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Implementation of Microbe-Based Neurocomputing with Euglena Cells Confined in Micro-Aquariums
- Ozasa, Kazunari;
- Lee, Jeesoo;
- Song, Simon;
- Hara, Masahiko;
- Maeda, Mizuo
WEB OF SCIENCE
7SCOPUS
10초록
Using real Euglena cells in a micro-aquarium as photoreactive biomaterials, we demonstrated Euglena-based neurocomputing with two-dimensional optical feedback using the modi lied Hopfield-Tank algorithm. The blue light intensity required to evoke the photophohic reactions of Euglena cells was experimentally determined, and the empirically derived auto-adjustment of parameters was incorporated in the algorithm. The Euglena-based neurocomputing of 4-city traveling salesman problem possessed two fundamental characteristics: (1) attaining one of the best solutions of the problem and (2) searching for a number of solutions via dynamic transition among the solutions (multi-solution search). The spontaneous reduction in cell number in illuminated areas and the existence of photo-insensitive robust cells are the essential mechanisms responsible for the two characteristics of the Euglena-based neurocomputing.
키워드
- 제목
- Implementation of Microbe-Based Neurocomputing with Euglena Cells Confined in Micro-Aquariums
- 저자
- Ozasa, Kazunari; Lee, Jeesoo; Song, Simon; Hara, Masahiko; Maeda, Mizuo
- 발행일
- 2011-12
- 유형
- Article
- 권
- 7
- 호
- 6
- 페이지
- 481 ~ 499