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Characterization of a pediatric rotary blood pump
Melo, Thamiles Rodrigues de; Vasconcelos, Felipe José de Sousa; Ribeiro, Luiz Henrique Ramalho Diniz; Bacht, Simão; Cestari, Idágene Aparecida; Rocha Neto, José Sérgio da; Lima, Antonio Marcus Nogueira.
  • Melo, Thamiles Rodrigues de; Federal University of Campina Grande. Graduate Program in Electrical Engineering. Campina Grande. BR
  • Vasconcelos, Felipe José de Sousa; Federal University of Campina Grande. Graduate Program in Electrical Engineering. Campina Grande. BR
  • Ribeiro, Luiz Henrique Ramalho Diniz; Federal University of Campina Grande. Undergraduate Program in Electrical Engineering. Campina Grande. BR
  • Bacht, Simão; Heart Institute. Bioengineering Division. São Paulo. BR
  • Cestari, Idágene Aparecida; Heart Institute. Bioengineering Division. São Paulo. BR
  • Rocha Neto, José Sérgio da; Federal University of Campina Grande. Graduate Program in Electrical Engineering. Campina Grande. BR
  • Lima, Antonio Marcus Nogueira; Federal University of Campina Grande. Graduate Program in Electrical Engineering. Campina Grande. BR
Res. Biomed. Eng. (Online) ; 34(4): 299-309, Oct.-Dec. 2018. tab, graf
Article in English | LILACS | ID: biblio-984964
ABSTRACT
Abstract Introduction A ventricular assist device (VAD) is an electromechanical pump used to treat heart failures. For designing the physiological control system for a VAD, one needs a mathematical model and its related parameters. This paper presents a characterization procedure for determining the model parameter values of the electrical, mechanical, and hydraulic subsystems of a pediatric Rotary Blood Pump (pRBP). Methods An in vitro test setup consisting of a pRBP prototype, a motor driver module, an acrylic reservoir, mechanical resistance and tubings, pressure and fluid flow sensors, and data acquisition, processing, and visualization system. The proposed procedure requires a set of experimental tests, and a parameter estimation algorithm for determining the model parameters values. Results The operating limits of the pRBP were identified from the steady-state data. The relationship between the pressure head, flow rate, and the rotational speed of the pRBP was found from the static tests. For the electrical and mechanical subsystems, the dc motor model has a viscous friction coefficient that varies nonlinearly with the flow. For the hydraulic subsystem, the pressure head is assumed to be a sum of terms related to the resistance, the inertance, the friction coefficient, and the pump speed. Conclusion The proposed methodology was successfully applied to the characterization of the pRBP. The combined use of static and dynamic tests provided a precise lumped parameter model for representing the pRBP dynamics. The agreement, regarding mean squared deviation, between experimental and simulated results demonstrates the correctness and feasibility of the characterization procedure.


Full text: Available Index: LILACS (Americas) Language: English Journal: Res. Biomed. Eng. (Online) Journal subject: Engenharia Biom‚dica Year: 2018 Type: Article / Project document Affiliation country: Brazil Institution/Affiliation country: Federal University of Campina Grande/BR / Heart Institute/BR

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Full text: Available Index: LILACS (Americas) Language: English Journal: Res. Biomed. Eng. (Online) Journal subject: Engenharia Biom‚dica Year: 2018 Type: Article / Project document Affiliation country: Brazil Institution/Affiliation country: Federal University of Campina Grande/BR / Heart Institute/BR