Mosaic-PICASSO: accurate crosstalk removal for multiplex fluorescence imaging
Hu Cang1, Yang Liu2,3, Jianhua Xing3,4,5
1San Diego, CA 92172-721234, United States.
Bioinformatics (Oxford, England)
|January 4, 2024
Summary
Mutual information-based demixing in ultra-multiplexed fluorescence imaging can overcorrect. Selecting low-spatial similarity regions for spectral mixing measurements improves accuracy by minimizing overcorrection.
Area of Science:
- Biomedical Imaging
- Optical Microscopy
- Computational Biology
Background:
- Ultra-multiplexed fluorescence imaging allows simultaneous visualization of multiple targets.
- Mutual information (MI)-based techniques like PICASSO simplify demixing up to 15 fluorophores.
- MI techniques struggle to distinguish spatial colocalization from spectral mixing, causing overcorrection.
Purpose of the Study:
- To address the overcorrection limitation in MI-based demixing techniques.
- To improve the accuracy of spectral demixing in ultra-multiplexed fluorescence imaging.
- To enhance the reliability of spatial colocalization analysis in complex biological samples.
Main Methods:
- Developed a novel approach to spectral mixing measurement within multiplex images.
- Utilized regions with low-spatial similarity to isolate spectral information.
- Applied this method to refine mutual information-based demixing.
Main Results:
- Demonstrated that measuring spectral mixing in low-spatial similarity regions significantly improves demixing accuracy.
- Showed a reduction in overcorrection errors compared to standard MI techniques.
- Validated the effectiveness of the proposed method for ultra-multiplexed imaging.
Conclusions:
- The proposed method enhances the accuracy of ultra-multiplexed fluorescence imaging by mitigating overcorrection.
- This technique facilitates more reliable spatial colocalization analysis.
- The findings promise to accelerate the adoption and application of advanced multiplex imaging.


