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How MRI Machines Use Powerful Magnets to See Inside the Human BodyMRI machines rely on massive superconducting magnets and complex software to produce detailed images of our organs and ...
In a move to revolutionise biomedical research, the Indian Institute of Technology Delhi (IIT Delhi) has inaugurated a ...
The detection and quantification of CPT-Glu and Gd-DTPA in the brain were carried out by LC–MS/MS and quantitative magnetic resonance imaging (MRI), respectively. Rats perfused with CPT-Glu in ...
The Utah MRI Research Center (UMRC) at University of Utah Health has installed the state’s first Siemens Free.Max MRI—a ...
An international research team led by Forschungszentrum Jülich has succeeded in visualizing magnetism inside solids with ...
Aim: To examine the correlation between neonatal cranial ultrasound and school age magnetic resonance imaging (MRI) and neurodevelopmental outcome. Methods: In a prospective 2 year cohort study, 221 ...
The heart of the present day MRI scanners is a superconducting magnet producing the required central field. A 1.5 T multicoil magnet with ±5.5 ppm field homogeneity in 45 cm field of view (FOV) is ...
Design of Green-Synthesized Dy 3+-Doped Iron Oxide Nanoparticle-Entrapped Liposomes for Synergistic Modulation of MRI Contrast, Magnetic Hyperthermia, and Combined Anticancer Efficacy ...
The worldwide use of both magnetic resonance imaging (MRI) and pacing devices has vastly increased in recent years and an important number of implanted patients likely will need an MRI over the ...
Abstract: We have been developing a liquid-helium-free magnet using High-Temperature Superconducting (HTS) wire for MRI. The aim of this research and development is to commercialize a 3-T HTS magnet ...
Potential for Numerous Applications The new design concepts offer great potential for applications in which strong and homogeneous magnetic fields are required. In conventional magnetic resonance ...
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