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Two-dimensional optical feedback control of Euglena confined in closed-type microfluidic channels

Authors
Ozasa, KazunariLee, JeesooSong, SimonHara, MasahikoMaeda, Mizuo
Issue Date
Jun-2011
Publisher
ROYAL SOC CHEMISTRY
Citation
LAB ON A CHIP, v.11, no.11, pp.1933 - 1940
Indexed
SCIE
SCOPUS
Journal Title
LAB ON A CHIP
Volume
11
Number
11
Start Page
1933
End Page
1940
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/168276
DOI
10.1039/c0lc00719f
ISSN
1473-0197
Abstract
We examined two-dimensional (2D) optical feedback control of phototaxis flagellate Euglena cells confined in closed-type microfluidic channels (microaquariums), and demonstrated that the 2D optical feedback enables the control of the density and position of Euglena cells in microaquariums externally, flexibly, and dynamically. Using three types of feedback algorithms, the density of Euglena cells in a specified area can be controlled arbitrarily and dynamically, and more than 70% of the cells can be concentrated into a specified area. Separation of photo-sensitive/insensitive Euglena cells was also demonstrated. Moreover, Euglena-based neuro-computing has been achieved, where 16 imaginary neurons were defined as Euglena-activity levels in 16 individual areas in microaquariums. The study proves that 2D optical feedback control of photoreactive flagellate microbes is promising for microbial biology studies as well as applications such as microbe-based particle transportation in microfluidic channels or separation of photo-sensitive/insensitive microbes.
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