International audienceA key constraint in genomic testing in oncology is that matched normal specimens are not commonly obtained in clinical practice. Thus, while well-characterized genomic alterations do not require normal tissue for interpretation, a significant number of alterations will be unknown in whether they are germline or somatic, in the absence of a matched normal control. We introduce SGZ (somatic-germline-zygosity), a computational method for predicting somatic vs. germline origin and homozygous vs. heterozygous or sub-clonal state of variants identified from deep massively parallel sequencing (MPS) of cancer specimens. The method does not require a patient matched normal control, enabling broad application in clinical researc...
Tumor analyses commonly employ a correction with a matched normal (MN), a sample from healthy tissue...
Whole genome sequencing of matched tumor-normal sample pairs is becoming routine in cancer research....
The rapid development of high-throughput sequencing technology provides a new chance to extend the s...
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...
<div><p>A key constraint in genomic testing in oncology is that matched normal specimens are not com...
Cancer development and progression is driven by genetic alterations. These alterations include somat...
During tumor inception and progression, culprit gene variants confer selective advantage to progenit...
Cancer results from the progressive accumulation of genetic alterations that drive uncontrolled cell...
Tumor analyses commonly employ a correction with a matched normal (MN), a sample from healthy tissue...
Tumor analyses commonly employ a correction with a matched normal (MN), a sample from healthy tissue...
Cancer results from the progressive accumulation of genetic alterations that drive uncontrolled cell...
Tumor analyses commonly employ a correction with a matched normal (MN), a sample from healthy tissue...
Genomic sequence mutations can be pathogenic in both germline and somatic cells. Several authors hav...
Tumor analyses commonly employ a correction with a matched normal (MN), a sample from healthy tissue...
Whole genome sequencing of matched tumor-normal sample pairs is becoming routine in cancer research....
The rapid development of high-throughput sequencing technology provides a new chance to extend the s...
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...
<div><p>A key constraint in genomic testing in oncology is that matched normal specimens are not com...
Cancer development and progression is driven by genetic alterations. These alterations include somat...
During tumor inception and progression, culprit gene variants confer selective advantage to progenit...
Cancer results from the progressive accumulation of genetic alterations that drive uncontrolled cell...
Tumor analyses commonly employ a correction with a matched normal (MN), a sample from healthy tissue...
Tumor analyses commonly employ a correction with a matched normal (MN), a sample from healthy tissue...
Cancer results from the progressive accumulation of genetic alterations that drive uncontrolled cell...
Tumor analyses commonly employ a correction with a matched normal (MN), a sample from healthy tissue...
Genomic sequence mutations can be pathogenic in both germline and somatic cells. Several authors hav...
Tumor analyses commonly employ a correction with a matched normal (MN), a sample from healthy tissue...
Whole genome sequencing of matched tumor-normal sample pairs is becoming routine in cancer research....
The rapid development of high-throughput sequencing technology provides a new chance to extend the s...