Abstract Background With the maturation of next-generation DNA sequencing (NGS) technologies, the throughput of DNA sequencing reads has soared to over 600 gigabases from a single instrument run. General purpose computing on graphics processing units (GPGPU), extracts the computing power from hundreds of parallel stream processors within graphics processing cores and provides a cost-effective and energy efficient alternative to traditional high-performance computing (HPC) clusters. In this article, we describe the implementation of BarraCUDA, a GPGPU sequence alignment software that is based on BWA, to accelerate the alignment of sequencing reads generated by these instruments to a reference DNA sequence. Findings Using the NVIDIA Compute U...
Background Due the computational complexity of sequence alignment algorithms, various accelerated so...
Background Due the computational complexity of sequence alignment algorithms, various accelerated so...
BACKGROUND: Due the computational complexity of sequence alignment algorithms, various accelerated s...
Abstract Background With the maturation of next-generation DNA sequencing (NGS) technologies, the th...
BACKGROUND: With the maturation of next-generation DNA sequencing (NGS) technologies, the throughput...
BACKGROUND: With the maturation of next-generation DNA sequencing (NGS) technologies, the throughput...
High-throughput DNA sequencing (HTS) instruments today are capable of generating millions of sequenc...
The recent availability of new, less expensive high-throughput DNA sequencing technologies has yield...
Background: The recent availability of new, less expensive high-throughput DNA sequencing technologi...
Over the past few years, DNA sequencing technology has been advancing at such a fast pace that compu...
Sequence alignment is a fundamental task for computational genomics research. We develop G-Aligner, ...
Background Searching for similarities in protein and DNA databases has become a routine procedure in...
Background Due the computational complexity of sequence alignment algorithms, various accelerated so...
BACKGROUND: Due the computational complexity of sequence alignment algorithms, various accelerated s...
Background Due the computational complexity of sequence alignment algorithms, various accelerated so...
Background Due the computational complexity of sequence alignment algorithms, various accelerated so...
Background Due the computational complexity of sequence alignment algorithms, various accelerated so...
BACKGROUND: Due the computational complexity of sequence alignment algorithms, various accelerated s...
Abstract Background With the maturation of next-generation DNA sequencing (NGS) technologies, the th...
BACKGROUND: With the maturation of next-generation DNA sequencing (NGS) technologies, the throughput...
BACKGROUND: With the maturation of next-generation DNA sequencing (NGS) technologies, the throughput...
High-throughput DNA sequencing (HTS) instruments today are capable of generating millions of sequenc...
The recent availability of new, less expensive high-throughput DNA sequencing technologies has yield...
Background: The recent availability of new, less expensive high-throughput DNA sequencing technologi...
Over the past few years, DNA sequencing technology has been advancing at such a fast pace that compu...
Sequence alignment is a fundamental task for computational genomics research. We develop G-Aligner, ...
Background Searching for similarities in protein and DNA databases has become a routine procedure in...
Background Due the computational complexity of sequence alignment algorithms, various accelerated so...
BACKGROUND: Due the computational complexity of sequence alignment algorithms, various accelerated s...
Background Due the computational complexity of sequence alignment algorithms, various accelerated so...
Background Due the computational complexity of sequence alignment algorithms, various accelerated so...
Background Due the computational complexity of sequence alignment algorithms, various accelerated so...
BACKGROUND: Due the computational complexity of sequence alignment algorithms, various accelerated s...