OmniZare develops an AI‑powered dielectric tomography platform that creates medical images by measuring the electrical properties of tissue, eliminating ionizing radiation and reducing hardware size. The system delivers diagnostic‑grade images at up to 100 × lower cost and 10,000 × higher safety than conventional scanners, making imaging affordable and portable for hospitals, community health centers, and mobile diagnostic providers in low‑resource settings.
Funding
Funding not disclosed
Founders
Product
Problem
Two-thirds of the global population lack access to diagnostic medical imaging due to the high cost, large size, and safety concerns of conventional equipment. This limits timely diagnosis and treatment of many conditions, especially in low‑resource settings.
Solution
OmniZare is developing an AI‑powered dielectric tomography platform that creates medical images by measuring the electrical properties of human tissue. The approach eliminates the need for ionizing radiation and reduces reliance on expensive, bulky hardware, enabling devices that are up to 100 × cheaper and 10,000 × safer than current imaging solutions. Advanced AI algorithms process the raw dielectric data to generate high‑resolution images suitable for clinical interpretation. By leveraging modern low‑cost components and increased processing power, the system can be deployed in a variety of environments, from rural clinics to mobile health units, expanding imaging availability worldwide.
Target Audience
Primary customers are hospitals, community health centers, and mobile diagnostic providers operating in low‑resource or remote environments that require affordable, safe imaging solutions.
Features
- Dielectric tomography technology that captures tissue electrical properties without ionizing radiation
- AI-driven reconstruction pipeline delivering high‑quality diagnostic images from low‑cost sensor data
- Compact hardware design with a dramatically reduced form factor compared to traditional scanners
- Cost structure projected to be up to 100 × lower than conventional imaging modalities
- Safety profile enhanced by eliminating radiation exposure, estimated to be 10,000 × safer
- Scalable architecture suitable for deployment in remote clinics, mobile units, and underserved regions