DNA detection has an increasing importance in our everyday lives, with applications ranging from microbial diagnostics to forensic analysis. Currently, as the associated costs decrease, DNA diagnostic techniques are routinely used not only in research laboratories, but also in clinical and forensic practice. The present thesis aims to unravel the potential of cellulose filter paper to be a viable candidate for DNA array support. There are two papers in this study. In Paper I, we studied the method of functionalizing the surface of filter paper and the possibility to detect DNA on acitve paper using fluorescence. In Paper II, we investigated visualization and throughput of DNA detection with magnetic beads on active filter papers, an assay w...
Biological evidence at crime scenes often contains very small amounts of DNA. Therefore, it is impor...
Thesis (Ph. D.)--University of Rochester. Dept. of Biomedical Engineering, 2011.The development of r...
Nowadays, there are strong efforts in developing new technology for rapid detection of specific DNA ...
DNA detection technologies have an increasing importance in our everyday lives, with applications ra...
On-site DNA analysis for diagnostic or forensic purposes is much anticipated in the future of molecu...
Microfluidic paper-based analytical devices (μPADs) fabricated by wax-printing are suitable platform...
The detection of double stranded DNA (dsDNA) is often associated with the use of laboratory-bound ap...
It is known that DNA can be deposited onto a surface by touch yet few means have been developed for ...
This paper addresses a growing need in clinical diagnostics for parallel, multiplex analysis of biom...
The detection of double stranded DNA (dsDNA) is often associated with the use of laboratorybound app...
The detection of double stranded DNA (dsDNA) is often associated with the use of laboratory-bound ap...
The development of patterning high-resolution microfluidic circuits onto cellulose paper in 2007 ini...
We demonstrate the hybridization-induced fluorescence detection of DNA on an origami-based paper ana...
This paper addresses a growing need in clinical diagnostics for parallel, multiplex analysis of biom...
The extraordinary controllability of DNA nanostructures provides great potential for nanotechnology ...
Biological evidence at crime scenes often contains very small amounts of DNA. Therefore, it is impor...
Thesis (Ph. D.)--University of Rochester. Dept. of Biomedical Engineering, 2011.The development of r...
Nowadays, there are strong efforts in developing new technology for rapid detection of specific DNA ...
DNA detection technologies have an increasing importance in our everyday lives, with applications ra...
On-site DNA analysis for diagnostic or forensic purposes is much anticipated in the future of molecu...
Microfluidic paper-based analytical devices (μPADs) fabricated by wax-printing are suitable platform...
The detection of double stranded DNA (dsDNA) is often associated with the use of laboratory-bound ap...
It is known that DNA can be deposited onto a surface by touch yet few means have been developed for ...
This paper addresses a growing need in clinical diagnostics for parallel, multiplex analysis of biom...
The detection of double stranded DNA (dsDNA) is often associated with the use of laboratorybound app...
The detection of double stranded DNA (dsDNA) is often associated with the use of laboratory-bound ap...
The development of patterning high-resolution microfluidic circuits onto cellulose paper in 2007 ini...
We demonstrate the hybridization-induced fluorescence detection of DNA on an origami-based paper ana...
This paper addresses a growing need in clinical diagnostics for parallel, multiplex analysis of biom...
The extraordinary controllability of DNA nanostructures provides great potential for nanotechnology ...
Biological evidence at crime scenes often contains very small amounts of DNA. Therefore, it is impor...
Thesis (Ph. D.)--University of Rochester. Dept. of Biomedical Engineering, 2011.The development of r...
Nowadays, there are strong efforts in developing new technology for rapid detection of specific DNA ...