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Development of a transformation model to analyze horizontal saccadic velocity using electrooculography: a pilot feasibility study
- Kim, Da Young;
- Kim, Tae-Joon;
- Kim, Yunsoo;
- Yoo, Jisu;
- Jeong, JaeWook;
- ... Lee, Sun-Uk;
- 외 1명
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Introduction Saccadic eye movements are established biomarkers in neuroscience and clinical neurology, with video-oculography (VOG) serving as the gold standard for measurement. However, the high cost, bulky equipment, and poor portability of VOG systems restrict their clinical utility. Electrooculography (EOG) provides a practical alternative, but quantitative conversion of EOG-derived measurements into VOG-equivalent values remains insufficiently established. This study aimed to develop and validate a mathematically derived transformation model for estimating VOG-equivalent horizontal saccadic velocities from EOG recordings.Methods Four healthy adults underwent simultaneous EOG and VOG recordings while performing controlled horizontal gaze shifts. Based on a current-source model of the corneal potential, an analytical relationship between EOG voltage velocity and angular eye velocity was derived. Multiple high-pass filter settings were systematically evaluated to identify optimal signal-processing conditions. Transformation equations were derived from the pooled horizontal-saccade dataset and further evaluated using leave-one-subject-out (LOSO) analysis.Results The theoretical model predicted a linear relationship between EOG- and VOG-derived saccadic velocities. Among the tested filter settings, a 0.3 Hz high-pass combined with a 35 Hz low-pass filter yielded the best overall agreement. Under this condition, the final transformation model produced a common slope coefficient of 0.146 degrees/mu V for both movement directions, with an additional direction-specific intercept of -82.37 degrees/s for rightward saccades. Converted EOG-derived velocities showed no significant differences from measured VOG-derived velocities. LOSO validation demonstrated stable transformation coefficients (mean slope = 0.147 degrees/mu V, mean intercept = -82.47 degrees/s) and maintained agreement across individuals.Conclusion A biophysically derived and experimentally validated EOG-to-VOG transformation model can provide accurate estimates of horizontal saccadic velocity under appropriate filtering conditions. These findings support the feasibility of quantitative saccadic analysis using EOG, providing a practical alternative to VOG.
키워드
- 제목
- Development of a transformation model to analyze horizontal saccadic velocity using electrooculography: a pilot feasibility study
- 저자
- Kim, Da Young; Kim, Tae-Joon; Kim, Yunsoo; Yoo, Jisu; Jeong, JaeWook; Lee, Sun-Uk; Choi, Jun Young
- 발행일
- 2026-07
- 유형
- Article
- 권
- 20
- 언어
- ENG
- 출판사
- Frontiers Media S.A.
- 발행국가
- 스위스
- ISSN
- E 1662-453X
P 1662-4548