• DocumentCode
    3685581
  • Title

    An ultra low power feature extraction and classification system for wearable seizure detection

  • Author

    Adam Page;Siddharth Pramod Tim Oates;Tinoosh Mohsenin

  • Author_Institution
    University of Maryland, Baltimore County, USA
  • fYear
    2015
  • Firstpage
    7111
  • Lastpage
    7114
  • Abstract
    In this paper we explore the use of a variety of machine learning algorithms for designing a reliable and low-power, multi-channel EEG feature extractor and classifier for predicting seizures from electroencephalographic data (scalp EEG). Different machine learning classifiers including k-nearest neighbor, support vector machines, naïve Bayes, logistic regression, and neural networks are explored with the goal of maximizing detection accuracy while minimizing power, area, and latency. The input to each machine learning classifier is a 198 feature vector containing 9 features for each of the 22 EEG channels obtained over 1-second windows. All classifiers were able to obtain F1 scores over 80% and onset sensitivity of 100% when tested on 10 patients. Among five different classifiers that were explored, logistic regression (LR) proved to have minimum hardware complexity while providing average F-1 score of 91%. Both ASIC and FPGA implementations of logistic regression are presented and show the smallest area, power consumption, and the lowest latency when compared to the previous work.
  • Keywords
    "Feature extraction","Support vector machines","Logistics","Electroencephalography","Neural networks","Training","Hardware"
  • Publisher
    ieee
  • Conference_Titel
    Engineering in Medicine and Biology Society (EMBC), 2015 37th Annual International Conference of the IEEE
  • ISSN
    1094-687X
  • Electronic_ISBN
    1558-4615
  • Type

    conf

  • DOI
    10.1109/EMBC.2015.7320031
  • Filename
    7320031