DocumentCode :
1298300
Title :
Cyber–Physical Modeling of Implantable Cardiac Medical Devices
Author :
Jiang, Zhihao ; Pajic, Miroslav ; Mangharam, Rahul
Author_Institution :
Dept. of Electr. & Syst. Eng., Univ. of Pennsylvania, Philadelphia, PA, USA
Volume :
100
Issue :
1
fYear :
2012
Firstpage :
122
Lastpage :
137
Abstract :
The design of bug-free and safe medical device software is challenging, especially in complex implantable devices that control and actuate organs in unanticipated contexts. Safety recalls of pacemakers and implantable cardioverter defibrillators between 1990 and 2000 affected over 600 000 devices. Of these, 200 000 or 41% were due to firmware issues and their effect continues to increase in frequency. There is currently no formal methodology or open experimental platform to test and verify the correct operation of medical device software within the closed-loop context of the patient. To this effect, a real-time virtual heart model (VHM) has been developed to model the electrophysiological operation of the functioning and malfunctioning (i.e., during arrhythmia) heart. By extracting the timing properties of the heart and pacemaker device, we present a methodology to construct a timed-automata model for functional and formal testing and verification of the closed-loop system. The VHM´s capability of generating clinically relevant response has been validated for a variety of common arrhythmias. Based on a set of requirements, we describe a closed-loop testing environment that allows for interactive and physiologically relevant model-based test generation for basic pacemaker device operations such as maintaining the heart rate, atrial-ventricle synchrony, and complex conditions such as pacemaker-mediated tachycardia. This system is a step toward a testing and verification approach for medical cyber-physical systems with the patient in the loop.
Keywords :
automata theory; closed loop systems; formal verification; medical computing; pacemakers; closed-loop system; closed-loop testing environment; cyber-physical modeling; firmware; formal testing; functional testing; implantable cardiac medical devices; implantable cardioverter defibrillators; medical cyber-physical systems; model-based test generation; pacemaker device; pacemaker-mediated tachycardia; real-time virtual heart model; safe medical device software; timed-automata model; Cardiology; Computational modeling; Cyberspace; Implants; Medical services; Network topology; Pacemakers; Real time systems; Software engineering; Cyber–physical systems; medical devices; real-time systems; validation;
fLanguage :
English
Journal_Title :
Proceedings of the IEEE
Publisher :
ieee
ISSN :
0018-9219
Type :
jour
DOI :
10.1109/JPROC.2011.2161241
Filename :
5985460
Link To Document :
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