Publications
263
Citations
3,105
Est. group size
~10
Recurring co-author estimate
Active years
40
Publishing since 1987
Ryan D. Roberts studies pediatric bone and soft-tissue cancers, especially osteosarcoma, focusing on how tumor cells interact with surrounding tissue to spread to other organs such as the lungs. His lab combines genomic and single-cell sequencing analyses with patient-derived tumor models to understand cancer biology and identify potential treatment targets, and also works on related pediatric cancers like rhabdomyosarcoma and medulloblastoma.
Publication output has grown substantially over the past decade, rising sharply from a handful of papers per year before 2020 to a peak of over 100 in 2023, with continued high output through 2025.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Osteosarcoma
2026
- Benefits of Comparative Oncology for Human Populations
2026
- SCANBIT facilitates identification of tumor cell populations in scRNAseq data using pseudobulked SNV calls
bioRxiv (Cold Spring Harbor Laboratory) · 2026
- Genomic Landscape of Myoepithelial Carcinoma Tumors
Oral Diseases · 2026
- Meningeal-tumor interactions define distinct modes of leptomeningeal colonization in Group 3 medulloblastoma
Acta Neuropathologica Communications · 2026
- Abstract 1428: Single cell RNA-seq analysis of osteosarcoma reveals conserved and distinct ecosystems across sites and species.
Cancer Research · 2026
- Abstract 641: Identifying vulnerabilities through an elucidation of the tumor-host interplay that drives osteosarcoma lung colonization.
Cancer Research · 2026
- A Clinically Integrated Pediatric Patient-Derived Xenograft Program Enables Evaluation of Cohort and Patient-Specific Biology and Therapeutic Strategies
Cancer Research · 2026
- MyoD is essential in rhabdomyosarcoma by promoting survival through differentiation and CYLD
iScience · 2025
- Supplementary Figure S2 from Aberrant Activation of Wound-Healing Programs within the Metastatic Niche Facilitates Lung Colonization by Osteosarcoma Cells
2025
- Supplementary Figure S8 from Aberrant Activation of Wound-Healing Programs within the Metastatic Niche Facilitates Lung Colonization by Osteosarcoma Cells
2025
- Supplementary Figure S6 from Aberrant Activation of Wound-Healing Programs within the Metastatic Niche Facilitates Lung Colonization by Osteosarcoma Cells
2025
- Data from Aberrant Activation of Wound-Healing Programs within the Metastatic Niche Facilitates Lung Colonization by Osteosarcoma Cells
2025
- Supplementary Figure S3 from Aberrant Activation of Wound-Healing Programs within the Metastatic Niche Facilitates Lung Colonization by Osteosarcoma Cells
2025
- Supplementary Video S1 from Aberrant Activation of Wound-Healing Programs within the Metastatic Niche Facilitates Lung Colonization by Osteosarcoma Cells
2025
- Cancer Research×35
- bioRxiv (Cold Spring Harbor Laboratory)×8
- Research Square×5
- Oncotarget×3
- Molecular Cancer Therapeutics×3
- Nathan D. Seligson
Medicine · The Ohio State University
- Bhuvana A. Setty
Medicine · The Ohio State University
- James Lin Chen
Medicine · The Ohio State University
- Michael J. Ferguson
Medicine · Indiana University
- Pankita H. Pandya
Medicine · Indiana University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
Claim or correct this profile