Digital assays are powerful methods that enable detection of rare cells and counting of individual nucleic acid molecules. However, digital assays are still not routinely applied, due to the cost and specific equipment associated with commercially available methods. Here we present a simplified method for readout of digital droplet assays using a conventional real-time PCR instrument to measure bulk fluorescence of droplet-based digital assays. We characterize the performance of the bulk readout assay using synthetic droplet mixtures and a droplet digital multiple displacement amplification (MDA) assay. Quantitative MDA particularly benefits from a digital reaction format, but our new method applies to any digital assay. For established di...
This paper presents a protocol using theoretical methods and free software to design and analyze mul...
Digital PCR enables the absolute quantitation of nucleic acids in a sample. The lack of scalable and...
International audienceDroplet-based microfluidics has permeated many areas of life sciences includin...
Nucleic acid amplification tests that are coupled with a digital readout enable the absolute quantif...
Nucleic acid amplification technology, such as polymerase chain reaction (PCR), has enabled highly s...
Nucleic acid amplification tests that are coupled with a digital readout enable the absolute quantif...
Digital polymerase chain reaction (PCR) has emerged as an extremely powerful technique for quantific...
In this paper, digital quantitative detection of nucleic acids was achieved at the single-molecule l...
Single molecule quantification assays provide the ultimate sensitivity and precision for molecular a...
Accurate and precise nucleic-acid quantification is crucial for clinical and diagnostic decisions, a...
Background: Digital PCR is a relatively old concept for absolute quantification of DNA using PCR, bu...
Droplet digital PCR provides superior accuracy for nucleic acid quantitation. The requirement of mic...
We present a method to determine the concentration of nucleic acids in a sample by partitioning it i...
AbstractDigital PCR has become the emerging technique for the sequence-specific detection and quanti...
Droplet digital polymerase chain reaction (ddPCR) is a new technology that was recently commercializ...
This paper presents a protocol using theoretical methods and free software to design and analyze mul...
Digital PCR enables the absolute quantitation of nucleic acids in a sample. The lack of scalable and...
International audienceDroplet-based microfluidics has permeated many areas of life sciences includin...
Nucleic acid amplification tests that are coupled with a digital readout enable the absolute quantif...
Nucleic acid amplification technology, such as polymerase chain reaction (PCR), has enabled highly s...
Nucleic acid amplification tests that are coupled with a digital readout enable the absolute quantif...
Digital polymerase chain reaction (PCR) has emerged as an extremely powerful technique for quantific...
In this paper, digital quantitative detection of nucleic acids was achieved at the single-molecule l...
Single molecule quantification assays provide the ultimate sensitivity and precision for molecular a...
Accurate and precise nucleic-acid quantification is crucial for clinical and diagnostic decisions, a...
Background: Digital PCR is a relatively old concept for absolute quantification of DNA using PCR, bu...
Droplet digital PCR provides superior accuracy for nucleic acid quantitation. The requirement of mic...
We present a method to determine the concentration of nucleic acids in a sample by partitioning it i...
AbstractDigital PCR has become the emerging technique for the sequence-specific detection and quanti...
Droplet digital polymerase chain reaction (ddPCR) is a new technology that was recently commercializ...
This paper presents a protocol using theoretical methods and free software to design and analyze mul...
Digital PCR enables the absolute quantitation of nucleic acids in a sample. The lack of scalable and...
International audienceDroplet-based microfluidics has permeated many areas of life sciences includin...