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Physiological Systems Modeling and Simulation Federica Caselli University of Rome “Tor Vergata” A.A. 2011/2012
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Physiological Systems Modeling and Simulation Federica Caselli University of Rome “Tor Vergata” A.A. 2011/2012.

Jan 03, 2016

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Page 1: Physiological Systems Modeling and Simulation Federica Caselli University of Rome “Tor Vergata” A.A. 2011/2012.

Physiological Systems Modeling and Simulation

Federica CaselliUniversity of Rome “Tor Vergata”

A.A. 2011/2012

Page 2: Physiological Systems Modeling and Simulation Federica Caselli University of Rome “Tor Vergata” A.A. 2011/2012.

Physiological Systems Modeling and Simulation

Modeling

Simulation

Page 3: Physiological Systems Modeling and Simulation Federica Caselli University of Rome “Tor Vergata” A.A. 2011/2012.

Purpose of modeling

Understanding physiology

Diagnosis

Prediction

Artificial organ design

Virtual medicine

Modeling process:

Model formulation

Parameter identification

Model validation

Model simulation

(iterative process!)

Physiological Systems Modeling and Simulation

Examples?

Page 4: Physiological Systems Modeling and Simulation Federica Caselli University of Rome “Tor Vergata” A.A. 2011/2012.

Type of models

Black or gray box (data or system modeling)

Linear or nonlinear

Stationary or time-dependent

Lumped or distributed parameters (ODE or PDE)

Deterministic or stochastic

Page 5: Physiological Systems Modeling and Simulation Federica Caselli University of Rome “Tor Vergata” A.A. 2011/2012.

LTI Models of Physiological Systems

Example: linearized lung mechanics

Page 6: Physiological Systems Modeling and Simulation Federica Caselli University of Rome “Tor Vergata” A.A. 2011/2012.

System Identification

Gray box

Black box

Page 7: Physiological Systems Modeling and Simulation Federica Caselli University of Rome “Tor Vergata” A.A. 2011/2012.

Physiological CONTROL Systems

Homeostasis!

Page 8: Physiological Systems Modeling and Simulation Federica Caselli University of Rome “Tor Vergata” A.A. 2011/2012.

Milestones

1952

Page 9: Physiological Systems Modeling and Simulation Federica Caselli University of Rome “Tor Vergata” A.A. 2011/2012.

Milestones

1938

1957Huxley

crossbridge model

Hill model

Page 10: Physiological Systems Modeling and Simulation Federica Caselli University of Rome “Tor Vergata” A.A. 2011/2012.

Electric conduction in cells and tissues

Page 11: Physiological Systems Modeling and Simulation Federica Caselli University of Rome “Tor Vergata” A.A. 2011/2012.

Cell encapsulation

Nor

mal

ized

drug

mas

s in

the

cont

aine

rDrug delivery system modeling

Page 12: Physiological Systems Modeling and Simulation Federica Caselli University of Rome “Tor Vergata” A.A. 2011/2012.

Biomechanics

0 100 200 300 4000

0.02

0.04

0.06

0.08

0.1

strain rate

visc

osity

[dy

n*s/

cm2]

PowerCarreauCassonMod. CassonQuaemada

Page 13: Physiological Systems Modeling and Simulation Federica Caselli University of Rome “Tor Vergata” A.A. 2011/2012.

Biomechanics

Page 14: Physiological Systems Modeling and Simulation Federica Caselli University of Rome “Tor Vergata” A.A. 2011/2012.

Biomechanics

Page 15: Physiological Systems Modeling and Simulation Federica Caselli University of Rome “Tor Vergata” A.A. 2011/2012.

Biomechanics

symmetry

contact

clamped

Page 16: Physiological Systems Modeling and Simulation Federica Caselli University of Rome “Tor Vergata” A.A. 2011/2012.

Biomechanics

100 %Stress free

Page 17: Physiological Systems Modeling and Simulation Federica Caselli University of Rome “Tor Vergata” A.A. 2011/2012.

Heart-lung machine

Oxygen diffusion and transport, blood flow dynamics, stress on red blood cell and haemolysis ...

Page 18: Physiological Systems Modeling and Simulation Federica Caselli University of Rome “Tor Vergata” A.A. 2011/2012.

Challenges

Complexity

Multiphysics & Multiscale models

Holistic approach

Growth and remodeling

Patient-Specific models

Noninvasive method for parameter identification

Computational efforts To name but a few!

Page 19: Physiological Systems Modeling and Simulation Federica Caselli University of Rome “Tor Vergata” A.A. 2011/2012.

References

Cobelli C. and Carson E., Introduction to Modeling in Physiology and Medicine, Elsevier/Academic Press, New York, 2007.

Holzapfel G.A., Nonlinear Solid Mechanics: A Continuum Approach for Engineering, Wiley, New York, 2000.

Humphrey J.D., Cardiovascular Solid Mechanics: cells, tissues and organs, Springer-Verlag, 2002.

Keener J. and Sneyd J., Mathematical Physiology – Systems Physiology, Springer.

Khoo M.C.K., Physiological Control Systems, IEEE Press, 2000.

Quarteroni A., Cardiovascular Mathematics, Springer, 2009.

Page 20: Physiological Systems Modeling and Simulation Federica Caselli University of Rome “Tor Vergata” A.A. 2011/2012.

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