Spatially resolved human kidney multi-omics single cell atlas highlights the key role of the fibrotic microenvironment in kidney disease progression. Abedini, A., Ma, Z., Frederick, J., Dhillon, P., Balzer, M. S, Shrestha, R., Liu, H., Vitale, S., Devalaraja-Narashimha, K., Grandi, P., & others bioRxiv, Cold Spring Harbor Laboratory, 2022. bibtex @article{abedini2022spatially,
title={Spatially resolved human kidney multi-omics single cell atlas highlights the key role of the fibrotic microenvironment in kidney disease progression},
author={Abedini, Amin and Ma, Ziyuan and Frederick, Julia and Dhillon, Poonam and Balzer, Michael S and Shrestha, Rojesh and Liu, Hongbo and Vitale, Steven and Devalaraja-Narashimha, Kishor and Grandi, Paola and others},
journal={bioRxiv},
year={2022},
publisher={Cold Spring Harbor Laboratory}
}
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