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Titlebook: Wearable Biosensing in Medicine and Healthcare; Kohji Mitsubayashi Book 2024 The Editor(s) (if applicable) and The Author(s), under exclus

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Wet Interface Technologies for Wearable Sweat Sensorsupport the realization of daily healthcare. Sweat, which is easily accessible from the human skin surface, is one of the most expected bodily fluids that contain promising biomarkers of some diseases. However, the development of the easy and repeatable sampling method of at-rest sweat is one of the
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Wet Interface Technologies for Wearable Sweat Sensorsupport the realization of daily healthcare. Sweat, which is easily accessible from the human skin surface, is one of the most expected bodily fluids that contain promising biomarkers of some diseases. However, the development of the easy and repeatable sampling method of at-rest sweat is one of the
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Wearable Artificial Pancreas Device Technologylectronics-based or electronics-free, and there is a continuous drive to make them both wearable and user-friendly. First, we outline the development and validation status of electronics-based APSs. Then, we summarize the growing research effort to develop electronics-free, chemically-controlled APS
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Wearable Artificial Pancreas Device Technologylectronics-based or electronics-free, and there is a continuous drive to make them both wearable and user-friendly. First, we outline the development and validation status of electronics-based APSs. Then, we summarize the growing research effort to develop electronics-free, chemically-controlled APS
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Wearable Biosensors on Sutures and Threads Recent strides in materials science, nanotechnology, and biocompatible sensors have enabled the development of biosensors seamlessly integrated into threads and sutures. These innovative biosensors provide a non-invasive, inconspicuous method to monitor various physiological parameters, offering im
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Continuous Monitoring of Volatile Organic Compounds in the Ear: The Development of a Headphone-Type hese compounds can provide valuable information about a person’s health status and can be used as biomarkers for various diseases. The ear is a potentially ideal location for monitoring VOCs because it provides a non-invasive way to measure VOCs continuously with less burden. The development of a he
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