Organ-on-chip (OoC) devices are increasingly used for biomedical research and to speed up the process of bringing a medicinal drug from the lab to the market. The technology also addresses ethical issues linked to animal testing as it offers a reduction in animal experiments through its possibility to mimic the environment in the human body. Hence, it produces more relevant results than plain cell-culture experiments, while still sharing the possibility of high-throughput testing by simultaneously operating many devices in parallel. The main components of an OoC device are microfluidic channels and porous membranes. Current chips are often assembled from several parts. In the development phase a small change in design will cause a delay in ...
A major challenge facing the study of bone regeneration today is the inability to mimic the tissue m...
Microporous structures are central to many fields of science and engineering, ranging from biologica...
The microfluidic enabled the integration of engineered miniaturized tissue models for drug screening...
Abstract: Nanofluidic devices have great potential for applications in areas ranging from renewable ...
Cells are the smallest living units and together they form all living organisms on earth. The cells ...
Organs on chips are a novel set of devices whose aim is to mimic cellular in-vivo conditions of the ...
Nanofluidic devices have great potential for applications in areas ranging from renewable energy to ...
This doctoral work aims to advance two-photon lithography (TPL) using a hybrid approach that integra...
This thesis presents a fabrication process for medical microfluidic devices that is performed with p...
Thesis (Master's)--University of Washington, 2018Microfluidic devices are currently used in a wide r...
Manufacturing high throughput in vitro models resembling the tissue microenvironment is highly deman...
Despite the technological advances of the last decades, drug development remains a lengthy and costl...
This paper demonstrates the embellishment of existing microfluidic devices with integrated three dim...
Drug development is a complex, time-consuming (10 - 15 years) and expensive process. For a new medic...
Organs-on-a-chip, or OoCs, are microfluidic tissue culture devices with micro-scaled architectures t...
A major challenge facing the study of bone regeneration today is the inability to mimic the tissue m...
Microporous structures are central to many fields of science and engineering, ranging from biologica...
The microfluidic enabled the integration of engineered miniaturized tissue models for drug screening...
Abstract: Nanofluidic devices have great potential for applications in areas ranging from renewable ...
Cells are the smallest living units and together they form all living organisms on earth. The cells ...
Organs on chips are a novel set of devices whose aim is to mimic cellular in-vivo conditions of the ...
Nanofluidic devices have great potential for applications in areas ranging from renewable energy to ...
This doctoral work aims to advance two-photon lithography (TPL) using a hybrid approach that integra...
This thesis presents a fabrication process for medical microfluidic devices that is performed with p...
Thesis (Master's)--University of Washington, 2018Microfluidic devices are currently used in a wide r...
Manufacturing high throughput in vitro models resembling the tissue microenvironment is highly deman...
Despite the technological advances of the last decades, drug development remains a lengthy and costl...
This paper demonstrates the embellishment of existing microfluidic devices with integrated three dim...
Drug development is a complex, time-consuming (10 - 15 years) and expensive process. For a new medic...
Organs-on-a-chip, or OoCs, are microfluidic tissue culture devices with micro-scaled architectures t...
A major challenge facing the study of bone regeneration today is the inability to mimic the tissue m...
Microporous structures are central to many fields of science and engineering, ranging from biologica...
The microfluidic enabled the integration of engineered miniaturized tissue models for drug screening...