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Modeling and Simulation of the Cardiovascular System Using Baroreflex Control Model

  • 최병철 (부산대학교 의공학협동과정) ;
  • 엄상희 (부산대학교 전자공학과) ;
  • 남기곤 (부산대학교 전자공학과) ;
  • 손경식 (부산대학교 전자공학과) ;
  • 이영우 (부산대학교 병원 신경외과) ;
  • 전계록 (부산대학교 병원 의공학과)
  • Choi, B.C. (Dept. of Interdisciplinary program in Biomedical Eng., Pusan Univ.) ;
  • Eom, S.H. (Dept. of Electronic Eng., Pusan National Univ.) ;
  • Nam, G.K. (Dept. of Electronic Eng., Pusan National Univ.) ;
  • Son, K.S. (Dept. of Electronic Eng., Pusan National Univ.) ;
  • Lee, Y.W. (Dept. of Neurosurgery, Pusan National Univ. Hospital) ;
  • Jun, K.R. (Dept. of Medical Eng., Pusan National Univ Hospital)
  • 발행 : 1997.05.23

초록

In this paper, we consider the aortic sinus baroreceptor, which is the most representative baroreceptors sensing the variance of pressure in the cardiovascular system(CVS), and propose heart activity control model to observe the effect of delay time in heart period and stroke volume under the regulation of baroreflex in arotic sinus. The proposed heart activity baroreflex regulation model contains CVS electric circuit sub-model, baroreflex regulation sub-model and time delay sub-model. In these models, applied electric circuit sub-model is researched by B.C.Choi and the baroreflex regulation sub-model transforms the input, the arotic pressure of CVS electric circuit sub-model, to outputs, heart period and stroke volume by mathematical nonlinear feedback. We constituted the time delay sub-model to observe sensitivity of heart activity baroreflex regulation model by using the variable value to represent the control signal transmission time from the output of baroreflex regulation model to efferent nerve through central nervous system. The simulation object of this model is to observe variability of the CVS by variable value in time delay sub-model. As simulation results, we observe three patterns of CVS variability by the time delay. First, if the time delay is over 2.5 sec, arotic pressure, stroke volume and heart rate is observed nonperiodically and irregularly. Second, if the time delay is from between 0.1 sec and 0.25 sec, the regular oscillation is observed. Finally, if time delay is under 0.1 sec, then heart rate and arotic pressure-heart rate trajectory is maintained in stable state.

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