AI Multiomic Dataset Solutions
Feeding Your Models with Rich, Multiomic Context
Artificial intelligence (AI) and machine learning (ML) models are only as accurate as the data they consume. BaseJumper AI provides the high-fidelity, single-cell multiomic "ground truth" required for the era of predictive biology, built with ease-of-use in mind.
High-Fidelity AI/ML Training for All Researchers:
Democratized Access to AI/ML
Use BaseJumper AI’s agents to import data, structure data with multiomic layers, and add biological metadata, making AI and ML accessible to all researchers.
Accuracy and Completeness
We deliver the most complete and accurate multiomic data of the cell. We break tissues down and leverage ‘digital genomics’ to quantify complex molecular states within a sample.
Structured Biological Datasets, Naturally
BaseJumper AI delivers phenotypic and evolutionary states to every cell, automatically enriching each cell with valuable metadata most repositories lack.
New Target Identification & Biomarker Discovery
Identify novel therapeutic targets more cleanly as you track DNA mutations, their transcription states, and impact to peptide presentation within each cell. Vastly reduce noise and eliminate likelihood estimation.
Dataset Solutions
We partner with Biopharma and AI/ML companies to build the proprietary, high-fidelity datasets required to realize the future of drug discovery.
The BaseJumper® Bioinformatics Platform
A system-agnostic platform to visualize, analyze, and integrate massive multiomic datasets with cloud infrastructure and generative artificial intelligence (GenAI).
Discover the Latest Advancements in Genomics
Empowering your genomics, single-cell, and translational medicine research
Stay at the forefront of innovation and explore our resource hub that showcases the latest advancements shaping the future of genomics. Discover our curated collection of recent breakthroughs in single-cell research, as well as conference posters, presentations, on-demand webinars, training videos and technical notes.