Circulatory models are used for several applications ranging from research, to education and training. They are based on different structures that are essentially numerical or hydraulic. Both structures present advantages and disadvantages which suggested developing a new class of circulatory models, defined as hybrid: hybrid circulatory models permit to merge numerical and physical models. This solution reduces the costs, enhances the flexibility and opens the way to many applications. This paper presents a prototype consisting of a hydraulic model of systemic arterial tree connected to a lumped parameters numerical model of the circulation developed in LabVIEV (TM). The behavior of the model was verified reproducing two circulatory conditions, physiological and pathological. The latter was assisted by means of an intra-aortic balloon pump. The results show that hybrid modeling permits to build complex networks merging models based on different structures. The hybrid system is able to react to events occurring indifferently in any of the structures forming it.

Hybrid (numerical-physical) circulatory models: Description and possible applications

Ferrari Gianfranco;De Lazzari Claudio;
2006

Abstract

Circulatory models are used for several applications ranging from research, to education and training. They are based on different structures that are essentially numerical or hydraulic. Both structures present advantages and disadvantages which suggested developing a new class of circulatory models, defined as hybrid: hybrid circulatory models permit to merge numerical and physical models. This solution reduces the costs, enhances the flexibility and opens the way to many applications. This paper presents a prototype consisting of a hydraulic model of systemic arterial tree connected to a lumped parameters numerical model of the circulation developed in LabVIEV (TM). The behavior of the model was verified reproducing two circulatory conditions, physiological and pathological. The latter was assisted by means of an intra-aortic balloon pump. The results show that hybrid modeling permits to build complex networks merging models based on different structures. The hybrid system is able to react to events occurring indifferently in any of the structures forming it.
2006
Inglese
The first IEEE/RAS-EMBS International Conference on Biomedical Robotics and Biomechatronics
1007
1011
5
978-1-4244-0039-3
Sì, ma tipo non specificato
20-22 Febbraio 2006
Pisa
circulatory model
hybrid model
variable elastance model
lumped parameters
1
none
Ferrari, Gianfranco; De Lazzari, Claudio; Kozarski, Maciej; Darowski, Marek
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/336452
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