, 2014
The human eye is often discussed as optically equivalent to a photographic camera. The iris is compared with the shutter, the pupil to the aperture, and the retina to the film, and both have lens systems to focus rays of light. Although many similarities exist, a major difference between the two systems is the mechanism involved in focusing an…
Descriptors: Human Body, Physiology, Vision, Photography
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Ihirig, Carolyn – Journal of Visual Impairment & Blindness, 2016
Telehealth clinical applications, which allow medical professionals to use telecommunications technologies to provide services to individuals remotely, continue to expand in areas such as low vision rehabilitation, where evaluations are provided to patients who live in rural areas. As with face-to-face low vision rehabilitation, the goal of…
Descriptors: Partial Vision, Telecommunications, Health Services, Clinical Diagnosis
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Coté, Carol A. – Journal of Occupational Therapy, Schools & Early Intervention, 2015
This article presents a model for understanding the development of visual perception from a dynamic systems theory perspective. It contrasts to a hierarchical or reductionist model that is often found in the occupational therapy literature. In this proposed model vision and ocular motor abilities are not foundational to perception, they are seen…
Descriptors: Visual Perception, Psychomotor Skills, Occupational Therapy, Attention
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Colicchia, Giuseppe; Hopf, Martin; Wiesner, Hartmut; Zollman, Dean – Physics Teacher, 2008
Eye aberrations are commonly corrected by lenses that restore vision by altering rays before they pass through the cornea. Some modern promoters claim that pinhole glasses are better than conventional lenses in correcting all kinds of refractive defects such as myopia (nearsighted), hyperopia (farsighted), astigmatisms, and presbyopia. Do pinhole…
Descriptors: Optics, Vision, Human Body, Science Experiments
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Colicchia, G.; Wiesner, H.; Waltner, C.; Zollman, D. – Physics Teacher, 2008
We describe a model of the human eye that incorporates a variable converging lens. The model can be easily constructed by students with low-cost materials. It shows in a comprehensible way the functionality of the eye's optical system. Images of near and far objects can be focused. Also, the defects of near and farsighted eyes can be demonstrated.
Descriptors: Physics, Biology, Anatomy, Human Body
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Schiferl, E. I. – Studies in Art Education: A Journal of Issues and Research in Art Education, 2008
Neuroscience research provides new models for understanding vision that challenge Betty Edwards' (1979, 1989, 1999) assumptions about right brain vision and common conventions of "realistic" drawing. Enlisting PET and fMRI technology, neuroscience documents how the brains of normal adults respond to images of recognizable objects and scenes.…
Descriptors: Diagnostic Tests, Eye Movements, Visual Perception, Infants
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Howard, Mary F.; Reggia, James A. – Brain and Cognition, 2007
The spatial frequency hypothesis contends that performance differences between the hemispheres on various visuospatial tasks are attributable to lateralized processing of the spatial frequency content of visual stimuli. Hellige has proposed that such lateralization could arise during infant development from the earlier maturation of the right…
Descriptors: Biology, Visual Stimuli, Child Development, Brain Hemisphere Functions
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Forster, Colin – Primary Science Review, 2006
The scientific model of how people see things is far removed from children's real-world experience. They know that light is needed in order to see an object, but may not know that light is reflected off the object and some of that light enters the eyes. In this article, the author explores children's understanding of reflection and how to develop…
Descriptors: Models, Scientific Concepts, Scientific Literacy, Scientific Principles
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Goldman, Martin – Physics Education, 1985
An elementary physical model of cone receptor cells is explained and applied to complexities of human color vision. One-, two-, and three-receptor systems are considered, with the later shown to be the best model for the human eye. Color blindness is also discussed. (DH)
Descriptors: College Science, Eyes, High Schools, Higher Education
La Brecque, Mort – Mosaic, 1984
To break the bottleneck inherent in today's linear computer architectures, parallel schemes (which allow computers to perform multiple tasks at one time) are being devised. Several of these schemes are described. Dataflow devices, parallel number-crunchers, programing languages, and a device based on a neurological model are among the areas…
Descriptors: Artificial Intelligence, Cognitive Processes, Computer Science, Computers
Vaughan, Christopher – Science News, 1988
Reviews research done on the nature of vision from a neurologic perspective. Proposes a multiplex filter model to explain patterns in the signals transmitted to the brain from the retina. Describes experiments done to test the model. (CW)
Descriptors: College Science, Eyes, Higher Education, Models
Cromie, William J.; Edson, Lee – Mosaic, 1984
Intelligent relationships with people are among the goals for tomorrow's computers. Knowledge-based systems used and being developed to achieve these goals are discussed. Automatic learning, producing inferences, parallelism, program languages, friendly machines, computer vision, and biomodels are among the topics considered. (JN)
Descriptors: Artificial Intelligence, Bionics, Cognitive Processes, Computer Oriented Programs
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Weems, Scott A.; Reggia, James A. – Brain and Language, 2006
The Wernicke-Lichtheim-Geschwind (WLG) theory of the neurobiological basis of language is of great historical importance, and it continues to exert a substantial influence on most contemporary theories of language in spite of its widely recognized limitations. Here, we suggest that neurobiologically grounded computational models based on the WLG…
Descriptors: Aphasia, Brain Hemisphere Functions, Word Recognition, Theories
National Association of State Directors of Special Education, Alexandria, VA. – 1997
This document reports on the purpose, design, implementation, and outcomes of a policy forum entitled "Training Educators To Work with Students Who Are Blind or Visually Impaired." Participants included representatives of universities, public schools, schools for the blind, organizations that work with this population, state departments of…
Descriptors: Blindness, Elementary Secondary Education, Higher Education, Inservice Teacher Education