Priyanka Bhandary
Reproducibility track record
1
assessed papers
84/100
mean reproducibility
1
reproduced (C1–C2)
0
flagged
0
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: 0
last author: 0
Topics
—
Funders
—
Frequent co-authors
Zebulun Arendsee 1Arun S. Seetharam 1Urminder Singh 1Eve Syrkin Wurtele 1Jing Li 1Jacqueline Campbell 1
Institutions
Iowa State University 1United States Department of Agriculture 1
Geography (author institutions)
US 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 (46)
Request a reproduction →1 assessed by us (1 reproduced) · 45 not yet assessed — every PubMed paper on record, linked below.
-
Integrative microRNA and transcriptome analysis reveals sex-specific molecular divergence in human bladder cancer ↗Biology of Sex Differences · 2026 · PMID 41578372not yet assessed
-
Additional file 4 of Integrative microRNA and transcriptome analysis reveals sex-specific molecular divergence in human bladder cancer ↗Figshare · 2026not yet assessed
-
Additional file 5 of Integrative microRNA and transcriptome analysis reveals sex-specific molecular divergence in human bladder cancer ↗Figshare · 2026not yet assessed
-
Additional file 8 of Integrative microRNA and transcriptome analysis reveals sex-specific molecular divergence in human bladder cancer ↗Figshare · 2026not yet assessed
-
Additional file 4 of Integrative microRNA and transcriptome analysis reveals sex-specific molecular divergence in human bladder cancer ↗Figshare · 2026not yet assessed
-
Additional file 6 of Integrative microRNA and transcriptome analysis reveals sex-specific molecular divergence in human bladder cancer ↗Figshare · 2026not yet assessed
-
Additional file 6 of Integrative microRNA and transcriptome analysis reveals sex-specific molecular divergence in human bladder cancer ↗Figshare · 2026not yet assessed
-
Additional file 7 of Integrative microRNA and transcriptome analysis reveals sex-specific molecular divergence in human bladder cancer ↗Figshare · 2026not yet assessed
-
Integrative microRNA and transcriptome analysis reveals sex-specific molecular divergence in human bladder cancer ↗Figshare · 2026not yet assessed
-
Additional file 8 of Integrative microRNA and transcriptome analysis reveals sex-specific molecular divergence in human bladder cancer ↗Figshare · 2026not yet assessed
-
Additional file 7 of Integrative microRNA and transcriptome analysis reveals sex-specific molecular divergence in human bladder cancer ↗Figshare · 2026not yet assessed
-
Additional file 1 of Integrative microRNA and transcriptome analysis reveals sex-specific molecular divergence in human bladder cancer ↗Figshare · 2026not yet assessed
-
Additional file 5 of Integrative microRNA and transcriptome analysis reveals sex-specific molecular divergence in human bladder cancer ↗Figshare · 2026not yet assessed
-
Additional file 1 of Integrative microRNA and transcriptome analysis reveals sex-specific molecular divergence in human bladder cancer ↗Figshare · 2026not yet assessed
-
Integrative microRNA and transcriptome analysis reveals sex-specific molecular divergence in human bladder cancer ↗Figshare · 2026not yet assessed
-
Additional file 3 of Integrative microRNA and transcriptome analysis reveals sex-specific molecular divergence in human bladder cancer ↗Figshare · 2026not yet assessed
-
Additional file 2 of Integrative microRNA and transcriptome analysis reveals sex-specific molecular divergence in human bladder cancer ↗Figshare · 2026not yet assessed
-
Additional file 3 of Integrative microRNA and transcriptome analysis reveals sex-specific molecular divergence in human bladder cancer ↗Figshare · 2026not yet assessed
-
Additional file 2 of Integrative microRNA and transcriptome analysis reveals sex-specific molecular divergence in human bladder cancer ↗Figshare · 2026not yet assessed
-
Identification of Wnt-5a Receptors Important in Diabetic and Non-Diabetic Corneal Epithelial Wound Healing ↗Investigative Ophthalmology & Visual Science · 2025 · PMID 39998459not yet assessed
-
