Content in the UH Research Archive is made available for personal research, educational, and non-commercial purposes only. Unless otherwise stated, all content is protected by copyright, and in the absence of an open license, permissions for further re-use should be sought from the publisher, the author, or other copyright holder.The centrifugal "lab-on-a-disc" concept has proven to have great potential for process integration of bioanalytical assays, in particular where ease-of-use, ruggedness, portability, fast turn-around time and cost efficiency are of paramount importance. Yet, as all liquids residing on the disc are exposed to the same centrifugal field, an inherent challenge of these systems remains the automation of multi-step, mult...
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 paper we present a method of buoyancy-driven centripetal pumping utilizing a heavy, water-im...
The suitability of the centrifugal “lab-on-a-disc” (LoaD) platform for point-of-use / point-of-care ...
Rotational microfluidic platforms have attracted swiftly growing interest over the last decade due t...
The centrifugal microfluidic platforms have evolved into a mature technology for a broad range of ap...
Current, application-driven trends towards larger-scale integration (LSI) of microfluidic systems fo...
Here we introduce a new, instrument controlled valving scheme for the centrifugal platform which\ud ...
© 2023 Early et al. This is an open access article distributed under the terms of the Creative Commo...
In microfluidic biomedical systems valving is often of critical importance for process control. In c...
Compact disc (CD)-based centrifugal microfluidics is an increasingly popular choice for academic and...
In this presentation, we will discuss our on-going research on ???Lab-on-a-disc???, which applies ce...
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 paper we present a method of buoyancy-driven centripetal pumping utilizing a heavy, water-im...
The suitability of the centrifugal “lab-on-a-disc” (LoaD) platform for point-of-use / point-of-care ...
Rotational microfluidic platforms have attracted swiftly growing interest over the last decade due t...
The centrifugal microfluidic platforms have evolved into a mature technology for a broad range of ap...
Current, application-driven trends towards larger-scale integration (LSI) of microfluidic systems fo...
Here we introduce a new, instrument controlled valving scheme for the centrifugal platform which\ud ...
© 2023 Early et al. This is an open access article distributed under the terms of the Creative Commo...
In microfluidic biomedical systems valving is often of critical importance for process control. In c...
Compact disc (CD)-based centrifugal microfluidics is an increasingly popular choice for academic and...
In this presentation, we will discuss our on-going research on ???Lab-on-a-disc???, which applies ce...
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 paper we present a method of buoyancy-driven centripetal pumping utilizing a heavy, water-im...