Maroussia M. P. Ganpat
Reproducibility track record
1
assessed papers
88/100
mean reproducibility
1
reproduced (C1–C2)
0
flagged
5
total citations
flag rate:
0%
(0/1)
The share of this author’s assessed papers carrying a ⚑ flag. A concentration is a prompt for expert review — never, on its own, a determination about the person.
Authorship role
first author: 1
last author: 0
Topics
Funders
—
Frequent co-authors
Susana M. Chuva de Sousa Lopes 1Aleksandra Balwierz 1Francisco Morales-Rodriguez 1Sepide Derakhshan 1Terezinha Souza 1Thanasis Margaritis 1Alexander van Oudenaarden 1Marry M. van den Heuvel‐Eibrink 1Jarno Drost 1Dilara Ayyildiz 1
Institutions
Oncode Institute 1Princess Máxima Center 1Lygature 1Royal Netherlands Academy of Arts and Sciences 1Heidelberg University 1University Hospital Heidelberg 1
Geography (author institutions)
NL 1DE 1BE 1
Co-author network
Collaborators, sized by shared output and coloured by their own reproducibility (green = high, red = low). Click a node to open their card. A pattern is a prompt for review, never a determination.
How this author’s assessed papers reproduced — the outcome of reproduction attempts, not a judgement of the person. Coverage is partial and grows over time.
Assessed papers (1)
Complete publication record (7)
Request a reproduction →1 assessed by us (1 reproduced) · 6 not yet assessed — every PubMed paper on record, linked below.
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Recruitment and release of XPG during NER is controlled by pre- and post-incision factors and EXO1 ↗The Journal of Cell Biology · 2026 · PMID 42377264not yet assessed
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Protocol for lentiviral engineering and multi-omic characterization of human kidney tubuloids ↗STAR Protocols · 2026 · PMID 41686644not yet assessed
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An engineered tumor organoid model reveals cellular identity and signaling trajectories underlying SFPQ-TFE3 driven translocation RCCiScience · 2025 · PMID 40463960L1 88/100
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An engineered tumor organoid model reveals cellular identity and signaling trajectories underlying translocation RCC ↗bioRxiv (Cold Spring Harbor Laboratory) · 2023not yet assessed
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MATISSE: a method for improved single cell segmentation in imaging mass cytometry ↗BMC Biology · 2021 · PMID 33975602not yet assessed
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Publisher Correction to: MATISSE: a method for improved single cell segmentation in imaging mass cytometry ↗BMC Biology · 2021 · PMID 34144713not yet assessed
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Estrogen Receptor/Progesterone Receptor-Negative Breast Cancers of Young African-American Women Have a Higher Frequency of Methylation of Multiple Genes than Those of Caucasian Women1 ↗Clinical Cancer Research · 2004 · PMID 15041725not yet assessed
Full bibliography from OpenAlex; reproducibility verdicts matched by PMID.
Author attribution follows OpenAlex disambiguation, which is imperfect — a researcher's papers can be split across profiles or mixed with a namesake.
Merged across profiles sharing this ORCID where present. See every “Ganpat M” paper on PubMed ↗