Vector Field Embryogeny

Steiner T, Jin Y, Sendhoff B (2009)
PLoS ONE 4(12): e8177.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Autor*in
Steiner, Till; Jin, YaochuUniBi ; Sendhoff, Bernhard
Abstract / Bemerkung
We present a novel approach toward evolving artificial embryogenies, which omits the graph representation of gene regulatory networks and directly shapes the dynamics of a system, i.e., its phase space. We show the feasibility of the approach by evolving cellular differentiation, a basic feature of both biological and artificial development. We demonstrate how a spatial hierarchy formulation can be integrated into the framework and investigate the evolution of a hierarchical system. Finally, we show how the framework allows the investigation of allometry, a biological phenomenon, and its role for evolution. We find that direct evolution of allometric change, i.e., the evolutionary adaptation of the speed of system states on transient trajectories in phase space, is advantageous for a cellular differentiation task.
Erscheinungsjahr
2009
Zeitschriftentitel
PLoS ONE
Band
4
Ausgabe
12
Art.-Nr.
e8177
eISSN
1932-6203
Page URI
https://pub.uni-bielefeld.de/record/2978634

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Steiner T, Jin Y, Sendhoff B. Vector Field Embryogeny. PLoS ONE. 2009;4(12): e8177.
Steiner, T., Jin, Y., & Sendhoff, B. (2009). Vector Field Embryogeny. PLoS ONE, 4(12), e8177. https://doi.org/10.1371/journal.pone.0008177
Steiner, Till, Jin, Yaochu, and Sendhoff, Bernhard. 2009. “Vector Field Embryogeny”. PLoS ONE 4 (12): e8177.
Steiner, T., Jin, Y., and Sendhoff, B. (2009). Vector Field Embryogeny. PLoS ONE 4:e8177.
Steiner, T., Jin, Y., & Sendhoff, B., 2009. Vector Field Embryogeny. PLoS ONE, 4(12): e8177.
T. Steiner, Y. Jin, and B. Sendhoff, “Vector Field Embryogeny”, PLoS ONE, vol. 4, 2009, : e8177.
Steiner, T., Jin, Y., Sendhoff, B.: Vector Field Embryogeny. PLoS ONE. 4, : e8177 (2009).
Steiner, Till, Jin, Yaochu, and Sendhoff, Bernhard. “Vector Field Embryogeny”. PLoS ONE 4.12 (2009): e8177.
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2023-07-13T13:15:01Z
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