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Elucidating plant phosphate perception through the advancement of real-time transcription imaging.


Revolutionizing AI in Montpellier and France. Empowering Ph.D. researchers, biologists, and computational experts, Hitloop drives breakthroughs in computational biology, molecular medicine, and stem-cell research. Explore AI's role in diverse fields like biochemistry, microscopy, and virology, fostering innovations across departmental programs and molecular biology research.

AI For Microscopy

The Project 

Understanding how plants perceive phosphate involves using real-time transcription imaging on microscopy images. Initially, detection takes place within nuclei, marking the first stage of analysis. Then, attention shifts to phosphate transcription sites, where dynamic changes in brightness and perception are studied. 

The Workflow 


 

Loading Images

Ultim can process various forms of data featuring nuclei of different shapes and scales.

Detect Nuclei

The first step of the workflow involves detecting nuclei using multiple object detection AI. This step is crucial, as the bounding boxes generated are essential for tracking each nucleus.



 Tracking Nuclei

Nuclei tracking is an essential step in the workflow, enabling us to focus on individual nuclei for transcription detection.


Transcription Sites Detection

 Tracking Transcription Sites




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