• DocumentCode
    1347408
  • Title

    Motion control of protozoa for bio-MEMS

  • Author

    Itoh, Akitoshi

  • Author_Institution
    Dept. of Mech. Eng., Tokyo Denki Univ., Japan
  • Volume
    5
  • Issue
    2
  • fYear
    2000
  • fDate
    6/1/2000 12:00:00 AM
  • Firstpage
    181
  • Lastpage
    188
  • Abstract
    This paper investigates the possibility as to whether protozoa can be treated as a living micro manipulator/actuator. Motion control of protozoa is made by using the negative galvanotaxis. First, a basic property test with a DC electric field showed that the Paramecium could be controlled by the electrical potential gradient. By using the eight-direction carbon electrode pool (4 mm electrode distance and 0.2 mm thickness), the operator can control the Paramecium in the aiming direction. Automatic motion control of protozoa is also achieved by using the image processing technology and fuzzy control method. The control method for rapid turning is also developed. To adopt this method to the automatic motion control program, Paramecium can be controlled along any shaped guide route. The actuation to rotate the micro-impeller (0.5 mm diameter) is achieved by Paramecium. These facts show that protozoa are able to be used as a micro manipulator/actuator
  • Keywords
    biocontrol; biocybernetics; computer vision; electric fields; fuzzy control; motion control; DC electric field; Paramecium; biomechatronics; electrical potential gradient; fuzzy control; image processing; microactuator; microimpeller; micromanipulator; motion control; negative galvanotaxis; protozoa; Actuators; Automatic control; Electric potential; Electrodes; Fuzzy control; Image processing; Motion control; Motion planning; Testing; Thickness control;
  • fLanguage
    English
  • Journal_Title
    Mechatronics, IEEE/ASME Transactions on
  • Publisher
    ieee
  • ISSN
    1083-4435
  • Type

    jour

  • DOI
    10.1109/3516.847091
  • Filename
    847091