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Experimental Study and ANN Dual-Time Scale Perturbation Model of Electrokinetic Properties of Microbiota

The electrokinetic properties of the rumen microbiota are involved in cell surface adhesion and microbial metabolism. An in vitro study was carried out in batch culture to determine the effects of three levels of special surface area (SSA) of biomaterials and four levels of surface tension (ST) of c...

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Autores principales: Liu, Yong, Munteanu, Cristian R., Fernandez-Lozano, Carlos, Pazos, Alejandro, Ran, Tao, Tan, Zhiliang, Yu, Yizun, Zhou, Chuanshe, Tang, Shaoxun, González-Díaz, Humberto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5491601/
https://www.ncbi.nlm.nih.gov/pubmed/28713345
http://dx.doi.org/10.3389/fmicb.2017.01216
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author Liu, Yong
Munteanu, Cristian R.
Fernandez-Lozano, Carlos
Pazos, Alejandro
Ran, Tao
Tan, Zhiliang
Yu, Yizun
Zhou, Chuanshe
Tang, Shaoxun
González-Díaz, Humberto
author_facet Liu, Yong
Munteanu, Cristian R.
Fernandez-Lozano, Carlos
Pazos, Alejandro
Ran, Tao
Tan, Zhiliang
Yu, Yizun
Zhou, Chuanshe
Tang, Shaoxun
González-Díaz, Humberto
author_sort Liu, Yong
collection PubMed
description The electrokinetic properties of the rumen microbiota are involved in cell surface adhesion and microbial metabolism. An in vitro study was carried out in batch culture to determine the effects of three levels of special surface area (SSA) of biomaterials and four levels of surface tension (ST) of culture medium on electrokinetic properties (Zeta potential, ξ; electrokinetic mobility, μ(e)), fermentation parameters (volatile fatty acids, VFAs), and ST over fermentation processes (ST-a, γ). The obtained results were combined with previously published data (digestibility, D; pH; concentration of ammonia nitrogen, c(NH(3)-N)) to establish a predictive artificial neural network (ANN) model. Concepts of dual-time series analysis, perturbation theory (PT), and Box-Jenkins Operators were applied for the first time to develop an ANN model to predict the variations of the electrokinetic properties of microbiota. The best dual-time series Radial Basis Functions (RBR) model for ξ of rumen microbiota predicted ξ for >30,000 cases with a correlation coefficient >0.8. This model provided insight into the correlations between electrokinetic property (zeta potential) of rumen microbiota and the perturbations of physical factors (specific surface area and surface tension) of media, digestibility of substrate, and their metabolites (NH(3)-N, VFAs) in relation to environmental factors.
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spelling pubmed-54916012017-07-14 Experimental Study and ANN Dual-Time Scale Perturbation Model of Electrokinetic Properties of Microbiota Liu, Yong Munteanu, Cristian R. Fernandez-Lozano, Carlos Pazos, Alejandro Ran, Tao Tan, Zhiliang Yu, Yizun Zhou, Chuanshe Tang, Shaoxun González-Díaz, Humberto Front Microbiol Microbiology The electrokinetic properties of the rumen microbiota are involved in cell surface adhesion and microbial metabolism. An in vitro study was carried out in batch culture to determine the effects of three levels of special surface area (SSA) of biomaterials and four levels of surface tension (ST) of culture medium on electrokinetic properties (Zeta potential, ξ; electrokinetic mobility, μ(e)), fermentation parameters (volatile fatty acids, VFAs), and ST over fermentation processes (ST-a, γ). The obtained results were combined with previously published data (digestibility, D; pH; concentration of ammonia nitrogen, c(NH(3)-N)) to establish a predictive artificial neural network (ANN) model. Concepts of dual-time series analysis, perturbation theory (PT), and Box-Jenkins Operators were applied for the first time to develop an ANN model to predict the variations of the electrokinetic properties of microbiota. The best dual-time series Radial Basis Functions (RBR) model for ξ of rumen microbiota predicted ξ for >30,000 cases with a correlation coefficient >0.8. This model provided insight into the correlations between electrokinetic property (zeta potential) of rumen microbiota and the perturbations of physical factors (specific surface area and surface tension) of media, digestibility of substrate, and their metabolites (NH(3)-N, VFAs) in relation to environmental factors. Frontiers Media S.A. 2017-06-30 /pmc/articles/PMC5491601/ /pubmed/28713345 http://dx.doi.org/10.3389/fmicb.2017.01216 Text en Copyright © 2017 Liu, Munteanu, Fernandez-Lozano, Pazos, Ran, Tan, Yu, Zhou, Tang and González-Díaz. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Liu, Yong
Munteanu, Cristian R.
Fernandez-Lozano, Carlos
Pazos, Alejandro
Ran, Tao
Tan, Zhiliang
Yu, Yizun
Zhou, Chuanshe
Tang, Shaoxun
González-Díaz, Humberto
Experimental Study and ANN Dual-Time Scale Perturbation Model of Electrokinetic Properties of Microbiota
title Experimental Study and ANN Dual-Time Scale Perturbation Model of Electrokinetic Properties of Microbiota
title_full Experimental Study and ANN Dual-Time Scale Perturbation Model of Electrokinetic Properties of Microbiota
title_fullStr Experimental Study and ANN Dual-Time Scale Perturbation Model of Electrokinetic Properties of Microbiota
title_full_unstemmed Experimental Study and ANN Dual-Time Scale Perturbation Model of Electrokinetic Properties of Microbiota
title_short Experimental Study and ANN Dual-Time Scale Perturbation Model of Electrokinetic Properties of Microbiota
title_sort experimental study and ann dual-time scale perturbation model of electrokinetic properties of microbiota
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5491601/
https://www.ncbi.nlm.nih.gov/pubmed/28713345
http://dx.doi.org/10.3389/fmicb.2017.01216
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