Reborn is developing a portable AI-powered ultrasound helmet that provides high-resolution, radiation-free brain scans for real-time monitoring of neurological conditions. This technology enables rapid diagnosis and continuous assessment in both hospital and outpatient settings, reducing treatment delays and minimizing patient transport risks.
Funding
Funding not disclosed
Founders
Product
Problem
Current brain imaging techniques often involve radiation exposure, are not easily portable, and can be costly, limiting the ability to rapidly diagnose and continuously monitor neurological conditions, especially in critical care and outpatient settings. Delays in diagnosis and monitoring can lead to increased patient complications, longer hospital stays, and higher healthcare costs.
Solution
Reborn is developing a portable, AI-powered ultrasound helmet that provides high-resolution, radiation-free brain scans, enabling real-time monitoring of neurological conditions. The device is designed for versatile use in both hospital and outpatient environments, facilitating rapid and accurate neurological diagnoses, such as strokes, traumatic brain injuries, and multiple sclerosis. By eliminating the need for intra-hospital transport, the helmet reduces patient complications and infection risks, while also potentially reducing treatment delays and hospitalization duration. The AI-powered scanner ensures precise neurological assessment at the point of care.
Target Audience
The primary target audience includes hospitals, neurological clinics, emergency rooms, and outpatient facilities seeking rapid, portable, and radiation-free brain imaging solutions for improved patient care and reduced healthcare costs.
Features
- Portable ultrasound helmet design for point-of-care brain imaging
- AI-powered image processing for enhanced resolution and diagnostic accuracy
- Radiation-free scanning technology, eliminating radiation exposure risks
- Real-time monitoring capabilities for continuous assessment of neurological status
- Bedside application in critical care settings, reducing the need for patient transport
- Cost-effective solution compared to traditional brain imaging modalities