Quantitative 3D analysis of complex single border cell behaviors in coordinated collective cell migration
10.1038/ncomms14905
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sg-nus-scholar.10635-1797242023-09-21T08:00:14Z Quantitative 3D analysis of complex single border cell behaviors in coordinated collective cell migration Cliffe, A Doupé, D.P Sung, H Lim, I.K.H Ong, K.H Cheng, L Yu, W DEPT OF COMPUTER SCIENCE cancer cells and cell components developmental biology fly genetic marker three-dimensional modeling cell function cell migration Drosophila human human cell image analysis insect cell culture motion nonhuman quantitative study running animal cell motion cell tracking confocal microscopy cytology female image processing oocyte ovary physiology procedures rotation three dimensional imaging Animals Cell Movement Cell Tracking Drosophila Female Image Processing, Computer-Assisted Imaging, Three-Dimensional Microscopy, Confocal Oocytes Ovary Rotation 10.1038/ncomms14905 Nature Communications 8 14905 2020-10-26T02:47:53Z 2020-10-26T02:47:53Z 2017 Article Cliffe, A, Doupé, D.P, Sung, H, Lim, I.K.H, Ong, K.H, Cheng, L, Yu, W (2017). Quantitative 3D analysis of complex single border cell behaviors in coordinated collective cell migration. Nature Communications 8 : 14905. ScholarBank@NUS Repository. https://doi.org/10.1038/ncomms14905 2041-1723 https://scholarbank.nus.edu.sg/handle/10635/179724 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Nature Publishing Group Unpaywall 20201031 |
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cancer cells and cell components developmental biology fly genetic marker three-dimensional modeling cell function cell migration Drosophila human human cell image analysis insect cell culture motion nonhuman quantitative study running animal cell motion cell tracking confocal microscopy cytology female image processing oocyte ovary physiology procedures rotation three dimensional imaging Animals Cell Movement Cell Tracking Drosophila Female Image Processing, Computer-Assisted Imaging, Three-Dimensional Microscopy, Confocal Oocytes Ovary Rotation |
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cancer cells and cell components developmental biology fly genetic marker three-dimensional modeling cell function cell migration Drosophila human human cell image analysis insect cell culture motion nonhuman quantitative study running animal cell motion cell tracking confocal microscopy cytology female image processing oocyte ovary physiology procedures rotation three dimensional imaging Animals Cell Movement Cell Tracking Drosophila Female Image Processing, Computer-Assisted Imaging, Three-Dimensional Microscopy, Confocal Oocytes Ovary Rotation Cliffe, A Doupé, D.P Sung, H Lim, I.K.H Ong, K.H Cheng, L Yu, W Quantitative 3D analysis of complex single border cell behaviors in coordinated collective cell migration |
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10.1038/ncomms14905 |
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DEPT OF COMPUTER SCIENCE |
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DEPT OF COMPUTER SCIENCE Cliffe, A Doupé, D.P Sung, H Lim, I.K.H Ong, K.H Cheng, L Yu, W |
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Article |
author |
Cliffe, A Doupé, D.P Sung, H Lim, I.K.H Ong, K.H Cheng, L Yu, W |
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Cliffe, A |
title |
Quantitative 3D analysis of complex single border cell behaviors in coordinated collective cell migration |
title_short |
Quantitative 3D analysis of complex single border cell behaviors in coordinated collective cell migration |
title_full |
Quantitative 3D analysis of complex single border cell behaviors in coordinated collective cell migration |
title_fullStr |
Quantitative 3D analysis of complex single border cell behaviors in coordinated collective cell migration |
title_full_unstemmed |
Quantitative 3D analysis of complex single border cell behaviors in coordinated collective cell migration |
title_sort |
quantitative 3d analysis of complex single border cell behaviors in coordinated collective cell migration |
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Nature Publishing Group |
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2020 |
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https://scholarbank.nus.edu.sg/handle/10635/179724 |
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1779152546973089792 |