Microscopic visualization of DNA molecules is a simple, intuitive, and powerful method. Nonetheless, DNA -molecule quantification methods that employ microscopic visualization have not been reported so far. In this study, a new quantitative approach is presented that enables the counting of individual DNA molecules that have been rendered visible by fluorescence microscopy. Toward this, a microfluidic device was employed that directed DNA molecules into microchannels and deposited the molecules onto a positively charged surface. This micro -fluidic device had a vertically tapered channel inlet structure that prevented the accumulation of excess DNA molecules in the channel inlet while creating a tapering flow, thereby ensuring the even dist...
AbstractA method is presented to rapidly and precisely measure the conformation, length, speed, and ...
In paper-based microfluidics, the simplest devices are colorimetric, giving qualitative results. How...
Although advances in microfluidic technology have enabled increasingly sophisticated biosensing and ...
We describe the theoretical design of a microchip for the amplification, detection and counting of i...
Improved methods are needed to interrogate the genome and the proteome. Methods with high selectivit...
DNA combing is a widely used method for stretching and immobilising DNA molecules on a surface. Fluo...
Breakthroughs in our understanding of biological systems are driven by technological advancements th...
Breakthroughs in our understanding of biological systems are driven by technological advancements th...
Low throughput is an inherent problem associated with most single-molecule biophysical techniques. W...
Low throughput is an inherent problem associated with most single-molecule biophysical techniques. W...
AbstractA method is presented to rapidly and precisely measure the conformation, length, speed, and ...
Hollars CW, Puls J, Bakajin O, et al. Bio-assay based on single molecule fluorescence detection in m...
Miniaturization to the micrometer and nanometer scale opens up the possibility to probe biology on a...
This thesis describes methods for constructing nanopatterned surfaces to array DNA. These surfaces e...
In paper-based microfluidics, the simplest devices are colorimetric, giving qualitative results. How...
AbstractA method is presented to rapidly and precisely measure the conformation, length, speed, and ...
In paper-based microfluidics, the simplest devices are colorimetric, giving qualitative results. How...
Although advances in microfluidic technology have enabled increasingly sophisticated biosensing and ...
We describe the theoretical design of a microchip for the amplification, detection and counting of i...
Improved methods are needed to interrogate the genome and the proteome. Methods with high selectivit...
DNA combing is a widely used method for stretching and immobilising DNA molecules on a surface. Fluo...
Breakthroughs in our understanding of biological systems are driven by technological advancements th...
Breakthroughs in our understanding of biological systems are driven by technological advancements th...
Low throughput is an inherent problem associated with most single-molecule biophysical techniques. W...
Low throughput is an inherent problem associated with most single-molecule biophysical techniques. W...
AbstractA method is presented to rapidly and precisely measure the conformation, length, speed, and ...
Hollars CW, Puls J, Bakajin O, et al. Bio-assay based on single molecule fluorescence detection in m...
Miniaturization to the micrometer and nanometer scale opens up the possibility to probe biology on a...
This thesis describes methods for constructing nanopatterned surfaces to array DNA. These surfaces e...
In paper-based microfluidics, the simplest devices are colorimetric, giving qualitative results. How...
AbstractA method is presented to rapidly and precisely measure the conformation, length, speed, and ...
In paper-based microfluidics, the simplest devices are colorimetric, giving qualitative results. How...
Although advances in microfluidic technology have enabled increasingly sophisticated biosensing and ...