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PHATE: A Dimensionality Reduction Method for Visualizing Trajectory Structures in High-Dimensional Biological Data

Kevin R. Moon, David van Dijk, Zheng Wang, William Chen, Matthew J. Hirn, Ronald R. Coifman, Natalia B. Ivanova, Guy Wolf, Smita Krishnaswamy
doi: https://doi.org/10.1101/120378
Kevin R. Moon
1Departments of Genetics;
2Applied Mathematics Program;
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David van Dijk
5Computational Biology Program, Memorial Sloan-Kettering Cancer Center, New York, NY, USA
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Zheng Wang
4Yale Stem Cell Center, Department of Genetics, Yale University, New Haven, CT, USA
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William Chen
1Departments of Genetics;
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Matthew J. Hirn
6Department of Computational Mathematics, Science and Engineering;
7Department of Mathematics, Michigan State University, East Lansing, MI, USA
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Ronald R. Coifman
2Applied Mathematics Program;
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Natalia B. Ivanova
4Yale Stem Cell Center, Department of Genetics, Yale University, New Haven, CT, USA
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  • For correspondence: natalia.ivanova@yale.edu
Guy Wolf
2Applied Mathematics Program;
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Smita Krishnaswamy
1Departments of Genetics;
3Department of Computer Science;
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  • For correspondence: smita.krishnaswamy@yale.edu
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Posted March 24, 2017.
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PHATE: A Dimensionality Reduction Method for Visualizing Trajectory Structures in High-Dimensional Biological Data
Kevin R. Moon, David van Dijk, Zheng Wang, William Chen, Matthew J. Hirn, Ronald R. Coifman, Natalia B. Ivanova, Guy Wolf, Smita Krishnaswamy
bioRxiv 120378; doi: https://doi.org/10.1101/120378
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PHATE: A Dimensionality Reduction Method for Visualizing Trajectory Structures in High-Dimensional Biological Data
Kevin R. Moon, David van Dijk, Zheng Wang, William Chen, Matthew J. Hirn, Ronald R. Coifman, Natalia B. Ivanova, Guy Wolf, Smita Krishnaswamy
bioRxiv 120378; doi: https://doi.org/10.1101/120378

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