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Original Article

Inductive heating of ferrimagnetic particles and magnetic fluids: Physical evaluation of their potential for hyperthermia

, , , , &
Pages 51-68 | Received 25 Oct 1991, Accepted 01 Jun 1992, Published online: 09 Jul 2009

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S. Shatooti, M. Mozaffari, G. Reiter, D. Zahn & S. Dutz. (2021) Heat dissipation in Sm3+ and Zn2+ co-substituted magnetite (Zn0.1SmxFe2.9-xO4) nanoparticles coated with citric acid and pluronic F127 for hyperthermia application. Scientific Reports 11:1.
Crossref
Ghazaleh Salmanian, S.A. Hassanzadeh-Tabrizi & Narjes Koupaei. (2021) Magnetic chitosan nanocomposites for simultaneous hyperthermia and drug delivery applications: A review. International Journal of Biological Macromolecules 184, pages 618-635.
Crossref
Tim Granath, Karl Mandel & Peer Löbmann. (2021) Overcoming the Inhibition Effects of Citrate: Precipitation of Ferromagnetic Magnetite Nanoparticles with Tunable Morphology, Magnetic Properties, and Surface Charge via Ferrous Citrate Oxidation. Particle & Particle Systems Characterization 38:8.
Crossref
Sangeeta Kumari, Nilesh Sharma & Shivendra V. Sahi. (2021) Advances in Cancer Therapeutics: Conventional Thermal Therapy to Nanotechnology-Based Photothermal Therapy. Pharmaceutics 13:8, pages 1174.
Crossref
Zheng Ma, Qi Wang, Jingwei Ai & Bin Su. (2021) Ferromagnetic Liquid Droplet on a Superhydrophobic Surface for the Transduction of Mechanical Energy to Electricity Based on Electromagnetic Induction. ACS Nano 15:7, pages 12151-12160.
Crossref
Sushant Bajpai, Saurabh Kr Tiwary, Muskan Sonker, Ayush Joshi, Vishwas Gupta, Yogendra Kumar, Nehil Shreyash & Susham Biswas. (2021) Recent Advances in Nanoparticle-Based Cancer Treatment: A Review. ACS Applied Nano Materials 4:7, pages 6441-6470.
Crossref
Jingda Tang, Qianfeng Yin, Mengting Shi, Meng Yang, Hang Yang, Bonan Sun, Baolin Guo & Tiejun Wang. (2021) Programmable shape transformation of 3D printed magnetic hydrogel composite for hyperthermia cancer therapy. Extreme Mechanics Letters 46, pages 101305.
Crossref
Anselmo F.R. Rodriguez, Caio C. dos Santos, K. Lüdtke-Buzug, Anna C. Bakenecker, Yury O. Chaves, Luis A.M. Mariúba, João V. Brandt, Bruno E. Amantea, Ricardo C. de Santana, Rodrigo F.C. Marques, Miguel JafelicciJrJr & Marco A. Morales. (2021) Evaluation of antiplasmodial activity and cytotoxicity assays of amino acids functionalized magnetite nanoparticles: Hyperthermia and flow cytometry applications. Materials Science and Engineering: C 125, pages 112097.
Crossref
Xiaogang Yu, Shuaiwen Ding, Renpeng Yang, Chengwei Wu & Wei Zhang. (2021) Research progress on magnetic nanoparticles for magnetic induction hyperthermia of malignant tumor. Ceramics International 47:5, pages 5909-5917.
Crossref
Shuren Wang, Zhaoli Sun & Yanglong Hou. (2020) Engineering Nanoparticles toward the Modulation of Emerging Cancer Immunotherapy. Advanced Healthcare Materials 10:5.
Crossref
F. H. Martins, F. L. O. Paula, R. C. Gomes, J. A. Gomes, R. Aquino, F. Porcher, R. Perzynski & J. Depeyrot. (2020) Local Structure Investigation of Core-Shell CoFe2O4@γ-Fe2O3 Nanoparticles. Brazilian Journal of Physics 51:1, pages 47-59.
