Fluorescence microscopy enables simultaneous observation of the dynamics of single molecules in a large region of interest. Most traditional techniques employ either the geometry or the color of single molecules to uniquely identify (or barcode) different species of interest. However, these techniques require complex sample preparation and multicolor hardware setup. In this work, we introduce a time-based amplification-free single-molecule barcoding technique using easy-to-design nucleic acid strands. A dye-labeled complementary reporter strand transiently binds to the programmed nucleic acid strands to emit temporal intensity signals. We program the DNA strands to emit uniquely identifiable temporal signals for molecular-scale fingerprinti...
High-throughput sequencing platforms mainly produce short-read data, resulting in a loss of phasing ...
The ability to strongly and sequence-specifically attach modifications such as fluorophores and hapt...
We demonstrate the feasibility of a nanopore based single-molecule DNA sequencing method, which empl...
Fluorescence microscopy enables simultaneous observation of the dynamics of single molecules in a la...
In optical DNA mapping technologies sequence-specific intensity variations (DNA barcodes) along stre...
In optical DNA mapping technologies sequence-specific intensity variations (DNA barcodes) along stre...
Optical mapping of genomic DNA is of relevance for a plethora of applications such as scaffolding fo...
Synthetic DNA barcodes are double-stranded DNA molecules designed to carry recoverable information, ...
A pixel counting strategy is designed on the basis of DNA walker-triggered fluorescence spots for ul...
High-throughput screens allow for the identification of specific biomolecules with characteristics o...
Digitally encoded DNA nanostructures built via DNA self-assembly have established applications in mu...
Single-molecule (SM) techniques have been contributing to unraveling the detailed mechanisms underly...
The completion of the human genome draft has taken several years and is only the beginning of a peri...
DNA mapping is an important analytical tool in genomic sequencing, medical diagnostics and pathogen ...
DNA mapping is an important analytical tool in geno-mic sequencing, medical diagnostics and pathogen...
High-throughput sequencing platforms mainly produce short-read data, resulting in a loss of phasing ...
The ability to strongly and sequence-specifically attach modifications such as fluorophores and hapt...
We demonstrate the feasibility of a nanopore based single-molecule DNA sequencing method, which empl...
Fluorescence microscopy enables simultaneous observation of the dynamics of single molecules in a la...
In optical DNA mapping technologies sequence-specific intensity variations (DNA barcodes) along stre...
In optical DNA mapping technologies sequence-specific intensity variations (DNA barcodes) along stre...
Optical mapping of genomic DNA is of relevance for a plethora of applications such as scaffolding fo...
Synthetic DNA barcodes are double-stranded DNA molecules designed to carry recoverable information, ...
A pixel counting strategy is designed on the basis of DNA walker-triggered fluorescence spots for ul...
High-throughput screens allow for the identification of specific biomolecules with characteristics o...
Digitally encoded DNA nanostructures built via DNA self-assembly have established applications in mu...
Single-molecule (SM) techniques have been contributing to unraveling the detailed mechanisms underly...
The completion of the human genome draft has taken several years and is only the beginning of a peri...
DNA mapping is an important analytical tool in genomic sequencing, medical diagnostics and pathogen ...
DNA mapping is an important analytical tool in geno-mic sequencing, medical diagnostics and pathogen...
High-throughput sequencing platforms mainly produce short-read data, resulting in a loss of phasing ...
The ability to strongly and sequence-specifically attach modifications such as fluorophores and hapt...
We demonstrate the feasibility of a nanopore based single-molecule DNA sequencing method, which empl...