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Evaluation of magnetic nanoparticles for magnetic fluid hyperthermia [PDF]

open access: yesInternational Journal of Hyperthermia, 2019
Background: Magnetic nanoparticles (MNPs) generate heat when exposed to an alternating magnetic field. Consequently, MNPs are used for magnetic fluid hyperthermia (MFH) for cancer treatment, and have been shown to increase the efficacy of chemotherapy and/or radiation treatment in clinical trials. A downfall of current MFH treatment is the inability to
Olena Korotych   +2 more
exaly   +4 more sources

Orientation Mediated Enhancement on Magnetic Hyperthermia of Fe3O4 Nanodisc

open access: yesAdvanced Functional Materials, 2015
A two-step chemical approach to synthesize high quality Fe3O4 nanodisc is reported. The magnetic hyperthermia properties of the nanodisc and isotropic nanoparticles are investigated systematically.
Jie Fang, Xiaoli Liu
exaly   +1 more source

Advances in magnetic induction hyperthermia

open access: yesFrontiers in Bioengineering and Biotechnology
Magnetic induction hyperthermia (MIH), is a technique that has developed rapidly in recent years in the field of tumor thermotherapy. It implants a magnetic heating medium (millimeter-sized heat seeds, micron-sized magnetic particles and nanometer-sized magnetic fluids, etc.) inside the tumor.
Mai Lu, Yun-Fei Zhang
exaly   +4 more sources

Magnetic Relaxation of Intracellular Magnetic Nanoparticles for Hyperthermia

Critical Reviews in Biomedical Engineering, 2019
Magnetic nanoparticles have been studied extensively for biomedical applications over the past decades. One of the promising applications of magnetic nanoparticles is hyperthermia, which refers to thermal treatment for cancer. To achieve adequate heat at target sites, it is essential to develop magnetic nanoparticles with high heating efficiency and to
Asahi, Tomitaka, Yasushi, Takemura
openaire   +2 more sources

Magnetic Hyperthermia with Magnetic Nanoparticles: A Status Review

Current Topics in Medicinal Chemistry, 2014
Recent 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
openaire   +2 more sources

Neurosurgical Applications of Magnetic Hyperthermia Therapy

Neurosurgery Clinics of North America, 2023
Magnetic hyperthermia therapy (MHT) is a highly localized form of hyperthermia therapy (HT) that has been effective in treating various forms of cancer. Many clinical and preclinical studies have applied MHT to treat aggressive forms of brain cancer and assessed its role as a potential adjuvant to current therapies.
Daniel, Rivera   +8 more
openaire   +2 more sources

Clinical applications of magnetic nanoparticles for hyperthermia

open access: yesInternational Journal of Hyperthermia, 2008
Magnetic fluids are increasingly used for clinical applications such as drug delivery, magnetic resonance imaging and magnetic fluid hyperthermia. The latter technique that has been developed as a cancer treatment for several decades comprises the injection of magnetic nanoparticles into tumors and their subsequent heating in an alternating magnetic ...
Andreas Jordan
exaly   +3 more sources

Magnetic hyperthermia in solid magnetic colloids

Physica A: Statistical Mechanics and its Applications, 2017
zbMATH Open Web Interface contents unavailable due to conflicting licenses.
Zubarev, A. Yu.   +2 more
openaire   +2 more sources

Magnetic hyperthermia with hard-magnetic nanoparticles

Journal of Magnetism and Magnetic Materials, 2015
Recent clinical trials of magnetic hyperthermia have proved, and even hardened, the Ankinson-Brezovich restriction as upon magnetic field conditions applicable to any site of human body. Subject to this restriction, which is harshly violated in numerous laboratory and small animal studies, magnetic hyperthermia can relay on rather moderate heat source,
Bronislav E. Kashevsky   +5 more
openaire   +1 more source

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