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Telomerecat: A ploidy-agnostic method for estimating telomere length from whole genome sequencing data

Telomere length is a risk factor in disease and the dynamics of telomere length are crucial to our understanding of cell replication and vitality. The proliferation of whole genome sequencing represents an unprecedented opportunity to glean new insights...

Journal Title: Scientific Reports (Nature Publisher Group) Jan 2018, Vol.8, pp.1-17
Main Author: Farmery, James
Other Authors: Smith, Mike , Huissoon, Aarnoud , Furnell, Abigail , Mead, Adam , Levine, Adam , Manzur, Adnan , Thrasher, Adrian , Greenhalgh, Alan , Parker, Alasdair , Sanchis-Juan, Alba , Richter, Alex , Gardham, Alice , Lawrie, Allan , Sohal, Aman , Creaser-Myers, Amanda , Frary, Amy , Greinacher, Andreas , Themistocleous, Andreas , Peacock
Format: Electronic Article Electronic Article
Language: English
Subjects:
ID: E-ISSN: 20452322 ; DOI: 10.1038/s41598-017-14403-y
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title: Telomerecat: A ploidy-agnostic method for estimating telomere length from whole genome sequencing data
format: Article
creator:
  • Farmery, James
  • Smith, Mike
  • Huissoon, Aarnoud
  • Furnell, Abigail
  • Mead, Adam
  • Levine, Adam
  • Manzur, Adnan
  • Thrasher, Adrian
  • Greenhalgh, Alan
  • Parker, Alasdair
  • Sanchis-Juan, Alba
  • Richter, Alex
  • Gardham, Alice
  • Lawrie, Allan
  • Sohal, Aman
  • Creaser-Myers, Amanda
  • Frary, Amy
  • Greinacher, Andreas
  • Themistocleous, Andreas
  • Peacock
subjects:
  • Cancer
  • Chromosomes
  • Data Processing
  • Telomeres
  • Genomes
  • Computer Applications
  • Genotypes
  • Telomerase
  • Ploidy
  • Genomes
  • Cancer
ispartof: Scientific Reports (Nature Publisher Group), Jan 2018, Vol.8, pp.1-17
description: Telomere length is a risk factor in disease and the dynamics of telomere length are crucial to our understanding of cell replication and vitality. The proliferation of whole genome sequencing represents an unprecedented opportunity to glean new insights...
language: eng
source:
identifier: E-ISSN: 20452322 ; DOI: 10.1038/s41598-017-14403-y
fulltext: fulltext_linktorsrc
issn:
  • 20452322
  • 2045-2322
url: Link


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titleTelomerecat: A ploidy-agnostic method for estimating telomere length from whole genome sequencing data
creatorFarmery, James ; Smith, Mike ; Huissoon, Aarnoud ; Furnell, Abigail ; Mead, Adam ; Levine, Adam ; Manzur, Adnan ; Thrasher, Adrian ; Greenhalgh, Alan ; Parker, Alasdair ; Sanchis-Juan, Alba ; Richter, Alex ; Gardham, Alice ; Lawrie, Allan ; Sohal, Aman ; Creaser-Myers, Amanda ; Frary, Amy ; Greinacher, Andreas ; Themistocleous, Andreas ; Peacock
ispartofScientific Reports (Nature Publisher Group), Jan 2018, Vol.8, pp.1-17
identifierE-ISSN: 20452322 ; DOI: 10.1038/s41598-017-14403-y
subjectCancer ; Chromosomes ; Data Processing ; Telomeres ; Genomes ; Computer Applications ; Genotypes ; Telomerase ; Ploidy ; Genomes ; Cancer
descriptionTelomere length is a risk factor in disease and the dynamics of telomere length are crucial to our understanding of cell replication and vitality. The proliferation of whole genome sequencing represents an unprecedented opportunity to glean new insights...
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titleTelomerecat: A ploidy-agnostic method for estimating telomere length from whole genome sequencing data
authorFarmery, James ; Smith, Mike ; Huissoon, Aarnoud ; Furnell, Abigail ; Mead, Adam ; Levine, Adam ; Manzur, Adnan ; Thrasher, Adrian ; Greenhalgh, Alan ; Parker, Alasdair ; Sanchis-Juan, Alba ; Richter, Alex ; Gardham, Alice ; Lawrie, Allan ; Sohal, Aman...
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atitleTelomerecat: A ploidy-agnostic method for estimating telomere length from whole genome sequencing data
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abstractTelomere length is a risk factor in disease and the dynamics of telomere length are crucial to our understanding of cell replication and vitality. The proliferation of whole genome sequencing represents an unprecedented opportunity to glean new insights...
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