AbstractWe present improved techniques for finding homologous regions in DNA and protein sequences. Our approach focuses on the core regions of a local pairwise alignment; we suggest new ways to characterize these regions that allow marked improvements in both specificity and sensitivity over existing techniques for sequence alignment. For any such characterization, which we call a vector seed, we give an efficient algorithm that estimates the specificity and sensitivity of that seed under reasonable probabilistic models of sequence. We also characterize the probability of a match when an alignment is required to have multiple hits before it is detected. Our extensions fit well with existing approaches to sequence alignment, while still off...
Abstract—We present a framework for improving local protein alignment algorithms. Specifically, we d...
Homology search finds similar segments between two biological sequences, such as DNA or protein sequ...
Homology search finds similar segments between two biological sequences, such as DNA or protein sequ...
AbstractWe present improved techniques for finding homologous regions in DNA and protein sequences. ...
We study the problem of computing optimal spaced seeds for identifying homologous coding DNA sequen...
AbstractLarge-scale comparison of genomic DNA is of fundamental importance in annotating functional ...
Homology search finds similar segments between two biological sequences, such as DNA or protein sequ...
The challenge of similarity search in massive DNA sequence databases has inspired major changes in B...
Motivation: Homology search finds similar segments between two biological sequences, such as DNA or ...
International audienceThe seeding technique became central in the theory of sequence alignment and t...
International audienceThe seeding technique became central in the theory of sequence alignment and t...
Motivation: Homology search finds similar segments between two biological sequences, such as DNA or ...
AbstractLarge-scale comparison of genomic DNA is of fundamental importance in annotating functional ...
AbstractOptimal spaced seeds were introduced by the theoretical computer science community to bioinf...
Motivation: Homology search finds similar segments between two biological sequences, such as DNA or ...
Abstract—We present a framework for improving local protein alignment algorithms. Specifically, we d...
Homology search finds similar segments between two biological sequences, such as DNA or protein sequ...
Homology search finds similar segments between two biological sequences, such as DNA or protein sequ...
AbstractWe present improved techniques for finding homologous regions in DNA and protein sequences. ...
We study the problem of computing optimal spaced seeds for identifying homologous coding DNA sequen...
AbstractLarge-scale comparison of genomic DNA is of fundamental importance in annotating functional ...
Homology search finds similar segments between two biological sequences, such as DNA or protein sequ...
The challenge of similarity search in massive DNA sequence databases has inspired major changes in B...
Motivation: Homology search finds similar segments between two biological sequences, such as DNA or ...
International audienceThe seeding technique became central in the theory of sequence alignment and t...
International audienceThe seeding technique became central in the theory of sequence alignment and t...
Motivation: Homology search finds similar segments between two biological sequences, such as DNA or ...
AbstractLarge-scale comparison of genomic DNA is of fundamental importance in annotating functional ...
AbstractOptimal spaced seeds were introduced by the theoretical computer science community to bioinf...
Motivation: Homology search finds similar segments between two biological sequences, such as DNA or ...
Abstract—We present a framework for improving local protein alignment algorithms. Specifically, we d...
Homology search finds similar segments between two biological sequences, such as DNA or protein sequ...
Homology search finds similar segments between two biological sequences, such as DNA or protein sequ...