Fish larvae experience many environmental challenges during development such as variation in water velocity, food availability and predation. The rapid development of structures involved in feeding, respiration and swimming increases the chance of survival. It has been hypothesized that mechanical loading induced by muscle forces plays a role in prioritizing the development of these structures. Mechanical loading by muscle forces has been shown to affect larval and embryonic bone development in vertebrates, but these investigations were limited to the appendicular skeleton. To explore the role of mechanical load during chondrogenesis and osteogenesis of the cranial, axial and appendicular skeleton, we subjected zebrafish larvae to swim-trai...
The response of individuals to novel or altered environments is defined as "phenotypic plasticity“. ...
Movements are important. When animals move, they exert mechanical load on their bodies and their mus...
The adult skeletal muscle is a plastic tissue with a remarkable ability to adapt to different levels...
Fish larvae experience many environmental challenges during development such as variation in water v...
Fish larvae experience many environmental challenges during development such as variation in water v...
<div><p>Fish larvae experience many environmental challenges during development such as variation in...
In the last decades, it became clear that not only molecular signals but also mechanical forces are ...
In vitro and in vivo studies have shown that mechanical forces play an important role during develop...
Zebrafish represent an important vertebrate model species in developmental biology. This chapter rev...
Fish larvae, like most adult fish, undulate their bodies to propel themselves. A detailed kinematic ...
In adult vertebrates, endurance training leads to physiological, metabolical and molecular adaptatio...
Exercise promotes gain in bone mass through adaptive responses of the vertebrate skeleton. This mech...
Mechanical load is an important factor in the differentiation of cells and tissues. To investigate t...
Synopsis An animal may experience strikingly different functional demands on its body’s systems thro...
The anabolic effect of exercise on muscles and bones is well documented. In teleost fish, exercise h...
The response of individuals to novel or altered environments is defined as "phenotypic plasticity“. ...
Movements are important. When animals move, they exert mechanical load on their bodies and their mus...
The adult skeletal muscle is a plastic tissue with a remarkable ability to adapt to different levels...
Fish larvae experience many environmental challenges during development such as variation in water v...
Fish larvae experience many environmental challenges during development such as variation in water v...
<div><p>Fish larvae experience many environmental challenges during development such as variation in...
In the last decades, it became clear that not only molecular signals but also mechanical forces are ...
In vitro and in vivo studies have shown that mechanical forces play an important role during develop...
Zebrafish represent an important vertebrate model species in developmental biology. This chapter rev...
Fish larvae, like most adult fish, undulate their bodies to propel themselves. A detailed kinematic ...
In adult vertebrates, endurance training leads to physiological, metabolical and molecular adaptatio...
Exercise promotes gain in bone mass through adaptive responses of the vertebrate skeleton. This mech...
Mechanical load is an important factor in the differentiation of cells and tissues. To investigate t...
Synopsis An animal may experience strikingly different functional demands on its body’s systems thro...
The anabolic effect of exercise on muscles and bones is well documented. In teleost fish, exercise h...
The response of individuals to novel or altered environments is defined as "phenotypic plasticity“. ...
Movements are important. When animals move, they exert mechanical load on their bodies and their mus...
The adult skeletal muscle is a plastic tissue with a remarkable ability to adapt to different levels...