The startup develops radiation imaging technology, including disaster monitoring detectors and nuclear medicine imaging devices, to enhance national security and clinical diagnostics. Their solutions enable clients to detect and mitigate radiological threats effectively, ensuring safety in both public and medical environments.
Funding
$2.5M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.
Founders
Product
Problem
Current radiation detection methods for national security and medical imaging often lack the sensitivity, speed, and portability needed for effective threat detection and rapid diagnostics. Existing systems may also be limited in their ability to adapt to varying radioactive conditions or provide high-resolution imaging for precise medical analysis.
Solution
ARALE laboratory develops and commercializes advanced radiation imaging technologies for both national security and clinical applications. Their solutions include radiation detectors that can monitor nuclear threats and disasters, optimizing performance in real-time based on radioactive conditions. They also offer compact gamma cameras and single-photon emission computed tomography (SPECT) systems that combine high-resolution scintillators, silicon photomultipliers, and fast data acquisition circuits. These systems are designed to be compact, lightweight, and adaptable, enabling researchers and clinicians to develop custom applications and improve diagnostic accuracy.
Target Audience
The primary target audience includes government agencies responsible for national security, medical professionals in nuclear medicine and radiology, and research institutions developing new imaging techniques.
Features
- Radiation surveillance systems utilizing VPTM technology for real-time monitoring and threat tracing
- Compact gamma cameras with silicon photomultipliers, high-resolution scintillators, and SoC-FPGA based data acquisition
- Hand-held and lightweight gamma ray imaging camera
- High-resolution clinical and preclinical nuclear medicine imaging systems, including gamma cameras and SPECT
- Software algorithms for high-quality image processing and analysis
- Target-specific collimators for enhanced imaging precision