Crossref
Xiang Yu, Yan Mi, Li-Chen Wang, Zheng-Rui Li, Di-An Wu, Ruo-Shui Liu & Shu-Li He. (2021) Effects of dipolar interactions on the magnetic hyperthermia of Zn 0.3 Fe 2.7 O 4 nanoparticles with different sizes* . Chinese Physics B 30:1, pages 017503.
Crossref
Tsuyoshi Yamaminami, Satoshi Ota, Suko Bagus Trisnanto, Mamoru Ishikawa, Tsutomu Yamada, Takashi Yoshida, Keiji Enpuku & Yasushi Takemura. (2021) Power dissipation in magnetic nanoparticles evaluated using the AC susceptibility of their linear and nonlinear responses. Journal of Magnetism and Magnetic Materials 517, pages 167401.
Crossref
Ahmad Amirshaghaghi, Zhiliang Cheng, Lee Josephson & Andrew Tsourkas. 2021. Molecular Imaging. Molecular Imaging 679 698 .
Tahereh Foroutan, Fatemeh Ahmadi, Fariborze Moayer & Sahar Khalvati. (2020) Effects of intraperitoneal injection of magnetic graphene oxide on the improvement of acute liver injury induced by CCl4. Biomaterials Research 24:1.
Crossref
O.M. Lemine, N. Madkhali, M. Hjiri, N. Abdel All & M.S. Aida. (2020) Comparative heating efficiency of hematite (α-Fe2O3) and nickel ferrite nanoparticles for magnetic hyperthermia application. Ceramics International 46:18, pages 28821-28827.
Crossref
Richa Chaudhary, Varun Chaudhary, Raju V. Ramanujan & Terry W.J. Steele. (2020) Magnetocuring of temperature failsafe epoxy adhesives. Applied Materials Today 21, pages 100824.
Crossref
Huan Yue, Jae Moon Shin, Tirusew Tegafaw, Hyung Soo Han, Kwon-Seok Chae, Yongmin Chang & Gang Ho Lee. (2020) Magnetic separation of nucleic acids from various biological samples using silica-coated iron oxide nanobeads. Journal of Nanoparticle Research 22:12.
Crossref
Kai Yue, Yu You, Chao Yang, Yongjian Niu & Xinxin Zhang. (2020) Numerical simulation of transport and adhesion of thermogenic nano-carriers in microvessels. Soft Matter 16:45, pages 10345-10357.
Crossref
Khairul Islam, Manjurul Haque, Arup Kumar, Amitra Hoq, Fahmeed Hyder & Sheikh Manjura Hoque. (2020) Manganese Ferrite Nanoparticles (MnFe2O4): Size Dependence for Hyperthermia and Negative/Positive Contrast Enhancement in MRI. Nanomaterials 10:11, pages 2297.
Crossref
Chia-Jung Chang, Cheng-Chi Tai, Fang-Wei Lin, Chung-Ching Kuo & Chia-Ming Hung. (2020) Effects of Flexible Induction Coil Pitch on the Heating Performance of Thermotherapy Needles. IEEE Transactions on Instrumentation and Measurement 69:11, pages 8983-8991.
Crossref
Hossein Etemadi & Paul G. Plieger. (2020) Magnetic Fluid Hyperthermia Based on Magnetic Nanoparticles: Physical Characteristics, Historical Perspective, Clinical Trials, Technological Challenges, and Recent Advances. Advanced Therapeutics 3:11.
Crossref
Tatielle do Nascimento, Adriane R. Todeschini, Ralph Santos-Oliveira, Mariana S. de Souza de Bustamante Monteiro, Vilênia T. de Souza & Eduardo Ricci-Júnior. (2020) Trends in Nanomedicines for Cancer Treatment. Current Pharmaceutical Design 26:29, pages 3579-3600.
Crossref
A. V. Pashchenko, N. A. Liedienov, I. V. Fesych, Quanjun Li, V. G. Pitsyuga, V. A. Turchenko, V. G. Pogrebnyak, Bingbing Liu & G. G. Levchenko. (2020) Smart magnetic nanopowder based on the manganite perovskite for local hyperthermia. RSC Advances 10:51, pages 30907-30916.
