The benefits of health monitoring solutions continue to be validated in terms of cost effectiveness and improved clinical results. Infact, use of medical devices and wearable sensor-based system to monitor patients' health conditions are continuosly increasing both internally to hospitals and home. In this paper we proposed a system that is intended to monitor patients' physiological parameters to detect abnormal cardiac accelerations and patient falls in real-time. The core of this paper is the realization of an advanced mobile monitoring system based on a modular software architecture that simplifies technological or functional changes. Thanks to this architecture, it was easy to introduce a software module dedicated to the fall detection based on threshold-based algorithm. The paper also describes a case study where the system has revealed important benefits both for patients and medical staff.

An Advanced Mobile System for Indoor Patients Monitoring

De Pietro G
2011-01-01

Abstract

The benefits of health monitoring solutions continue to be validated in terms of cost effectiveness and improved clinical results. Infact, use of medical devices and wearable sensor-based system to monitor patients' health conditions are continuosly increasing both internally to hospitals and home. In this paper we proposed a system that is intended to monitor patients' physiological parameters to detect abnormal cardiac accelerations and patient falls in real-time. The core of this paper is the realization of an advanced mobile monitoring system based on a modular software architecture that simplifies technological or functional changes. Thanks to this architecture, it was easy to introduce a software module dedicated to the fall detection based on threshold-based algorithm. The paper also describes a case study where the system has revealed important benefits both for patients and medical staff.
2011
978-989-758-180-9
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.12607/26230
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