Automated cell tracking using 3D nnUnet and Light Sheet Microscopy to quantify regional deformation in zebrafish

Tanveer Ashwini Teranikar
Saad Saeed
The Van Le
Yoonsuk Kang
Gilberto Hernandez
Phuc Nguyen
Yichen Ding
Yichen iing
Cheng-Jen Chuong
Jin Young Lee
Hyunsuk Ko
Juhyun Lee
Publication typePosted Content
Publication date2024-11-06
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ISSN26928205
Abstract
ABSTRACT

Light Sheet Microscopy (LSM) in conjunction with embryonic zebrafish, is rapidly advancing three-dimensional,in vivocharacterization of myocardial contractility. Preclinical cardiac deformation imaging is predominantly restricted to a low-order dimensionality image space (2i) or suffers from poor reproducibility. In this regard, LSM has enabled high throughput, non-invasive 4i (3d+time) characterization of dynamic organogenesis within the transparent zebrafish model. More importantly, LSM offers cellular resolution across large imaging Field-of-Views at millisecond camera frame rates, enabling single cell localization for global cardiac deformation analysis. However, manual labeling of cells within multilayered tissue is a time-consuming task and requires substantial expertise. In this study, we applied the 3i nnU-Net with Linear Assignment Problem (LAP) framework for automated segmentation and tracking of myocardial cells. Using binarized labels from the neural network, we quantified myocardial deformation of the zebrafish ventricle across 4-6 days post fertilization (dpf). Our study offers tremendous promise for developing highly scalable and disease-specific biomechanical quantification of myocardial microstructures.

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Teranikar T. A. et al. Automated cell tracking using 3D nnUnet and Light Sheet Microscopy to quantify regional deformation in zebrafish // bioRxiv. 2024.
GOST all authors (up to 50) Copy
Teranikar T. A., Saeed S., Le T. V., Kang Y., Hernandez G., Nguyen P., Ding Y., iing Y., Chuong C., Lee J. Y., Ko H., Lee J. Automated cell tracking using 3D nnUnet and Light Sheet Microscopy to quantify regional deformation in zebrafish // bioRxiv. 2024.
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TY - GENERIC
DO - 10.1101/2024.11.04.621759
UR - http://biorxiv.org/lookup/doi/10.1101/2024.11.04.621759
TI - Automated cell tracking using 3D nnUnet and Light Sheet Microscopy to quantify regional deformation in zebrafish
T2 - bioRxiv
AU - Teranikar, Tanveer Ashwini
AU - Saeed, Saad
AU - Le, The Van
AU - Kang, Yoonsuk
AU - Hernandez, Gilberto
AU - Nguyen, Phuc
AU - Ding, Yichen
AU - iing, Yichen
AU - Chuong, Cheng-Jen
AU - Lee, Jin Young
AU - Ko, Hyunsuk
AU - Lee, Juhyun
PY - 2024
DA - 2024/11/06
PB - Cold Spring Harbor Laboratory
PMID - 39574652
SN - 2692-8205
ER -
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@article{2024_Teranikar,
author = {Tanveer Ashwini Teranikar and Saad Saeed and The Van Le and Yoonsuk Kang and Gilberto Hernandez and Phuc Nguyen and Yichen Ding and Yichen iing and Cheng-Jen Chuong and Jin Young Lee and Hyunsuk Ko and Juhyun Lee},
title = {Automated cell tracking using 3D nnUnet and Light Sheet Microscopy to quantify regional deformation in zebrafish},
journal = {bioRxiv},
year = {2024},
publisher = {Cold Spring Harbor Laboratory},
month = {nov},
url = {http://biorxiv.org/lookup/doi/10.1101/2024.11.04.621759},
doi = {10.1101/2024.11.04.621759}
}