Biomedical Engineering Reference
In-Depth Information
ESHO Educational School on Clinical Hyperthermia and
the 10th International Congress on Hyperthermic Oncology,
Book of Abstracts, Munich, Germany, April 2008.
126. E. Neufeld, D. Szczerba, S. Hirsch, G. Szekely, and N.
Kuster. In silico model of tumour growth and treatment
with Doxorubicin and heat, 25th Annual Meeting of the
European Society for Hyperthermic Oncology, Book of
Abstracts, Verona, Italy, 2008.
127. E. Neufeld, T. Samaras, N. Chavannes, and N. Kuster. Robust
medical image segmentation for hyperthermia treatment
planning, 22nd Annual Meeting of the European Society for
Hyperthermic Oncology, Book of Abstracts, Graz, Austria,
June 2005, pp. 56-57.
128. E. Neufeld, T. Samaras, N. Chavannes, and N. Kuster.
Important aspects of electromagnetic modeling in hyper-
thermia treatment planning using non-uniform FDTD,
22nd Annual Meeting of the European Society for
Hyperthermic Oncology, Book of Abstracts, Graz, Austria,
June 2005, pp. 47-48.
129. E. Neufeld, T. Samaras, N. Chavannes, G. Szekely, and N.
Kuster. From vessels to wires and 1D boundaries: A tech-
nique for simulating the thermal impact of thin structures,
1st ESHO Educational School on Clinical Hyperthermia and
the 10th International Congress on Hyperthermic Oncology,
Book of Abstracts, Munich, Germany, April 2008.
130. E. Neufeld, A. Kyriacou, M. Paulides, G. van Rhoon, and N.
Kuster. Enabling operator interaction in hyperthermia treat-
ment planning using pareto optimization, Annual Meeting
of the European Society for Hyperthermic Oncology, Book
of Abstracts, Rotterdam, Netherlands, 2010.
131. E. Neufeld, N. Chavannes, T. Samaras, and N. Kuster. Novel
conformal technique to reduce staircasing artifacts at mate-
rial boundaries for FDTD modeling of the bioheat equa-
tion. Phys Med Biol , 52(15):4371-81, 2007.
132. K. S. Nikita, N. G. Maratos, and N. K. Uzunoglu. Optimal
steady-state temperature distribution for a phased array
hyperthermia system. IEEE Trans Biomed Eng , 40(12):1299-
306, 1993.
133. S. D. Olabarriaga and A. W. M. Smeulders. Interaction in
the segmentation of medical images: A survey. Med Img
Analysis , 5:127-142, 2001.
134. C. Chen and R. B. Roemer. A thermo-pharmacokinetic
model of tissue temperature oscillations during localized
heating. Int J Hyperthermia , 21(2):107-24, 2005.
135. M. M. Paulides, J. F. Bakker, M. Linthorst, J. van der Zee,
Z. Rijnen, E. Neufeld et al. The clinical feasibility of deep
hyperthermia treatment in the head and neck: New chal-
lenges for positioning and temperature measurement. Phys
Med Biol , 55:2465ff, 2010.
136. M. M. Paulides, J. F. Bakker, E. Neufeld, J. van der Zee, P.
Jansen, P. C. Levendag, G. C. van Rhoon. The HYPERcollar:
A novel applicator for hyperthermia in the head and neck.
Int J Hyperthermia , 23(7):567-76, November 2007.
137. M. M. Paulides, J. F. Bakker, and G. C. van Rhoon.
Electromagnetic head-and-neck hyperthermia applicator:
Experimental phantom verification and FDTD model. Int J
Radiat Oncol Biol Phys , 68(2):612-20, 2007.
138. M. M. Paulides, J. F. Bakker, A. P. Zwamborn, and G.
C. Van Rhoon. A head and neck hyperthermia applica-
tor: Theoretical antenna array design. Int J Hyperthermia ,
23(1):59-67, 2007.
139. K. D. Paulsen, S. Geimer, J. Tang, and W. E. Boyse.
Optimization of pelvic heating rate distributions with
electromagnetic phased arrays. Int J Hyperthermia ,
15(3):157-86, 1999.
140. K. D. Paulsen, X. Jia, and Jr. Sullivan, J. M. Finite element
computations of specific absorption rates in anatomically
conforming full-body models for hyperthermia treatment
analysis. IEEE Trans Biomed Eng , 40(9):933-45, 1993.
141. M. J. Piket-May, A. Taflove, W. C. Lin, D. S. Katz, V.
Sathiaseelan, and B. B. Mittal. Initial results for automated
computational modeling of patient-specific electromag-
netic hyperthermia. IEEE Trans Biomed Eng , 39(3):226-37,
1992.
142. S. Pisa, M. Cavagnaro, E. Piuzzi, P. Bernardi, and J. C. Lin.
Power density and temperature distribution produced by
interstitial arrays of sleeved-slot antennas for hyperther-
mia cancer therapy. IEEE Trans Microw Theory Techn ,
51(12):2418-2425, 2003.
143. H. H. Pennes. Analysis of tissue and arterial blood tem-
peratures in the resting human forearm. J Appl Physiol ,
85(1):5-34, 1948.
144. R. Pohle. Computerunterstuetzte Bildanalyse zur Auswer-
tung medizinischer Bilddaten. Habilitationsschrift Otto-
von-Guericke-Universität Magdeburg, 2004.
145. M. Pop, A. Molckovsky, L. Chin, M. C. Kolios, M. A. Jewett,
and M. D. Sherar. Changes in dielectric properties at 460
kHz of kidney and fat during heating: Importance for radio-
frequency thermal therapy. Phys Med Biol , 48(15):2509-25,
2003.
146. A. W. Preece and J. L. Murfin. The use of an infrared cam-
era for imaging the heating effect of RF applicators. Int J
Hyperthermia , 3(2):119-22, 1987.
147. T. Preusser, H. O. Peitgen, F. Liehr, M. Rumpf, U. Weikard,
and S. Sauter. Simulation of radio-frequency ablation using
composite finite element methods. Perspective in image-
guided surgery, Proc. Scientific Workshop on Medical
Robotics Navigation and Visualization, pp. 303-310, 2004.
148. T. Preusser, A. Weihusen, and H. O. Peitgen. On the model-
ing of perfusion in the simulation of RF-ablation. Simulation
and Visualization , SCS , pp. 259-269, 2005.
149. C. E. Reuter, A. Taflove, V. Sathiaseelan, M. Piket-May, and
B. B. Mittal. Unexpected physical phenomena indicated by
FDTD modeling of the Sigma-60 deep hyperthermia appli-
cator. IEEE Trans Microw Theory Techn , 46(4):313-319,
1998.
Search WWH ::




Custom Search