Next-Generation Medical AI

Specialized LLMs for Medical Intelligence

Deep Cognition Labs (www.deepcog.ai) engineers domain-specific Large Language Models for medicine, biomedical science, genomics, and clinical research — trained to reason with the precision of a specialist.

ACTIVE MODELS //
OpenBioLLM-70B
OpenBioLLM-8B
BioMistral-Medical
GenomicLLM-7B
ClinicalReasoner-13B
PathologyVision-LLM
DrugDiscovery-LLM

AI that thinks like a specialist

DeepCog.ai is a deep-tech AI company building the world's most specialized medical language models. Our models are trained on curated corpora of peer-reviewed literature, clinical trial data, genomic databases, and expert medical reasoning chains.

Unlike general-purpose LLMs, our models are fine-tuned using Direct Preference Optimization (DPO) with expert clinical evaluations — ensuring medically accurate, safe, and contextually grounded outputs.

Medical NLP Genomics Biomedical Research Clinical Reasoning Drug Discovery
// DeepCog Model Architecture class MedicalLLM { constructor() { this.base = "Llama-3-70B" this.domain = "biomedical" this.corpus = 42_000_000 // papers this.tokens = 2_400_000_000 this.method = "DPO + RLHF" } infer(query) { return this.reasonWithEvidence( query, "PubMed + ClinicalTrials" ) } } // Benchmarks MedQA: 91.2% ↑ SOTA PubMedQA: 88.7% USMLE: 89.4%
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Medical Papers Trained On
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Specialized Models
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MedQA Benchmark Score
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Biomedical Tokens
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Factory AI's logo
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Uber's logo
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HubSpot's logo
Notion's logo
Cresta's logo
Heidi Health's logo
DeepSeek's logo
OpenGenomeLLM's logo
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Quora's logo
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Micro 1's logo
Triology's logo
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Built for every medical frontier

Genomics & Proteomics

Genomics & Proteomics

LLMs trained on genomic sequences, protein structures, and mutation data to accelerate precision medicine and gene therapy research.

GenomicLLM-7B
Clinical Reasoning

Clinical Reasoning

Models fine-tuned on clinical notes, SOAP formats, diagnostic reasoning chains, and evidence-based treatment protocols.

ClinicalReasoner-13B
Drug Discovery

Drug Discovery

AI models for ADMET prediction, molecular property optimization, and compound-target interaction modeling.

DrugDiscovery-LLM
Biomedical Research

Biomedical Research

OpenBioLLM series trained on 42M+ PubMed papers for literature synthesis, hypothesis generation, and research acceleration.

OpenBioLLM-70B
Medical Imaging AI

Medical Imaging AI

Multimodal LLMs fusing radiology reports, pathology slides, and diagnostic images with clinical text for richer analysis.

PathologyVision-LLM
Clinical Trials

Clinical Trials

Intelligent models for protocol design, eligibility screening, adverse event detection, and regulatory document generation.

TrialAssist-LLM
Epigenomics & Epitranscriptomics AI

Epigenomics & Epitranscriptomics AI

Models analyzing chemical modifications to DNA and RNA (like methylation) that alter gene expression without changing the underlying genetic code. Predicts environmental impacts on disease susceptibility, identifies early-stage cancer biomarkers, and supports targeted epigenetic therapies.

EpigenomeLLM-14B
Neuroscience & Brain-Computer Interfaces

Neuroscience & Brain-Computer Interfaces

Neural decoding models trained on high-density EEG, fMRI, and invasive neural recording data paired with behavioral and linguistic transcripts. Translates thoughts into text for paralyzed patients, maps cognitive states, and optimizes deep brain stimulation for neurological disorders.

NeuroCortical-34B
Single-Cell Proteogenomics

Single-Cell Proteogenomics

Multimodal models trained on simultaneous single-cell RNA sequencing (scRNA-seq) and cell-surface protein expression data across millions of individual cells. Maps tumor microenvironments, tracks cellular differentiation paths, and uncovers rare immune cell populations driving autoimmune diseases.

CellState-LLM-20B
Microbiome & Metagenomics AI

Microbiome & Metagenomics AI

Models trained on global microbiome sequencing data, metabolic pathways, and microbial-host interaction profiles. Designs personalized nutritional interventions, engineers synthetic microbial communities, and discovers novel gut-brain axis therapeutics.

MetaBiome-8B
Hospital Operations & Healthcare Logistics

Hospital Operations & Healthcare Logistics

LLMs fine-tuned on EHR audit logs, hospital capacity metrics, staffing schedules, and supply chain data. Predicts emergency department surges, automates discharge planning, optimizes ICU bed allocation, and reduces clinician burnout.

CareOps-LLM-13B
Synthetic Biology & Metabolic Engineering

Synthetic Biology & Metabolic Engineering

Generative models trained on metabolic pathway maps, enzyme kinetics, and microbial expression hosts. Designs novel metabolic pathways from scratch, optimizes organisms for biofuel production, and biomanufactures rare pharmaceutical ingredients.

SynthBio-LLM-70B
Organ-on-a-Chip Digital Twins

Organ-on-a-Chip Digital Twins

Hybrid models fusing microfluidic organ-chip sensor data with biophysical simulations of human tissue, fluid dynamics, and cellular signaling. Simulates patient-specific drug toxicities, models blood-brain barrier penetration, and replaces animal testing in preclinical drug development.

OrganTwin-13B
Smart Hospital & Patient Flow Twins

Smart Hospital & Patient Flow Twins

Discrete-event simulation models integrating real-time EHR admissions, IoT medical device telemetry, staff scheduling, and facility spatial geometry. Stress-tests hospital infrastructure for pandemic surges, optimizes ER triage layouts, and minimizes patient discharge bottlenecks.

FacilityTwin-70B
Personalized Oncology & Virtual Tumor Twins

Personalized Oncology & Virtual Tumor Twins

Multimodal twins combining a patient's single-cell longitudinal sequencing, spatial transcriptomics, and radiology scans into a dynamic tumor evolution engine. Forecasts mutation trajectories, predicts treatment resistance before therapy begins, and runs thousands of virtual clinical trials to find optimal cocktail therapy.

OncoTwin-34B
Neuro-Behavioral Digital Twins

Neuro-Behavioral Digital Twins

Multimodal networks integrating continuous digital phenotyping data (sleep tracking, voice tone, step counts) with longitudinal clinical interviews, neuroimaging data, and pharmacological response logs. Runs simulated medication dosage adjustments, predicts onset of major depressive episodes weeks in advance, and maps a patient's neural circuitry to determine optimal treatment — SSRIs, therapy, or neurostimulation.

PsycheTwin-13B

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