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author Uryu, Hidetaka
Saeki, Koichi
Nangalia, Jyoti
Chapman, Michael
Zhao, LI
Hsu, Joanne
Bueso-Ramos, Carlos
Chen, Shujuan
Yang, Hui
Dinardo, Courtney
Daver, Naval
Colla, Simona
Ganan-Gomez, Irene
Zhang, Jianhua
Song, Xingzhi
Thompson, Erika
Tang, Hongli
Orlowski, Robert Z
Champlin, Richard E.
Qazilbash, Muzaffar H.
Shpall, Elizabeth J.
Futreal, Andrew
Garcia-Manero, Guillermo
Haeno, Hiroshi
Takahashi, Koichi
author_facet Uryu, Hidetaka
Saeki, Koichi
Nangalia, Jyoti
Chapman, Michael
Zhao, LI
Hsu, Joanne
Bueso-Ramos, Carlos
Chen, Shujuan
Yang, Hui
Dinardo, Courtney
Daver, Naval
Colla, Simona
Ganan-Gomez, Irene
Zhang, Jianhua
Song, Xingzhi
Thompson, Erika
Tang, Hongli
Orlowski, Robert Z
Champlin, Richard E.
Qazilbash, Muzaffar H.
Shpall, Elizabeth J.
Futreal, Andrew
Garcia-Manero, Guillermo
Haeno, Hiroshi
Takahashi, Koichi
author_sort Uryu, Hidetaka
collection PubMed
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publishDate 2023
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record_format MEDLINE/PubMed
spelling pubmed-104305132023-08-17 P1330: CYTOREDUCTIVE CHEMOTHERAPY COULD ACCELERATE THE LOSS OF CLONAL DIVERSITY IN HEMATOPOIETIC STEM CELLS AND PROMOTES THE CONVERGENT EVOLUTION OF THERAPY-RELATED CLONAL HEMATOPOIESIS Uryu, Hidetaka Saeki, Koichi Nangalia, Jyoti Chapman, Michael Zhao, LI Hsu, Joanne Bueso-Ramos, Carlos Chen, Shujuan Yang, Hui Dinardo, Courtney Daver, Naval Colla, Simona Ganan-Gomez, Irene Zhang, Jianhua Song, Xingzhi Thompson, Erika Tang, Hongli Orlowski, Robert Z Champlin, Richard E. Qazilbash, Muzaffar H. Shpall, Elizabeth J. Futreal, Andrew Garcia-Manero, Guillermo Haeno, Hiroshi Takahashi, Koichi Hemasphere Posters Lippincott Williams & Wilkins 2023-08-08 /pmc/articles/PMC10430513/ http://dx.doi.org/10.1097/01.HS9.0000972208.18169.8b Text en Copyright © 2023 The Author(s). Published by Wolters Kluwer Health, Inc. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access Abstract Book distributed under the Attribution-NonCommercial-NoDerivs (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) which allows third parties to download the articles and share them with others as long as they credit the author and the Abstract Book, but they cannot change the content in any way or use them commercially.
spellingShingle Posters
Uryu, Hidetaka
Saeki, Koichi
Nangalia, Jyoti
Chapman, Michael
Zhao, LI
Hsu, Joanne
Bueso-Ramos, Carlos
Chen, Shujuan
Yang, Hui
Dinardo, Courtney
Daver, Naval
Colla, Simona
Ganan-Gomez, Irene
Zhang, Jianhua
Song, Xingzhi
Thompson, Erika
Tang, Hongli
Orlowski, Robert Z
Champlin, Richard E.
Qazilbash, Muzaffar H.
Shpall, Elizabeth J.
Futreal, Andrew
Garcia-Manero, Guillermo
Haeno, Hiroshi
Takahashi, Koichi
P1330: CYTOREDUCTIVE CHEMOTHERAPY COULD ACCELERATE THE LOSS OF CLONAL DIVERSITY IN HEMATOPOIETIC STEM CELLS AND PROMOTES THE CONVERGENT EVOLUTION OF THERAPY-RELATED CLONAL HEMATOPOIESIS
title P1330: CYTOREDUCTIVE CHEMOTHERAPY COULD ACCELERATE THE LOSS OF CLONAL DIVERSITY IN HEMATOPOIETIC STEM CELLS AND PROMOTES THE CONVERGENT EVOLUTION OF THERAPY-RELATED CLONAL HEMATOPOIESIS
title_full P1330: CYTOREDUCTIVE CHEMOTHERAPY COULD ACCELERATE THE LOSS OF CLONAL DIVERSITY IN HEMATOPOIETIC STEM CELLS AND PROMOTES THE CONVERGENT EVOLUTION OF THERAPY-RELATED CLONAL HEMATOPOIESIS
title_fullStr P1330: CYTOREDUCTIVE CHEMOTHERAPY COULD ACCELERATE THE LOSS OF CLONAL DIVERSITY IN HEMATOPOIETIC STEM CELLS AND PROMOTES THE CONVERGENT EVOLUTION OF THERAPY-RELATED CLONAL HEMATOPOIESIS
title_full_unstemmed P1330: CYTOREDUCTIVE CHEMOTHERAPY COULD ACCELERATE THE LOSS OF CLONAL DIVERSITY IN HEMATOPOIETIC STEM CELLS AND PROMOTES THE CONVERGENT EVOLUTION OF THERAPY-RELATED CLONAL HEMATOPOIESIS
title_short P1330: CYTOREDUCTIVE CHEMOTHERAPY COULD ACCELERATE THE LOSS OF CLONAL DIVERSITY IN HEMATOPOIETIC STEM CELLS AND PROMOTES THE CONVERGENT EVOLUTION OF THERAPY-RELATED CLONAL HEMATOPOIESIS
title_sort p1330: cytoreductive chemotherapy could accelerate the loss of clonal diversity in hematopoietic stem cells and promotes the convergent evolution of therapy-related clonal hematopoiesis
topic Posters
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10430513/
http://dx.doi.org/10.1097/01.HS9.0000972208.18169.8b
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