The advantages of longitudinal monitoring techniques are getting more attention in various tissue engineering approaches. They provide consecutive information about one and the same sample over\u3cbr/\u3etime and as such may decrease sample numbers tremendously. These techniques also allow taking the actual environmental status of a tissue into account for predicting future development. Micro-computed\u3cbr/\u3etomography has been previously shown to be suitable to monitor mineralized extracellular matrix deposition in bone tissue engineering cultures. In this study, shear stresses (SS) acting on human mesenchymal stromal cells (hMSC) seeded on silk fibroin scaffolds in a flow perfusion bioreactor were calculated by computational fluid dyna...
In vitro flow-induced mechanical stimulation of developing bone tissue constructs has been shown to ...
Successful bone tissue engineering requires the understanding of cellular activity in three-dimensio...
In vitro tissue engineering is a method for developing living and functional tissues external to the...
The advantages of longitudinal monitoring techniques are getting more attention in various tissue en...
Mechanical loading plays a major role in bone remodeling and fracture healing. Mimicking the concept...
Mechanical loading plays a major role in bone remodeling and fracture healing. Mimicking the concept...
\u3cp\u3eMechanical loading plays a major role in bone remodeling and fracture healing. Mimicking th...
Flow perfusion bioreactors have been extensively investigated as a promising culture method for bone...
\u3cp\u3eSpinner flask bioreactors have often been employed for bone tissue engineering. However, th...
Bone tissue engineering (BTE) experiments in vitro have shown that fluid-induced wall shear stress (...
Item does not contain fulltextIn this study we report on direct involvement of fluid shear stresses ...
In tissue engineering experiments in vitro, bioreactors have been used for applying wall shear stres...
In vitro flow-induced mechanical stimulation of developing bone tissue constructs has been shown to ...
Successful bone tissue engineering requires the understanding of cellular activity in three-dimensio...
In vitro tissue engineering is a method for developing living and functional tissues external to the...
The advantages of longitudinal monitoring techniques are getting more attention in various tissue en...
Mechanical loading plays a major role in bone remodeling and fracture healing. Mimicking the concept...
Mechanical loading plays a major role in bone remodeling and fracture healing. Mimicking the concept...
\u3cp\u3eMechanical loading plays a major role in bone remodeling and fracture healing. Mimicking th...
Flow perfusion bioreactors have been extensively investigated as a promising culture method for bone...
\u3cp\u3eSpinner flask bioreactors have often been employed for bone tissue engineering. However, th...
Bone tissue engineering (BTE) experiments in vitro have shown that fluid-induced wall shear stress (...
Item does not contain fulltextIn this study we report on direct involvement of fluid shear stresses ...
In tissue engineering experiments in vitro, bioreactors have been used for applying wall shear stres...
In vitro flow-induced mechanical stimulation of developing bone tissue constructs has been shown to ...
Successful bone tissue engineering requires the understanding of cellular activity in three-dimensio...
In vitro tissue engineering is a method for developing living and functional tissues external to the...