Differentiation of saccadic eye movement signals
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Abstract
Saccadic electrooculograms are discrete biosignals that contain the instantaneous angular position of the human eyes as a response to saccadic visual stimuli. These signals are essential to monitor and evaluate several neurological diseases, such as Spinocerebellar Ataxia type 2 (SCA2). For this, biomarkers such as peak velocity, latency and duration are computed. To compute these biomarkers, we need to obtain the velocity profile of the signals using numerical differentiation methods. These methods are affected by the noise present in the electrooculograms, specially in subjects that suffer neurological diseases. This noise complicates the comparison of the differentiation methods using real saccadic signals because of the impossibility of establishing exact saccadic onset and offset points. In this work, we evaluate 16 differentiation methods by the design of an experiment that uses synthetic saccadic electrooculograms generated from parametric models of both healthy subjects and subjects suffering from Spinocerebellar Ataxia type 2 (SCA2). For these synthetic electrooculograms the exact velocity profile is known, hence we can use them as a reference for comparison and error computing for the tasks of saccade identification and saccade biomarker computing. Finally, we identify the best fitting method or methods for each evaluated task.
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The data used in our research are synthetic signals generated using parameters computed from a population of real subjects. Is not possible to use these signals to identify any individual. All the raw data and experimental software routines are freely available at https://github.com/idertator/saccdiff (accessed on 23 July 2021). The software routines included is used to generate figures and tables used in the analysis of our research.
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Becerra-García, Roberto A., Rodolfo García-Bermúdez, and Gonzalo Joya. 2021. "Differentiation of Saccadic Eye Movement Signals" Sensors 21, no. 15: 5021. https://doi.org/10.3390/s21155021
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