Rules for biologically inspired adaptive network design.

Symplectic ID
46167
Source
PubMed
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Sunday, 19 July, 2026 - 00:36
DOI
10.1126/science.1177894
Publication Date
Friday, 22 January, 2010
First Page
439
Last Page
442
Keywords
Algorithms
Computer Simulation
Food
Models, Biological
Physarum polycephalum
Railroads
Systems Biology
Tokyo
Authors
Tero, A
Takagi, S
Saigusa, T
Ito, K
Bebber, DP
Fricker, MD
Yumiki, K
Kobayashi, R
Nakagaki, T
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Abstract
Transport networks are ubiquitous in both social and biological systems. Robust network performance involves a complex trade-off involving cost, transport efficiency, and fault tolerance. Biological networks have been honed by many cycles of evolutionary selection pressure and are likely to yield reasonable solutions to such combinatorial optimization problems. Furthermore, they develop without centralized control and may represent a readily scalable solution for growing networks in general. We show that the slime mold Physarum polycephalum forms networks with comparable efficiency, fault tolerance, and cost to those of real-world infrastructure networks--in this case, the Tokyo rail system. The core mechanisms needed for adaptive network formation can be captured in a biologically inspired mathematical model that may be useful to guide network construction in other domains.
Journal Title
Science
eISSN
1095-9203
Volume
327
Issue
5964
ID at Source
20093467
Publication Status
Published
Open access
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