High-throughput DNA sequencing has considerably changed the possibilities for conducting biomedical research by measuring billions of short DNA or RNA fragments. A central computational problem, and for many applications a first step, consists of determining where the fragments came from in the original genome. In this article, we review the main techniques for generating the fragments, the main applications, and the main algorithmic ideas for computing a solution to the read alignment problem. In addition, we describe pitfalls and difficulties connected to determining the correct positions of reads
New DNA sequencing technologies have achieved breakthroughs in throughput, at the expense of higher ...
Current DNA sequencing methods can accurately determine only a few hundred ‘letters ’ (bases) off ea...
The use of a priori knowledge in the alignment of targeted sequencing data is investigated using com...
Abstract Aligning sequencing reads onto a reference is an essential step of the majority of genomic ...
Precision medicine or personalized medicine has been proposed as a modernized and promising medical...
<p>A sequence read is divided into three fragments, <i>A</i>, <i>B</i>, and <i>C</i> (see <a href="h...
Analysis of Next Generation Sequencing Real Alignment Algorithms Next-generation sequencing methods ...
Background Recent advances in biotechnology have enabled highthroughput sequencing of genomes based ...
Motivation: DNA sequencing instruments are enabling genomic analyses of unprecedented scope and scal...
The technologies for sequencing genetic materials have improved vastly during the last fifteen years...
Sequence alignment is one of the most important operations in computational biology. Alignment of t...
Motivation: The advent of next-generation sequencing (NGS) techniques presents many novel opportunit...
This thesis presents short DNA alignment tools optimization. These short DNA reads are products of n...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...
DNA read alignment is a major step in genome analysis. However, as DNA reads continue to become long...
New DNA sequencing technologies have achieved breakthroughs in throughput, at the expense of higher ...
Current DNA sequencing methods can accurately determine only a few hundred ‘letters ’ (bases) off ea...
The use of a priori knowledge in the alignment of targeted sequencing data is investigated using com...
Abstract Aligning sequencing reads onto a reference is an essential step of the majority of genomic ...
Precision medicine or personalized medicine has been proposed as a modernized and promising medical...
<p>A sequence read is divided into three fragments, <i>A</i>, <i>B</i>, and <i>C</i> (see <a href="h...
Analysis of Next Generation Sequencing Real Alignment Algorithms Next-generation sequencing methods ...
Background Recent advances in biotechnology have enabled highthroughput sequencing of genomes based ...
Motivation: DNA sequencing instruments are enabling genomic analyses of unprecedented scope and scal...
The technologies for sequencing genetic materials have improved vastly during the last fifteen years...
Sequence alignment is one of the most important operations in computational biology. Alignment of t...
Motivation: The advent of next-generation sequencing (NGS) techniques presents many novel opportunit...
This thesis presents short DNA alignment tools optimization. These short DNA reads are products of n...
Thesis: S.M., Massachusetts Institute of Technology, Department of Electrical Engineering and Comput...
DNA read alignment is a major step in genome analysis. However, as DNA reads continue to become long...
New DNA sequencing technologies have achieved breakthroughs in throughput, at the expense of higher ...
Current DNA sequencing methods can accurately determine only a few hundred ‘letters ’ (bases) off ea...
The use of a priori knowledge in the alignment of targeted sequencing data is investigated using com...