SummaryCortical motion analysis continuously encodes image velocity but might also be used to predict future patterns of sensory input along the motion path. We asked whether this predictive aspect of motion is exploited by the human visual system. Targets can be more easily detected at the leading as compared to the trailing edge of motion [1], but this effect has been attributed to a nonspecific boost in contrast gain at the leading edge, linked to motion-induced shifts in spatial position [1–4]. Here we show that the detectability of a local sinusoidal target presented at the ends of a region containing motion is phase dependent at the leading edge, but not at the trailing edge. These two observations rule out a simple gain control mecha...
Human vision supports prediction for moving stimuli. Here we take an individual differences approach...
The current study investigates if early visual cortical areas, V1, V2 and V3, use predictive coding ...
The current study investigates if early visual cortical areas, V1, V2 and V3, use predictive coding ...
Cortical motion analysis continuously encodes image velocity but might also be used to predict futur...
Cortical motion analysis continuously encodes image velocity but might also be used to predict futur...
AbstractRetinal motion can modulate visual sensitivity. For instance, low contrast drifting waveform...
AbstractRetinal motion can modulate visual sensitivity. For instance, low contrast drifting waveform...
Retinal motion can modulate visual sensitivity. For instance, low contrast drifting waveforms (targe...
Retinal motion can modulate visual sensitivity. For instance, low contrast drifting waveforms (targe...
Retinal motion can modulate visual sensitivity. For instance, low contrast drifting waveforms (targe...
Retinal motion can modulate visual sensitivity. For instance, low contrast drifting waveforms (targe...
Recently, several studies showed that fMRI BOLD responses to moving random dot stimuli are enhanced ...
Motion dictates that the spatial structure of natural image sequences is highly structured over time...
Human vision supports prediction for moving stimuli. Here we take an individual differences approach...
Human vision supports prediction for moving stimuli. Here we take an individual differences approach...
Human vision supports prediction for moving stimuli. Here we take an individual differences approach...
The current study investigates if early visual cortical areas, V1, V2 and V3, use predictive coding ...
The current study investigates if early visual cortical areas, V1, V2 and V3, use predictive coding ...
Cortical motion analysis continuously encodes image velocity but might also be used to predict futur...
Cortical motion analysis continuously encodes image velocity but might also be used to predict futur...
AbstractRetinal motion can modulate visual sensitivity. For instance, low contrast drifting waveform...
AbstractRetinal motion can modulate visual sensitivity. For instance, low contrast drifting waveform...
Retinal motion can modulate visual sensitivity. For instance, low contrast drifting waveforms (targe...
Retinal motion can modulate visual sensitivity. For instance, low contrast drifting waveforms (targe...
Retinal motion can modulate visual sensitivity. For instance, low contrast drifting waveforms (targe...
Retinal motion can modulate visual sensitivity. For instance, low contrast drifting waveforms (targe...
Recently, several studies showed that fMRI BOLD responses to moving random dot stimuli are enhanced ...
Motion dictates that the spatial structure of natural image sequences is highly structured over time...
Human vision supports prediction for moving stimuli. Here we take an individual differences approach...
Human vision supports prediction for moving stimuli. Here we take an individual differences approach...
Human vision supports prediction for moving stimuli. Here we take an individual differences approach...
The current study investigates if early visual cortical areas, V1, V2 and V3, use predictive coding ...
The current study investigates if early visual cortical areas, V1, V2 and V3, use predictive coding ...