SNP arrays provide reliable genotypes and can detect chromosomal aberrations at a high resolution. However, tissue heterogeneity is currently a major limitation for somatic tissue analysis. We have developed SOMATICs, an original program for accurate analysis of heterogeneous tissue samples. Fifty-four samples (42 tumors and 12 normal tissues) were processed through Illumina Beadarrays and then analyzed with SOMATICs. We demonstrate that tissue heterogeneity-related limitations not only can be overcome but can also be turned into an advantage. First, admixture of normal cells with tumor can be used as an internal reference, thereby enabling highly sensitive detection of somatic deletions without having corresponding normal tissue. Second, t...
Abstract Background Accurate detection of somatic sin...
International audienceA key constraint in genomic testing in oncology is that matched normal specime...
BackgroundAccurate detection of somatic single nucleotide variants and small insertions and deletion...
SNP arrays provide reliable genotypes and can detect chromosomal aberrations at a high resolution. H...
Genomic copy number alteration and allelic imbalance are distinct features of cancer cells, and rece...
<div><p>Genomic copy number alteration and allelic imbalance are distinct features of cancer cells, ...
Single nucleotide polymorphism (SNP) arrays are powerful tools to delineate genomic aberrations in c...
Genomic copy number alteration and allelic imbalance are distinct features of cancer cells, and rece...
Somatic mutation calling from next-generation sequencing data remains a challenge due to the difficu...
<div><p>Somatic mutation calling from next-generation sequencing data remains a challenge due to the...
<div><p>A key constraint in genomic testing in oncology is that matched normal specimens are not com...
Abstract Background Accurate detection of somatic sin...
International audienceA key constraint in genomic testing in oncology is that matched normal specime...
International audienceA key constraint in genomic testing in oncology is that matched normal specime...
International audienceA key constraint in genomic testing in oncology is that matched normal specime...
Abstract Background Accurate detection of somatic sin...
International audienceA key constraint in genomic testing in oncology is that matched normal specime...
BackgroundAccurate detection of somatic single nucleotide variants and small insertions and deletion...
SNP arrays provide reliable genotypes and can detect chromosomal aberrations at a high resolution. H...
Genomic copy number alteration and allelic imbalance are distinct features of cancer cells, and rece...
<div><p>Genomic copy number alteration and allelic imbalance are distinct features of cancer cells, ...
Single nucleotide polymorphism (SNP) arrays are powerful tools to delineate genomic aberrations in c...
Genomic copy number alteration and allelic imbalance are distinct features of cancer cells, and rece...
Somatic mutation calling from next-generation sequencing data remains a challenge due to the difficu...
<div><p>Somatic mutation calling from next-generation sequencing data remains a challenge due to the...
<div><p>A key constraint in genomic testing in oncology is that matched normal specimens are not com...
Abstract Background Accurate detection of somatic sin...
International audienceA key constraint in genomic testing in oncology is that matched normal specime...
International audienceA key constraint in genomic testing in oncology is that matched normal specime...
International audienceA key constraint in genomic testing in oncology is that matched normal specime...
Abstract Background Accurate detection of somatic sin...
International audienceA key constraint in genomic testing in oncology is that matched normal specime...
BackgroundAccurate detection of somatic single nucleotide variants and small insertions and deletion...