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  1. In this article we discuss “cognitive capacity” (the number of items that can be held “in mind” simul taneously) and suggest that the limit is inherent to processing based on oscillatory brain rhythms, or “brain waves,” which may regulate neural communication.

  2. 26 Μαΐ 2016 · Working memory (WM) capacity increases throughout childhood and adolescence, and studying the neural changes associated with this development is one way to learn about the mechanisms of WM...

  3. 18 Οκτ 2019 · The current study aimed at investigating whether there exists a domain-general law that determines human working-memory capacity as a function of the number of items through which we can cycle in a constant time-window.

  4. 1 Ιαν 2015 · In this article we discuss “cognitive capacity” (the number of items that can be held “in mind” simultaneously) and suggest that the limit is inherent to processing based on oscillatory brain rhythms, or “brain waves,” which may regulate neural communication.

  5. 16 Μαρ 2023 · Storage capacity—the WETCOW model shows that a coherent memory state with predicted encoding parameters can be formed with as low as two nodes, thus potentially allows for significant increase...

  6. 17 Απρ 2024 · 17 April 2024. Coupled neural activity controls working memory in humans. How does the human brain temporarily store information without losing track of it? Neuroscientists have discovered that...

  7. 14 Μαρ 2018 · The speed of theta brain oscillatory activity is thought to play a key role in determining working memory (WM) capacity. Individual differences in the length of a theta cycle (ranging between 4 and 7 Hz) might determine how many gamma cycles (>30 Hz) can be nested into a theta wave.

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