
Lutecedynamics develops a microscope module and AI-driven software for real-time, label-free, non-invasive imaging of live 2D and 3D biological samples. The system enables high-resolution, multi-directional inspection and long-term monitoring without fixing, tagging, or labeling specimens, revealing intrinsic sample activity through a color-based visualization prism. This approach supports longitudinal studies while preserving sample viability.
- Artificial Intelligence
- Data & Analytics
- Biotechnology
- Drug Discovery & Therapeutics
- Hardware
- Healthcare Technology
- Software Only
Funding
Funding not disclosed
Founders
Product
Problem
Conventional live-sample microscopy often requires chemical fixation, fluorescent tagging, or other labeling steps that can alter or damage biological specimens. These invasive techniques also limit the ability to observe the same sample continuously over extended periods, hindering longitudinal studies and real-time dynamic analysis.
Solution
Lutecedynamics provides a microscope module paired with AI-driven software for real-time, label-free, and non-invasive imaging of live 2D and 3D biological samples. The system captures intrinsic optical properties of the sample and translates them into a color-based visualization, allowing researchers to observe cellular activity without chemical intervention. It supports high-resolution inspection from multiple directions and enables long-term monitoring of the same live specimen, preserving its natural state throughout the experiment. The integrated AI solutions assist in interpreting the complex image data, making the technology suitable for advanced cell-culture research.
Target Audience
Primary users are academic and industrial researchers in cell biology, developmental biology, and drug discovery who work with 2D and 3D cell cultures and require non-invasive, long-term imaging solutions.
Features
- Label-free imaging technology that eliminates the need for fixation, tagging, or fluorescent labeling of samples
- High-resolution, multi-directional (2D/3D) inspection capabilities for detailed structural and functional analysis
- Long-term monitoring of the same live biological sample, enabling time-series and longitudinal studies
- AI-powered software for image analysis and interpretation of intrinsic sample activity
- Microscope module designed for seamless integration into existing laboratory workflows