Crossref
Maksym Moskvin, Irena Marková, Hana Malínská, Denisa Miklánková, Martina Hüttl, Olena Oliyarnyk, Ognen Pop-Georgievski, Alexander Zhigunov, Eduard Petrovský & Daniel Horák. (2020) Cerium Oxide-Decorated γ-Fe2O3 Nanoparticles: Design, Synthesis and in vivo Effects on Parameters of Oxidative Stress. Frontiers in Chemistry 8.
Crossref
María Julia Martín, Claudia Gentili & Verónica Lassalle. (2020) In vitro Biological Tests as the First Tools To Validate Magnetic Nanotheranostics for Colorectal Cancer Models . ChemMedChem 15:12, pages 1003-1017.
Crossref
Ziyu Wei, A. V. Pashchenko, N. A. Liedienov, I. V. Zatovsky, D. S. Butenko, Quanjun Li, I. V. Fesych, V. A. Turchenko, E. E. Zubov, P. Yu. Polynchuk, V. G. Pogrebnyak, V. M. Poroshin & G. G. Levchenko. (2020) Multifunctionality of lanthanum–strontium manganite nanopowder. Physical Chemistry Chemical Physics 22:21, pages 11817-11828.
Crossref
O. M. Lemine, Amal Alanazi, Emmellie Laura Albert, M. Hjiri, Mohamed Ould M’hamed, S. Abu Alrub, A. Alkaoud & Che Azurahanim Che Abdullah. (2020) γ-Fe2O3/Gd2O3-chitosan magnetic nanocomposite for hyperthermia application: structural, magnetic, heating efficiency and cytotoxicity studies. Applied Physics A 126:6.
Crossref
Z Erfani Gahrouei, M Imani, M Soltani & A Shafyei. (2020) Synthesis of iron oxide nanoparticles for hyperthermia application: effect of ultrasonic irradiation assisted co-precipitation route. Advances in Natural Sciences: Nanoscience and Nanotechnology 11:2, pages 025001.
Crossref
Dimitri Vanhecke, Federica Crippa, Marco Lattuada, Sandor Balog, Barbara Rothen-Rutishauser & Alke Petri-Fink. (2020) Characterization of the Shape Anisotropy of Superparamagnetic Iron Oxide Nanoparticles during Thermal Decomposition. Materials 13:9, pages 2018.
Crossref
Lenuța Crintea Căpăţână, Viorica Muşat, Silviu Polosan, Alina Cantaragiu, Vasile Başliu, Andreea Dediu Botezatu & Rodica Dinică. (2020) Synthesis and characterization of magnetic oxide nanoparticles and corresponding thin films for wastewaters treatment. Ovidius University Annals of Chemistry 31:2, pages 122-131.
Crossref
Michael Dunne, Maximilian Regenold & Christine Allen. (2020) Hyperthermia can alter tumor physiology and improve chemo- and radio-therapy efficacy. Advanced Drug Delivery Reviews 163-164, pages 98-124.
Crossref
Abdul Majid, Farah Naz, Abdul Rahman Phull, Yogita Patil-Sen, Tapas Sen & Waqar Ahmed. 2020. Advances in Medical and Surgical Engineering. Advances in Medical and Surgical Engineering 333 345 .
Y. Slimani, E. Hannachi, H. Tombuloglu, S. Güner, M.A. Almessiere, A. Baykal, M.A. Aljafary, E.A. Al-Suhaimi, M. Nawaz & I. Ercan. 2020. Smart Nanocontainers. Smart Nanocontainers 229 250 .
Shehaab Savliwala, Andreina Chiu-Lam, Mythreyi Unni, Angelie Rivera-Rodriguez, Eric Fuller, Kacoli Sen, Marcus Threadcraft & Carlos Rinaldi. 2020. Nanoparticles for Biomedical Applications. Nanoparticles for Biomedical Applications 195 221 .