Integrative multi-omics study identifies sex-specific molecular signatures and immune modulation in bladder cancer ↗Frontiers in Bioinformatics · 2025 · PMID 40458476not yet assessed
-
Using GPT-4 to write a scientific review article: a pilot evaluation study ↗BioData Mining · 2024 · PMID 38890715not yet assessed
-
Interaction models matter: an efficient, flexible computational framework for model-specific investigation of epistasis ↗BioData Mining · 2024 · PMID 38419006not yet assessed
-
Distinct network patterns emerge from Cartesian and XOR epistasis models: a comparative network science analysis ↗BioData Mining · 2024 · PMID 39732697not yet assessed
-
PAGER: A novel genotype encoding strategy for modeling deviations from additivity in complex trait association studies ↗BioData Mining · 2024 · PMID 39394173not yet assessed
-
An Integrative Study to Investigate Sex-Specific Biomarkers in Bladder Cancer Patients ↗bioRxiv (Cold Spring Harbor Laboratory) · 2024not yet assessed
-
Using GPT-4 to write a scientific review article: a pilot evaluation study ↗bioRxiv (Cold Spring Harbor Laboratory) · 2024not yet assessed
-
Distinct Network Patterns Emerge from Cartesian and XOR Epistasis Models: A Comparative Network Science Analysis ↗Research Square · 2024 · PMID 38826481not yet assessed
-
Computational framework for statistical epistasis supports XOR penetrance function in a living system ↗bioRxiv (Cold Spring Harbor Laboratory) · 2023not yet assessed
-
Heterologous Expression and Characterization of Plant Wax Ester Producing Enzymes ↗Metabolites · 2022 · PMID 35888701not yet assessed
-
FINDER: an automated software package to annotate eukaryotic genes from RNA-Seq data and associated protein sequences ↗BMC Bioinformatics · 2021 · PMID 33879057not yet assessed
-
Foster thy young: enhanced prediction of orphan genes in assembled genomesNucleic Acids Research · 2021 · PMID 34928390L1 84/100
-
FINDER: An automated software package to annotate eukaryotic genes from RNA-Seq data and associated protein sequences ↗bioRxiv (Cold Spring Harbor Laboratory) · 2021not yet assessed
-
Additional file 8 of FINDER: an automated software package to annotate eukaryotic genes from RNA-Seq data and associated protein sequences ↗Figshare · 2021not yet assessed
-
Additional file 2 of FINDER: an automated software package to annotate eukaryotic genes from RNA-Seq data and associated protein sequences ↗Figshare · 2021not yet assessed
-
Additional file 3 of FINDER: an automated software package to annotate eukaryotic genes from RNA-Seq data and associated protein sequences ↗Figshare · 2021not yet assessed
-
Additional file 5 of FINDER: an automated software package to annotate eukaryotic genes from RNA-Seq data and associated protein sequences ↗Figshare · 2021not yet assessed
-
Additional file 4 of FINDER: an automated software package to annotate eukaryotic genes from RNA-Seq data and associated protein sequences ↗Figshare · 2021not yet assessed
-
Additional file 6 of FINDER: an automated software package to annotate eukaryotic genes from RNA-Seq data and associated protein sequences ↗Figshare · 2021not yet assessed
-
Additional file 7 of FINDER: an automated software package to annotate eukaryotic genes from RNA-Seq data and associated protein sequences ↗Figshare · 2021not yet assessed
-
FINDER ↗2020not yet assessed
-
Enhancing eukaryotic gene structure annotation via changepoint analysis of short-read coverage data ↗Faculty of 1000 Research Ltd · 2020not yet assessed
-
fagin: synteny-based phylostratigraphy and finer classification of young genes ↗BMC Bioinformatics · 2019 · PMID 31455236not yet assessed
-
Additional file 3: of fagin: synteny-based phylostratigraphy and finer classification of young genes ↗Figshare · 2019not yet assessed
-
Additional file 2: of fagin: synteny-based phylostratigraphy and finer classification of young genes ↗Figshare · 2019not yet assessed
-
Raising orphans from a metadata morass: A researcher's guide to re-use of public ’omics data ↗Plant Science · 2017 · PMID 29362097not 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 “Bhandary P” paper on PubMed ↗