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Updated: Jun 1, 2026

Using Saccadometry with Deep Brain Stimulation to Study Normal and Pathological Brain Function
Published on: July 14, 2016
Spatiotemporal effects of microsaccades on population activity in the visual cortex of monkeys during fixation
Elhanan Meirovithz1, Inbal Ayzenshtat, Uri Werner-Reiss
1Gonda Multidisciplinary Brain Research Center, Bar-Ilan University, 52900 Ramat Gan, Israel.
Abstract:
During visual fixation, the eyes make fast involuntary miniature movements known as microsaccades (MSs). When MSs are executed they displace the visual image over the retina and can generate neural modulation along the visual pathway. However, the effects of MSs on neural activity have substantial variability and are not fully understood. By utilizing voltage-sensitive dye imaging, we imaged the spatiotemporal patterns induced by MSs in V1 and V2 areas of behaving monkeys while they were fixating and presented with visual stimuli. We then investigated the neuronal modulation dynamics, induced by MSs, under different visual stimulation. MSs induced monophasic or biphasic neural responses depending on stimulus size. These neural responses were accompanied by different spatiotemporal patterns of synchronization. Finally, we show that a local patch of population response evoked by a small stimulus was clearly shifted over the V1 retinotopic map after each MS. Our results demonstrate the lack of visual stability in V1 following MSs and help clarify the substantial variability reported for MSs effects on neuronal responses. The observed neural effects suggest that MSs are associated with a continuum of neuronal responses in V1 area reflecting diverse spatiotemporal dynamics.
Insights
Eye microsaccades (MSs) displace retinal images, causing variable neural modulation. This study reveals MSs induce stimulus-dependent responses and shifts in V1 visual maps, clarifying their complex effects on neural activity.
Area of Science:
- Neuroscience
- Visual Processing
- Retinal Dynamics
Background:
- Microsaccades (MSs) are small, involuntary eye movements during fixation.
- MSs displace the retinal image, potentially modulating neural activity.
- The precise effects of MSs on visual cortex activity remain unclear.
Purpose of the Study:
- To investigate the spatiotemporal neural modulation induced by MSs in V1 and V2.
- To examine how different visual stimuli influence MS-evoked neural dynamics.
- To clarify the variability in MS effects on neuronal responses.
Main Methods:
- Voltage-sensitive dye imaging in behaving monkeys.
- Recording neural activity in V1 and V2 during visual fixation and stimulation.
- Analysis of spatiotemporal patterns and synchronization of neural responses.
Main Results:
- MSs evoked monophasic or biphasic neural responses, varying with stimulus size.
- Neural responses were associated with distinct spatiotemporal synchronization patterns.
- MSs caused shifts in V1 population responses relative to the retinotopic map.
Conclusions:
- MSs disrupt visual stability in V1, contributing to response variability.
- MS-induced neural effects exhibit diverse spatiotemporal dynamics.
- Findings clarify the complex role of MSs in visual processing.
