Biomedical Engineering Reference
In-Depth Information
40. J Gellermann, W Wlodarczyk, H Ganter, J Nadobny,
H Fahling, M Seebass, R Felix, and P Wust, “A practical
approach to thermography in a hyperthermia/magnetic
resonance hybrid system: Validation in a heterogeneous
phantom,” Int J Radiat Oncol Biol Phys , vol. 61, no. 1, pp.
267-277, 2005.
41. RM Arthur, WL Straube, JW Trobaugh, and EG Moros,
“Noninvasive estimation of hyperthermia temperatures
with ultrasound,” International J of Hyperthermia , vol. 21,
pp. 589-600, 2005.
42. RM Arthur, WL Straube, JD Starman, and EG Moros,
“Noninvasive temperature estimation based on the energy
of backscattered ultrasound,” Medical Physics , vol. 30, pp.
1021-1029, 2003.
43. RM Arthur, JW Trobaugh, WL Straube, and EG Moros,
“Temperature dependence of ultrasonic backscattered
energy in motion-compensated images,” IEEE Trans on
UFFC , vol. 52, pp. 1644-1652, 2005.
44. M Pernot, M Tanter, J Bercoff, KR Waters, and M Fink,
“Temperature estimation using ultrasonic spatial com-
pound imaging,” IEEE Trans on UFFC , vol. 51, no. 5, pp.
606-615, 2004.
45. KR Erikson, PL Carson, and HF Stewart, “Field evaluation
of the AIUM standard 100 mm test object,” in Ultrasound in
Medicine , D White and R Barnes, Eds., vol. II, pp. 445-451.
Plenum Press, New York, 1976.
46. Y Guo, A Framework for Temperature Imaging Using the
Change in Backscattered Ultrasonic Signals , PhD the-
sis, Department of Electrical and Systems Engineering,
Washington University, St. Louis, MO, USA, 2009.
47. A Goshtasby, “Image registration by local approximation
methods,” Image and Vision Computing , vol. 6, pp. 255-261,
1988.
48. GE Christensen, SC Joshi, and MI Miller, “Volumetric
transformations of brain anatomy,” IEEE Trans on Med
Imaging , vol. 16, pp. 864-877, 1999.
49. MA Lubinski, SY Emelianov, and M O'Donnell, “Speckle
tracking methods for ultrasonic elasticity imaging using
short-time correlation,” IEEE Trans on UFFC , vol. 46, pp.
82-96, 1999.
50. JM Fitzpatrick, DLG Hill, and CR Maurer, “Image regis-
tration,” in Handbook of Medical Imaging , M Sonka and
JM Fitzpatrick, eds., Bellingham, Washington, 2000, vol.
2 Medical Image Processing and Analysis, pp. 447-513,
SPIE The International Society for Optical Engineering.
51. FV Viola and WF Walker, “A comparison of the perfor-
mance of time-delay estimators in medical ultrasound,”
IEEE Trans on UFFC , vol. 50, pp. 392-401, 2003.
52. NR Miller, JC Bamber, and PM Meaney, “Fundamental
limitations of noninvasive temperature imaging by means
of ultrasound echo strain estimation,” J Ultrasound in Med
& Biol , vol. 28, no. 10, pp. 1319-1333, 2002.
53. FL Lizzi, R Muratore, CX Deng, JA Ketterling, SK Alam,
S Mikaelian, and A Kalisz, “Radiation-force technique to
monitor lesions during ultrasonic therapy,” J Ultrasound in
Med & Biol , vol. 29, no. 11, pp. 1593-1605, 2003.
54. W Liu, U Techavipoo, T Varghese, JA Zagzebski, Q Chen,
and FT Lee, Jr, “Elastographic versus x-ray CT imaging
of radio frequency ablation coagulations: An in vitro
study,” Med Phys , vol. 31, no. 6, pp. 1322-1332, 2004.
55. NR Miller, JC Bamber, and GR Ter Haar, “Imaging of tem-
perature-induced echo strain: Preliminary in vitro study to
assess feasibility for guiding focused ultrasound surgery,” J
Ultrasound in Med & Biol , vol. 30, no. 3, pp. 345-356, 2004.
56. TD Mast, DP Pucke, SE Subramanian, WJ Bowlus, SM
Rudich, and JF Buell, “Ultrasound monitoring of in vitro
radio frequency ablation by echo decorrelation imaging,” J
Ultrasound Med , vol. 27, pp. 1685-1697, 2008.
57. JW Trobaugh, RM Arthur, WL Straube, and EG Moros,
“A simulation model for ultrasonic temperature imaging
using change in backscattered energy,” J of Ultrasound in
Med & Biol , vol. 34, no. 2, pp. 289-298, Feb 2008, PMCID:
PMC2269725.
58. R Maass-Moreno and CA Damianou, “Noninvasive tem-
perature estimation in tissue via ultrasound echo-shifts:
Part I Analytical model,” J Acoust Soc Am , vol. 100, pp.
2514-2521, 1996.
59. R Seip, P VanBaren, C A Cain, and E S Ebbini, “Noninvasive
real-time multipoint temperature control for ultrasound
phased array treatments,” IEEE Trans on UFFC , vol. 43, no.
6, pp. 1063-1073, 1996.
60. C Simon, P VanBaren, and E Ebbini, “Two-dimensional
temperature estimation using diagnostic ultrasound,” IEEE
Trans on UFFC , vol. 45, pp. 1088-1099, 1998.
61. T Varghese, JA Zagzebski, Q Chen, U Techavipoo, G Frank,
C Johnson, A Wright, and Jr. FT Lee, “Ultrasound monitor-
ing of temperature change during radiofrequency ablation:
Preliminary in-vivo results,” J Ultrasound in Med. & Biol. ,
vol. 28, no. 3, pp. 321-329, 2002.
62. MJ Daniels and T Varghese, “Dynamic frame selection for
in vivo ultrasound temperature estimation during radio-
frequency ablation,” Phys Med Biol , vol. 55, pp. 4735-4753,
2010.
63. M O'Donnell, AR Skovoroda, BM Shapo, and SY Emelianov,
“Internal displacement and strain imaging using ultrasonic
speckle tracking,” IEEE Trans on UFFC , vol. 41, no. 3, pp.
314-325, 1994.
64. C Xunchang, MJ Zohdy, SY Emelianov, and M O'Donnell,
“Lateral speckle tracking using synthetic lateral phase,”
IEEE Trans on UFFC , vol. 51, no. 5, pp. 540-550, 2004.
65. M Vogt and H Ermert, “Development and evaluation of a
high-frequency ultrasound-based system for in vivo strain
imaging of the skin,” IEEE Trans on UFFC , vol. 52, no. 3, pp.
375-385, 2005.
Search WWH ::




Custom Search