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Luiza Moore

Showing results (11-20 of 29) with videos related to

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Nature Protocols|December 15, 2020
Reliable detection of somatic mutations in solid tissues by laser-capture microdissection and low-input DNA sequencingPeter Ellis, Luiza Moore, Mathijs A Sanders, et al.
Nature|May 13, 2021
Lineage tracing of human development through somatic mutationsMichael Spencer Chapman, Anna Maria Ranzoni, Brynelle Myers, et al.
Nature|March 20, 2025
The somatic mutation landscape of normal gastric epitheliumTim H H Coorens, Grace Collord, Hyungchul Jung, et al.
Nature Genetics|October 1, 2021
Increased somatic mutation burdens in normal human cells due to defective DNA polymerasesPhilip S Robinson, Tim H H Coorens, Claire Palles, et al.
Nature|October 25, 2019
The landscape of somatic mutation in normal colorectal epithelial cellsHenry Lee-Six, Sigurgeir Olafsson, Peter Ellis, et al.
Nature|August 26, 2021
Extensive phylogenies of human development inferred from somatic mutationsTim H H Coorens, Luiza Moore, Philip S Robinson, et al.
Cancer Research Communications|November 10, 2025
Deep Learning Predicts EGFR Mutation Status from Histology Images in Non-Small Cell Lung CancerJongchan Park, Sangwon Shin, Woochan Hwang, et al.
Nature Communications|August 29, 2020
Multi-site clonality analysis uncovers pervasive heterogeneity across melanoma metastasesRoy Rabbie, Naser Ansari-Pour, Oliver Cast, et al.
Clinical Cancer Research : an Official Journal of the American Association for Cancer Research|May 13, 2025
Cambridge Neoadjuvant Cancer of the Prostate (CANCAP03): A Window Study into the Effects of Olaparib ± Degarelix in Primary Prostate CancerHarveer Dev, Mark Linch, Krishna Narahari, et al.
Nature Genetics|January 26, 2023
APOBEC mutagenesis is a common process in normal human small intestineYichen Wang, Philip S Robinson, Tim H H Coorens, et al.
Pageof 3

Showing results (11-20 of 29) with videos related to

Sort By:
Pageof 3
Nature Protocols|December 15, 2020
Reliable detection of somatic mutations in solid tissues by laser-capture microdissection and low-input DNA sequencingPeter Ellis, Luiza Moore, Mathijs A Sanders, et al.
Nature|May 13, 2021
Lineage tracing of human development through somatic mutationsMichael Spencer Chapman, Anna Maria Ranzoni, Brynelle Myers, et al.
Nature|March 20, 2025
The somatic mutation landscape of normal gastric epitheliumTim H H Coorens, Grace Collord, Hyungchul Jung, et al.
Nature Genetics|October 1, 2021
Increased somatic mutation burdens in normal human cells due to defective DNA polymerasesPhilip S Robinson, Tim H H Coorens, Claire Palles, et al.
Nature|October 25, 2019
The landscape of somatic mutation in normal colorectal epithelial cellsHenry Lee-Six, Sigurgeir Olafsson, Peter Ellis, et al.
Nature|August 26, 2021
Extensive phylogenies of human development inferred from somatic mutationsTim H H Coorens, Luiza Moore, Philip S Robinson, et al.
Cancer Research Communications|November 10, 2025
Deep Learning Predicts EGFR Mutation Status from Histology Images in Non-Small Cell Lung CancerJongchan Park, Sangwon Shin, Woochan Hwang, et al.
Nature Communications|August 29, 2020
Multi-site clonality analysis uncovers pervasive heterogeneity across melanoma metastasesRoy Rabbie, Naser Ansari-Pour, Oliver Cast, et al.
Clinical Cancer Research : an Official Journal of the American Association for Cancer Research|May 13, 2025
Cambridge Neoadjuvant Cancer of the Prostate (CANCAP03): A Window Study into the Effects of Olaparib ± Degarelix in Primary Prostate CancerHarveer Dev, Mark Linch, Krishna Narahari, et al.
Nature Genetics|January 26, 2023
APOBEC mutagenesis is a common process in normal human small intestineYichen Wang, Philip S Robinson, Tim H H Coorens, et al.
Pageof 3