Chinese Journal of Lasers, Volume. 29, Issue 7, 667(2002)
Study on Kinetics of Thermally Induced Damage of Rat Liver with Light Scattering Technique
[1] [1] Gerhard Muller, Andre Roggan. Laser-induced interstitial thermotherapy [M]. Bellingham, Washington: SPIE, 1995. 3~6
[2] [2] Beop-Min Kim, Steven L. Jacques, Sohi Rastegar et al.. Nonlinear finite-element analysis of the role of dynamic changes in blood perfusion and optical properties in laser coagulation of tissue [J]. IEEE Journal of Selected Topics in Quantum Electronics, 1996, 2(4):922~933
[3] [3] A. Roggan, G. Muller. Dosimetry and computer based irradiation planning for laser-induced interstitial thermotherapy (LITT), Gerhard Muller, Andre Roggan, Laser-induced interstitial thermotherapy [M]. Bellingha, Washington: SPIE, 1995. 114~156
[4] [4] Matthew G. inner, Megumi N. Iizuka, Michael C. Kolios et al.. A theoretical comparison of energy sources-microwave, ultrasound and laser-for interstitial thermal therapy [J]. Physics in Medicine Biology, 1998, 43(12):3535~3547
[5] [5] R. Meijerink, M. Essenpreis, J. W. Pickerking et al.. Rate process parameters of egg white measured by light scattering, gerhard Muller, andre Roggan, laser-induced interstitial thermotherapy [M]. Bellingha, Washington: SPIE, 1995. 66~80
[6] [6] A. J. Welch. The thermal response of laser irradiated tissue [J]. IEEE J. Quantum Electron., 1984, QE-20(12):1471~1481
[7] [7] Y. Yang, A. J. Welch, H. G. Rylander. Rate process parameters of albumen [J]. Lasers Surg. Med., 1991, 11(2):180~190
[8] [8] John W. Pinkering, Paul Posthumus, Martin J. C. van Gemert. Continuous measurement of the heat-induced changes in the optical properties (at 1.064 nm) of rat liver [J]. Lasers Surg. Med., 1994, 15(2):200~205
[10] [10] Inci F. Cilesiz, Ashley J. Welch. Light dosimetry: effects of dehydration and thermal damage on the optical properties of the human aorta [J]. Appl. Opt., 1993, 32(4):477~487
[11] [11] A. Roggan, K. Dorschel, O. Minet et al.. The optical properties of biological tissue in the near infrared wavelength range-review and measurements, Gerhard Muller, Andre Roggan, laser-induced interstitial thermotherapy [M]. Bellingha, Washington: SPIE, 1995. 11~44
[12] [12] Essenpreis M.. Thermally induced changes in optical properties of biological tissue, Ph.D dissertation, University College London, 1992. 68~69
[14] [14] Dan ZHU, Qingming LUO, Jiangsheng YU et al.. The coagulation process of biological tissue measured by light scattering [C]. SPIE, 1999, 3863:518~522
[15] [15] A. R. Moritz, F. C. Henriques. Studies of thermal injury. Ⅱ. The rrlative importance of time and source temperature in causation of cutaneous burns [J]. Amer. J. Pathol., 1947, 23:695~720
[17] [17] A. G. Borovoi, E. I. Naats, U. G. Oppel. Scattering of light by a red blood cell [J]. J. Biomed. Opt., 1998, 3(3):364~371
[18] [18] N. T. Wright, S. S. Chen, J. D. Humphrey. Time-temperature equivalence of heat-induced changes in cells and proteins [J]. ASME: J. Biomech. Eng., 1998, 120(1):22~26
[19] [19] Ramtin Agah, Devang Sheth, Massoud Motamedi. Effect of coagulation on laser light distribution in m myocardial tissue [C]. SPIE, 1991, 1425:172~179
[20] [20] Steven L. Jacques. How tissue optics affect dosimetry for photochemical, photothermal, and photomechanical mechanisms of laser-tissue interaction, recent advances in the uses of light in physics, chemistry, engineering and medicine [C]. SPIE, 1991, 1599:316~322
Get Citation
Copy Citation Text
[in Chinese], [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Study on Kinetics of Thermally Induced Damage of Rat Liver with Light Scattering Technique[J]. Chinese Journal of Lasers, 2002, 29(7): 667