Biomedical Engineering Reference
In-Depth Information
[63] Y. Xiao, X. Gao, O. Taratula, S. Treado, A. Urbas, R.D. Holbrook, et al., Anti-HER2 IgY antibody-func-
tionalized single-walled carbon nanotubes for detection and selective destruction of breast cancer cells,
BMC Cancer 9 (2009) 351.
[64] H.K. Moon, S.H. Lee, H.C. Choi, In vivo near-infrared mediated tumor destruction by photothermal effect
of carbon nanotubes, ACS Nano. 3 (2009) 3707-3713.
[65] A. Burlaka, S. Lukin, S. Prylutska, O. Remeniak, Y. Prylutskyy, M. Shuba, et al., Hyperthermic effect of
multi-walled carbon nanotubes stimulated with near infrared irradiation for anticancer therapy: in vitro
studies, Exp. Oncol. 32 (2010) 48-50.
[66] N. Huang, H. Wang, J. Zhao, H. Lui, M. Korbelik, H. Zeng, Single-wall carbon nanotubes assisted photo-
thermal cancer therapy: animal study with a murine model of squamous cell carcinoma, Lasers Surg. Med.
42 (2010) 638-648.
[67] J.D. Jackson, Classical Electrodynamics, third ed., John Wiley and Sons, New York, 1999.
[68] J.F. Xu, M. Xiao, R. Czerw, D.L. Caroll, Optical limiting and enhanced optical nonlinearity in boron-doped
carbon nanotubes, Chem. Phys. Lett. 389 (2004) 247-250.
Search WWH ::




Custom Search