A system outlook on the vision problem associated with observation of light flickering at the micro-saccades' frequency
Abstract
The flickering of the light of fluorescent lamps (FL), whose basic frequency, 100 Hz, is close to that of the micro-saccadic (the eye-muscles' tremor component) eye movement, is a severe problem for autists (autistic humans), a problem for newborn babies, for people after some traumatic accidents, and for some 10% of otherwise absolutely normal humans. Taking the line of a "system-terms" discussion of the vision-disturbance problem, the present work provides a constructive framework for investigating the problem. Using the results of light intensity measurements and some simple analytical models for the instantaneous light-intensity function, and analyzing the role of the coincidence (closeness) of the frequencies of the ripple of and the micro saccades, we suggest a block-diagram for the biological vision control system. We also show that a singularity of the waveform of, which is typical for most FL, may be important for brain control of the eye tremor. The latter conclusion is supported by a simulation of the image intensity on retina.
Keywords
Cite
@article{arxiv.1006.1093,
title = {A system outlook on the vision problem associated with observation of light flickering at the micro-saccades' frequency},
author = {Emanuel Gluskin and Yehuda Ben-Shimol and Frangiskos V. Topalis and Nikolas Bisketzis},
journal= {arXiv preprint arXiv:1006.1093},
year = {2010}
}
Comments
This is a slightly improved AL10173E (Phys Rev E) for which an encouraging report had been obtained but the research was not continued. In our system-theory approach, we assume that the autists' problem with the light flickering is associated with saccadic eye movement, while in normal humans the brain can control the phase, which decreases the stroboscopic effect. 31 pages, 6 figures