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For over a century, scientists have sought to understand how fish orient against an incoming flow, even without visual and flow cues. Here, we elucidate a potential hydrodynamic mechanism of rheotaxis through the study of the bidirectional coupling between fish and the surrounding fluid. By modeling a fish as a vortex dipole in an infinite channel with an imposed background flow, we establish a planar dynamical system for the cross-stream coordinate and orientation. The system dynamics captures the existence of a critical flow speed for fish to successfully orient while performing cross-stream, periodic sweeping movements. Model predictions are examined in the context of experimental observations in the literature on the rheotactic behavior of fish deprived of visual and lateral line cues. The crucial role of bidirectional hydrodynamic interactions unveiled by this model points at an overlooked limitation of existing experimental paradigms to study rheotaxis in the laboratory.
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http://dx.doi.org/10.7554/eLife.75225 | DOI Listing |
Dermatitis
September 2025
From the Biosanitary Research Institute of Granada (ibs.GRANADA), Granada, Spain.
Atopic dermatitis (AD) is a common chronic inflammatory skin condition influenced by genetic and environmental factors. The role of lifestyle on AD remains unclear. This study explores the association between adherence to the Mediterranean diet (MD), physical activity (PA) levels, and AD severity.
View Article and Find Full Text PDFJ Acoust Soc Am
September 2025
Centre National de la Recherche Scientifique, Centre de Recherche en Automatique de Nancy, Université de Lorraine, Nancy, F-54000, France.
Acoustic particle motion is the primary cue for fish hearing and a vector quantity that contains polarization information (including directionality) relevant to the directional hearing abilities of fishes. Polarization metrics, including ellipse orientation angle, ellipticity angle, and degree of polarization, have been recently applied to describe particle motion polarization in physical acoustical oceanography studies and have yet to be applied to in situ biological signals. This study harnessed data from a compact orthogonal hydrophone array deployed on the seafloor offshore of Florida (part of the Atlantic Deepwater Ecosystem Observatory Network) to investigate particle motion polarization properties of unidentified acoustic fish signals relative to ambient and ship noise.
View Article and Find Full Text PDFJ Vis Exp
August 2025
Department of Biology, University of Mississippi;
Embryo mounting is one of the technical challenges researchers encounter when undertaking an imaging project. Embryos need to be oriented in a reproducible manner such that the tissue of interest is accessible to a microscope objective for the entire imaging period. To overcome this challenge, researchers can embed embryos in viscous media or create specialized dishes and casts to hold embryos in a desired orientation during imaging.
View Article and Find Full Text PDFJ Morphol
September 2025
Department of Mechanical Engineering, Lehigh University, Bethlehem, Pennsylvania, USA.
The cownose ray (Rhinoptera bonasus) and spotted eagle ray (Aetobatus narinari) are benthopelagic myliobatids that forage on the ocean bottom. To sense prey under the bottom substrate, cownose rays deploy two depressible cephalic lobes, which are anterior modifications of the pectoral fins. Spotted eagle rays have a delta-shaped flattened rostrum from two fused cephalic lobes that is angled down in contact with the substrate when foraging.
View Article and Find Full Text PDFAnimals (Basel)
August 2025
College of Information and Intelligence, Hunan Agricultural University, Changsha 410128, China.
The precise, non-destructive monitoring of fish length and weight is a core technology for advancing intelligent aquaculture. However, this field faces dual challenges: traditional contact-based measurements induce stress and yield loss. In addition, existing computer vision methods are hindered by prediction biases from imbalanced data and the deployment bottleneck of balancing high accuracy with model lightweighting.
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