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John Reinitz

Showing results (21-30 of 53) with videos related to

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F1000Research|October 30, 2019
Adaptation, fitness landscape learning and fast evolutionJohn Reinitz, Sergey Vakulenko, Dmitri Grigoriev, et al.
Plos Computational Biology|May 20, 2006
Reverse engineering the gap gene network of Drosophila melanogasterTheodore J Perkins, Johannes Jaeger, John Reinitz, et al.
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|March 14, 2015
Gene regulation and noise reduction by coupling of stochastic processesAlexandre F Ramos, José Eduardo M Hornos, John Reinitz
Scientific Reports|January 17, 2024
Evolution of biological cooperation: an algorithmic approachIvan Sudakow, John Reinitz, Sergey A Vakulenko, et al.
Developmental Biology|July 2, 2015
Natural variation of the expression pattern of the segmentation gene even-skipped in melanogasterPengyao Jiang, Michael Z Ludwig, Martin Kreitman, et al.
Plos Computational Biology|August 29, 2012
Modeling of gap gene expression in Drosophila Kruppel mutantsKonstantin Kozlov, Svetlana Surkova, Ekaterina Myasnikova, et al.
Bioinformatics (Oxford, England)|April 3, 2004
A database for management of gene expression data in situEkaterina Poustelnikova, Andrei Pisarev, Maxim Blagov, et al.
Bioinformatics (Oxford, England)|December 5, 2008
Estimation of errors introduced by confocal imaging into the data on segmentation gene expression in DrosophilaEkaterina Myasnikova, Svetlana Surkova, Lena Panok, et al.
In Silico Biology|June 18, 2002
A method for two-dimensional registration and construction of the two-dimensional atlas of gene expression patterns in situKonstantin Kozlov, Ekaterina Myasnikova, Andrei Pisarev, et al.
Trends in Genetics : TIG|July 27, 2002
Sharp borders from fuzzy gradientsDavid M Holloway, John Reinitz, Alexander Spirov, et al.
Pageof 6

Showing results (21-30 of 53) with videos related to

Sort By:
Pageof 6
F1000Research|October 30, 2019
Adaptation, fitness landscape learning and fast evolutionJohn Reinitz, Sergey Vakulenko, Dmitri Grigoriev, et al.
Plos Computational Biology|May 20, 2006
Reverse engineering the gap gene network of Drosophila melanogasterTheodore J Perkins, Johannes Jaeger, John Reinitz, et al.
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|March 14, 2015
Gene regulation and noise reduction by coupling of stochastic processesAlexandre F Ramos, José Eduardo M Hornos, John Reinitz
Scientific Reports|January 17, 2024
Evolution of biological cooperation: an algorithmic approachIvan Sudakow, John Reinitz, Sergey A Vakulenko, et al.
Developmental Biology|July 2, 2015
Natural variation of the expression pattern of the segmentation gene even-skipped in melanogasterPengyao Jiang, Michael Z Ludwig, Martin Kreitman, et al.
Plos Computational Biology|August 29, 2012
Modeling of gap gene expression in Drosophila Kruppel mutantsKonstantin Kozlov, Svetlana Surkova, Ekaterina Myasnikova, et al.
Bioinformatics (Oxford, England)|April 3, 2004
A database for management of gene expression data in situEkaterina Poustelnikova, Andrei Pisarev, Maxim Blagov, et al.
Bioinformatics (Oxford, England)|December 5, 2008
Estimation of errors introduced by confocal imaging into the data on segmentation gene expression in DrosophilaEkaterina Myasnikova, Svetlana Surkova, Lena Panok, et al.
In Silico Biology|June 18, 2002
A method for two-dimensional registration and construction of the two-dimensional atlas of gene expression patterns in situKonstantin Kozlov, Ekaterina Myasnikova, Andrei Pisarev, et al.
Trends in Genetics : TIG|July 27, 2002
Sharp borders from fuzzy gradientsDavid M Holloway, John Reinitz, Alexander Spirov, et al.
Pageof 6