Biomedical Engineering Reference
In-Depth Information
Peng N, Zhao BD. Clinical Tumor Hyperthermia (In Chinese). People's Medical Press, 2002.
Kuznetsov AA, Filippov VI, Alyautdin RN, Torshina NL, Kuznetsov OA. Application of magnetic
liposomes for magnetically guided transport of muscle relaxants and anti-cancer photodynamic
drugs. Journal of Magnetism and Magnetic Materials 225(1-2): 95-100, 2001.
Yanase M, Shinkai M, Honda H, Wakabayashi T, Yoshida J, Kobayashi T. Intracellular
hyperthermia for cancer using magnetite cationic liposomes: Ex vivo study. Japanese Journal
of Cancer Research 88(7): 630-632, 1997.
Yanase M, Shinkai M, Honda H, Wakabayashi T, Yoshida J, Kobayashi T. Intracellular
hyperthermia for cancer using magnetite cationic liposomes: An in vivo study. Japanese
Journal of Cancer Research 89(4): 463-469, 1998.
Yanase M, Shinkai M, Honda H, Wakabayashi T, Yoshida J, Kobayashi T. Antitumor immunity
induction by intracellular hyperthermia using magnetite cationic liposomes. Japanese Journal
of Cancer Research 89(7): 775-782, 1998.
Pankhurst QA, Connolly J, Jones SK. Application of magnetic nanoparticles in biomedicine. .
Journal of Physics D:Applied Physics 36: 167-181, 2003.
Moroz P, Jones SK, Gray BN. Magnetically mediated hyperthermia: current status and future
directions. International Journal of Hyperthermia 18(4): 267-284, 2002.
Rabin Y. Is intracellular hyperthermia superior to extracellular hyperthermia in the thermal sense?
International Journal of Hyperthermia 18(3): 194-202, 2002.
Kohler N, Sun C, Fichtenholtz A, Gunn J, Fang C, Zhang MQ. Methotrexate-immobilized
poly(ethylene glycol) magnetic nanoparticles for MR imaging and drug delivery. Small 2(6):
785-792, 2006.
Sun C, Lee JSH, Zhang MQ. Magnetic nanoparticles in MR imaging and drug delivery. Advanced
Drug Delivery Reviews 60(11): 1252-1265, 2008.
Sharma R, Chen CJ. Newer nanoparticles in hyperthermia treatment and thermometry. Journal of
Nanoparticle Research 11(3): 671-689, 2009.
Saniei N. Hyperthermia and cancer treatment. Heat Transfer Engineering 30(12): 915-917, 2009.
Horsman MR, Overgaard J. Hyperthermia: A potent enhancer of radiotherapy. Clinical Oncology
19(6): 418-426, 2007.
Issels RD. Hyperthermia adds to chemotherapy. European Journal of Cancer 44(17):
2546-2554, 2008.
Ben-Yosef R, Vigler N, Inbar M, Vexler A. Hyperthermia combined with radiation therapy
in the treatment of local recurrent breast cancer. Israel Medical Association Journal 6(7):
392-395, 2004.
Hurwitz ND, Hansen JL, Prokopios-Davos S, Manola J, Hynynen K, Bornstein BA, Topulos GP,
Kaplan ID. Hyperthermia combined with radiation in treatment of locally advanced prostate
cancer: Long-term results of DFCI 94-153. International Journal of Radiation Oncology
Biology Physics 69(3): S318-S318, 2007.
Li FR, Yan WH, Guo YH, Qi H, Zhou HX. Preparation of carboplatin-Fe@C-loaded chitosan
nanoparticles and study on hyperthermia combined with pharmacotherapy for liver cancer.
International Journal of Hyperthermia 25(5): 383-391, 2009.
Du YQ, Zhang DS, Liu H, Lai RS. Thermochemotherapy effect of nanosized As2O3/Fe3O4
complex on experimental mouse tumors and its influence on the expression of CD44v6,
VEGF-C and MMP-9. BMC Biotechnology 9(84): 2009.
Diagaradjane P, Shetty A, Wang JC, Elliott AM, Schwartz J, Shentu S, Park HC, Deorukhkar A,
Stafford RJ, Cho SH, Tunnell JW, Hazle JD, Krishnan S. Modulation of in vivo tumor radia-
tion response via gold nanoshell-mediated vascular-focused hyperthermia: Characterizing an
integrated antihypoxic and localized vascular disrupting targeting strategy. Nano Letters 8(5):
1492-1500, 2008.
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