Small undulatory swimmers such as larval zebrafish experience both inertial and viscous forces, the relative importance of which is indicated by the Reynolds number (Re). Re is proportional to swimming speed (vswim) and body length; faster swimming reduces the relative effect of viscous forces. Compared with adults, larval fish experience relatively high (mainly viscous) drag during cyclic swimming. To enhance thrust to an equally high level, they must employ a high product of tail-beat frequency and (peak-to-peak) amplitude fAtail, resulting in a relatively high fAtail/v̅swim ratio (Strouhal number, St), and implying relatively high lateral momentum shedding and low propulsive efficiency. Using kinematic and inverse-dynamics analyses, we s...
Most fish species use fast starts to escape from predators. Zebrafish larvae perform effective fast ...
In the last decades, it became clear that not only molecular signals but also mechanical forces are...
In the last decades, it became clear that not only molecular signals but also mechanical forces are ...
Small undulatory swimmers such as larval zebrafish experience both inertial and viscous forces, the ...
Small undulatory swimmers such as larval zebrafish experience both inertial and viscous forces, the ...
Small undulatory swimmers such as larval zebrafish experience both inertial and viscous forces, the ...
Small undulatory swimmers such as larval zebrafish experience both inertial and viscous forces, the ...
Small undulatory swimmers such as larval zebrafish experience both inertial and viscous forces, the ...
Small undulatory swimmers such as larval zebrafish experience both inertial and viscous forces, the ...
Small undulatory swimmers such as larval zebrafish experience both inertial and viscous forces, the ...
Most fish species use fast starts to escape from predators. Zebrafish larvae perform effective fast ...
Most fish species use fast starts to escape from predators. Zebrafish larvae perform effective fast ...
Most fish species use fast starts to escape from predators. Zebrafish larvae perform effective fast ...
Most fish species use fast starts to escape from predators. Zebrafish larvae perform effective fast ...
Most fish species use fast starts to escape from predators. Zebrafish larvae perform effective fast ...
Most fish species use fast starts to escape from predators. Zebrafish larvae perform effective fast ...
In the last decades, it became clear that not only molecular signals but also mechanical forces are...
In the last decades, it became clear that not only molecular signals but also mechanical forces are ...
Small undulatory swimmers such as larval zebrafish experience both inertial and viscous forces, the ...
Small undulatory swimmers such as larval zebrafish experience both inertial and viscous forces, the ...
Small undulatory swimmers such as larval zebrafish experience both inertial and viscous forces, the ...
Small undulatory swimmers such as larval zebrafish experience both inertial and viscous forces, the ...
Small undulatory swimmers such as larval zebrafish experience both inertial and viscous forces, the ...
Small undulatory swimmers such as larval zebrafish experience both inertial and viscous forces, the ...
Small undulatory swimmers such as larval zebrafish experience both inertial and viscous forces, the ...
Most fish species use fast starts to escape from predators. Zebrafish larvae perform effective fast ...
Most fish species use fast starts to escape from predators. Zebrafish larvae perform effective fast ...
Most fish species use fast starts to escape from predators. Zebrafish larvae perform effective fast ...
Most fish species use fast starts to escape from predators. Zebrafish larvae perform effective fast ...
Most fish species use fast starts to escape from predators. Zebrafish larvae perform effective fast ...
Most fish species use fast starts to escape from predators. Zebrafish larvae perform effective fast ...
In the last decades, it became clear that not only molecular signals but also mechanical forces are...
In the last decades, it became clear that not only molecular signals but also mechanical forces are ...