Nanasaheb D. Thorat, Syed A. M. Tofail, Brigitte von Rechenberg, Helen Townley, Grace Brennan, Christophe Silien, Hemraj M. Yadav, Thomas Steffen & Joanna Bauer. (2019) Physically stimulated nanotheranostics for next generation cancer therapy: Focus on magnetic and light stimulations. Applied Physics Reviews 6:4.
Crossref
Sheng Tong, Haibao Zhu & Gang Bao. (2019) Magnetic iron oxide nanoparticles for disease detection and therapy. Materials Today 31, pages 86-99.
Crossref
Satoshi Ota & Yasushi Takemura. (2019) Characterization of Néel and Brownian Relaxations Isolated from Complex Dynamics Influenced by Dipole Interactions in Magnetic Nanoparticles. The Journal of Physical Chemistry C 123:47, pages 28859-28866.
Crossref
Isabela Pereira Gomes, Jaqueline Aparecida Duarte, Ana Luiza Chaves Maia, Domenico Rubello, Danyelle M. Townsend, André Luís Branco de Barros & Elaine Amaral Leite. (2019) Thermosensitive Nanosystems Associated with Hyperthermia for Cancer Treatment. Pharmaceuticals 12:4, pages 171.
Crossref
W Wolak, A B Kolomeisky, M R Dudek, M Marć & L Najder-Kozdrowska. (2019) Enhancing silica surface deprotonation by using magnetic nanoparticles as heating agents. Journal of Physics D: Applied Physics 52:46, pages 465001.
Crossref
Wei Zhao, Fenghua Zhang, Jinsong Leng & Yanju Liu. (2019) Personalized 4D printing of bioinspired tracheal scaffold concept based on magnetic stimulated shape memory composites. Composites Science and Technology 184, pages 107866.
Crossref
Binita Shrestha, Liang Tang & Gabriela Romero. (2019) Nanoparticles‐Mediated Combination Therapies for Cancer Treatment. Advanced Therapeutics 2:11.
Crossref
Mudra Jadav & S P Bhatnagar. (2019) Effect of aggregation on magnetic permeability of magnetic fluid at microwave and radio frequencies. Materials Research Express 6:11, pages 116113.
Crossref
Yuliia Shlapa, Sergii Solopan & Anatolii Belous. (2019) Synthesis of Ferromagnetic La 1-x Sr x MnO 3 Nanoparticles by Precipitation in the Reversed Microemulsions . Synthesis of Ferromagnetic La 1-x Sr x MnO 3 Nanoparticles by Precipitation in the Reversed Microemulsions .
Ningyu Wang, Maša Prodanović & Hugh Daigle. (2019) Nanopaint application for flow assurance with electromagnetic pig. Journal of Petroleum Science and Engineering 180, pages 320-329.
Crossref
Jing Li, Huan Yao, Yan Lei, Weihua Huang & Zhe Wang. (2019) Numerical simulation of magnetic fluid hyperthermia based on multiphysics coupling and recommendation on preferable treatment conditions. Current Applied Physics 19:9, pages 1031-1039.
Crossref
O.M Lemine & Sharif Abu Alrub. (2019) Mechanically Milled Co<sub>1-x</sub>Fe<sub>x</sub>O<sub>4</sub> Nanocrystalline for Magnetic Hyperthermia Application. Journal of Nano Research 59, pages 25-34.
Crossref
Vikas Nandwana, Soo-Ryoon Ryoo, Tiffany Zheng, Marisa M. You & Vinayak P. Dravid. (2019) Magnetic Nanostructure-Coated Thermoresponsive Hydrogel Nanoconstruct As a Smart Multimodal Theranostic Platform. ACS Biomaterials Science & Engineering 5:6, pages 3049-3059.
Crossref
Valeria Carina, Viviana Costa, Maria Sartori, Daniele Bellavia, Angela De Luca, Lavinia Raimondi, Milena Fini & Gianluca Giavaresi. (2019) Adjuvant Biophysical Therapies in Osteosarcoma. Cancers 11:3, pages 348.
Crossref
Han Liu, Peter van Nooten, Lianfu Deng & Wenguo Cui. 2019. Theranostic Bionanomaterials. Theranostic Bionanomaterials 75 111 .
