A programmable low power current source for bioimpedance measurement: Towards a wearable personalized health assistant

Author(s):  
Zaid Hamed ◽  
Hannu Tenhunen ◽  
Geng Yang
Electronics ◽  
2021 ◽  
Vol 10 (6) ◽  
pp. 666
Author(s):  
Davide Calvaresi ◽  
Jean-Paul Calbimonte ◽  
Enrico Siboni ◽  
Stefan Eggenschwiler ◽  
Gaetano Manzo ◽  
...  

Context. Asynchronous messaging is increasingly used to support human–machine interactions, generally implemented through chatbots. Such virtual entities assist the users in activities of different kinds (e.g., work, leisure, and health-related) and are becoming ingrained into humans’ habits due to factors including (i) the availability of mobile devices such as smartphones and tablets, (ii) the increasingly engaging nature of chatbot interactions, (iii) the release of dedicated APIs from messaging platforms, and (iv) increasingly complex AI-based mechanisms to power the bots’ behaviors. Nevertheless, most of the modern chatbots rely on state machines (implementing conversational rules) and one-fits-all approaches, neglecting personalization, data-stream privacy management, multi-topic management/interconnection, and multimodal interactions. Objective. This work addresses the challenges above through an agent-based framework for chatbot development named EREBOTS. Methods. The foundations of the framework are based on the implementation of (i) multi-front-end connectors and interfaces (i.e., Telegram, dedicated App, and web interface), (ii) enabling the configuration of multi-scenario behaviors (i.e., preventive physical conditioning, smoking cessation, and support for breast-cancer survivors), (iii) online learning, (iv) personalized conversations and recommendations (i.e., mood boost, anti-craving persuasion, and balance-preserving physical exercises), and (v) responsive multi-device monitoring interface (i.e., doctor and admin). Results. EREBOTS has been tested in the context of physical balance preservation in social confinement times (due to the ongoing pandemic). Thirteen individuals characterized by diverse age, gender, and country distribution have actively participated in the experimentation, reporting advancements in the physical balance and overall satisfaction of the interaction and exercises’ variety they have been proposed.


Sensors ◽  
2021 ◽  
Vol 21 (6) ◽  
pp. 2081
Author(s):  
Marko Pavlin ◽  
Franc Novak ◽  
Gregor Papa

An electronic circuit for contactless detection of impedance changes in a tissue is presented. It operates on the principle of resonant frequency change of the resonator having the observed tissue as a dielectric. The operating frequency reflects the tissue dielectric properties (i.e., the tissue composition and on the tissue physiological changes). The sensor operation was tested within a medical application by measuring the breathing of a patient, which was an easy detectable physiological process. The advantage over conventional contact bioimpedance measurement methods is that no direct contact between the resonator and the body is required. Furthermore, the sensor’s wide operating range, ability to adapt to a broad range of measured materials, fast response, low power consumption, and small outline dimensions enables applications not only in the medical sector, but also in other domains. This can be extended, for example, to food industry or production maintenance, where the observed phenomena are reflected in dynamic dielectric properties of the observed object or material.


2020 ◽  
Vol 8 ◽  
pp. 1210-1218
Author(s):  
Selvakumar Mariappan ◽  
Jagadheswaran Rajendran ◽  
Shahrolhafiz S. Ibrahim ◽  
Sofiyah S. Hamid ◽  
Yusman M. Yusof ◽  
...  

2016 ◽  
Vol 34 (Supplement 1) ◽  
pp. e271 ◽  
Author(s):  
Qing Wang ◽  
Philipp Schoenle ◽  
Emmanuel Flück ◽  
Noe Brun ◽  
Frederic Michoud ◽  
...  

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