DRIVE-KG: Enhancing variant-phenotype association discovery in understudied complex diseases using heterogeneous knowledge graphs

Ananya Rajagopalan, Tram Anh Nguyen, Lindsay A. Guare, Andre Luis Garao Rico, Rasika Venkatesh, Lannawill Caruth, Regeneron Genetics Center, Penn Medicine BioBank, Anurag Verma, Marylyn D. Ritchie, Molly A. Hall, Joseph D. Romano, Shefali Setia-Verma

Open source

DOI
10.1142/9789819824755_0060
Published
2025-12
Container
Biocomputing 2026
Publisher
WORLD SCIENTIFIC
Open access
unknown

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BibTeX

@article{allodium:10.1142/9789819824755_0060,
  title = {DRIVE-KG: Enhancing variant-phenotype association discovery in understudied complex diseases using heterogeneous knowledge graphs},
  author = {Ananya Rajagopalan and Tram Anh Nguyen and Lindsay A. Guare and Andre Luis Garao Rico and Rasika Venkatesh and Lannawill Caruth and Regeneron Genetics Center and Penn Medicine BioBank and Anurag Verma and Marylyn D. Ritchie and Molly A. Hall and Joseph D. Romano and Shefali Setia-Verma},
  year = {2025},
  journal = {Biocomputing 2026},
  doi = {10.1142/9789819824755_0060},
  url = {https://doi.org/10.1142/9789819824755_0060}
}

RIS

TY  - JOUR
TI  - DRIVE-KG: Enhancing variant-phenotype association discovery in understudied complex diseases using heterogeneous knowledge graphs
AU  - Ananya Rajagopalan
AU  - Tram Anh Nguyen
AU  - Lindsay A. Guare
AU  - Andre Luis Garao Rico
AU  - Rasika Venkatesh
AU  - Lannawill Caruth
AU  - Regeneron Genetics Center
AU  - Penn Medicine BioBank
AU  - Anurag Verma
AU  - Marylyn D. Ritchie
AU  - Molly A. Hall
AU  - Joseph D. Romano
AU  - Shefali Setia-Verma
PY  - 2025
JO  - Biocomputing 2026
DO  - 10.1142/9789819824755_0060
UR  - https://doi.org/10.1142/9789819824755_0060
ER  - 

APA

Rajagopalan, A., Nguyen, T. A., Guare, L. A., Rico, A. L. G., Venkatesh, R., Caruth, L., Center, R. G., BioBank, P. M., Verma, A., Ritchie, M. D., Hall, M. A., Romano, J. D., & Setia-Verma, S. (2025). DRIVE-KG: Enhancing variant-phenotype association discovery in understudied complex diseases using heterogeneous knowledge graphs. Biocomputing 2026. https://doi.org/10.1142/9789819824755_0060

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