In this article we introduce a novel technology that utilizes specialized water dissolvable thin films for valving in centrifugal microfluidic systems. In previous work (William Meathrel and Cathy Moritz, IVD Technologies, 2007), dissolvable films (DFs) have been assembled in laminar flow devices to form efficient sacrificial valves where DFs simply open by direct contact with liquid. Here, we build on the original DF valving scheme to leverage sophisticated, merely rotationally actuated vapour barriers and flow control for enabling comprehensive assay integration with low-complexity instrumentation on ‘‘lab-on-a-disc’’ platforms. The advanced sacrificial valving function is achieved by creating an inverted gas-liquid stack upstream of th...
Rotational microfluidic platforms have attracted swiftly growing interest over the last decade due t...
Rotational microfluidic platforms have attracted swiftly growing interest over the last decade due t...
The inherent centrifugation capability of the so-called ‘Lab-on-a-Disc’ (LoaD) platforms is widely u...
In this article we introduce a novel technology that utilizes specialized water dissolvable thin fil...
In this article we introduce a novel technology that utilizes specialized water dissolvable thin fil...
In this article we introduce a novel technology that utilizes specialized water dissolvable thin fil...
In this article we introduce a novel technology that utilizes specialized water dissolvable thin fil...
Here we introduce a new, instrument controlled valving scheme for the centrifugal platform which\ud ...
Here we introduce a new, instrument controlled valving scheme for the centrifugal platform which is...
Here we introduce a new, instrument controlled valving scheme for the centrifugal platform which is...
Here we introduce a new, instrument controlled valving scheme for the centrifugal platform which is...
In microfluidic biomedical systems valving is often of critical importance for process control. In c...
In microfluidic biomedical systems valving is often of critical importance for process control. In c...
In microfluidic biomedical systems valving is often of critical importance for process control. In c...
Rotational microfluidic platforms have attracted swiftly growing interest over the last decade due t...
Rotational microfluidic platforms have attracted swiftly growing interest over the last decade due t...
Rotational microfluidic platforms have attracted swiftly growing interest over the last decade due t...
The inherent centrifugation capability of the so-called ‘Lab-on-a-Disc’ (LoaD) platforms is widely u...
In this article we introduce a novel technology that utilizes specialized water dissolvable thin fil...
In this article we introduce a novel technology that utilizes specialized water dissolvable thin fil...
In this article we introduce a novel technology that utilizes specialized water dissolvable thin fil...
In this article we introduce a novel technology that utilizes specialized water dissolvable thin fil...
Here we introduce a new, instrument controlled valving scheme for the centrifugal platform which\ud ...
Here we introduce a new, instrument controlled valving scheme for the centrifugal platform which is...
Here we introduce a new, instrument controlled valving scheme for the centrifugal platform which is...
Here we introduce a new, instrument controlled valving scheme for the centrifugal platform which is...
In microfluidic biomedical systems valving is often of critical importance for process control. In c...
In microfluidic biomedical systems valving is often of critical importance for process control. In c...
In microfluidic biomedical systems valving is often of critical importance for process control. In c...
Rotational microfluidic platforms have attracted swiftly growing interest over the last decade due t...
Rotational microfluidic platforms have attracted swiftly growing interest over the last decade due t...
Rotational microfluidic platforms have attracted swiftly growing interest over the last decade due t...
The inherent centrifugation capability of the so-called ‘Lab-on-a-Disc’ (LoaD) platforms is widely u...