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Methods in Molecular Biology (Clifton, N.J.)|May 4, 2022
Reprogramming Mouse Oviduct Epithelial Cells Using In Vivo Electroporation and CRISPR/Cas9-Mediated Genetic ManipulationMatthew J Ford, Yojiro YamanakaSTAR Protocols|February 24, 2022
Protocol to generate mouse oviduct epithelial organoids for viral transduction and whole-mount 3D imagingMatthew J Ford, Keerthana Harwalkar, Yojiro YamanakaJournal of Bacteriology|January 9, 2007
S-layer anchoring and localization of an S-layer-associated protease in Caulobacter crescentusMatthew J Ford, John F Nomellini, John SmitBulletin of Mathematical Biology|August 10, 2019
Correction to: A Multi-stage Representation of Cell Proliferation as a Markov ProcessChristian A Yates, Matthew J Ford, Richard L MortBulletin of Mathematical Biology|October 15, 2017
A Multi-stage Representation of Cell Proliferation as a Markov ProcessChristian A Yates, Matthew J Ford, Richard L MortBiology Open|August 22, 2023
CD133/Prom1 marks proximal mouse oviduct epithelial progenitors and adult epithelial cells with a low generative capacityMatthew J Ford, Keerthana Harwalkar, Hengameh Kazemdarvish, et al.Journal of Theoretical Biology|September 17, 2018
The invasion speed of cell migration models with realistic cell cycle time distributionsEnrico Gavagnin, Matthew J Ford, Richard L Mort, et al.Methods in Molecular Biology (Clifton, N.J.)|June 4, 2021
Live Imaging and Analysis of Cilia and Cell Cycle Dynamics with the Arl13bCerulean-Fucci2a Biosensor and Fucci ToolsMelinda Van Kerckvoorde, Matthew J Ford, Patricia L Yeyati, et al.Biology of Reproduction|March 11, 2021
Anatomical and cellular heterogeneity in the mouse oviduct-its potential roles in reproduction and preimplantation development†Keerthana Harwalkar, Matthew J Ford, Katie Teng, et al.FASEB Bioadvances|July 11, 2022
Multiple cell types in the oviduct express the prolactin receptorKelly C Radecki, Matthew J Ford, Hollian R Phillipps, et al.Pageof 2