Proving the recovery effects of a hydrogen inhalation relaxation chair. Real-time measurement of the fatigue recovery process using highly accurate vital data.
In wellness facilities and relaxation salons, the introduction of high-value-added services such as relaxation chairs that allow hydrogen inhalation is progressing. However, to help customers truly feel the effects of fatigue recovery, the presentation of objective data is essential. By utilizing the biometric sensor 'Vitalgram', the recovery process of customers during service use can be measured and visualized in real-time. With a simple attachment that sticks to the chest, it measures the stability of the autonomic nervous system from the electrocardiogram and analyzes the relaxation effects from improved blood flow based on changes in skin temperature. By using highly reliable direct measurement data that sets itself apart from inference-based wearable devices, service providers can provide customers with specific numerical feedback on "how much fatigue has been recovered." 【Features】 ■ Analyzes the fatigue recovery process from electrocardiogram waveforms and skin temperature ■ Comfortable patch type that does not interfere with relaxation time ■ Objectively quantifies the effects of services such as hydrogen inhalation ■ Enhances customer satisfaction and repeat business with highly reliable data *For detailed use cases and specifications, please refer to "Download the Catalog."
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AffordSense Inc. is a university venture established in November 2013 to deliver the research outcomes of the "Research and Development of Band-Aid Type Biosensors" project, initiated by Professor Kazuhisa Maenaka of the Graduate School of Engineering at Hyogo Prefectural University, as part of the Strategic Creative Research Promotion Project (ERATO). We aim not only to commercialize research results but also to further challenge human sensing, advancing research and development to contribute to areas such as health management, early detection and prevention of diseases, and hazard prediction for the human body.



