Difference between revisions of "BiologicalArchitectureGlobalCircuits"

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== Overview ==
 
== Overview ==
  
TBD
+
Major biological circuits are:
 +
* cerebellar learning
 +
 
 +
== Cerebellar Learning ==
 +
 
 +
Further explanation is genuine outcome of aHuman research (C) and not repsesented elsewhere.
 +
Please mention origin if copy.
 +
 
 +
*essence of architecture*:
 +
* cerebellar complex produces information about which muscle executions are wrong and need to be inhibited
 +
* it stores actual muscle execution patterns associated with certain layer of execution, many-to-many (all muscles to all layer streams)
 +
* it inhibits corresponding layer of execution in streams related to items, not belonging to stored patterns
 +
* conscious execution causes cerebellum to learn patterns, automatic execution leads to using stored patterns
 +
 
 +
*layers of execution are:*
 +
* execution of extensors by vestibular inputs
 +
* subcortical execution of flexors by somatic inputs
 +
* cortical execution of flexors by cortical patterns

Revision as of 12:42, 15 November 2015

Biological Life Research

Home -> BiologicalLifeResearch -> BiologicalArchitecture -> BiologicalArchitectureGlobalCircuits

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This page covers biological coordination approach of specific circuts and complexes.

Overview

Major biological circuits are:

  • cerebellar learning

Cerebellar Learning

Further explanation is genuine outcome of aHuman research (C) and not repsesented elsewhere. Please mention origin if copy.

  • essence of architecture*:
  • cerebellar complex produces information about which muscle executions are wrong and need to be inhibited
  • it stores actual muscle execution patterns associated with certain layer of execution, many-to-many (all muscles to all layer streams)
  • it inhibits corresponding layer of execution in streams related to items, not belonging to stored patterns
  • conscious execution causes cerebellum to learn patterns, automatic execution leads to using stored patterns
  • layers of execution are:*
  • execution of extensors by vestibular inputs
  • subcortical execution of flexors by somatic inputs
  • cortical execution of flexors by cortical patterns