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Christina V Theodoris

Showing results (1-10 of 20) with videos related to

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Quantitative Biology (Beijing, China)|February 12, 2026
Perspectives on benchmarking foundation models for network biologyChristina V Theodoris
Science (New York, N.Y.)|November 14, 2024
Learning the language of DNAChristina V Theodoris
Nature|January 8, 2025
AI learns from chromatin data to uncover gene interactionsAlicja Brożek, Christina V Theodoris
Nature Computational Science|October 15, 2025
Interpolating perturbations across contextsHan Chen, Christina V Theodoris
Nature Computational Science|January 4, 2024
Interpretable model of CRISPR-Cas9 enzymatic reactionsDavid J Wen, Christina V Theodoris
Nature Protocols|April 23, 2026
Discovery of candidate therapeutic targets with GeneformerYujie Zhang, Madhavan S Venkatesh, Christina V Theodoris
Nature Methods|September 6, 2022
MIRA: joint regulatory modeling of multimodal expression and chromatin accessibility in single cellsAllen W Lynch, Christina V Theodoris, Henry W Long, et al.
The Journal of Clinical Investigation|March 28, 2017
Long telomeres protect against age-dependent cardiac disease caused by NOTCH1 haploinsufficiencyChristina V Theodoris, Foteini Mourkioti, Yu Huang, et al.
Quantitative Biology (Beijing, China)|February 12, 2026
Current opinions on large cellular modelsMinsheng Hao, Lei Wei, Fan Yang, et al.
Cell|March 14, 2015
Human disease modeling reveals integrated transcriptional and epigenetic mechanisms of NOTCH1 haploinsufficiencyChristina V Theodoris, Molong Li, Mark P White, et al.
Pageof 2

Showing results (1-10 of 20) with videos related to

Sort By:
Pageof 2
Quantitative Biology (Beijing, China)|February 12, 2026
Perspectives on benchmarking foundation models for network biologyChristina V Theodoris
Science (New York, N.Y.)|November 14, 2024
Learning the language of DNAChristina V Theodoris
Nature|January 8, 2025
AI learns from chromatin data to uncover gene interactionsAlicja Brożek, Christina V Theodoris
Nature Computational Science|October 15, 2025
Interpolating perturbations across contextsHan Chen, Christina V Theodoris
Nature Computational Science|January 4, 2024
Interpretable model of CRISPR-Cas9 enzymatic reactionsDavid J Wen, Christina V Theodoris
Nature Protocols|April 23, 2026
Discovery of candidate therapeutic targets with GeneformerYujie Zhang, Madhavan S Venkatesh, Christina V Theodoris
Nature Methods|September 6, 2022
MIRA: joint regulatory modeling of multimodal expression and chromatin accessibility in single cellsAllen W Lynch, Christina V Theodoris, Henry W Long, et al.
The Journal of Clinical Investigation|March 28, 2017
Long telomeres protect against age-dependent cardiac disease caused by NOTCH1 haploinsufficiencyChristina V Theodoris, Foteini Mourkioti, Yu Huang, et al.
Quantitative Biology (Beijing, China)|February 12, 2026
Current opinions on large cellular modelsMinsheng Hao, Lei Wei, Fan Yang, et al.
Cell|March 14, 2015
Human disease modeling reveals integrated transcriptional and epigenetic mechanisms of NOTCH1 haploinsufficiencyChristina V Theodoris, Molong Li, Mark P White, et al.
Pageof 2