Physiologically relevant in vitro models of stretchable biological tissues, such as muscle, lung, cardiac and gastro-intestinal tissues, should mimic the mechanical cues which cells are exposed to in their dynamic microenvironment in vivo. In particular, in order to mimic the mechanical stimulation of tissues in a physiologically relevant manner, cell stretching is often desirable on surfaces with dynamically controllable curvature. Here, we present a device that can deform cell culture membranes without the current need for external pneumatic/fluidic or electrical motors, which typically make the systems bulky and difficult to operate. We describe a modular device that uses elastomeric membranes, which can intrinsically be deformed by elec...
This thesis advances the field of dielectric elastomer actuators (DEAs) through the development of d...
We present a mechanically active cell culture substrate that produces complex strain patterns and ge...
Mechanotransduction can enhance cell cultures when its substrate is subjected to dynamic strain. Thi...
Physiologically relevant in vitro models of stretchable biological tissues, such as muscle, lung, ca...
Physiologically relevant in vitro models of stretchable biological tissues, such as muscle, lung, ca...
We demonstrate the use of dielectric elastomer actuators (DEAs) for mechanical stimulation of cells ...
Physical stimuli are crucial for the structural and functional maturation of tissues both in vivo an...
We demonstrate the use of dielectric elastomer actuators (DEAs) for mechanical stimulation of cells ...
Cellular biology is a promising field of application for dielectric elastomer actuators (DEAs) given...
This study describes an actuated bioreactor which mimics the pulsatile contractile motion of the int...
A cell culture well with integrated mechanical and optical stimulation is presented. This is achieve...
Biological cells modulate their behavior, express genes, proliferate or differentiate in response to...
Summary: Mechanical signals are essential for the regulation of many biological processes. Therefore...
In cardiac tissue engineering it has been widely demonstrated the fundamental role of physical stimu...
In the recent decades, it has become widely known that the physiological changes in cells can be ind...
This thesis advances the field of dielectric elastomer actuators (DEAs) through the development of d...
We present a mechanically active cell culture substrate that produces complex strain patterns and ge...
Mechanotransduction can enhance cell cultures when its substrate is subjected to dynamic strain. Thi...
Physiologically relevant in vitro models of stretchable biological tissues, such as muscle, lung, ca...
Physiologically relevant in vitro models of stretchable biological tissues, such as muscle, lung, ca...
We demonstrate the use of dielectric elastomer actuators (DEAs) for mechanical stimulation of cells ...
Physical stimuli are crucial for the structural and functional maturation of tissues both in vivo an...
We demonstrate the use of dielectric elastomer actuators (DEAs) for mechanical stimulation of cells ...
Cellular biology is a promising field of application for dielectric elastomer actuators (DEAs) given...
This study describes an actuated bioreactor which mimics the pulsatile contractile motion of the int...
A cell culture well with integrated mechanical and optical stimulation is presented. This is achieve...
Biological cells modulate their behavior, express genes, proliferate or differentiate in response to...
Summary: Mechanical signals are essential for the regulation of many biological processes. Therefore...
In cardiac tissue engineering it has been widely demonstrated the fundamental role of physical stimu...
In the recent decades, it has become widely known that the physiological changes in cells can be ind...
This thesis advances the field of dielectric elastomer actuators (DEAs) through the development of d...
We present a mechanically active cell culture substrate that produces complex strain patterns and ge...
Mechanotransduction can enhance cell cultures when its substrate is subjected to dynamic strain. Thi...