Eur J Radiol
Department of Radiology (Yorkshire Deanery-East), Hull Royal Infirmary, Anlaby Road, Hull HU3 2JZ, UK.
Published: April 2007
The quality of imaging obtained at high magnetic field strengths can be degraded by various artefacts due to conductive and dielectric effects, which leads to loss of signal. Various methods have been described and used to improve the quality of the image affected by such artefacts. In this article, we describe the construction and use of a simple solution that can be used to diminish artefacts due to conductive and dielectric effects in clinical imaging at 3T field strength and thereby improve the diagnostic quality of the images obtained.
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http://dx.doi.org/10.1016/j.ejrad.2006.11.014 | DOI Listing |
Int J Nanomedicine
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Nanomedicine has revolutionized cancer treatment by the development of nanoparticles (NPs) that offer targeted therapeutic delivery and reduced side effects. NPs research in nanomedicine significantly focuses on understanding their cellular interactions and intracellular mechanisms. A precise understanding of nanoparticle interactions at the subcellular level is crucial for their effective application in cancer therapy.
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Institute of Archaeology, National Institute of the Republic of Serbia, 11000 Belgrade, Serbia.
The archaeological materials from the Velika Humska Čuka site on the northern fringe of the Niš Basin in southeastern Serbia were analyzed to reveal the provenance of ceramics and other artifacts. This study focused on the elemental analysis of 61 samples, including local clay pits, potsherds, and whole vessels. Samples were chosen based on stylistic and typological characteristics to distinguish local and "foreign" pottery.
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Department of Internal Medicine and Rheumatology, Sfanta Maria Clinical Hospital, 011172 Bucharest, Romania.
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Institute of Medical Engineering, University of Lübeck, Ratzeburger Allee 160, Lubeck, Schleswig-Holstein, 23562, GERMANY.
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