Open Journal of Medical Imaging

Open Journal of Medical Imaging

ISSN Print: 2164-2788
ISSN Online: 2164-2796
www.scirp.org/journal/ojmi
E-mail: ojmi@scirp.org
"Magnetic Particle Imaging for Magnetic Hyperthermia Treatment: Visualization and Quantification of the Intratumoral Distribution and Temporal Change of Magnetic Nanoparticles in Vivo"
written by Tomomi Kuboyabu, Isamu Yabata, Marina Aoki, Natsuo Banura, Kohei Nishimoto, Atsushi Mimura, Kenya Murase,
published by Open Journal of Medical Imaging, Vol.6 No.1, 2016
has been cited by the following article(s):
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[1] Magnetic nanoparticles in theranostic applications
Journal of Applied Physics, 2022
[2] Estimating the heating of complex nanoparticle aggregates for magnetic hyperthermia
arXiv preprint arXiv:2207.14551, 2022
[3] Biomedical Applications of Nanoparticle Ferrites
Modern Ferrites: Emerging Technologies and …, 2022
[4] In Vitro Evaluation of Hyperthermia Magnetic Technique Indicating the Best Strategy for Internalization of Magnetic Nanoparticles Applied in Glioblastoma Tumor Cells
Pharmaceutics, 2021
[5] Critical Parameters to Improve Pancreatic Cancer Treatment Using Magnetic Hyperthermia: Field Conditions, Immune Response, and Particle Biodistribution
2021
[6] Infrared‐Emitting Multimodal Nanostructures for Controlled In Vivo Magnetic Hyperthermia
2021
[7] Engineering of magnetic nanoparticles as magnetic particle imaging tracers
2021
[8] Determining the Tumor Suppressive Effects of a New Drug Delivery System Loaded with Iron Oxide Nanoparticles
2020
[9] MPI Phantom Study with A High-Performing Multicore Tracer Made by Coprecipitation
2019
[10] Magnetic particle imaging for radiation-free, sensitive and high-contrast vascular imaging and cell tracking
Current Opinion in Chemical Biology, 2018
[11] Thermosensitive Ferromagnetic Implant for Hyperthermia Using a Mixture of Magnetic Micro-/Nanoparticles
2018
[12] Magnetic field dependence of heating property of resovist® for magnetic hyperthermia
2018
[13] Investigation of Structural Effects on the AC Magnetic Properties of Iron Oxide Nanoparticles
2018
[14] The Ph. D. Thesis
2018
[15] BAISUI HAN
2018
[16] Specific Loss Power in Magnetic Hyperthermia: Comparison of Monodispersion and Polydispersion
SSRG International Journal of Applied Physics, 2017
[17] Magnetic Particle Imaging for Quantitative Evaluation of Tumor Response to Magnetic Hyperthermia Treatment Combined with Chemotherapy Using …
2017
[18] In vivo liver visualizations with magnetic particle imaging based on the calibration measurement approach
Physics in Medicine & Biology, 2017
[19] Effect of Signal Filtering on Image Quality of Projection-Based Magnetic Particle Imaging
2017
[20] Magnetic particle imaging: from proof of principle to preclinical applications
Physics in Medicine & Biology, 2017
[21] Comparative Study of Extracellular and Intracellular Magnetic Hyperthermia Treatments Using Magnetic Particle Imaging
2017
[22] Magnetic Particle Imaging for Quantitative Evaluation of Tumor Response to Magnetic Hyperthermia Treatment Combined with Chemotherapy Using Cisplatin
Thermal Med, 2017
[23] Non-invasive methods for spatial and quantitative reconstructions of magnetic nanoparticles using electron paramagnetic resonance and magnetorelaxometry
2017
[24] Synthesis, Functionalization, and Design of Magnetic Nanoparticles for Theranostic Applications
Advanced healthcare materials, 2017
[25] 磁気粒子イメージングを用いた磁気温熱療法と化学療法との併用に対する腫瘍反応性の定量的評価
Thermal Medicine, 2017
[26] High-performance iron oxide nanoparticles for magnetic particle imaging–guided hyperthermia (hMPI)
Nanoscale, 2016
[27] Structural effects on the magnetic hyperthermia properties of iron oxide nanoparticles
Progress in Natural Science: Materials International, 2016
[28] Simultaneous magnetic particle imaging (MPI) and temperature mapping using multi-color MPI
2016
[29] Quantitative evaluation of tumor early response to magnetic hyperthermia combined with vascular disrupting therapy using magnetic particle imaging
2016
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