The Effect of Electrode Designs Based on the Anatomical Heart Location for the Non-Contact Heart Activity Measurement.

This research is an extension of a previous research [] on the different effects of sensor location that is relatively suitable for heart rate sensing. This research aimed to elucidate the causes of wide variations in heart rate measurements from the same sensor position among subjects, as observed...

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Publicado en:Journal of Medical Systems Vol. 39; no. 12; pp. 1 - 18
Autores principales: Gi, Sun, Lee, Young-Jae, Koo, Hye, Lee, Seung, Lee, Kang-Hwi, Kim, Kyeng-Nam, Kang, Seung-Jin, Lee, Joo, Lee, Jeong-Whan
Formato: pictorial research tables/charts Journal Article
Publicado: Springer Nature Dec2015
Acceso en línea:Ver este registro en EBSCOhost
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      pub: Springer Nature
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        atl: The Effect of Electrode Designs Based on the Anatomical Heart Location for the Non-Contact Heart Activity Measurement.
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          Gi, Sun
          Lee, Young-Jae
          Koo, Hye
          Lee, Seung
          Lee, Kang-Hwi
          Kim, Kyeng-Nam
          Kang, Seung-Jin
          Lee, Joo
          Lee, Jeong-Whan
        affil: Research center for Textile & Fashion, College of Human Ecology, Yonsei University, 50 Yonsei-ro Seodaemun-gu 120-749 South Korea
      sug:
        subj:
          Electrodes
          Heart Physiology
          Heart Rate
          Wearable Sensors
          Heart Anatomy and Histology
          Human
          X-Rays
          Computer Simulation
          Descriptive Statistics
          Magnetic Fields
          Male
          Electrocardiography
          QRS Complex
          Analysis of Variance
          T-Tests
          Funding Source
          Male
      ab: This research is an extension of a previous research [] on the different effects of sensor location that is relatively suitable for heart rate sensing. This research aimed to elucidate the causes of wide variations in heart rate measurements from the same sensor position among subjects, as observed in previous research [], and to enhance designs of the inductive textile electrode to overcome these variations. To achieve this, this study comprised two parts: In part 1, X-ray examinations were performed to determine the cause of the wide variations noted in the findings from previous research [], and we found that at the same sensor position, the heart activity signal differed with slight differences in the positions of the heart of each subject owing to individual differences in the anatomical heart location. In part 2, three types of dual-loop-type textile electrodes were devised to overcome variations in heart location that were confirmed in part 1 of the study. The variations with three types of sensor designs were compared with that with a single-round type of electrode design, by using computer simulation and by performing a t-test on the data obtained from the experiments. We found that the oval-oval shaped, dual-loop-type textile electrode was more suitable than the single round type for determining morphological characteristics as well as for measuring appropriate heart activity signals. Based on these results, the oval-oval, dual-loop-type was a better inductive textile electrode that more effectively overcomes individual differences in heart location during heart activity sensing based on the magnetic-induced conductivity principle.
      pubtype: Academic Journal
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        research
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      ougenre: Article
    language: English
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