For many years, formal methods have been used to design and develop critical systems in order to guarantee safety and security and the correctness of desired behaviours, through formal verification and validation techniques and tools. The development of high confidence medical devices such as the cardiac pacemaker, is one of the grand challenges in the area of verified software that need formal reasoning and proof-based development. This paper presents an example of how we used previous experience in developing a cardiac pacemaker using Event-B, to build an incremental proof-based development of a new pacemaker that uses Cardiac Resynchronization Therapy (CRT), also known as biventricular pacing or multisite pacing. In this work, we formali...
The design of bug-free and safe medical device software is challenging, especially in complex implan...
peer reviewedEmbedded software in medical devices is becoming ubiquitous and increasing in content a...
We develop a model-based framework which supports approximate quantitative verification of implantab...
International audienceFor many years, formal methods have been used to design and develop critical s...
To build a high quality and zero defects medical devices and softwares is a crucial task. Formal mod...
International audienceBuilding high quality and zero defects medical software-based devices is a cri...
The design and implementation of software for medical devices is challenging due to their rapidly in...
Medical devices such as cardiac pacemaker must be correctly programmed to save lives. History has sh...
Medical devices play an essential role in the care of patients around the world, and can have a life...
Abstract—Implantable medical devices, such as cardiac pace-makers, must be designed and programmed t...
Designing bug-free medical device software is difficult, especially in complex implantable devices t...
This poster paper reports on a model-based framework for software quality assurance for cardiac pace...
We discuss the construction of an assurance case for the pace-maker software. The software is develo...
Artificial pacemakers are one of the most widely-used implantable devices today, with millions impla...
The design and implementation of software for medical devices is challenging due to the closed-loop ...
The design of bug-free and safe medical device software is challenging, especially in complex implan...
peer reviewedEmbedded software in medical devices is becoming ubiquitous and increasing in content a...
We develop a model-based framework which supports approximate quantitative verification of implantab...
International audienceFor many years, formal methods have been used to design and develop critical s...
To build a high quality and zero defects medical devices and softwares is a crucial task. Formal mod...
International audienceBuilding high quality and zero defects medical software-based devices is a cri...
The design and implementation of software for medical devices is challenging due to their rapidly in...
Medical devices such as cardiac pacemaker must be correctly programmed to save lives. History has sh...
Medical devices play an essential role in the care of patients around the world, and can have a life...
Abstract—Implantable medical devices, such as cardiac pace-makers, must be designed and programmed t...
Designing bug-free medical device software is difficult, especially in complex implantable devices t...
This poster paper reports on a model-based framework for software quality assurance for cardiac pace...
We discuss the construction of an assurance case for the pace-maker software. The software is develo...
Artificial pacemakers are one of the most widely-used implantable devices today, with millions impla...
The design and implementation of software for medical devices is challenging due to the closed-loop ...
The design of bug-free and safe medical device software is challenging, especially in complex implan...
peer reviewedEmbedded software in medical devices is becoming ubiquitous and increasing in content a...
We develop a model-based framework which supports approximate quantitative verification of implantab...