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Updated: May 12, 2026

In Vivo Calcium Imaging of Lateral-line Hair Cells in Larval Zebrafish
Published on: November 28, 2018
Imaging dipole flow sources using an artificial lateral-line system made of biomimetic hair flow sensors
Ahmad Dagamseh1, Remco Wiegerink, Theo Lammerink
1MESA Research Institute, University of Twente, Enschede, The Netherlands. a.m.k.dagamseh@yu.edu.jo
Abstract:
In Nature, fish have the ability to localize prey, school, navigate, etc., using the lateral-line organ. Artificial hair flow sensors arranged in a linear array shape (inspired by the lateral-line system (LSS) in fish) have been applied to measure airflow patterns at the sensor positions. Here, we take advantage of both biomimetic artificial hair-based flow sensors arranged as LSS and beamforming techniques to demonstrate dipole-source localization in air. Modelling and measurement results show the artificial lateral-line ability to image the position of dipole sources accurately with estimation error of less than 0.14 times the array length. This opens up possibilities for flow-based, near-field environment mapping that can be beneficial to, for example, biologists and robot guidance applications.

