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Structure-specific magnetic field inhomogeneities and its effect on the correlation time

✍ Scribed by Christian H. Ziener; Wolfgang R. Bauer; Gerd Melkus; Thomas Weber; Volker Herold; Peter M. Jakob


Book ID
104060253
Publisher
Elsevier Science
Year
2006
Tongue
English
Weight
275 KB
Volume
24
Category
Article
ISSN
0730-725X

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✦ Synopsis


We describe the relationship between the correlation time and microscopic spatial inhomogeneities in the static magnetic field. The theory takes into account diffusion of nuclear spins in the inhomogeneous field created by magnetized objects. A simple general expression for the correlation time is obtained. It is shown that the correlation time is dependent on a characteristic length, the diffusion coefficient of surrounding medium, the permeability of the surface and the volume fraction of the magnetized objects. For specific geometries (spheres and cylinders), exact analytical expressions for the correlation time are given. The theory can be applied to contrast agents (magnetically labeled cells), capillary network, BOLD effect and so forth.


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