Ability Optics develops adaptive optical systems that correct aberrations in microscopy, enhancing fluorescence sensitivity and image contrast. Their modular solutions enable deeper imaging into biological samples, providing researchers with faster, clearer, and higher-quality data for bioimaging and life sciences applications.
Funding
Funding not disclosed
Founders
Product
Problem
Microscopy imaging is often limited by optical aberrations, which reduce signal, speed, and imaging depth. This hinders the ability to visualize fine cellular structures and dynamic processes in biological samples, particularly in thicker or scattering tissues.
Solution
Ability Optics provides adaptive, modular optical systems designed to enhance microscopy performance. Their core technology utilizes automated aberration correction to improve fluorescence sensitivity and image contrast, enabling deeper penetration into biological samples. This allows researchers to capture higher quality data with increased speed and clarity. In addition to their hardware, Ability Optics offers specialized imaging services, including custom project execution, advanced data analysis for quantitative extraction, and proof-of-concept testing to validate the technology's application on specific sample types.
Target Audience
The primary customers are researchers and scientists in the fields of bioimaging, life sciences, and materials science who require advanced microscopy capabilities for sample analysis.
Features
- Adaptive optics modules for real-time aberration correction in microscopy systems.
- Modular design for integration with various microscope platforms.
- Automated correction algorithms to enhance fluorescence signal and contrast.
- Capability for label-free contrast imaging in widefield microscopy.
- High-resolution confocal imaging at volumetric speeds.
- Custom imaging services leveraging adaptive optics platforms.
- Image processing and quantitative data analysis for biological samples.
- Proof-of-concept studies for technology validation on unique samples.