The Study of Microbiological Processes on Microfluidic Chips and Modeling

The development and improvement of micro- and nanotechnologies, microfluidic technologies, highly sensitive imaging systems and last advances in nanomedicine allow to creation of small-sized devices for the formation of different substances isolated droplets in the continuous liquid flow. Such dropl...

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Main Authors: Diana R. Batyrgazieva, Illarion I. Khudeev, Elena V. Guseva, Natalia V. Menshutina, Igor N. Dorokhov
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2018-08-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/726
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spelling doaj-ca70af8c24c3485d95fc51a161e18f592021-02-17T20:57:43ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162018-08-017010.3303/CET1870296The Study of Microbiological Processes on Microfluidic Chips and Modeling Diana R. BatyrgazievaIllarion I. KhudeevElena V. GusevaNatalia V. MenshutinaIgor N. DorokhovThe development and improvement of micro- and nanotechnologies, microfluidic technologies, highly sensitive imaging systems and last advances in nanomedicine allow to creation of small-sized devices for the formation of different substances isolated droplets in the continuous liquid flow. Such droplets are kind of mini-reactors with a volume from 10 to 5 µL, surrounded by an inert medium, where different chemical reactions or other interactions can be carried out. Such reactions in small isolated volumes can be effective in various fields of researches, both at the molecular level and in the study of mammalian cells or other microorganisms. Two variants of directions related to microfluidics in the drop were considered: digital microfluidic technology allowing controlling the movement of individual drops on the substrate and droplets microfluidics allowing to form droplets in a liquid medium, to carry out various manipulations with them. Besides the different approaches to modelling of various interactions inside the lab-on a chip including different types of software packages were considered too. https://www.cetjournal.it/index.php/cet/article/view/726
collection DOAJ
language English
format Article
sources DOAJ
author Diana R. Batyrgazieva
Illarion I. Khudeev
Elena V. Guseva
Natalia V. Menshutina
Igor N. Dorokhov
spellingShingle Diana R. Batyrgazieva
Illarion I. Khudeev
Elena V. Guseva
Natalia V. Menshutina
Igor N. Dorokhov
The Study of Microbiological Processes on Microfluidic Chips and Modeling
Chemical Engineering Transactions
author_facet Diana R. Batyrgazieva
Illarion I. Khudeev
Elena V. Guseva
Natalia V. Menshutina
Igor N. Dorokhov
author_sort Diana R. Batyrgazieva
title The Study of Microbiological Processes on Microfluidic Chips and Modeling
title_short The Study of Microbiological Processes on Microfluidic Chips and Modeling
title_full The Study of Microbiological Processes on Microfluidic Chips and Modeling
title_fullStr The Study of Microbiological Processes on Microfluidic Chips and Modeling
title_full_unstemmed The Study of Microbiological Processes on Microfluidic Chips and Modeling
title_sort study of microbiological processes on microfluidic chips and modeling
publisher AIDIC Servizi S.r.l.
series Chemical Engineering Transactions
issn 2283-9216
publishDate 2018-08-01
description The development and improvement of micro- and nanotechnologies, microfluidic technologies, highly sensitive imaging systems and last advances in nanomedicine allow to creation of small-sized devices for the formation of different substances isolated droplets in the continuous liquid flow. Such droplets are kind of mini-reactors with a volume from 10 to 5 µL, surrounded by an inert medium, where different chemical reactions or other interactions can be carried out. Such reactions in small isolated volumes can be effective in various fields of researches, both at the molecular level and in the study of mammalian cells or other microorganisms. Two variants of directions related to microfluidics in the drop were considered: digital microfluidic technology allowing controlling the movement of individual drops on the substrate and droplets microfluidics allowing to form droplets in a liquid medium, to carry out various manipulations with them. Besides the different approaches to modelling of various interactions inside the lab-on a chip including different types of software packages were considered too.
url https://www.cetjournal.it/index.php/cet/article/view/726
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