Statistical mechanics of neocortical interactions: Path-integral evolution of short-term memory

Lester Ingber
Phys. Rev. E 49, 4652 – Published 1 May 1994
PDFExport Citation

Abstract

Previous papers in this series of statistical mechanics of neocortical interactions (SMNI) have detailed a development from the relatively microscopic scales of neurons up to the macroscopic scales as recorded by electroencephalography (EEG), requiring an intermediate mesocolumnar scale to be developed at the scale of minicolumns (≊102 neurons) and macrocolumns (≊105 neurons). Opportunity was taken to view SMNI as sets of statistical constraints, not necessarily describing specific synaptic or neuronal mechanisms, on neuronal interactions, on some aspects of short-term memory (STM), e.g., its capacity, stability, and duration. A recently developed c-language code, pathint, provides a non–Monte Carlo technique for calculating the dynamic evolution of arbitrary-dimension (subject to computer resources) nonlinear Lagrangians, such as derived for the two-variable SMNI problem. Here, pathint is used to explicitly detail the evolution of the SMNI constraints on STM.

  • Received 1 February 1994

DOI:https://doi.org/10.1103/PhysRevE.49.4652

©1994 American Physical Society

Authors & Affiliations

Lester Ingber

  • Lester Ingber Research, P.O. Box 857, McLean, Virginia 22101

References (Subscription Required)

Click to Expand
Issue

Vol. 49, Iss. 5 — May 1994

Reuse & Permissions
Access Options
Author publication services for translation and copyediting assistance advertisement

Authorization Required


×
×

Images

×

Sign up to receive regular email alerts from Physical Review E

Log In

Cancel
×

Search


Article Lookup

Paste a citation or DOI

Enter a citation
×