Optimum algorithm for digital assays treats chemical compartments as bits of probabilistic information and arranges these bits in a fractional positional system. Maximization of information gain reduces, by orders of magnitude, the number of partitions required to achieve the requested dynamic range and precision of the assay. The method simplifies the execution of digital analytical methods providing for more accessible use of absolute quantization in research and in diagnostics
In enzyme-linked immunosorbent assay (ELISA), a typical protocol specifies that a certain number of ...
Based on the premise that, for a given class of related chemical compounds, there exists a relations...
bS Supporting Information This paper presents a theory and an experimental validationfor design and ...
AbstractWe explain how to design classic digital assays, comprising identical partitions, in order t...
Provided herein are methods, compositions, and devices for the identification and quantification of ...
*S Supporting Information ABSTRACT: In this article, we describe a nonlinear threshold chemistry bas...
Nucleic acid amplification tests that are coupled with a digital readout enable the absolute quantif...
This approach imports an experimental design from pharmaceutical industry today. In the past, the as...
Abstract- This paper presents a framework for the optimal design of experiments for medical sensors ...
A new method to calculate optimum digital filters for applicative fields requiring high resolution m...
A new method to calculate optimum digital filters for applicative fields requiring high resolution m...
summary:When processing automatically experimental data the need often occurs to replace a certain m...
The output signals of chemical sensing systems, i.e. of sensors used to detect chemical quantities, ...
Nucleic acid amplification tests that are coupled with a digital readout enable the absolute quantif...
<div><p>The great promise of digital PCR is the potential for unparalleled precision enabling accura...
In enzyme-linked immunosorbent assay (ELISA), a typical protocol specifies that a certain number of ...
Based on the premise that, for a given class of related chemical compounds, there exists a relations...
bS Supporting Information This paper presents a theory and an experimental validationfor design and ...
AbstractWe explain how to design classic digital assays, comprising identical partitions, in order t...
Provided herein are methods, compositions, and devices for the identification and quantification of ...
*S Supporting Information ABSTRACT: In this article, we describe a nonlinear threshold chemistry bas...
Nucleic acid amplification tests that are coupled with a digital readout enable the absolute quantif...
This approach imports an experimental design from pharmaceutical industry today. In the past, the as...
Abstract- This paper presents a framework for the optimal design of experiments for medical sensors ...
A new method to calculate optimum digital filters for applicative fields requiring high resolution m...
A new method to calculate optimum digital filters for applicative fields requiring high resolution m...
summary:When processing automatically experimental data the need often occurs to replace a certain m...
The output signals of chemical sensing systems, i.e. of sensors used to detect chemical quantities, ...
Nucleic acid amplification tests that are coupled with a digital readout enable the absolute quantif...
<div><p>The great promise of digital PCR is the potential for unparalleled precision enabling accura...
In enzyme-linked immunosorbent assay (ELISA), a typical protocol specifies that a certain number of ...
Based on the premise that, for a given class of related chemical compounds, there exists a relations...
bS Supporting Information This paper presents a theory and an experimental validationfor design and ...