Literature DB >> 32938263

A Swallowing Decoder Based on Deep Transfer Learning: AlexNet Classification of the Intracranial Electrocorticogram.

Hiroaki Hashimoto1,2,3, Seiji Kameda1, Hitoshi Maezawa1, Satoru Oshino4, Naoki Tani4, Hui Ming Khoo4, Takufumi Yanagisawa4, Toshiki Yoshimine3, Haruhiko Kishima4, Masayuki Hirata1,3,4.   

Abstract

To realize a brain-machine interface to assist swallowing, neural signal decoding is indispensable. Eight participants with temporal-lobe intracranial electrode implants for epilepsy were asked to swallow during electrocorticogram (ECoG) recording. Raw ECoG signals or certain frequency bands of the ECoG power were converted into images whose vertical axis was electrode number and whose horizontal axis was time in milliseconds, which were used as training data. These data were classified with four labels (Rest, Mouth open, Water injection, and Swallowing). Deep transfer learning was carried out using AlexNet, and power in the high-[Formula: see text] band (75-150[Formula: see text]Hz) was the training set. Accuracy reached 74.01%, sensitivity reached 82.51%, and specificity reached 95.38%. However, using the raw ECoG signals, the accuracy obtained was 76.95%, comparable to that of the high-[Formula: see text] power. We demonstrated that a version of AlexNet pre-trained with visually meaningful images can be used for transfer learning of visually meaningless images made up of ECoG signals. Moreover, we could achieve high decoding accuracy using the raw ECoG signals, allowing us to dispense with the conventional extraction of high-[Formula: see text] power. Thus, the images derived from the raw ECoG signals were equivalent to those derived from the high-[Formula: see text] band for transfer deep learning.

Entities:  

Keywords:  AlexNet; Swallowing; [Formula: see text] band; brain–machine interface; deep transfer learning; electrocorticogram

Year:  2020        PMID: 32938263     DOI: 10.1142/S0129065720500562

Source DB:  PubMed          Journal:  Int J Neural Syst        ISSN: 0129-0657            Impact factor:   5.866


  2 in total

1.  Swallowing-related neural oscillation: an intracranial EEG study.

Authors:  Hiroaki Hashimoto; Kazutaka Takahashi; Seiji Kameda; Fumiaki Yoshida; Hitoshi Maezawa; Satoru Oshino; Naoki Tani; Hui Ming Khoo; Takufumi Yanagisawa; Toshiki Yoshimine; Haruhiko Kishima; Masayuki Hirata
Journal:  Ann Clin Transl Neurol       Date:  2021-05-05       Impact factor: 4.511

2.  Motor and sensory cortical processing of neural oscillatory activities revealed by human swallowing using intracranial electrodes.

Authors:  Hiroaki Hashimoto; Kazutaka Takahashi; Seiji Kameda; Fumiaki Yoshida; Hitoshi Maezawa; Satoru Oshino; Naoki Tani; Hui Ming Khoo; Takufumi Yanagisawa; Toshiki Yoshimine; Haruhiko Kishima; Masayuki Hirata
Journal:  iScience       Date:  2021-06-25
  2 in total

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