<div><p>De novo sequencing, a process to find the whole genome or the regions of a species without references, requires much higher computational power compared to mapped sequencing with references. The advent and continuous evolution of next-generation sequencing technologies further stress the demands of high-throughput processing of myriads of short DNA fragments. Recently announced sequence assemblers, such as Velvet, SOAPdenovo, and ABySS, all exploit parallelism to meet these computational demands since contemporary computer systems primarily rely on scaling the number of computing cores to improve performance. However, most of them are not tailored to exploit the full potential of these systems, leading to suboptimal performance. In ...
Abstract—Emerging next-generation sequencing technologies have opened up exciting new opportunities ...
Background: Current advancements in next-generation sequencing technology have made possible to sequ...
De novo genome assembly is a fundamental problem in genomics research. When assembling large genomes...
Background: There is a rapidly increasing amount of de novo genome assembly using next-generation se...
A critical problem for computational genomics is the problem of de novo genome assembly: the develop...
Background: There is a rapidly increasing amount of de novo genome assembly using next-generation se...
There is a rapidly increasing amount of de novo genome assembly using next-generation sequencing (NG...
Remarkable advances in DNA sequencing technology have created a need for de novo genome assembly met...
The genome assembly problem is to generate the original DNA sequence of the organism from a large se...
With growing throughput and dropping cost of High-Throughput Sequencing (HTS) technologies, there is...
Abstract—Recent progress in DNA sequencing technology has yielded a new class of devices that allow ...
Remarkable advances in DNA sequencing technology have created a need for de novo genome assembly met...
The recent advent of massively parallel sequencing technologies has drastically reduced the cost of ...
Remarkable advances in DNA sequencing technology have created a need for de novo genome assembly met...
BACKGROUND: Next-generation sequencing technologies have given rise to the explosive increase in DNA...
Abstract—Emerging next-generation sequencing technologies have opened up exciting new opportunities ...
Background: Current advancements in next-generation sequencing technology have made possible to sequ...
De novo genome assembly is a fundamental problem in genomics research. When assembling large genomes...
Background: There is a rapidly increasing amount of de novo genome assembly using next-generation se...
A critical problem for computational genomics is the problem of de novo genome assembly: the develop...
Background: There is a rapidly increasing amount of de novo genome assembly using next-generation se...
There is a rapidly increasing amount of de novo genome assembly using next-generation sequencing (NG...
Remarkable advances in DNA sequencing technology have created a need for de novo genome assembly met...
The genome assembly problem is to generate the original DNA sequence of the organism from a large se...
With growing throughput and dropping cost of High-Throughput Sequencing (HTS) technologies, there is...
Abstract—Recent progress in DNA sequencing technology has yielded a new class of devices that allow ...
Remarkable advances in DNA sequencing technology have created a need for de novo genome assembly met...
The recent advent of massively parallel sequencing technologies has drastically reduced the cost of ...
Remarkable advances in DNA sequencing technology have created a need for de novo genome assembly met...
BACKGROUND: Next-generation sequencing technologies have given rise to the explosive increase in DNA...
Abstract—Emerging next-generation sequencing technologies have opened up exciting new opportunities ...
Background: Current advancements in next-generation sequencing technology have made possible to sequ...
De novo genome assembly is a fundamental problem in genomics research. When assembling large genomes...