Cytognosis offers a platform that continuously maps an individual’s molecular health onto a universal coordinate system called the Cytoverse, using programmable biosensors (Cytoscope) and edge AI (Cytonome) to generate precise health coordinates. These coordinates enable precision‑medicine providers and health systems to detect disease signatures early and deliver personalized, causally based interventions, shifting care from reactive treatment to proactive health preservation.
Funding
Funding not disclosed
Founders
Product
Problem
Current healthcare relies on reactive diagnosis after symptoms appear, using categorical disease labels that overlook underlying molecular endotypes. This approach delays detection of disease signatures and limits the ability to intervene early, reducing opportunities for health preservation.
Solution
Cytognosis provides a platform that continuously maps an individual’s health onto a universal coordinate system called the Cytoverse. Programmable biosensors (Cytoscope) collect real‑time molecular data, which is processed at the edge by AI (Cytonome) to determine a person’s precise health coordinates. By translating these coordinates into causally grounded, personalized interventions, the platform aims to identify disease signatures years before clinical onset, shifting care from reactive treatment to proactive health preservation.
Target Audience
Primary customers are precision‑medicine providers, health systems, and wellness programs seeking to implement continuous molecular monitoring and early‑intervention strategies for individuals.
Features
- Cytoverse™: a universal health coordinate system that replaces categorical disease labels with continuous, standardized health axes
- Cytoscope™: programmable biosensors that perform continuous, real‑time molecular health tracking and triangulate health coordinates with high precision
- Cytonome™: edge AI that interprets health coordinates and generates personalized, causally based intervention recommendations
- Integrated mapping, sensing, and navigation pipeline that provides a “GPS for health,” enabling ongoing monitoring of health trajectories
- Real‑time data processing at the edge to ensure low latency and privacy‑preserving analysis