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A 3D Model for Magnetorheological Fluid that Considers Neighboring Particle Interactions in 2D Skewed Magnetic Fields
Jang. Kyung-In, Seok. Jong-Won, Min. Byung-Kwon, Lee. Sang-Jo 한국정밀공학회 International journal of precision engineering and manufacturing 4 Pages
한국정밀공학회 International journal of precision engineering and manufacturing 2009, Vol.10 No.1 115-118 (4 pages)
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RHEOLOGICAL PROPERTIES OF MAGNETIC PARTICLE SUSPENSIONS
Kwon. T.M., Choi. H.J., Jhon. M.S. 한국자기학회 韓國磁氣學會誌 5 Pages
한국자기학회 韓國磁氣學會誌 1995, Vol.5 No.5 667-671 (5 pages)
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Electrochemical Assay for Glycated Hemoglobin based on the Magnetic Particle-supported Concentration Coupled to Boronate-diol Interactions
Son. Seo-Young, Han. Yong-Duk, Lee. Kyeong-Hee, Yoon. Hyun-C. 대한화학회 Bulletin of the Korean Chemical Society 4 Pages
대한화학회 Bulletin of the Korean Chemical Society 2010, Vol.31 No.7 2103-2106 (4 pages)
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A novel mycotoxin purification system using magnetic nanoparticles for the recovery of aflatoxin B1 and zearalenone from feed
Hyun-Jung Kim, Sung-Hee Kim, Jin-Kyu Lee, Cheong-Up Choi, Hee-Soo Lee, Hwan-Goo Kang*, Sang-Ho Cha* 대한수의학회 Journal of Veterinary Science 7 Pages
대한수의학회 Journal of Veterinary Science 2012, 제 13권 제 4호 5 363-369 (7 pages)
novel tool for purifying two mycotoxins, aflatoxin B1 (AFB1) and zearalenone (ZEN), in feed. This system utilized monoclonal antibodies (mAbs) against AFB1 and ZEN, and magnetic nanoparticles (MNPs). Among ten MNPs with different diameters and functional groups, a 100-nm diameter MNP (fMA) conjugated to an amine group (-NH2) was found to be optimum for coupling with mAbs. The optimal mAb concentrations for coupling to the fMA along with mycotoxin purification capacities of the fMA-mAb conjugates... -
Cellular uptake of magnetic nanoparticle is mediated through energy-dependent endocytosis in A549 cells
Jun-Sung Kim, Tae-Jong Yoon, Kyeong-Nam Yu, Mi Suk Noh, Minah Woo, Byung-Geol Kim, Kee-Ho Lee, Byung-Hyuk Sohn, Seung-Bum Park, 대한수의학회 Journal of Veterinary Science 6 Pages
대한수의학회 Journal of Veterinary Science 2006, 제 7권 제 4호 3 321-326 (6 pages)
cells were pretreated with different metabolic inhibitors. Our results revealed that low temperature disturbed the uptake of magnetic nanoparticles into the cells. Metabolic inhibitors also prevented the delivery of the materials into cells. Use of TEM clearly demonstrated that uptake of the nanoparticles was mediated through endosomes. Taken together, our results demonstrate that magnetic nanoparticles can be internalized into the cells through an energy-dependent endosomal-lysosomal mechanism. -
Extremely Low Frequency Magnetic Field Modulates the Level of Neurotransmitters
YoonHeeChung, YoungJooLee, HoSungLee, SuJinChung, CheolHeeLim, KeonWoongOh, UyDongSohn, EonSubPark, JiHoonJeong 대한생리학회-대한약리학회 The Korean Journal of Physiology & Pharmacology 6 Pages
대한생리학회-대한약리학회 The Korean Journal of Physiology & Pharmacology 2015, Vol.19 No.1 3 15-20 (6 pages)
This study was aimed to observe that extremely low frequency magnetic field (ELF-MF) may be relevant to changes of major neurotransmitters in rat brain. After the exposure to ELF-MF (60 Hz, 2.0 mT) for 2 or 5 days, we measured the levels of biogenic amines and their metabolites, amino acid neurotransmitters and nitric oxide (NO) in the cortex, striatum, thalamus, cerebellum and hippo-campus. The exposure of ELF-MF for 2 or 5 days produced significant differences in norepinephrine and vanillyl...


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