Fluid Mechanics, Fourth Edition

Baish J. W. P. S. Ayyaswamy and K.R. Foster (1986a). "Small scale temperature fluctuations in perfused tissue during local hyperthermia." J. BioMech. Eng. 108: 246-250.
Baish, J. W. P. S. Ayyaswamy and K. R. Foster (1986b). "Heat transport mechanisms in vascular tissues: A model comparison." J. BioMech. Eng. 108: 324-331.
Berger S. A. L. Talbot and L.-S. Yao (1983). "Flow in curved pipes." Annual Review of Fluid Mechanics 15: 461 512.
Bidwell R. G. S. (1974). Plant Physiology New York: MacMillan.
Brown B. H. R. H. Smallwood D. C. Barber P. V. Lawford and D. R. Hose (1999). Medical Physics and Biomedical Engineering London: Institute of Physics Publishing.
Cancelli C. and T. J. Pedley (1985). "A separated flow model for collapsible tube oscillations." Journal of Fluid Mechanics 157: 375 404.
Chandran K. B. A. P. Yoganathan and S.E. Rittgers (2007). Biofluid Mechanics The Human Circulation Boca RatonFL: Taylor & Francis.
Charm S. E. and G. S. Kurland (1974) Blood Flow and Microcirculation New York: John Wiley & Sons.
Collins W. M. and S. C. R. Dennis (1975). "The steady motion of a viscous fluid in a curved tube." Q. J. Mech. Appl. Math. 28: 133 156.
Dean W. R. (1928) "The streamline motion of fluid in a curved pipe." Philosophical Magazine, Series 7, 30: 673 693.
Fournier R. L. (2007). Basic Transport Phenomena in Biomedical Engineering New York: Taylor & Francis.
Fung Y. C. (1993). Biomechanics: Mechanical Properties of Living Tissues, Second Edition