• Journal of Innovative Optical Health Sciences
  • Vol. 11, Issue 3, 1850008 (2018)
Heng Guo1, Weizhi Qi1, Ming He1, Jian Rong1、2, and Lei Xi1、2、*
Author Affiliations
  • 1School of Physical Electronics, University of Electronic, Science and Technology of China, Chengdu, Sichuan, P. R. China
  • 2Center for Information in Biomedicine, University of Electronic Science and Technology of China, Sichuan, P. R. China
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    DOI: 10.1142/s1793545818500086 Cite this Article
    Heng Guo, Weizhi Qi, Ming He, Jian Rong, Lei Xi. Co-registered photoacoustic and ultrasound imaging for tongue cancer detection[J]. Journal of Innovative Optical Health Sciences, 2018, 11(3): 1850008 Copy Citation Text show less
    References

    [1] D. M. Parkin, F. Bray, J. Ferlay, P. Pisani, “Global cancer statistics, 2002," CA Cancer J. Clin. 55, 74-108 (2005).

    [2] American Cancer Society, Cancer facts and figures 2006, American Cancer Society, Atlanta (2006).

    [3] N. Howlader, A. M. Noone, M. Krapcho, N. Neyman, R. Aminou, S. F. Altekruse, C. L. Kosary, J. Ruhl, Z. Tatalovich, H. Cho, A. Mariotto, M. P. Eisner, D. R. Lewis, H. S. Chen, E. J. Feuer, K. A. Cronin, SEER Cancer Statistics Review, 1975-2009 (Vintage 2009 Populations), National Cancer Institute (2012).

    [4] C. Scully, J. V. Bagan, C. Hopper, J. B. Epstein, “Oral cancer: Current and future diagnostic techniques," Am. J. Dent. 21, 199 209 (2008).

    [5] J. H. Takano, T. Yakushiji, I. Kamiyama, T. Nomura, A. Katakura, N. Takano, T. Shibahara, “Detecting early oral cancer: Narrowband imaging system observation of the oral mucosa microvasculature," Int. J. Oral Maxillofac. Surg. 39, 208-213 (2010).

    [6] M. Muto, C. Katada, Y. Sano, S. Yoshida, “Narrow band imaging: A new diagnostic approach to visualize angiogenesis in superficial neoplasia," Clin. Gastroenterol. Hepatol. 3, 16-20 (2005).

    [7] A. Gillenwater, R. Jacob, R. Ganeshappa, B. Kemp, A. K. El-Naggar, J. L. Palmer, G. Clayman, M. F. Mitchell, R. Richards-Kortum, “Noninvasive diagnosis of oral neoplasia based on fluorescence spectroscopy and native tissue autofluorescence," Arch. Otolaryngol. Head Neck Surg. 124, 1251-1258 (1998).

    [8] D. L. Heintzelman, U. Utzinger, H. Fuchs, A. Zuluaga, K. Gossage, A. M. Gillenwater, R. Jacob, B. Kemp, R. R. Richards-Kortum, “Optimal excitation wavelengths for in vivo detection of oral neoplasia using fluorescence spectroscopy," Photochem. Photobiol. 72, 103-113 (2000).

    [9] C. S. Kim, P. Wilder-Smith, Y. C. Ahn, L. H. L. Liaw, Z. Chen, Y. J. Kwon, “Enhanced detection of early-stage oral cancer in vivo by optical coherence tomography using multimodal delivery of gold nanoparticles," J. Biomed. Opt. 14, 034008 (2009).

    [10] M. T. Tsai, H. C. Lee, C. K. Lee, C. H. Yu, H. M. Chen, C. P. Chiang, C. C. Chang, Y. M. Wang, C. C. Yang. “Effective indicators for diagnosis of oral cancer using optical coherence tomography," Opt. Express. 16, 15847-15862 (2008).

    [11] J. Furusawa, N. Oridate, F. Suzuki, A. Homma, Y. Fureta, S. Fukuda. “Initial CT findings in early tongue and oral floor cancer as predictors of neck metastasis," Oral Oncol. 44, 793-797 (2008).

    [12] T. T. A. Peters, J. A. Castelijins, R. Ljumanovic, B. I. Witte, C. R. Leemans, R. Bree, “Diagnostic value of CT and MRI in the detection of paratracheal lymph node metastasis," Oral Oncol. 48, 450-455 (2012).

