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在封闭式微流控通道中限制的 Euglena 的二维光反馈控制。

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

机构信息

RIKEN Advanced Science Institute, Hirosawa, Wako, Saitama, Japan.

出版信息

Lab Chip. 2011 Jun 7;11(11):1933-40. doi: 10.1039/c0lc00719f. Epub 2011 Apr 14.

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.

摘要

我们研究了受限制在封闭微流道(微池)中的趋光性鞭毛单细胞绿眼虫的二维(2D)光反馈控制,并证实二维光反馈能够灵活地从外部动态控制微池内绿眼虫的密度和位置。使用三种反馈算法,可以任意且动态地控制指定区域内绿眼虫的密度,超过 70%的细胞可以集中到指定区域。此外,还证明了对感光/非感光绿眼虫细胞的分离。此外,还实现了基于绿眼虫的神经计算,其中将 16 个想象神经元定义为微池内 16 个单独区域中的绿眼虫活性水平。该研究证明,对光反应性鞭毛微生物的二维光反馈控制有望应用于微生物生物学研究,以及在微流道中基于微生物的颗粒运输或感光/非感光微生物分离等应用。

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