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The time-profile of cell growth in fission yeast: model selection criteria favoring bilinear models over exponential ones.
Buchwald P, Sveiczer A.
Theor Biol Med Model. 2006 Mar 27;3:16.PMID: 16566825 [PubMed - indexed for MEDLINE]Related articlesFree article
A general bilinear model to describe growth or decline time profiles.
Buchwald P.
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Growth pattern of single fission yeast cells is bilinear and depends on temperature and DNA synthesis.
Baumgärtner S, Tolić-Nørrelykke IM.
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Pseudo-exponential growth in length of the fission yeast, Schizosaccharomyces pombe.
Miyata H, Miyata M, Johnson BF.
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Model selection for time-activity curves: the corrected Akaike information criterion and the F-test.
Kletting P, Glatting G.
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Elongation and surface extension of individual cells of Escherichia coli B/r: comparison of theoretical and experimental size distributions.
Grover NB, Woldringh CL, Koppes LJ.
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Growth during the cell cycle.
Mitchison JM.
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Comparison of the Akaike Information Criterion, the Schwarz criterion and the F test as guides to model selection.
Ludden TM, Beal SL, Sheiner LB.
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Dissecting the fission yeast regulatory network reveals phase-specific control elements of its cell cycle.
Bushel PR, Heard NA, Gutman R, Liu L, Peddada SD, Pyne S.
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Patterns of protein synthesis during the cell cycle of the fission yeast Schizosaccharomyces pombe.
Creanor J, Mitchison JM.
J Cell Sci. 1982 Dec;58:263-85.PMID: 7183688 [PubMed - indexed for MEDLINE]Related articlesFree article
General linearized biexponential model for QSAR data showing bilinear-type distribution.
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A logical circuit for the regulation of fission yeast growth modes.
Bähler J, Svetina S.
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Regularities and irregularities in the cell cycle of the fission yeast, Schizosaccharomyces pombe (a review).
Sveiczer A, Novák B.
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Biomass growth rate during the prokaryote cell cycle.
Koch AL.
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Predicted steady-state cell size distributions for various growth models.
Koppes LJ, Woldringh CL, Grover NB.
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An evaluation of substrate degradation patterns in the composting process. Part 2: temperature-corrected profiles.
Mason IG.
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Vesicle-like biomechanics governs important aspects of nuclear geometry in fission yeast.
Lim H W G, Huber G, Torii Y, Hirata A, Miller J, Sazer S.
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Analysis of the significance of a periodic, cell size-controlled doubling in rates of macromolecular synthesis for the control of balanced exponential growth of fission yeast cells.
Barnes A, Nurse P, Fraser RS.
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Statistical evaluation of mathematical models for microbial growth.
López S, Prieto M, Dijkstra J, Dhanoa MS, France J.
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Spatial controls for growth zone formation during the fission yeast cell cycle.
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