Staff Scientist

Ryan O’Neill

Developing high-throughput tools and Drosophila models for rare disease research.

Ryan O’Neill

About

Ryan O’Neill develops high-throughput recording platforms and AI-based analysis pipelines for rare-disease research in Drosophila. His work combines disease models, quantitative behavior, and genetic analysis to connect patient variants with cellular and developmental phenotypes.

He has investigated how Traip prevents neural stem-cell loss in a model of microcephaly, and how duplicated centrosome genes acquire cell-type-specific functions.

Expertise

Drosophila disease models, high-throughput phenotyping, AI-based behavioral analysis, microcephaly, centrosome evolution and genetics

Education & career

Current

Staff Scientist

Guidehouse contractor in the Rusan Lab · NHLBI, NIH

2016–2024

Postdoctoral Fellow

NHLBI, NIH · Nasser Rusan

2016

Ph.D. · Biology

University of New Brunswick · Denise V. Clark

2007

B.Sc. · Biology

University of New Brunswick

Research highlights

Quantifying rare-disease phenotypes

Develops recording hardware and AI analysis pipelines, including models of patient mutations.

Neural stem-cell maintenance

Established a Traip microcephaly model linking mitotic DNA bridges with neural stem-cell loss.

Centrosome gene diversification

Characterized cell-type-specific functions of duplicated centrosome genes in Drosophila.

Publications

  1. Autobehaver: An AI-Based Pipeline for Animal Behavior Analysis. — bioRxiv (2026 · preprint)
  2. Spd-2 gene duplication reveals cell-type-specific pericentriolar material regulation — Current Biology (2023)
  3. Traip controls mushroom body size by suppressing mitotic defects — Development (2022)
  4. Same but Different - Pleiotropy in Centrosome-Related Microcephaly. — Molecular Biology of the Cell (2018)
  5. Partial Functional Diversification of Drosophila melanogaster Septin Genes Sep2 and Sep5. — G3 (Bethesda, Md.) (2016)
  6. The Drosophila melanogaster septin gene Sep2 has a redundant function with the retrogene Sep5 in imaginal cell proliferation but is essential for oogenesis. — Genome (2013)
  7. Evolution of three parent genes and their retrogene copies in Drosophila species. — International journal of evolutionary biology (2013)

Recognition

  • 2019, 2020 & 2021 NIH Fellows Award for Research Excellence
  • 2020 NHLBI COVID-Response Group Award
  • 2017 Chan Zuckerberg Initiative travel award, ASCB/EMBO Meeting
  • 2015 Best Oral Presentation, UNB Graduate Research Conference
  • 2014 Best Poster, Society for Developmental Biology Northeast Meeting

Selected talks

2026

67th Annual Drosophila Research Conference

Chicago, Illinois

2022

Cell Bio · ASCB/EMBO Meeting

Special Interest Subgroup · Washington, DC

2022

63rd Annual Drosophila Research Conference

San Diego, California

2021

CanFly XVI

Virtual

2021

Society for Developmental Biology

Postdoctoral Seminar Series

Teaching & mentoring

Mentors postbaccalaureate researchers in computational analysis, AI body-part tracking, 3D printing, and Drosophila genetics. Previous trainees have progressed to graduate programs and professional training.

Service

Chairs the NIH Artificial Intelligence Interest Group and the NIH Artificial Intelligence Symposium committee (2024–present), and leads the Artificial Intelligence Journal Club and Seminar Series (2023–present). Previously served on NHLBI fellows and seminar committees and as a scientific reviewer.

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