Marine microorganisms must cope with complex flow patterns and even turbulence as they navigate the ocean. To survive they must avoid predation and find efficient energy sources. A major difficulty in analysing possible survival strategies is that the time series of environmental cues in non-linear flow is complex, and that it depends on the decisions taken by the organism. One way of determining and evaluating optimal strategies is reinforcement learning. In a proof-of-principle study, Colabrese et al. [Phys. Rev. Lett. (2017)] used this method to find out how a micro-swimmer in a vortex flow can navigate towards the surface as quickly as possible, given a fixed swimming speed. The swimmer measured its instantaneous swimming direction and ...
We apply a reinforcement learning algorithm to show how smart particles can learn approximately opti...
Author Posting. © American Society of Limnology and Oceanography, 2006. This is the author's versio...
Zooplankton swimming near the substratum experience boundary layer flow that is characterized by ste...
AbstractMost bacteria in the ocean can be motile. Chemotaxis allows bacteria to detect nutrient grad...
Using a multiple-scale analysis, Walker et al. (J. Fluid Mech., vol. 944, 2022, R2) obtain the long-...
Biophysical models are well-used tools for predicting the dispersal of marine larvae. Larval behavio...
AbstractBacteria use different motility patterns to navigate and explore natural habitats. However, ...
Author Posting. © The Author(s), 2014. This is the author's version of the work. It is posted here ...
It has been shown that a nanoliter chamber separated by a wall of asymmetric obstacles can lead to a...
Locomotion is widely observed in life at micrometric scales and is exhibited by many eukaryotic unic...
In marine plankton, many swimming species can perceive their environment with flow sensors. Can they...
Living microorganisms are capable of a tactic response to external stimuli by swimming toward or aw...
We study the chemotaxis of a population of genetically identical swimming bacteria undergoing run an...
18 pages, 14 figuresThis work aims at finding optimal navigation policies for thin, deformable micro...
Smart active particles can acquire some limited knowledge of the fluid environment from simple mecha...
We apply a reinforcement learning algorithm to show how smart particles can learn approximately opti...
Author Posting. © American Society of Limnology and Oceanography, 2006. This is the author's versio...
Zooplankton swimming near the substratum experience boundary layer flow that is characterized by ste...
AbstractMost bacteria in the ocean can be motile. Chemotaxis allows bacteria to detect nutrient grad...
Using a multiple-scale analysis, Walker et al. (J. Fluid Mech., vol. 944, 2022, R2) obtain the long-...
Biophysical models are well-used tools for predicting the dispersal of marine larvae. Larval behavio...
AbstractBacteria use different motility patterns to navigate and explore natural habitats. However, ...
Author Posting. © The Author(s), 2014. This is the author's version of the work. It is posted here ...
It has been shown that a nanoliter chamber separated by a wall of asymmetric obstacles can lead to a...
Locomotion is widely observed in life at micrometric scales and is exhibited by many eukaryotic unic...
In marine plankton, many swimming species can perceive their environment with flow sensors. Can they...
Living microorganisms are capable of a tactic response to external stimuli by swimming toward or aw...
We study the chemotaxis of a population of genetically identical swimming bacteria undergoing run an...
18 pages, 14 figuresThis work aims at finding optimal navigation policies for thin, deformable micro...
Smart active particles can acquire some limited knowledge of the fluid environment from simple mecha...
We apply a reinforcement learning algorithm to show how smart particles can learn approximately opti...
Author Posting. © American Society of Limnology and Oceanography, 2006. This is the author's versio...
Zooplankton swimming near the substratum experience boundary layer flow that is characterized by ste...