Higher precision rotational manipulation of C. elegans by microchannel

M. Nakajima, Y. Igarashi, Masaru Takeuchi, Nagoki Hisamoto, Y. Hasegawa, T. Fukuda
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Abstract

Rotation manipulation of Caenorhabditis elegans (C. elegans) is presented for higher precision by a microchannel. The C. elegans was trapped within a biocompatible gel bead to rotate by a rotational motor. An alginate was used to form the gel bead. Without immobilization treatment by a sodium azide, the C. elegans moves during solidification of alginate. Then, a cavity was happened in the alginate gel bead. On the other hand, C. elegans was trapped without any cavity after immobilization treatment. The stopping and recovery motions of C. elegans were evaluated through the immobilization treatment experimentally. Finally, the eccentricity of rotational manipulation was evaluated with/without centering by a microchannel. The eccentricity was 35 % higher with the microchannel and high precision rotation was achieved at 0.03 degrees/step of actuator.
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微通道对秀丽隐杆线虫的高精度旋转操纵
采用微通道对秀丽隐杆线虫(秀丽隐杆线虫)进行旋转操纵,提高了其旋转精度。秀丽隐杆线虫被捕获在一个生物相容性凝胶珠中,通过旋转马达旋转。海藻酸盐被用来形成凝胶珠。没有叠氮化钠的固定处理,秀丽隐杆线虫在海藻酸盐凝固过程中移动。然后,藻酸盐凝胶珠内出现空腔。另一方面,固定化处理后秀丽隐杆线虫捕获无空洞。采用固定化处理对秀丽隐杆线虫的停止和恢复运动进行了实验评价。最后,通过微通道对旋转操作的偏心进行了评估。微通道的偏心距提高了35%,并以0.03度/步的速度实现了高精度旋转。
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