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Model for bacterial culture growth rate throughout the entire biokinetic temperature range

Journal of Bacteriology · 1983 · Vol. 154(3) · pp. 1222–1226

Abstract

The "square-root" relationship proposed by Ratkowsky et al. (J. Bacteriol. 149:1-5, 1982) for modeling the growth rate of bacteria below the optimum growth temperature was extended to cover the full biokinetic temperature range. Two of the four parameters of this new nonlinear regression model represent minimum and maximum temperature bounds, respectively, for the predicted growth of the culture. The new model is easy to fit and has other desirable statistical properties. For example, the least-squares estimators of the parameters of the model were almost unbiased and normally distributed. The model applied without exception to all bacterial cultures for which we were able to obtain data. Results for 30 strains are reported.

Listeria monocytogenes in Food SafetySpectroscopy Techniques in Biomedical and Chemical Researchthermodynamics and calorimetric analysesBiologyEstimatorGrowth rateBacterial growthNonlinear regressionGrowth modelStatisticsLeast-squares function approximationRange (aeronautics)Regression analysis

MeSH terms

AcinetobacterBacillusBacteriaEnterobacteriaceaeFlavobacteriumKineticsMathematicsMoraxellaPseudomonasTemperatureVibrio
Citations
1,000
FWCI
1.25
field-weighted impact
References
6
Percentile
75%
vs. same field & year
Citations per year
References
Relationship between temperature and growth rate of bacterial cultures
Journal of Bacteriology · 1982 · 1,347 citations
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