Insertions and deletions (indels) are important types of structural variations. Obtaining accurate genotypes of indels may facilitate further genetic study. There are a few existing methods for calling indel genotypes from sequence reads. However, none of these tools can accurately call indel genotypes for indels of all lengths, especially for low coverage sequence data. In this paper, we present GINDEL, an approach for calling genotypes of both insertions and deletions from sequence reads. GINDEL uses a machine learning approach which combines multiple features extracted from next generation sequencing data. We test our approach on both simulated and real data and compare with existing tools, including Genome STRiP, Pindel and Clever-sv. R...
The rapidly developing sequencing technology has brought up an opportunity to scientists to look int...
Delins, as known as complex indel, is a combined genomic structural variation formed by deleting and...
The advent of genome-wide association studies (GWAS) revolutionized the field of complex disease gen...
<div><p>Insertions and deletions (indels) are important types of structural variations. Obtaining ac...
Small insertions and deletions (indels) are a common and functionally important type of sequence pol...
<p>Results on the percentage of correctly called genotypes are given for deletions with different le...
Motivation: There is a strong demand in the genomic community to develop effective algorithms to rel...
Insertion and deletion polymorphisms (indels) are an important source of genomic variation in plant ...
Insertion and deletion (INDEL) mutations, the most common type of structural variance, are associate...
Abstract. While the discovery of structural variants in the human pop-ulation is ongoing, most metho...
Taking advantage of the deep targeted sequencing capabilities of next generation sequencers, we have...
<div><p>Insertion and deletion (INDEL) mutations, the most common type of structural variance, are a...
Motivation: Insertions and deletions contribute significantly to genomic diversity both at intra and...
<p>Horizontal axis: range of deletion length (in bp). The number of deletions within a length range ...
Insertions and deletions (indels) in human genomes are associated with a wide range of phenotypes, i...
The rapidly developing sequencing technology has brought up an opportunity to scientists to look int...
Delins, as known as complex indel, is a combined genomic structural variation formed by deleting and...
The advent of genome-wide association studies (GWAS) revolutionized the field of complex disease gen...
<div><p>Insertions and deletions (indels) are important types of structural variations. Obtaining ac...
Small insertions and deletions (indels) are a common and functionally important type of sequence pol...
<p>Results on the percentage of correctly called genotypes are given for deletions with different le...
Motivation: There is a strong demand in the genomic community to develop effective algorithms to rel...
Insertion and deletion polymorphisms (indels) are an important source of genomic variation in plant ...
Insertion and deletion (INDEL) mutations, the most common type of structural variance, are associate...
Abstract. While the discovery of structural variants in the human pop-ulation is ongoing, most metho...
Taking advantage of the deep targeted sequencing capabilities of next generation sequencers, we have...
<div><p>Insertion and deletion (INDEL) mutations, the most common type of structural variance, are a...
Motivation: Insertions and deletions contribute significantly to genomic diversity both at intra and...
<p>Horizontal axis: range of deletion length (in bp). The number of deletions within a length range ...
Insertions and deletions (indels) in human genomes are associated with a wide range of phenotypes, i...
The rapidly developing sequencing technology has brought up an opportunity to scientists to look int...
Delins, as known as complex indel, is a combined genomic structural variation formed by deleting and...
The advent of genome-wide association studies (GWAS) revolutionized the field of complex disease gen...