A novel approach to chemotaxis: Active particles guided by internal clocks

Motivated by the observation of non-exponential run-time distributions of bacterial swimmers, we propose a minimal phenomenological model for taxis of active particles whose motion is controlled by an internal clock. The ticking of the clock depends on an external concentration field, e.g., a chemic...

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Veröffentlicht in:Europhysics letters 2020-06, Vol.130 (6), p.68002
Hauptverfasser: Gómez Nava, L., Großmann, R., Hintsche, M., Beta, C., Peruani, F.
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Sprache:eng
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Zusammenfassung:Motivated by the observation of non-exponential run-time distributions of bacterial swimmers, we propose a minimal phenomenological model for taxis of active particles whose motion is controlled by an internal clock. The ticking of the clock depends on an external concentration field, e.g., a chemical substance. We demonstrate that these particles can detect concentration gradients and respond to them by moving up- or down-gradient depending on the clock design, albeit measurements of these fields are purely local in space and instantaneous in time. Altogether, our results open a new route in the study of directional navigation: we show that the use of a clock to control motility actions represents a generic and versatile toolbox to engineer behavioral responses to external cues, such as light, chemical, or temperature gradients.
ISSN:0295-5075
1286-4854
1286-4854
DOI:10.1209/0295-5075/130/68002