Geeta Nijhawan, Siddharth Sagar Nijhawan & Minu Sethi. 2019. Noble Metal-Metal Oxide Hybrid Nanoparticles. Noble Metal-Metal Oxide Hybrid Nanoparticles 241 263 .
David Cabrera, Irene Rubia-Rodríguez, Eneko Garaio, Fernando Plazaola, Luc Dupré, Neil Farrow, Francisco J. Terán & Daniel Ortega. 2019. Nanomaterials for Magnetic and Optical Hyperthermia Applications. Nanomaterials for Magnetic and Optical Hyperthermia Applications 111 138 .
O.M. Lemine. 2019. Hybrid Nanostructures for Cancer Theranostics. Hybrid Nanostructures for Cancer Theranostics 125 138 .
Jeong-Hwan Kim, Haruki Eguchi, Masanari Umemura & Yoshihiro Ishikawa. 2019. Materials for Biomedical Engineering. Materials for Biomedical Engineering 427 461 .
Khalid Mujasam Batoo. 2019. Nanomaterials for Healthcare, Energy and Environment. Nanomaterials for Healthcare, Energy and Environment 143 158 .
Yulia Shlapa, Sergii Solopan, Anatolii Belous & Alexandr Tovstolytkin. (2018) Effect of Synthesis Method of La1 − xSrxMnO3 Manganite Nanoparticles on Their Properties. Nanoscale Research Letters 13:1.
Crossref
Irene Morales, Rocio Costo, Nicolas Mille, Gustavo da Silva, Julian Carrey, Antonio Hernando & Patricia de la Presa. (2018) High Frequency Hysteresis Losses on γ-Fe2O3 and Fe3O4: Susceptibility as a Magnetic Stamp for Chain Formation. Nanomaterials 8:12, pages 970.
Crossref
David Chang, May Lim, Jeroen A. C. M. Goos, Ruirui Qiao, Yun Yee Ng, Friederike M. Mansfeld, Michael Jackson, Thomas P. Davis & Maria Kavallaris. (2018) Biologically Targeted Magnetic Hyperthermia: Potential and Limitations. Frontiers in Pharmacology 9.
Crossref
Goutam Singh Ningombam, Raghumani Singh Ningthoujam, Subbaraya Narayana Kalkura & Nongmaithem Rajmuhon Singh. (2018) Induction Heating Efficiency of Water-Dispersible Mn 0.5 Fe 2.5 O 4 @YVO 4 :Eu 3+ Magnetic-Luminescent Nanocomposites in an Acceptable ac Magnetic Field: Hemocompatibility and Cytotoxicity Studies . The Journal of Physical Chemistry B 122:27, pages 6862-6871.
Crossref
E. Guisasola, A. Baeza & M. Vallet. 2018. Stimuli-responsive Drug Delivery Systems. Stimuli-responsive Drug Delivery Systems 145 162 .
Ming-Hui He, Li Chen, Ting Zheng, Yu Tu, Qian He, Hua-Lin Fu, Ju-Chun Lin, Wei Zhang, Gang Shu, Lili He & Zhi-Xiang Yuan. (2018) Potential Applications of Nanotechnology in Urological Cancer. Frontiers in Pharmacology 9.
Crossref
Spiridon Spirou, Martina Basini, Alessandro Lascialfari, Claudio Sangregorio & Claudia Innocenti. (2018) Magnetic Hyperthermia and Radiation Therapy: Radiobiological Principles and Current Practice †. Nanomaterials 8:6, pages 401.
Crossref
Yu. Yu. Shlapa, S. A. Solopan & A. G. Belous. (2018) Magnetothermic Effect in Core/Shell Nanocomposite (La,Sr)MnO3/SiO2. Theoretical and Experimental Chemistry 54:2, pages 92-98.
Crossref
Ganeshlenin Kandasamy, Atul Sudame, Tania Luthra, Kalawati Saini & Dipak Maity. (2018) Functionalized Hydrophilic Superparamagnetic Iron Oxide Nanoparticles for Magnetic Fluid Hyperthermia Application in Liver Cancer Treatment. ACS Omega 3:4, pages 3991-4005.
