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Taub, K.

Publications and source records attributed to Taub, K..

3 recordsLinked to original sources

It's all about location: reliance on spatial rather than visual context when trying to remember

When people try to remember visual information, they often move their eyes similarly to encoding. The mechanism underlying this behavior has not yet been fully understood. Specifically, it is unclear whether the purpose of this behavior is to recreate the visual input produced during encoding, or the motor and spatial elements of encoding. In this experiment, participants (N=40) encoded pairs of greyscale objects, overlaying colored squares. During test, participants were asked about objects orientation, while presented with squares of the same colors, either at the same location (controlled trials) or switched in their locations (test trials) relative to encoding. Results show that during test trials, participants tended to gaze at the square appearing at the location where the remembered object was previously presented, rather than on the square of the same color. This indicates a superiority of motor and spatial elements of eye movements rather than near-peripheral visual cues.

neuroscience↗

The contribution of eye movements to memory retrieval depends on the visual input

When attempting to recall previously seen visual information, people often move their eyes to the same locations where they initially viewed it. These eye-movements are thought to serve a role in enhancing memory retrieval, although the exact mechanism underlying this effect is yet unknown. To investigate this link between eye-movements and memory, we conducted an experiment with 80 adult participants. Participants were asked to perform a memory retrieval task, while viewing either the same visual context as during encoding or an altered one. Results showed that the benefit of eye movements to memory retrieval was dependent on the visual input. This suggests that the contribution of eye-movements to memory may not be from the motor behavior itself, but from its visual consequences. Our findings thus challenge the hypothesis that eye movements act as a motor retrieval cue and support the view that their visual consequences act as a sensory one. Statement of RelevanceAn intriguing question in cognition is how humans encode memorized material and what helps them retrieve it. It is known that when an action or stimulus is repeated both when information is encoded and when it is retrieved, this can act as a retrieval cue and enhance memory performance. It is also known that people tend to reenact the same eye movements during retrieval as they did during encoding, and this behavior is associated with higher memory performance. This has led to the hypothesis that eye movements act as a retrieval cue. However, we challenge this hypothesis by showing that the visual consequences of eye movements, rather than the motor action that accompanies them, is the key factor for memory enhancement. Understanding the factors that influence memory provides crucial insight into the relationship between external behaviors and internal memory processes, leading to significant implications for the educational and clinical settings.

neuroscience↗

What makes eye movements effective retrieval cue: The contribution of visual and the motor components to memory performance

During memory retrieval, people tend to reenact the same eye movements performed when memorized items were first displayed and to gaze at similar locations. This was hypothesized to reflect the role of eye movements as retrieval cues. However, it is unknown what is it about eye movements that makes them effective retrieval cues. Here, we examine, for the first time, the individual and combined contributions of the visual and the motor components of eye movements to memory retrieval. Results (N=70) revealed a non-additive benefit of both components of eye movements to memory performance. Additionally, we found that individuals who gained from one component, were more likely to gain from the other as well. Together, these findings unravel the central role of eye movements in episodic memory; they show how the visual and motor components are integrated into a single effective memory retrieval cue and how this integration varies among individuals.

neuroscience↗