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Physically synthesized Ni-Cu nanoparticles for magnetic hyperthermia.
Bettge M, Chatterjee J, Haik Y.
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Effect of thermal treatment on heating characteristics of Ni-Cu alloy for hyperthermia: preliminary studies.
Ferguson SD, Paulus JA, Tucker RD, Loening SA, Park JB.
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Temperature distributions in tumor models heated by self-regulating nickel-copper alloy thermoseeds.
Brezovich IA, Atkinson WJ, Chakraborty DP.
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Kim BJ, Oh SY, Yun HS, Ki JH, Kim CJ, Baik S, Lim BS.
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Li FR, Yan WH, Guo YH, Qi H, Zhou HX.
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Kwon SG, Hyeon T.
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Hyperthermia induction with thermally self-regulated ferromagnetic implants.
Lilly MB, Brezovich IA, Atkinson WJ.
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Thermal and mechanical characteristics of stainless steel, titanium-molybdenum, and nickel-titanium archwires.
Kusy RP, Whitley JQ.
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Development of Ni-4 wt.% Si thermoseeds for hyperthermia cancer treatment.
Chen JS, Poirier DR, Damento MA, Demer LJ, Biancaniello F, Cetas TC.
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Low-temperature metallic alloying of copper and silver nanoparticles with gold nanoparticles through digestive ripening.
Smetana AB, Klabunde KJ, Sorensen CM, Ponce AA, Mwale B.
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Numerical simulation of thermal disposition with induction heating used for oncological hyperthermic treatment.
Dughiero F, Corazza S.
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Solution to the bioheat equation for hyperthermia with La(1-x)Ag(y)MnO(3-delta) nanoparticles: the effect of temperature autostabilization.
Atsarkin VA, Levkin LV, Posvyanskiy VS, Melnikov OV, Markelova MN, Gorbenko OY, Kaul AR.
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HRTEM and TEM studies of amorphous structures in ZrNiTiCu base alloys obtained by rapid solidification or ball milling.
Dutkiewicz J, Lityńska L, Maziarz W, Kocisko R, Molnarová M, Kovácová A.
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Anomalous magnetic properties of mechanically milled cobalt oxide nanoparticles.
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Zhang WW, Cao QQ, Xie JL, Ren XM, Lu CS, Zhou Y, Yao YG, Meng QJ.
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Co-Pt alloy nanoparticles produced using a template of nanoparticle array.
Kim JH, Kim J, Kim CK, Yoon CS.
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Evaluation of inductively heated ferromagnetic alloy implants for therapeutic interstitial hyperthermia.
Paulus JA, Richardson JS, Tucker RD, Park JB.
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Development of pressure cell for specific heat measurement at low temperature and high Magnetic field.
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