Crossref
David Cabrera, Annelies Coene, Jonathan Leliaert, Emilio J. Artés-Ibáñez, Luc Dupré, Neil D. Telling & Francisco J. Teran. (2018) Dynamical Magnetic Response of Iron Oxide Nanoparticles Inside Live Cells. ACS Nano 12:3, pages 2741-2752.
Crossref
Dorina Creanga, Maria Balasoiu, Dmitro Soloviov, Alexandra-Maria Balasoiu-Gaina, Emil Puscasu, Nicoleta Lupu & Cristina Stan. (2018) Small-angle neutron scattering investigations of Co-doped iron oxide nanoparticles. Preliminary results. Journal of Physics: Conference Series 994, pages 012009.
Crossref
Vanessa Pilati, Rafael Cabreira Gomes, Guilherme Gomide, Priscilla Coppola, Franciscarlos G. Silva, Fábio L. O. Paula, Régine Perzynski, Gerardo F. Goya, Renata Aquino & Jérôme Depeyrot. (2018) Core/Shell Nanoparticles of Non-Stoichiometric Zn–Mn and Zn–Co Ferrites as Thermosensitive Heat Sources for Magnetic Fluid Hyperthermia. The Journal of Physical Chemistry C 122:5, pages 3028-3038.
Crossref
Chien-Chang Chen & Jean-Fu Kiang. (2018) EFFICACY OF MAGNETIC AND CAPACITIVE HYPERTHERMIA ON HEPATOCELLULAR CARCINOMA. Progress In Electromagnetics Research M 64, pages 181-192.
Crossref
Harbir Antil, Ricardo H. Nochetto & Pablo Venegas. (2017) Optimizing the Kelvin force in a moving target subdomain. Mathematical Models and Methods in Applied Sciences 28:01, pages 95-130.
Crossref
Madiha Saeed, Wenzhi Ren & Aiguo Wu. (2018) Therapeutic applications of iron oxide based nanoparticles in cancer: basic concepts and recent advances. Biomaterials Science 6:4, pages 708-725.
Crossref
Xindong Wang, Hui Li & Guanying Chen. 2018. Core-Shell Nanostructures for Drug Delivery and Theranostics. Core-Shell Nanostructures for Drug Delivery and Theranostics 143 175 .
Jing Liu & Liting YiJing Liu & Liting Yi. 2018. Liquid Metal Biomaterials. Liquid Metal Biomaterials 417 428 .
Ravichandran ManisekaranRavichandran Manisekaran. 2018. Design and Evaluation of Plasmonic/Magnetic Au-MFe2O4 (M-Fe/Co/Mn) Core-Shell Nanoparticles Functionalized with Doxorubicin for Cancer Therapeutics. Design and Evaluation of Plasmonic/Magnetic Au-MFe2O4 (M-Fe/Co/Mn) Core-Shell Nanoparticles Functionalized with Doxorubicin for Cancer Therapeutics 1 36 .
Mustafa COŞKUN, Senem ÇİTOĞLU, Mustafa KORKMAZ & Tezer FIRAT. (2017) The Magnetic Anisotropy Effectiveness on NiFe2O4 and NiFe2O4@SiO2 Nanoparticles for Hyperthermia Applications. Cumhuriyet Science Journal, pages 175-187.
Crossref
M. Cobianchi, A. Guerrini, M. Avolio, C. Innocenti, M. Corti, P. Arosio, F. Orsini, C. Sangregorio & A. Lascialfari. (2017) Experimental determination of the frequency and field dependence of Specific Loss Power in Magnetic Fluid Hyperthermia. Journal of Magnetism and Magnetic Materials 444, pages 154-160.
Crossref
Maria Rosaria Marinozzi, Laura Pandolfi, Manuela Malatesta, Miriam Colombo, Veronica Collico, Patricia Marie-Jeanne Lievens, Stefano Tambalo, Chiara Lasconi, Federica Vurro, Federico Boschi, Silvia Mannucci, Andrea Sbarbati, Davide Prosperi & Laura Calderan. (2017) Innovative approach to safely induce controlled lipolysis by superparamagnetic iron oxide nanoparticles-mediated hyperthermic treatment. The International Journal of Biochemistry & Cell Biology 93, pages 62-73.
