BackgroundCancer genome sequencing enables accurate classification of tumours and tumour subtypes. However, prediction performance is still limited using exome-only sequencing and for tumour types with low somatic mutation burden such as many paediatric tumours. Moreover, the ability to leverage deep representation learning in discovery of tumour entities remains unknown.MethodsWe introduce here Mutation-Attention (MuAt), a deep neural network to learn representations of simple and complex somatic alterations for prediction of tumour types and subtypes. In contrast to many previous methods, MuAt utilizes the attention mechanism on individual mutations instead of aggregated mutation counts.ResultsWe trained MuAt models on 2587 whole cancer g...
Cancer is an umbrella terminology that binds hundreds of complex genetic diseases based on a set of ...
<div><p>Cancer is a genetic disease that develops through a series of somatic mutations, a subset of...
BackgroundNext-generation sequencing (NGS) panels for mature B-cell neoplasms (MBNs) are widely appl...
In cancer, the primary tumour's organ of origin and histopathology are the strongest determinants of...
In cancer, the primary tumour's organ of origin and histopathology are the strongest determinants of...
In 2018, an estimated 1,762,450 new cases of cancer will be diagnosed in the United States and 606,8...
International audienceAbstract Background Next generation sequencing instruments are providing new o...
Copyright © 2015 Yukun Chen et al. This is an open access article distributed under the Creative Com...
Somatic mutation rates in cancer genomes are associated with chromatin state and informative of tumo...
Abstract Background Genetic information is becoming more readily available and is increasingly being...
Determining the cancer type and molecular subtype has important clinical implications. The primary s...
BackgroundNext-generation sequencing (NGS) panels for mature B-cell neoplasms (MBNs) are widely appl...
The genome of a cancer cell is replete with somatic mutations imprinted by the activities of differe...
In the last four years, advances in Deep Learning technology have enabled the inference of selected ...
Cancer is an umbrella terminology that binds hundreds of complex genetic diseases based on a set of ...
<div><p>Cancer is a genetic disease that develops through a series of somatic mutations, a subset of...
BackgroundNext-generation sequencing (NGS) panels for mature B-cell neoplasms (MBNs) are widely appl...
In cancer, the primary tumour's organ of origin and histopathology are the strongest determinants of...
In cancer, the primary tumour's organ of origin and histopathology are the strongest determinants of...
In 2018, an estimated 1,762,450 new cases of cancer will be diagnosed in the United States and 606,8...
International audienceAbstract Background Next generation sequencing instruments are providing new o...
Copyright © 2015 Yukun Chen et al. This is an open access article distributed under the Creative Com...
Somatic mutation rates in cancer genomes are associated with chromatin state and informative of tumo...
Abstract Background Genetic information is becoming more readily available and is increasingly being...
Determining the cancer type and molecular subtype has important clinical implications. The primary s...
BackgroundNext-generation sequencing (NGS) panels for mature B-cell neoplasms (MBNs) are widely appl...
The genome of a cancer cell is replete with somatic mutations imprinted by the activities of differe...
In the last four years, advances in Deep Learning technology have enabled the inference of selected ...
Cancer is an umbrella terminology that binds hundreds of complex genetic diseases based on a set of ...
<div><p>Cancer is a genetic disease that develops through a series of somatic mutations, a subset of...
BackgroundNext-generation sequencing (NGS) panels for mature B-cell neoplasms (MBNs) are widely appl...