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By Qingming Luo, Lihong V. Wang, Valery V. Tuchin

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14, 315 (1996). 36. M. P. E. S. Reinhold. Prog. Clin. Biol. Res. 170, 637 (1984). 37. W. H. Fingar, Cancer Res. 47, 3110 (1987). 38. H. Fingar, J. Clin. Laser Med. Surg. 14, 323 (1996). 39. C. Abels. Photochem. Photobiol. Sci. 3, 765 (2004). 40. Z. Huang, Q. Chen, D. Luck, et al. Lasers Surg. Med. 36, 390 (2005). 41. M. Korbelik, J. Clin. Laser Med. Surg. 14, 329 (1996). 42. G. Canti, A. De Simone and M. Korbelik, Photochem. Photobiol. Sci. 1, 79 (2002). 43. H. M. P. T. K Kuppen, Immunobiol. 207, 105 (2003).

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6(a). 8 mm diameter, filled with chicken blood. 3 cm, respectively. Then we covered the simulating blood vessels with a same thickness fat tissue. In order to finalize the design, the sample was cooled at room temperature for several minutes. Fig. 6(b) is the thermoacoustic tomography image of the simulating blood vessels with phase-controlled reconstructed algorithm. From the reconstructed image, the image of simulating blood vessels was corresponded well with the picture of sample. But the background noise of the reconstructed image is not as well as that of the images above, because the thick fat tissue results in the attenuation of thermoacoustic signal intensity and microwave energy.

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