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Jolanda Sarno

Showing results (1-10 of 18) with videos related to

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Molecular & Cellular Oncology|September 29, 2018
Single-cell mass cytometry and machine learning predict relapse in childhood leukemiaJolanda Sarno, Kara L Davis
Methods in Molecular Biology (Clifton, N.J.)|November 9, 2020
Mass Cytometry of Hematopoietic CellsAstraea Jager, Jolanda Sarno, Kara L Davis
International Journal of Molecular Sciences|January 11, 2025
Unlocking the Heterogeneity in Acute Leukaemia: Dissection of Clonal Architecture and Metabolic Properties for Clinical InterventionsMartina Maria Capelletti, Orsola Montini, Emilio Ruini, et al.
Arxiv|July 1, 2024
MMIL: A novel algorithm for disease associated cell type discoveryErin Craig, Timothy Keyes, Jolanda Sarno, et al.
The Journal of Clinical Investigation|November 2, 2023
Genome editing-induced t(4;11) chromosomal translocations model B cell precursor acute lymphoblastic leukemias with KMT2A-AFF1 fusionFeng Pan, Jolanda Sarno, Johan Jeong, et al.
Science Advances|August 27, 2025
Annotation-free discovery of disease-relevant cells in single-cell datasetsErin Craig, Timothy J Keyes, Jolanda Sarno, et al.
Nature Communications|May 22, 2023
Dasatinib overcomes glucocorticoid resistance in B-cell acute lymphoblastic leukemiaJolanda Sarno, Pablo Domizi, Yuxuan Liu, et al.
Nature Communications|February 18, 2022
CytofIn enables integrated analysis of public mass cytometry datasets using generalized anchorsYu-Chen Lo, Timothy J Keyes, Astraea Jager, et al.
Nature Communications|July 5, 2024
CNS-wide repopulation by hematopoietic-derived microglia-like cells corrects progranulin deficiency in micePasqualina Colella, Ruhi Sayana, Maria Valentina Suarez-Nieto, et al.
Research Square|October 4, 2023
CNS Repopulation by Hematopoietic-Derived Microglia-Like Cells Corrects Progranulin deficiencyPasqualina Colella, Ruhi Sayana, Maria Valentina Suarez-Nieto, et al.
Pageof 2

Showing results (1-10 of 18) with videos related to

Sort By:
Pageof 2
Molecular & Cellular Oncology|September 29, 2018
Single-cell mass cytometry and machine learning predict relapse in childhood leukemiaJolanda Sarno, Kara L Davis
Methods in Molecular Biology (Clifton, N.J.)|November 9, 2020
Mass Cytometry of Hematopoietic CellsAstraea Jager, Jolanda Sarno, Kara L Davis
International Journal of Molecular Sciences|January 11, 2025
Unlocking the Heterogeneity in Acute Leukaemia: Dissection of Clonal Architecture and Metabolic Properties for Clinical InterventionsMartina Maria Capelletti, Orsola Montini, Emilio Ruini, et al.
Arxiv|July 1, 2024
MMIL: A novel algorithm for disease associated cell type discoveryErin Craig, Timothy Keyes, Jolanda Sarno, et al.
The Journal of Clinical Investigation|November 2, 2023
Genome editing-induced t(4;11) chromosomal translocations model B cell precursor acute lymphoblastic leukemias with KMT2A-AFF1 fusionFeng Pan, Jolanda Sarno, Johan Jeong, et al.
Science Advances|August 27, 2025
Annotation-free discovery of disease-relevant cells in single-cell datasetsErin Craig, Timothy J Keyes, Jolanda Sarno, et al.
Nature Communications|May 22, 2023
Dasatinib overcomes glucocorticoid resistance in B-cell acute lymphoblastic leukemiaJolanda Sarno, Pablo Domizi, Yuxuan Liu, et al.
Nature Communications|February 18, 2022
CytofIn enables integrated analysis of public mass cytometry datasets using generalized anchorsYu-Chen Lo, Timothy J Keyes, Astraea Jager, et al.
Nature Communications|July 5, 2024
CNS-wide repopulation by hematopoietic-derived microglia-like cells corrects progranulin deficiency in micePasqualina Colella, Ruhi Sayana, Maria Valentina Suarez-Nieto, et al.
Research Square|October 4, 2023
CNS Repopulation by Hematopoietic-Derived Microglia-Like Cells Corrects Progranulin deficiencyPasqualina Colella, Ruhi Sayana, Maria Valentina Suarez-Nieto, et al.
Pageof 2