Mental Operations on Long-term Memory do not Require a Sustained Increase in Working Memory Engagement

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Abstract

Working memory (WM) is often assumed to play a stronger role in mental operations than in pure storage. However, much of the evidence comes from tasks using novel stimuli requiring active maintenance. Everyday cognition, in contrast, often involves operating on information retrieved from long-term memory (LTM), which may not always require sustained WM storage. Moreover, prior evidence for enhanced WM involvement relies on univariate measures, which cannot separate procedural demands of operations from representational strength of operation-relevant items. Here, we used EEG to test how WM supports mental operations on LTM. First, participants studied color-position associations. Then, on each trial, a color cue prompted retrieval of its associated position, followed by a novel position. Across blocks, participants either performed a mental operation to compute the positions’ spatial midpoint or judged whether the probe matched one of the memory positions. Representations of task type and memory position were assessed using MVPA and inverted encoding models on alpha-band power, respectively. Task type was decoded throughout the trial, reflecting persistent task-set representations. In contrast, LTM position was represented in WM more strongly for integration than recognition early in the retention and operation periods, but these differences were transient. These findings challenge the view that mental operations inherently demand enhanced WM engagement: when information is available in LTM, increased WM involvement is transient, not sustained.

Significance Statement

Everyday activities, from planning routes to combining learned facts, require mentally operating on information stored in long-term memory. Yet how working memory, which is claimed to be central to mental operations, supports operations on existing long-term memories remains poorly understood. By dissociating item storage and task execution, this study shows that mental operations do not require persistently enhanced working memory engagement compared to recognition. Instead, working memory storage differences between tasks were transient, even though task-set representations remained distinct throughout. These findings suggest that WM can support complex mental operations on long-term memories without sustained increases beyond what is required for recognition.

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