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Journal of Theoretical Biology
|
July 22, 2017
Conditions for success of engineered underdominance gene drive systems
Matthew P Edgington, Luke S Alphey
Bulletin of Mathematical Biology
|
February 7, 2018
Mathematical Analysis of the Escherichia coli Chemotaxis Signalling Pathway
Matthew P Edgington, Marcus J Tindall
Plos Computational Biology
|
March 24, 2018
Population dynamics of engineered underdominance and killer-rescue gene drives in the control of disease vectors
Matthew P Edgington, Luke S Alphey
Bulletin of Mathematical Biology
|
May 10, 2014
Fold-change detection in a whole-pathway model of Escherichia coli chemotaxis
Matthew P Edgington, Marcus J Tindall
Computational and Structural Biotechnology Journal
|
December 23, 2015
Understanding the link between single cell and population scale responses of Escherichia coli in differing ligand gradients
Matthew P Edgington, Marcus J Tindall
Journal of Theoretical Biology
|
July 2, 2019
Modeling the mutation and reversal of engineered underdominance gene drives
Matthew P Edgington, Luke S Alphey
Evolutionary Applications
|
September 10, 2020
Population-level multiplexing: A promising strategy to manage the evolution of resistance against gene drives targeting a neutral locus
Matthew P Edgington, Tim Harvey-Samuel, Luke Alphey
Scientific Reports
|
November 26, 2020
Split drive killer-rescue provides a novel threshold-dependent gene drive
Matthew P Edgington, Tim Harvey-Samuel, Luke Alphey
Proceedings. Biological Sciences
|
September 3, 2020
Transmission efficiency drives host-microbe associations
Philip T Leftwich, Matthew P Edgington, Tracey Chapman
Biochemical Society Transactions
|
September 8, 2018
Recent advances in threshold-dependent gene drives for mosquitoes
Philip T Leftwich, Matthew P Edgington, Tim Harvey-Samuel, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 14) with videos related to
Sort By:
Page
of 2
Journal of Theoretical Biology
|
July 22, 2017
Conditions for success of engineered underdominance gene drive systems
Matthew P Edgington, Luke S Alphey
Bulletin of Mathematical Biology
|
February 7, 2018
Mathematical Analysis of the Escherichia coli Chemotaxis Signalling Pathway
Matthew P Edgington, Marcus J Tindall
Plos Computational Biology
|
March 24, 2018
Population dynamics of engineered underdominance and killer-rescue gene drives in the control of disease vectors
Matthew P Edgington, Luke S Alphey
Bulletin of Mathematical Biology
|
May 10, 2014
Fold-change detection in a whole-pathway model of Escherichia coli chemotaxis
Matthew P Edgington, Marcus J Tindall
Computational and Structural Biotechnology Journal
|
December 23, 2015
Understanding the link between single cell and population scale responses of Escherichia coli in differing ligand gradients
Matthew P Edgington, Marcus J Tindall
Journal of Theoretical Biology
|
July 2, 2019
Modeling the mutation and reversal of engineered underdominance gene drives
Matthew P Edgington, Luke S Alphey
Evolutionary Applications
|
September 10, 2020
Population-level multiplexing: A promising strategy to manage the evolution of resistance against gene drives targeting a neutral locus
Matthew P Edgington, Tim Harvey-Samuel, Luke Alphey
Scientific Reports
|
November 26, 2020
Split drive killer-rescue provides a novel threshold-dependent gene drive
Matthew P Edgington, Tim Harvey-Samuel, Luke Alphey
Proceedings. Biological Sciences
|
September 3, 2020
Transmission efficiency drives host-microbe associations
Philip T Leftwich, Matthew P Edgington, Tracey Chapman
Biochemical Society Transactions
|
September 8, 2018
Recent advances in threshold-dependent gene drives for mosquitoes
Philip T Leftwich, Matthew P Edgington, Tim Harvey-Samuel, et al.
Page
of 2