A new system for continuous and remote monitoring of patients receiving home mechanical ventilation

Новая система для непрерывного и дистанционного мониторинга пациентов, получающих механическую вентиляцию легких на дому
Luigi Battista
2016-09-01

air flow ratecontinuous remote monitoringdifferential pressurehome mechanical ventilationtube disconnection detection
Home mechanical ventilation is the treatment of patients with respiratory failure or insufficiency by means of a mechanical ventilator at a patient's home. In order to allow remote patient monitoring, several tele-monitoring systems have been introduced in the last few years. However, most of them usually do not allow real-time services, as they have their own proprietary communication protocol implemented and some ventilation parameters are not always measured. Moreover, they monitor only some breaths during the whole day, despite the fact that a patient's respiratory state may change continuously during the day. In order to reduce the above drawbacks, this work reports the development of a novel remote monitoring system for long-term, home-based ventilation therapy; the proposed system allows for continuous monitoring of the main physical quantities involved during home-care ventilation (e.g., differential pressure, volume, and air flow rate) and is developed in order to allow observations of different remote therapy units located in different places of a city, region, or country. The developed remote patient monitoring system is able to detect various clinical events (e.g., events of tube disconnection and sleep apnea events) and has been successfully tested by means of experimental tests carried out with pulmonary ventilators typically used to support sick patients.
1
Designed to overcome limitations of existing tele-monitoring systems that use proprietary protocols, sample only some breaths, or omit key ventilation parameters.
2
Developed a novel remote monitoring system for long-term, home-based mechanical ventilation enabling continuous monitoring of main physical quantities (differential pressure, volume, air flow rate).
3
System can detect clinical events such as tube disconnection and sleep apnea events in monitored patients.
4
System supports observation of multiple remote therapy units distributed across a city, region, or country, enabling scalable remote patient monitoring.
5
System was successfully validated via experimental tests with pulmonary ventilators typically used for patient support.

Remote monitoring system for long-term home mechanical ventilation patients

Continuous measurement and remote observation of main ventilation physical quantities (differential pressure, volume, air flow rate), detection of clinical events (tube disconnection, sleep apnea), and real-time multi-site monitoring capabilities

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2016-09-01
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Luigi Battista
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