PHYSICAL PRINCIPLES OF MAGNETIC RESONANCE IMAGING (MRI)

dc.contributor.authorRakhimov Bobur
dc.contributor.authorRustamov Olmos
dc.contributor.authorJabborov Sanjarbek
dc.contributor.authorDavlatboyev Sharifjon
dc.date.accessioned2025-12-28T10:39:56Z
dc.date.issued2025-05-17
dc.description.abstractMagnetic Resonance Imaging (MRI) is a non-invasive diagnostic technique widely used in medical imaging to produce high-resolution anatomical and functional images of the human body. This article explores the fundamental physical principles that underlie MRI technology, including nuclear magnetic resonance (NMR), the behavior of hydrogen nuclei in a magnetic field, radiofrequency (RF) excitation, and relaxation phenomena. Additionally, the roles of gradient magnetic fields and signal acquisition in image formation are examined. Understanding these physical mechanisms is crucial for optimizing image quality, ensuring patient safety, and advancing MRI-based diagnostic capabilities. This review aims to provide a comprehensive overview of the physics behind MRI, serving as a foundational resource for medical professionals, researchers, and students in the fields of radiology, biomedical engineering, and medical physics.
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dc.identifier.urihttps://usajournals.org/index.php/1/article/view/109
dc.identifier.urihttps://asianeducationindex.com/handle/123456789/3671
dc.language.isoeng
dc.publisherModern American Journals
dc.relationhttps://usajournals.org/index.php/1/article/view/109/138
dc.rightshttps://creativecommons.org/licenses/by/4.0
dc.sourceModern American Journal of Medical and Health Sciences; Vol. 1 No. 2 (2025); 56-61
dc.source3067-803X
dc.subjectMagnetic Resonance Imaging, MRI physics, nuclear magnetic resonance, radiofrequency pulses, relaxation time, image formation, gradient fields, diagnostic imaging, medical physics.
dc.titlePHYSICAL PRINCIPLES OF MAGNETIC RESONANCE IMAGING (MRI)
dc.typeinfo:eu-repo/semantics/article
dc.typeinfo:eu-repo/semantics/publishedVersion
dc.typePeer-reviewed Article

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