Biologically Inspired Adaptive Network Design (Q166983): Difference between revisions

From geokb
(‎Changed label, description and/or aliases in en, and other parts: modified description with assistance from Llama 3.1)
(‎Changed an Item: moved OpenAlex ID to its dedicated external ID datatype for consistency)
Property / same as
 
Property / same as: https://openalex.org/T13362 / rank
Normal rank
 
Property / OpenAlex ID
 
Property / OpenAlex ID: T13362 / rank
 
Normal rank

Revision as of 12:14, 8 September 2024

Inspired by living organisms like slime mold, this research explores how to design adaptive networks that can efficiently navigate and solve complex problems.
  • Physarum Polycephalum
  • Adaptive Transport Networks
  • Amoeboid Organism
  • Biological Computation
  • Optimal Transport Networks
  • Slime Mold
  • Network Formation
  • Cellular Automata Models
  • Behavioral Intelligence
  • Maze Solving
Language Label Description Also known as
English
Biologically Inspired Adaptive Network Design
Inspired by living organisms like slime mold, this research explores how to design adaptive networks that can efficiently navigate and solve complex problems.
  • Physarum Polycephalum
  • Adaptive Transport Networks
  • Amoeboid Organism
  • Biological Computation
  • Optimal Transport Networks
  • Slime Mold
  • Network Formation
  • Cellular Automata Models
  • Behavioral Intelligence
  • Maze Solving

Statements