Computer based system adapted to create a representation of...

Data processing: structural design – modeling – simulation – and em – Modeling by mathematical expression

Reexamination Certificate

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C434S265000, C434S266000, C434S267000, C434S268000, C434S272000

Reexamination Certificate

active

10276181

ABSTRACT:
Computer-based system adapted to create a representation of mechanical and flow-mechanical function of a δV-pump. A mathematical modeling algorithm is used based upon a transforming element adapted to connect different physical domains via a transforming value. The system comprises an upper transforming element (TF1) and a lower transforming element (TF2) each having a flow domain (fd1, fd2) and a mechanical domain (md1, md2), the upper transforming element is provided with a transforming value A1 and the lower transforming element is provided with a transforming value A1+A2, wherein A1 and A2>0. The upper and lower transforming elements are interconnected such that their mechanical domains are connected, said mechanical domains are provided with a control value representing a directional measure (F) arranged to intermittently and simultaneously activate said mechanical domains of the transforming elements. By interconnecting two δV-pump representations the pumping action of a heart may be simulated.

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Silvio Cavlcanti, Stefano Severi and Claudia Boarini, “Mathematical Analysis of the Aotonomic Influence on the Heart Rate Variability”, IEEE, 1996, pp. 1580-1581.
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Lundbäck, Stig; “Heart Mechanics”; URL: http://www.grippingheart.com; 1999.
Cacalcanti, Silvio et al.; “Modeling of Cardio-Vascular Variability Using Differential Delay Equation”; IEEE Transactions on Biomedical Engineering; Oct. 1996, vol. 43, No. 10, pp. 982-988.

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