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Magnetic Hyperthermia with Magnetic Nanoparticles: A Status Review
Current Topics in Medicinal Chemistry, 2014Recent advances in development of potential magnetic nanoparticles for magnetic fluid hyperthermia are summarized. This review covers relation between various size dependent physical properties and their applications subject to modification in synthesis methods. Brief discussion on different heating mechanism of magnetic nanoparticles is provided. This
A B, Salunkhe, V M, Khot, S H, Pawar
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Magnetic Fluid Hyperthermia (MFH)
1997A short review is given on current conventional hyperthermia technology. As an alternative, heat can also be generated by a magnetic fluid, which is excited by an externally applied AC magnetic field. In contrast to regional Radiofrequency (RF-) systems, Magnetic Fluid Hyperthermia (MFH) is not limited by electric (E-)field boundary effects and ...
A. Jordan +5 more
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Cell Targeting and Magnetically Induced Hyperthermia
2009With the recent development of efficient and reproducible methods for synthesis, stable aqueous dispersions of individual particles can be prepared, in which the particle sizes can be accurately adjusted from a few nanometers to a few tens of nanometers [1].
Duguet, Etienne +2 more
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Magnetic nanoparticle-induced hyperthermia treatment under magnetic resonance imaging
Magnetic Resonance Imaging, 2011Super paramagnetic iron oxide Fe(3)O(4) nanoparticles prepared via photochemical reaction in pure form were used for inducing hyperthermia to treat subcutaneous Ehrlich carcinoma implanted in female mice. Our results indicate that the mean temperature profiles at the rectum, periphery of the tumor surface and at the center of the tumor during ...
Alsayed A M, Elsherbini +4 more
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Magnetic Nanoparticles for Magnetic Resonance Imaging and Hyperthermia Applications
2012Medicine provides an increasing interest for magnetic nanoparticles, thanks not only to the growing control of their chemical and morphological design and colloidal stabilization, but also to the increasing tendency to use magnetic fields in diverse medical areas such as radiology, neurosurgery, or oncology. This contribution focuses on their potential
Pollert, Emil +3 more
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