DocumentCode :
963396
Title :
Theoretical Analysis of the Physiologic Mechanism of Luminous Variation in Eye-Brain System
Author :
Peretto, Lorenzo ; Pivello, Elisa ; Tinarelli, Roberto ; Emanuel, Alexander E.
Author_Institution :
Dipt. di Ingegneria Elettrica, Bologna Univ.
Volume :
56
Issue :
1
fYear :
2007
Firstpage :
164
Lastpage :
170
Abstract :
Flickermeters provide correct measurements only when the source of flicker is an incandescent filament lamp. Due to the rapid proliferation of modern lamps, there is the need to make available flickermeters that will quantify the degree of annoyance caused by any kind of lamp. It is widely accepted by the scientific community that the preferable way to reach this goal is to directly measure the emitted light instead of the voltage supplying the lamp itself (as implemented by the actual flickermeters). This paper presents the results of a study aimed at modeling the eye-brain chain in order to predict the response, and hence the sensation, of a human being to a given luminous stimulus. The model has been experimentally tested with the standard input signals recommended for testing existing flickermeters. Preliminary test results are encouraging. The authors believe that the presented theoretical model may serve as a kernel for defining a general mathematical model for predicting the response of the eye-brain system to generic luminous fluxes of known spectrum and modulation
Keywords :
brain; eye; physiology; vision; eye-brain chain; flickermeters; incandescent filament lamp; light emission; luminous flux; luminous variation; optic nerve; Fluorescent lamps; Helium; Humans; Kernel; Mathematical model; Optical modulation; Optical sensors; Predictive models; Testing; Voltage fluctuations; Brain; eye; flicker; flickermeter; optic nerve;
fLanguage :
English
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9456
Type :
jour
DOI :
10.1109/TIM.2006.887223
Filename :
4061098
Link To Document :
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