Crossref
A. Cabral–Prieto, R. López-Callejas, B. G. Rodríguez-Méndez, C. L. Santos-Cuevas, J. Celis-Almazán, O. Olea-Mejía, J. L. Gómez-Morales, R. Peña-Eguiluz, R. Valencia-Alvarado, A. Mercado-Cabrera, A. E. Muñoz-Castro & F. García-Santibañez. (2017) Hyperthermia studies using inductive and ultrasound methods on E. coli bacteria and mouse glioma cells. Hyperfine Interactions 238:1.
Crossref
Ana Rita O. Rodrigues, Pedro M.F. Mendes, Pedro M.L. Silva, V.A. Machado, Bernardo G. Almeida, J.P. Araújo, Maria-João R.P. Queiroz, Elisabete M.S. Castanheira & Paulo J.G. Coutinho. (2017) Solid and aqueous magnetoliposomes as nanocarriers for a new potential drug active against breast cancer. Colloids and Surfaces B: Biointerfaces 158, pages 460-468.
Crossref
M. Pilar Calatayud, Elisa Soler, Teobaldo E. Torres, Enrique Campos-Gonzalez, Concepción Junquera, M. Ricardo Ibarra & Gerardo F. Goya. (2017) Cell damage produced by magnetic fluid hyperthermia on microglial BV2 cells. Scientific Reports 7:1.
Crossref
Shabir Hassan, Gyan Prakash, Ayca Bal Ozturk, Saghi Saghazadeh, Muhammad Farhan Sohail, Jungmok Seo, Mehmet Remzi Dokmeci, Yu Shrike Zhang & Ali Khademhosseini. (2017) Evolution and clinical translation of drug delivery nanomaterials. Nano Today 15, pages 91-106.
Crossref
Milad Takhsha Ghahfarokhi, Hamideh Saravani & Masoud Rafigh Esmaeilzaei. (2017) Synthesis and characterization of $$\hbox {BaNiO}_{3}$$ BaNiO 3 using a solid-state thermal decomposition method and the preparation of its stable aqueous suspension. Bulletin of Materials Science 40:4, pages 711-717.
Crossref
Harley F Rodrigues, Gustavo Capistrano, Francyelli M Mello, Nicholas Zufelato, Elisângela Silveira-Lacerda & Andris F Bakuzis. (2017) Precise determination of the heat delivery during in vivo magnetic nanoparticle hyperthermia with infrared thermography . Physics in Medicine and Biology 62:10, pages 4062-4082.
Crossref
Amin ur Rashid, Asif Humayun & Sadia Manzoor. (2017) MgFe2O4/ZrO2 composite nanoparticles for hyperthermia applications. Journal of Magnetism and Magnetic Materials 428, pages 333-339.
Crossref
Yulia Shlapa, Sergii Solopan, Andrii Bodnaruk, Mykola Kulyk, Viktor Kalita, Yulia Tykhonenko-Polishchuk, Alexandr Tovstolytkin, Victor Zinchenko & Anatolii Belous. (2017) Lanthanum-strontium manganites for magnetic nanohyperthermia: Fine tuning of parameters by substitutions in lanthanum sublattice. Journal of Alloys and Compounds 702, pages 31-37.
Crossref
ChienHsu Chen, I. C. Cho, Hui-Shan Jian & H. Niu. (2017) Fe doped Magnetic Nanodiamonds made by Ion Implantation. Scientific Reports 7:1.
Crossref
Sandhya Moise, Eva Céspedes, Dalibor Soukup, James M. Byrne, Alicia J. El Haj & Neil D. Telling. (2017) The cellular magnetic response and biocompatibility of biogenic zinc- and cobalt-doped magnetite nanoparticles. Scientific Reports 7:1.
Crossref
D. Cabrera, A. Lak, T. Yoshida, M. E. Materia, D. Ortega, F. Ludwig, P. Guardia, A. Sathya, T. Pellegrino & F. J. Teran. (2017) Unraveling viscosity effects on the hysteresis losses of magnetic nanocubes. Nanoscale 9:16, pages 5094-5101.
