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High Resolution Microbial Single Cell Analytics / edited by Susann Müller, Thomas Bley.

Por: Colaborador(es): Tipo de material: TextoTextoSeries Advances in Biochemical Engineering / Biotechnology ; 124Editor: Berlin, Heidelberg : Springer Berlin Heidelberg, 2011Descripción: xiv, 234 páginas recurso en líneaTipo de contenido:
  • texto
Tipo de medio:
  • computadora
Tipo de portador:
  • recurso en línea
ISBN:
  • 9783642168871
Formatos físicos adicionales: Edición impresa:: Sin títuloClasificación LoC:
  • TP248.13-248.65
Recursos en línea: Resumen: Light Microscopic Analysis of Mitochondrial Heterogeneity in Cell Populations and Within Single Cells, by S. Jakobs, S. Stoldt, and D. Neumann *  Advanced Microscopy of Microbial Cells, by J. A. J. Haagensen, B. Regenberg, and C. Sternberg * Algebraic and Geometric Understanding of Cells, Epigenetic Inheritance of Phenotypes Between Generations, by K. Yasuda *  Measuring the Mechanical Properties of Single Microbial Cells, by C. R. Thomas, J. D. Stenson, and Z. Zhang *  Single Cell Analytics: Pushing the Limits of the Doable,         by H. Kortmann, L.M. Blank, and A. Schmid  * Cultivation-Independent Assessment of Bacterial Viability, by F. Hammes, M. Berney, and T. Egli *  Resolution of Natural Microbial Community Dynamics by Community Fingerprinting, Flow Cytometry and Trend Interpretation Analysis, by P. Bombach, T. Hübschmann, I. Fetzer, S. Kleinsteuber, R. Geyer, H. Harms, and S. Müller *Multivariate Data Analysis Methods for the Interpretation of  Microbial Flow Cytometric Data, by H.M. Davey, and C.L. Davey *  From Single Cells to Microbial Population Dynamics: Modelling in Biotechnology Based on Measurements of Individual Cells, by T. Bley
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Springer eBooks

Light Microscopic Analysis of Mitochondrial Heterogeneity in Cell Populations and Within Single Cells, by S. Jakobs, S. Stoldt, and D. Neumann *  Advanced Microscopy of Microbial Cells, by J. A. J. Haagensen, B. Regenberg, and C. Sternberg * Algebraic and Geometric Understanding of Cells, Epigenetic Inheritance of Phenotypes Between Generations, by K. Yasuda *  Measuring the Mechanical Properties of Single Microbial Cells, by C. R. Thomas, J. D. Stenson, and Z. Zhang *  Single Cell Analytics: Pushing the Limits of the Doable,         by H. Kortmann, L.M. Blank, and A. Schmid  * Cultivation-Independent Assessment of Bacterial Viability, by F. Hammes, M. Berney, and T. Egli *  Resolution of Natural Microbial Community Dynamics by Community Fingerprinting, Flow Cytometry and Trend Interpretation Analysis, by P. Bombach, T. Hübschmann, I. Fetzer, S. Kleinsteuber, R. Geyer, H. Harms, and S. Müller *Multivariate Data Analysis Methods for the Interpretation of  Microbial Flow Cytometric Data, by H.M. Davey, and C.L. Davey *  From Single Cells to Microbial Population Dynamics: Modelling in Biotechnology Based on Measurements of Individual Cells, by T. Bley

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