bioRxiv · 10.1101/2022.07.05.498856
Learning alters neural activity to simultaneously support memory and action
Abstract
How are we able to learn new behaviors without disrupting previously learned ones? To understand how the brain achieves this, we used a brain-computer interface (BCI) learning paradigm, which enables us to detect the presence of a memory of one behavior while performing another. We found that learning to use a new BCI map altered the neural activity that monkeys produced when they returned to using a familiar BCI map, in a way that was specific to the learning experience. That is, learning left a "memory trace." This memory trace co-existed with proficient performance under the familiar map, primarily by altering dimensions of neural activity that did not impact behavior. Such a memory trace could provide the neural underpinning for the joint learning of multiple motor behaviors without interference.
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Losey, D. M., Hennig, J. A., Oby, E. R., Golub, M. D., Sadlter, P. T., Quick, K. M., Ryu, S. I., Tyler-Kabara, E. C., Batista, A. P., Yu, B. M., Chase, S. M.. 2022-07-06. Learning alters neural activity to simultaneously support memory and action. https://doi.org/10.1101/2022.07.05.498856
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