A mathematical model for adaptive transport network in path finding by true slime mold

Journal of Theoretical Biology 244 巻 4 号 553-564 頁 2007-02-21 発行
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タイトル ( eng )
A mathematical model for adaptive transport network in path finding by true slime mold
作成者
Tero Atsushi
Nakagaki Toshiyuki
収録物名
Journal of Theoretical Biology
244
4
開始ページ 553
終了ページ 564
抄録
We describe here a mathematical model of the adaptive dynamics of a transport network of the true slime mold Physarum polycephalum, an amoeboid organism that exhibits path-finding behavior in a maze. This organism possesses a network of tubular elements, by means of which nutrients and signals circulate through the plasmodium. When the organism is put in a maze, the network changes its shape to connect two exits by the shortest path. This process of path-finding is attributed to an underlying physiological mechanism: a tube thickens as the flux through it increases. The experimental evidence for this is, however, only qualitative. We constructed a mathematical model of the general form of the tube dynamics. Our model contains a key parameter corresponding to the extent of the feedback regulation between the thickness of a tube and the flux through it. We demonstrate the dependence of the behavior of the model on this parameter.
著者キーワード
Physarum polycephalum
mathematical modeling
natural adaptive networks
NDC分類
生物科学・一般生物学 [ 460 ]
言語
英語
資源タイプ 学術雑誌論文
出版者
Academic Press Inc Elsevier Science
発行日 2007-02-21
権利情報
Copyright (c) 2006 Elsevier Ltd
出版タイプ Author’s Original(十分な品質であるとして、著者から正式な査読に提出される版)
アクセス権 オープンアクセス
収録物識別子
[ISSN] 0022-5193
[DOI] 10.1016/j.jtbi.2006.07.015
[NCID] AA00708258
[DOI] http://dx.doi.org/10.1016/j.jtbi.2006.07.015