
edXMRI is ubiquitous in medicine, yet its underlying physics remains opaque to most clinicians. This advanced course opens the mechanism: spin dynamics, relaxation, image reconstruction, functional MRI—grounded in rigorous physics.
You'll understand why an MRI can or cannot image a particular tissue, what the limits are, and how safety considerations shape what's possible. Essential for radiologists, physicists, and biomedical engineers designing or operating imaging systems.
This physics course covers the physical principles of major in vivo bio-imaging modalities.
This course will focus on magnetic resonance imaging, also known as an MRI. In the first part of the course, the dynamic of spins in a magnetic field is described, leading to the essential notions of magnetic resonance (MR), excitation and relaxation. We will also discuss the basic mechanisms of image reconstruction, MR spectroscopy and functional MRI.
You will learn how existing physical principles transcend into bio-imaging and establish an important link into life sciences, illustrating the contributions physics can make to life sciences. Practical examples will be shown to illustrate the respective imaging modality, its use, premise and limitations, and biological safety will be touched upon.
During this course, you will develop a good understanding of the mechanisms leading to tissue contrast of the bio-imaging modalities covered in this course, including the inner workings of the scanner and how they define the range of possible biomedical applications. You will be able to judge which imaging modality is adequate for specific life science needs and to understand the limits and promises of each modality.
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Tracking since 1 Aug— not enough history yet to tell you whether today's price is any good. Watch the course and we'll tell you when it drops.
This is what we recorded in US pricing — not every price this course has ever had, and prices differ by country.
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