• DocumentCode
    3011077
  • Title

    Bioelectronic Artificial Nose Using Four-Channel Moth Antenna Biopotential Recordings

  • Author

    Myrick, A.J. ; Baker, T.C. ; Park, K.-C. ; Hetling, J.R.

  • fYear
    2005
  • fDate
    16-19 March 2005
  • Firstpage
    313
  • Lastpage
    316
  • Abstract
    The use of insect antennae as an odor sensor array was evaluated as a means to advance the current capabilities of " artificial nose" technology. A given species is highly sensitive to odors of survival interest (e.g. species-specific pheromones), but also to a broad range of other natural and anthropogenic compounds. The sensitivity of the antennae to some odors extends to the parts per billion range. In contrast, the best current artificial nose technology is able to detect compounds in the parts per million range. Here, a system designed to utilize four antenna biopotential signals suitable for field use and a computational analysis strategy which allows discrimination between specific odors, and between odor and background or unknown compounds, with high fidelity and in real time, is described. The automated analysis measures three parameters per odor response. Following a training period, a K nearest-neighbor (KNN) approach is used to classify an unknown odor, assuming equal prior probabilities. The algorithm can also declare an odor as "unknown". System responses to single filaments in an odor plume can be analyzed and classified in less than one second
  • Keywords
    arrays; bioelectric potentials; biomedical electronics; biomedical equipment; chemical sensors; medical signal processing; signal classification; K nearest-neighbor approach; anthropogenic compounds; automated analysis; bioelectronic artificial nose; computational analysis; four-channel moth antenna biopotential recordings; insect antennae; odor classification; odor sensor array; species-specific pheromones; Antenna measurements; Biosensors; Cable shielding; Instruments; Noise figure; Noise measurement; Nose; Preamplifiers; Signal to noise ratio; Testing;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Neural Engineering, 2005. Conference Proceedings. 2nd International IEEE EMBS Conference on
  • Conference_Location
    Arlington, VA
  • Print_ISBN
    0-7803-8710-4
  • Type

    conf

  • DOI
    10.1109/CNE.2005.1419620
  • Filename
    1419620