Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10345423 | Computer Methods and Programs in Biomedicine | 2013 | 17 Pages |
Abstract
The dynamic, accurate measurement of pupil size is extremely valuable for studying a large number of neuronal functions and dysfunctions. Despite tremendous and well-documented progress in image processing techniques for estimating pupil parameters, comparatively little work has been reported on practical hardware issues involved in designing image acquisition systems for pupil analysis. Here, we describe and validate the basic features of such a system which is based on a relatively compact, off-the-shelf, low-cost FireWire digital camera. We successfully implemented two configurable modes of video record: a continuous mode and an event-triggered mode. The interoperability of the whole system is guaranteed by a set of modular software components hosted on a personal computer and written in Labview. An offline analysis suite of image processing algorithms for automatically estimating pupillary and eyelid parameters were assessed using data obtained in human subjects. Our benchmark results show that such measurements can be done in a temporally precise way at a sampling frequency of up to 120Â Hz and with an estimated maximum spatial resolution of 0.03Â mm. Our software is made available free of charge to the scientific community, allowing end users to either use the software as is or modify it to suit their own needs.
Keywords
Related Topics
Physical Sciences and Engineering
Computer Science
Computer Science (General)
Authors
John Kennedy Schettino de Souza, Marcos Antonio da Silva Pinto, Pedro Gabrielle Vieira, Jerome Baron, Carlos Julio Tierra-Criollo,