Crossref
Madhappan Santha Moorthy, Subramanian Bharathiraja, Panchanathan Manivasagan, Kang Dae Lee & Junghwan Oh. (2017) Crown ether triad modified core–shell magnetic mesoporous silica nanocarrier for pH-responsive drug delivery and magnetic hyperthermia applications. New Journal of Chemistry 41:19, pages 10935-10947.
Crossref
Clément Guibert, Jérôme Fresnais, Véronique Peyre & Vincent Dupuis. (2017) Magnetic fluid hyperthermia probed by both calorimetric and dynamic hysteresis measurements. Journal of Magnetism and Magnetic Materials 421, pages 384-392.
Crossref
Mohammad Mahdi Attar, Farzan Barati, Gita Rezaei & Behroz Adelinia. (2017) In-vitro experimental analysis of magnetic fluid hyperthermia in soft tissue with artificial blood perfusion. Journal of Mechanical Science and Technology 31:1, pages 465-472.
Crossref
Trupti R. Das, Suryakanti Debata, Rashmi Madhuri & Prashant K. Sharma. 2017. Complex Magnetic Nanostructures. Complex Magnetic Nanostructures 359 392 .
Rupin Singh, Javier Alonso, Jagannath Devkota & Manh-Huong Phan. 2017. High Performance Soft Magnetic Materials. High Performance Soft Magnetic Materials 151 167 .
Amin ur Rashid & Sadia Manzoor. (2016) Optimizing magnetic anisotropy of La1−Sr MnO3 nanoparticles for hyperthermia applications. Journal of Magnetism and Magnetic Materials 420, pages 232-240.
Crossref
Dung The Nguyen & Kyo-Seon Kim. 2016. Advanced Magnetic and Optical Materials. Advanced Magnetic and Optical Materials 113 139 .
Sai Geng, Haitao Yang, Xiao Ren, Yihao Liu, Shuli He, Jun Zhou, Na Su, Yongfeng Li, Chunming Xu, Xiangqun Zhang & Zhaohua Cheng. (2016) Anisotropic Magnetite Nanorods for Enhanced Magnetic Hyperthermia. Chemistry – An Asian Journal 11:21, pages 2996-3000.
Crossref
Hamidreza ZolataHossein AfaridehFereydoun Abbasi Davani. (2016) Triple Therapy of HER2 + Cancer Using Radiolabeled Multifunctional Iron Oxide Nanoparticles and Alternating Magnetic Field . Cancer Biotherapy and Radiopharmaceuticals 31:9, pages 324-329.
Crossref
Dung The Nguyen & Kyo–Seon Kim. (2016) Controlled synthesis of monodisperse magnetite nanoparticles for hyperthermia-based treatments. Powder Technology 301, pages 1112-1118.
Crossref
Eric C. Abenojar, Sameera Wickramasinghe, Jesbaniris Bas-Concepcion & Anna Cristina S. Samia. (2016) Structural effects on the magnetic hyperthermia properties of iron oxide nanoparticles. Progress in Natural Science: Materials International 26:5, pages 440-448.
Crossref
Amel Hanini, Lenaic Lartigue, Julie Gavard, Kamel Kacem, Claire Wilhelm, Florence Gazeau, François Chau & Souad Ammar. (2016) Zinc substituted ferrite nanoparticles with Zn0.9Fe2.1O4 formula used as heating agents for in vitro hyperthermia assay on glioma cells. Journal of Magnetism and Magnetic Materials 416, pages 315-320.
Crossref
B. Palazzo, B. Palazzo, S. Scialla, F. Scalera, N. Margiotta & F. Gervaso. 2016. Advanced Composite Materials. Advanced Composite Materials 209 273 .
Liheng Wu, Adriana Mendoza-Garcia, Qing Li & Shouheng Sun. (2016) Organic Phase Syntheses of Magnetic Nanoparticles and Their Applications. Chemical Reviews 116:18, pages 10473-10512.
Crossref

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