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Research Article

Use of gold nanoshells to constrain and enhance laser thermal therapy of metastatic liver tumours

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Pages 434-440 | Received 27 Oct 2009, Accepted 08 Feb 2010, Published online: 02 Jul 2010

References

  • Kanematsu M, Kondo H, Goshima S, Kato H, Tsuge U, Hirose Y, Kim MJ, Moriyama N. Imaging liver metastases: Review and update. Eur J Radiology 2006; 58: 217–228
  • McKay A, Dixon E, Taylor M. Current role of radiofrequency ablation for the treatment of colorectal liver metastases. Br J Surgery 2006; 93: 1192–1201
  • Kong WT, Zhang WW, Qiu YD, Zhou T, Qiu JL, Zhang W, Ding YT. Major complications after radiofrequency ablation for liver tumors: Analysis of 255 patients. World J Gastroenterol 2009; 15(21)2651–2656
  • Vogl TJ, Mack M, Eichler K, Lehnert T, Nabil M. Effect of laser-induced thermotherapy on liver metastases. Expert Rev Anticancer Therapy 2006; 6(5)769–774
  • Germer CT, Albrecht D, Roggan A, Isbert C, Buhr HJ. Experimental study of laparoscopic laser-induced thermotherapy for liver tumours. Br J Surgery 1997; 84: 317–320
  • Stroszczynski C, Gretschel S, Gaffke G, Puls R, Kretzschmar A, Hosten N, Schlag PM, Felix R. Laser-induced thermotherapy (LITT) for malignant liver tumours: The role of sonography in catheter placement and observation of the therapeutic procedure. Ultraschall Med 2002; 23(3)163–167
  • Mack MG, Eichler K, Zangos S, Lehnert T, Vogl TJ. Long-term results of MR-guided laser ablation (LITT) of liver metastases of breast cancer. J Clin Oncol 2008; 26(15S)1037
  • Hirsch LR, Stafford RJ, Bankson JA, Sershen SR, Rivera B, Price RE, Hazle JD, Halas NJ, West JL. Nanoshell-mediated near-infrared thermal therapy of tumors under magnetic resonance guidance. PNAS 2003; 100(23)13549–13554
  • Bohren CF, Huffman DR. Absorption and scattering of light by small particles. Wiley-VCH, New York, NY 2004
  • James WD, Hirsch LR, West JL, O'Neal PD, Payne JD. Application of INAA to the build-up and clearance of gold nanoshells in clinical studies in mice. J Radioanalytical Nuclear Chemistry 2007; 271(2)455–459
  • Maksimova IL, Akchurin GG, Khlebtsov BN, Terentyuk GS, Akchurin GG, Ermolaev IA, Skaptsov AA, Soboleva EP, Khlebtsov NG, Tuchin VV. Near-infrared laser photothermal therapy of cancer by using gold nanoparticles: Computer simulations and experiment. Med Laser Applic 2007; 22: 199–206
  • Ma HL, Xu YF, Qi XR, Maitani Y, Nagai T. Superparamagnetic iron oxide nanoparticles stabilized by alginate: Pharmacokinetics, tissue distribution, and applications in detecting liver cancers. Int J Pharmaceutics 2008; 354: 217–226
  • de Senneville BD, Quesson B, Moonen CTW. Magnetic resonance temperature imaging. Int J Hyperthermia 2005; 21: 515–531
  • Elliott AM, Stafford RJ, Schwartz J, Wang J, Shetty AM, Bourgoyne C, O'Neal P, Hazle JD. Laser-induced thermal response and characterization of nanoparticles for cancer treatment using magnetic resonance thermal imaging. Med Physics 2007; 34(7)3102–3108
  • Germer CT, Roggan A, Ritz JP, Isbert C, Albrecht D, Müller G, Buhr HJ. Optical properties of native and coagulated human liver tissue and liver metastases in the near infrared range. Lasers Surg Med 1998; 23(4)194–203
  • Schwartz JA, Shetty AM, Price RE, Stafford RJ, Wang JC, Uthamanthil RK, Pham K, McNichols RJ, Coleman CL, Payne JD. Feasibility study of particle-assisted laser ablation of brain tumors in orthotopic canine model. Cancer Res 2009; 69(4)1659–1667
  • Olsrud J, Wirestam R, Persson BRR, Tranberg KG. Simplified treatment planning for interstitial laser thermotherapy by disregarding light transport: A numerical study. Lasers Surg Med 1999; 25: 304–314
  • Cai W, Xu M, Alfano RR. Three-dimensional radiative transfer tomography for turbid media. IEEE J Selected Topics Quantum Electronics 2003; 9: 189–198
  • Welch AJ. The thermal response of laser irradiated tissue. IEEE J Quantum Electronics 1984; 20: 1471–1481
  • Duck FA. Physical Properties of Tissue. A Comprehensive Reference Book. Academic Press, San Diego CA 1990; 50
  • Fantini S, Walker SA, Franceschini MA, Kaschke M, Schlag PM, Moesta KT. Assessment of the size, position, and optical properties of breast tumors in vivo by noninvasive optical methods. Applied Optics 1998; 37(10)1982–1989

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