Biomedical Engineering Reference
In-Depth Information
+
V m
+1
V m
-
Silver Wire
Unmyelinated Axon
K +
Na +
Cl -
K +
R eq
I m
Cl -
K +
K +
A -
Na +
G c
Na +
K +
A -
Cl -
Na +
K +
Na +
R 2
Na +
Cl -
I m
R 1
R 3
+
R 1
-
-
R 1
+
R 1
V m
R 1
+
V s
-
References
[1] T.D. Coates, Neural Interfacing: Forging the Human-Machine Connection, Morgan & Claypool Publishers,
LaPorte, Colorado, 2008.
[2] J. Keener, J. Sneyd, Mathematical Physiology, Springer, New York, 1998.
[3] F. Rodriguez Campos, J.D. Enderle, Porting Genesis to SIMULINK, in: Proceedings of the 30th IEEE EMBS
Annual International Conference, September 2-5, 2004.
[4] J.C. Sanchez, J.C. Principe, Brain-Machine Interface Engineering, Morgan & Claypool Publishers, LaPorte,
Colorado, 2007.
Suggested Readings
A.T. Bahill, Bioengineering: Biomedical, Medical and Clinical Engineering, Prentice-Hall, Inc., Englewood Cliffs,
NJ, 1981.
J.D. Bronzino, The Biomedical Engineering Handbook, CRC Press, Inc., Boca Raton, FL, 2000.
J.M. Bower, D. Beeman, The Topic of Genesis: Exploring Realistic Neural Models with the General Neural Simula-
tion System, Springer-Verlag, New York, 1998.
S. Deutsch, A. Deutsch, Understanding the Nervous System—An Engineering Perspective, IEEE Press, New York,
1993.
D. DiFrancesco, D. Noble, A model of cardiac electrical activity incorporating ionic pumps and concentration
changes, Philos. Trans. R. Soc. Lond. B Biol. Sci. 307 (1985) 307-353.
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