When flying or swimming, animals must adjust their own movement to compensate for displacements induced by the flow of the surrounding air or water(1). These flow-induced displacements can most easily be detected as visual whole-field motion with respect to the animal's frame of reference(2). Despite this, many aquatic animals consistently orient and swim against oncoming flows (a behaviour known as rheotaxis) even in the absence of visual cues(3,4). How animals achieve this task, and its underlying sensory basis, is still unknown. Here we show that, in the absence of visual information, larval zebrafish (Danio rerio) perform rheotaxis by using flow velocity gradients as navigational cues. We present behavioural data that support a novel al...
Animals benefit from knowing if and how they are moving. Across the animal kingdom, sensory informat...
Rheotropism (the ability to detect and respond to a current) and rheotaxis (deliberate orientation r...
Fish have evolved diverse and robust locomotive strategies to swim efficiently in complex fluid envi...
When flying or swimming, animals must adjust their own movement to compensate for displacements indu...
Understanding how animals navigate complex environments is a fundamental challenge in biology and a ...
Zebrafish larvae show a robust behavior called rheotaxis, whereby they use their lateral line system...
<p>A. Characteristic example of a larva turning its body upstream to align with a current created by...
To detect and avoid collisions, animals need to perceive and control the distance and the speed with...
The lateral line sensory system, found in fish and amphibians, is used in prey detection, predator a...
Animals have a remarkable ability to use local cues to orient in space in the absence of a panoramic...
<div><p>The lateral line sensory system, found in fish and amphibians, is used in prey detection, pr...
Animals have a remarkable ability to use local cues to orient in space in the absence of a panoramic...
Larval zebrafish (Danio rerio) have become favored subjects for studying the neural bases of behavio...
Fish larvae, like many adult fish, swim by undulating their body. However, their body size and swimm...
Fishes suspended in water are subject to the complex nature of three dimensional flows. Often, these...
Animals benefit from knowing if and how they are moving. Across the animal kingdom, sensory informat...
Rheotropism (the ability to detect and respond to a current) and rheotaxis (deliberate orientation r...
Fish have evolved diverse and robust locomotive strategies to swim efficiently in complex fluid envi...
When flying or swimming, animals must adjust their own movement to compensate for displacements indu...
Understanding how animals navigate complex environments is a fundamental challenge in biology and a ...
Zebrafish larvae show a robust behavior called rheotaxis, whereby they use their lateral line system...
<p>A. Characteristic example of a larva turning its body upstream to align with a current created by...
To detect and avoid collisions, animals need to perceive and control the distance and the speed with...
The lateral line sensory system, found in fish and amphibians, is used in prey detection, predator a...
Animals have a remarkable ability to use local cues to orient in space in the absence of a panoramic...
<div><p>The lateral line sensory system, found in fish and amphibians, is used in prey detection, pr...
Animals have a remarkable ability to use local cues to orient in space in the absence of a panoramic...
Larval zebrafish (Danio rerio) have become favored subjects for studying the neural bases of behavio...
Fish larvae, like many adult fish, swim by undulating their body. However, their body size and swimm...
Fishes suspended in water are subject to the complex nature of three dimensional flows. Often, these...
Animals benefit from knowing if and how they are moving. Across the animal kingdom, sensory informat...
Rheotropism (the ability to detect and respond to a current) and rheotaxis (deliberate orientation r...
Fish have evolved diverse and robust locomotive strategies to swim efficiently in complex fluid envi...