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Bio-inspired Information and Communications Technologies. 14th EAI International Conference, BICT 2023, Okinawa, Japan, April 11-12, 2023, Proceedings

Research Article

Signal Transmission Through Human Body via Human Oxygen Saturation Detection

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BibTeX Plain Text
  • @INPROCEEDINGS{10.1007/978-3-031-43135-7_18,
        author={Chengyi Zhang and Hao Yan and Qiang Liu and Kun Yang and Lin Lin},
        title={Signal Transmission Through Human Body via Human Oxygen Saturation Detection},
        proceedings={Bio-inspired Information and Communications Technologies. 14th EAI International Conference, BICT 2023, Okinawa, Japan, April 11-12, 2023, Proceedings},
        proceedings_a={BICT},
        year={2023},
        month={9},
        keywords={molecular communication nanomachine oxygen saturation light absorption},
        doi={10.1007/978-3-031-43135-7_18}
    }
    
  • Chengyi Zhang
    Hao Yan
    Qiang Liu
    Kun Yang
    Lin Lin
    Year: 2023
    Signal Transmission Through Human Body via Human Oxygen Saturation Detection
    BICT
    Springer
    DOI: 10.1007/978-3-031-43135-7_18
Chengyi Zhang, Hao Yan, Qiang Liu, Kun Yang, Lin Lin,*
    *Contact email: fxlinlin@tongji.edu.cn

    Abstract

    For a long time, people have carried out various studies on molecular communication and nano information network in order to realize biomedical applications inside human body. However, how to realize the communication between these applications and the outside body has become a new problem. In general, different components in the blood have different absorption rates of the different light. Based on this, we propose a new through-body communication method. The nanomachine in the blood vessel transmits signal by releasing certain substances which can influence blood oxygen saturation. The change of blood oxygen saturation can be detected by a outside body device measuring the attenuation of different light through blood. The framework of the entire communication system is proposed and mathematically modeled. Its error performance is discussed and evaluated. This research will contribute to the realization of the connection of communication systems inside and outside the human body.

    Keywords
    molecular communication nanomachine oxygen saturation light absorption
    Published
    2023-09-25
    Appears in
    SpringerLink
    http://dx.doi.org/10.1007/978-3-031-43135-7_18
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