    [13] P. Lam, K. M. Au-Yeung, P. W. Cheng, W. I. Wei, A. P. Yuen, N. Trendell-Smith, J. H. Li, R. Li, “Correlating MRI and histologic tumor thickness in the assessment of oral tongue cancer," AJR. 182, 803-808 (2004).

    [14] R. Sigal, A. M. Zagdanki, G. Schwaab, J. Bosq, A. Auperin, A. Laplanche, J. P. Francke, F. Eschwege, B. Luboinski, D. Vanel. “CT and MRI imaging squamous cell carcinoma of the tongue and floor of the mouth," Radiographic 16, 787-810 (1996).

    [15] L. V. Wang, S. Hu, “Photoacoustic tomography: in vivo imaging from organelles to organs," Science 335, 1458-1462 (2012).

    [16] P. Beard, “Biomedical photoacoustic imaging," Interface Focus 1, 602-631 (2011).

    [17] L. Xi, S. Grobmyer, L. Wu, R. Chen, G. Zhou, L. G. Gutwein, J. Sun, W. Liao, Q. Zhou, H. Xie, H. Jiang, “Evaluation of breast tumor margins in vivo with intraoperative photoacoustic imaging," Opt. Express 20, 8726-8731 (2012).

    [18] L. Xi, H. Jiang, “High resolution three-dimensional photoacoustic imaging of human finger joints in vivo," Appl. Phys. Lett. 107, 063701 (2015).

    [19] R. Kruger, C. Kuzmiak, R. Lam, D. Reinecke, S. Del Rio, D. Steed, “Dedicated 3D photoacoustic breast imaging," Med. Phys. 40, 113301 (2013).

    [20] D. Razansky, M. Distel, C. Vinegoni, R. Ma, N. Perrimon, R. W. K€oster, V. Ntziachristos, “Multispectral opto-acoustic tomograhy of deep-seated fluorescent proteins in vivo," Nat. Photonics. 3, 412 (2009).

    [21] B. Wang, A. Karpiouk, D. Yeager, J. Amirian, S. Litovsky, R. Smalling, S. Emelianov, “Intravascular photoacoustic imaging of lipid in atherosclerotic plaques in the presence of luminal blood," Opt. Lett. 37, 1244-1246 (2012).

    [22] J. Yang, C. Favazza, R. Chen, J. Yao, X. Cai, K. Maslov, Q. Zhou, K. K. Shung, L. V. Wang, “Simultaneous functional photoacoustic and ultrasonic endoscopy of internal organs in vivo," Nat. Med. 18, 1297-1302 (2012).

    [23] X. Dai, L. Xi, C. Duan, H. Yang, H. Xie, H. Jiang, “Miniature probe integrating optical-resolution photoacoustic microscopy, optical coherence tomography, and ultrasound imaging: Proof-of-concept," Opt. Lett. 40, 2921-2924 (2015).

    [24] Y. Lao, D. Xing, S. Yang, L. Xiang, “Noninvasive photoacoustic imaging of the developing vasculature during early tumor growth," Phys. Med. Biol. 53, 4203-4212 (2008).

    [25] A. A. Oraevsky, A. A. Karabutov, E. B. Savateeva, B. Bell, M. Motamedi, S. L. Thomsen, P. J. Pasricha, “Opto-acoustic imaging oforal cancer: Feasibility studies in hamster model ofsquamous cell carcinoma," Proc. SPIE 3597, 385-396 (1999).

    [26] H. Fatakdawala, S. Poti, F. Zhou, Y. Sun, J. Bec, J. Liu, D. R. Yankelevich, S. P. Tinling, R. F. Gandour-Edwards, D. Gregory Farwell, L. Marcu, “Multimodal in vivo imaging of oral cancer using fluorescence lifetime, photoacoustic and ultrasound techniques," Biomed. Opt. Express 4, 1724-1741 (2013).

    [27] S. P. Mattison, R. L. Shelton, R. T. Maxson, B. E. Applegate, “Continuous real-time photoacoustic demodulation via field programmable gate array for dynamic imaging of zebrafish cardiac cycle," Biomed. Opt. Express 4, 1451-1463 (2013).

    Heng Guo, Weizhi Qi, Ming He, Jian Rong, Lei Xi. Co-registered photoacoustic and ultrasound imaging for tongue cancer detection[J]. Journal of Innovative Optical Health Sciences, 2018, 11(3): 1850008
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