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Showing 1 - 4 of 4 matches in All Departments
In this book, leading scientists in the fields of sensory biology, neuroscience, physics and engineering explore the basic operational principles and behavioral uses of flow sensing in animals and how they might be applied to engineering applications such as autonomous control of underwater or aerial vehicles. Although humans possess no flow-sensing abilities, countless aquatic (e.g. fish, cephalopods and seals), terrestrial (e.g. crickets and spiders) and aerial (e.g. bats) animals have flow sensing abilities that underlie remarkable behavioral feats.These include the ability to follow silent hydrodynamic trails long after the trailblazer has left the scene, to form hydrodynamic images of their environment in total darkness, and to swim or fly efficiently and effortlessly in the face of destabilizing currents and winds. "
In this book, leading scientists in the fields of sensory biology, neuroscience, physics and engineering explore the basic operational principles and behavioral uses of flow sensing in animals and how they might be applied to engineering applications such as autonomous control of underwater or aerial vehicles. Although humans possess no flow-sensing abilities, countless aquatic (e.g. fish, cephalopods and seals), terrestrial (e.g. crickets and spiders) and aerial (e.g. bats) animals have flow sensing abilities that underlie remarkable behavioral feats. These include the ability to follow silent hydrodynamic trails long after the trailblazer has left the scene, to form hydrodynamic images of their environment in total darkness, and to swim or fly efficiently and effortlessly in the face of destabilizing currents and winds.
Fish comprise more than 50% of all living vertebrates and are found
in a wide range of highly diverse habitats like the deep sea, the
shoreline, tide pools, tropical streams and sweetwater ponds.
During evolution, the senses of fish have adapted to the physical
conditions of the environment in which different species live. As a
result, the senses of fish exhibit a remarkable diversity that
allows different species to deal with the physical constraints
imposed by their habitat. In addition, fish have evolved several
new' sensory systems that are unique to the aquatic environment.
Fish comprise more than 50% of all living vertebrates and are found
in a wide range of highly diverse habitats like the deep sea, the
shoreline, tide pools, tropical streams and sweetwater ponds.
During evolution, the senses of fish have adapted to the physical
conditions of the environment in which different species live. As a
result, the senses of fish exhibit a remarkable diversity that
allows different species to deal with the physical constraints
imposed by their habitat. In addition, fish have evolved several
new' sensory systems that are unique to the aquatic environment.
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