Page 86 - Biomedical Engineering and Design Handbook Volume 1, Fundamentals
P. 86

HEAT TRANSFER APPLICATIONS IN BIOLOGICAL SYSTEMS  63

                          Crezee, J., and Lagendijk, J. J. W., 1990, “Experimental Verification of Bioheat Transfer Theories: Measurement
                            of  Temperature Profiles around Large  Artificial  Vessels in Perfused  Tissue,”  Physics in Medicine and
                            Biology, 35(7):905–923.
                          Crezee, J., Mooibroek, J., Bos, C. K., and Lagendijk, J. J.  W., 1991, “Interstitial Heating: Experiments in
                            Artificially Perfused Bovine Tongues,” Physics in Medicine and Biology, 36:823–833.
                          Dewhirst, M. W., Prosnitz,L., Thrall, D., Prescott, D., Clegg, S., Charles, C., MacFall, J., et al., 1997, “Hyperthermia
                            Treatment of Malignant Diseases: Current Status and a View  Toward the Future,”  Seminars in Oncology,
                            24(6):616–625.
                          Dorr, L. N., and Hynynen, K., 1992, “The Effects of Tissue Heterogeneities and Large Blood Vessels on the Thermal
                            Exposure Induced by Short High-Power Ultrasound Pulses,” International Journal of Hyperthermia, 8:45–59.
                          Engelhart, M., and Kristensen, J. K., 1986, “Raynaud’s Phenomenon: Blood Supply to Fingers During Indirect
                            Cooling, Evaluated by Laser Doppler Flowmetry,” Clinical Physiology, 6:481–488.
                          Firorini, A., Fumero, R., and Marchesi, R., 1982, “Cardio-Surgical Thermography,” Proceedings of SPIE, 359:249.
                          Flower, R. W., 2002, “Optimizing Treatment of Choroidal Neovascularization Feeder Vessels Associated with
                            Age-Related Macular Degeneration,” American Journal of Ophthalmology, 134:228–239.
                          Fu, G., “A Transient 3-D Mathematical Thermal Model for the Clothed Human,” Ph.D. Dissertation, Kansas State
                            University, 1995.
                          Gautherie, M., and Gros, C. M., 1980, “Breast Thermography and Cancer Risk Prediction,” Cancer, 45(1):51–56.
                          Gentill, G. B., Lenocini, M., Trembly, B. S., Schweizer, S. E., 1995, “FDTD Electromagnetic and Thermal
                            Analysis of Interstitial Hyperthermic Applicators: Finite-Difference Time-domain,” IEEE Transactions on
                            Biomedical Engineering, 42(10):973–980.
                          Gerweck, L. E., 1977, “Modification of Cell Lethality at Elevated Temperatures: The pH Effect,” Radiation
                            Research, 70:224–235.
                          Gilchrist, R. K., Medal, R., Shorey, W. D., Hanselman, R. C., Parrott, J. C., and Taylor, C. B., 1957, “Selective
                            Inductive Heating of Lymph Nodes,” Annals of Surgery, 146:596–606.
                          Griffin, R. J., Ogawa, A., Shakil, A., and Song, C. W., 1998, “Local Hyperthermia Treatment of Solid Tumors:
                            Interplay between Thermal Dose and Physiological Parameters,” ASME, HTD-Vol. 362, Advances in Heat
                            and Mass Transfer in Biological Systems, pp. 67–69.
                          Hariharan, P., Chang, I., Myers, M., and Banerjee, R. K., 2007a, “Radio Frequency (RF) Ablation in a Realistic
                            Reconstructed Hepatic Tissue,” ASME Journal of Biomechanical Engineering, 129:354–364.
                          Hariharan, P., Myers, M. R., and Banerjee, R. K., 2007b, “HIFU Procedures at Moderate Intensities—Effect of
                            Large Blood Vessels,” Physics in Medicine and Biology, 52:3493–3513.
                          Hariharan, P., Myers, M. R., Robinson, R., Maruyada, S., Sliva, J., and Banerjee, R. K., 2008, “Characterization
                            of High Intensity Focused Ultrasound Transducers Using Acoustic Streaming,” Journal of Acoustical Society
                            of America, in press.
                          Hartov, A., Colacchio, T. A., Hoopes, P. J., and Strohbehn, J. W., 1994, “The Control Problem in Hyperthermia,”
                            ASME HTD-Vol. 288, Advances in Heat and Mass Transfer in Biological Systems, pp. 119–126.
                          Hase, M., Sako, M., Fujii, M., Ueda, E., Nagae, T., Shimizu, T., Hirota, S., and Kono, M., 1989, “Experimental
                            Study of Embolohyperthermia for the Treatment of Liver Tumors by Induction Heating to Ferromagnetic
                            Particles Injected into Tumor Tissue,” Nippon Acta Radiologica, 49:1171–1173.
                          He, Q., Zhu, L.,  Weinbaum, S., and Lemons, D. E., 2002, “Experimental Measurements of  Temperature
                            Variations along Paired Vessels from 200 to 1000 (m in Diameter in Rat Hind Leg,”  ASME Journal of
                            Biomedical Engineering, 124:656–661.
                          He, Q., Zhu, L., and  Weinbaum, S., 2003, “Effect of Blood Flow on  Thermal Equilibration and  Venous
                            Rewarming,” Annals of Biomedical Engineering, 31:659–666.
                          Head, J. F., Wang, F., and Elliott R. L., 1993, “Breast Thermography Is a Noninvasive Prognostic Procedure That
                            Predicts Tumor Growth Rate in Breast Cancer Patients,”  Annals of the New York Academy of Sciences,
                            698:153–158.
                          Hergt, R., Hiergeist, R., Zeisberger, M., Glockl, G., Weitschies, W., Ramirez, L. P., Hilger, I., and Kaiser, W. A.,
                            2004, “Enhancement of  AC-Losses of Magnetic Nanoparticles for Heating  Applications,”  Journal of
                            Magnetism and Magnetic Materials, 280:358–368.
                          Hilger, I., Andra, W., Hergt, R., Hiergeist, R., Schubert, H., and Kaiser, W. A., 2001, “Electromagnetic Heating
                            of Breast Tumors in Interventional Radiology: in vitro and in vivo Studies in Human Cadavers and Mice,”
                            Radiology, 218:570–575.
   81   82   83   84   85   86   87   88   89   90   91