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Updated: Aug 31, 2025

Precise, High-throughput Analysis of Bacterial Growth
Published on: September 19, 2017
A compressed logistic equation on bacteria growth: inferring time-dependent growth rate
Carlito Pinto1, Koichi Shimakawa2
1Department of Informatics, Universidade Nacional Timor Lorosa'e, Hera, East Timor.
Abstract:
We propose a compressed logistic model for bacterial growth by invoking a time-dependent rate instead of the intrinsic growth rate (constant), which was adopted in traditional logistic models. The new model may have a better physiological basis than the traditional ones, and it replicates experimental observations, such as the case example forE. coli, Salmonella,andStaphylococcus aureus. Stochastic colonial growth at a different rate may have a fractal-like nature, which should be an origin of the time-dependent reaction rate. The present model, from a stochastic viewpoint, is approximated as a Gaussian time evolution of bacteria (error function).
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