Sayaka Miura

Affiliations: 
2012 Pennsylvania State University, State College, PA, United States 
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"Sayaka Miura"

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Masatoshi Nei grad student 2012 Penn State
 (Evolutionary changes of microRNA genes and the population dynamics of mutant genes in varying environments.)
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Publications

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Craig JM, Gerhard GS, Sharma S, et al. (2023) Methods for Estimating Personal Disease Risk and Phylogenetic Diversity of Hematopoietic Stem Cells. Molecular Biology and Evolution
Miura S, Dolker T, Sanderford M, et al. (2023) Improving cellular phylogenies through the integrated use of mutation order and optimality principles. Computational and Structural Biotechnology Journal. 21: 3894-3903
Huzar J, Shenoy M, Sanderford MD, et al. (2023) Bootstrap confidence for molecular evolutionary estimates from tumor bulk sequencing data. Frontiers in Bioinformatics. 3: 1090730
Chroni A, Miura S, Hamilton L, et al. (2022) Clone Phylogenetics Reveals Metastatic Tumor Migrations, Maps, and Models. Cancers. 14
Amendola A, Canuti M, Bianchi S, et al. (2022) Molecular evidence for SARS-CoV-2 in samples collected from patients with morbilliform eruptions since late 2019 in Lombardy, northern Italy. Environmental Research. 113979
Miura S, Vu T, Choi J, et al. (2022) A phylogenetic approach to study the evolution of somatic mutational processes in cancer. Communications Biology. 5: 617
Caraballo-Ortiz MA, Miura S, Sanderford M, et al. (2022) TopHap: rapid inference of key phylogenetic structures from common haplotypes in large genome collections with limited diversity. Bioinformatics (Oxford, England). 38: 2719-2726
Huzar J, Kim H, Kumar S, et al. (2022) MOCA for Integrated Analysis of Gene Expression and Genetic Variation in Single Cells. Frontiers in Genetics. 13: 831040
Caraballo-Ortiz MA, Miura S, Sanderford M, et al. (2022) TopHap: Rapid inference of key phylogenetic structures from common haplotypes in large genome collections with limited diversity. Bioinformatics (Oxford, England)
Caraballo-Ortiz MA, Miura S, Sanderford M, et al. (2021) TopHap: Rapid inference of key phylogenetic structures from common haplotypes in large genome collections with limited diversity. Biorxiv : the Preprint Server For Biology
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