Quantification of information processing capacity in living brain as physical reservoir

N Ishida, TI Shiramatsu, T Kubota, D Akita… - Applied Physics …, 2023 - pubs.aip.org
The information processing capacity (IPC) measure is gaining traction as a means of
characterizing reservoir computing. This measure offers a comprehensive assessment of a …

Quantification of information processing capacity in living brain as physical reservoir

N Ishida, TI Shiramatsu, T Kubota, D Akita… - Applied Physics …, 2023 - pubs.aip.org
The information processing capacity (IPC) measure is gaining traction as a means of
characterizing reservoir computing. This measure offers a comprehensive assessment of a …

[PDF][PDF] Quantification of information processing capacity in living brain as physical reservoir

N Ishida, TI Shiramatsu, T Kubota, D Akita… - ne.tu-tokyo.ac.jp
The information processing capacity (IPC) measure is gaining traction as a means of
characterizing reservoir computing. This measure offers a comprehensive assessment of a …

Quantification of information processing capacity in living brain as physical reservoir

N Ishida, TI Shiramatsu, T Kubota… - Applied Physics …, 2023 - ui.adsabs.harvard.edu
The information processing capacity (IPC) measure is gaining traction as a means of
characterizing reservoir computing. This measure offers a comprehensive assessment of a …

[PDF][PDF] Quantification of information processing capacity in living brain as physical reservoir

N Ishida, TI Shiramatsu, T Kubota, D Akita… - ne.tu-tokyo.ac.jp
The information processing capacity (IPC) measure is gaining traction as a means of
characterizing reservoir computing. This measure offers a comprehensive assessment of a …