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Data inversion of multi-dimensional magnetic resonance in porous media
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作者 fangrong zong Huabing Liu +1 位作者 Ruiliang Bai Petrik Galvosas 《Magnetic Resonance Letters》 2023年第2期127-139,I0004,共14页
Since its inception in the 1970s,multi-dimensional magnetic resonance(MR)has emerged as a powerful tool for non-invasive investigations of structures and molecular interactions.MR spectroscopy beyond one dimension all... Since its inception in the 1970s,multi-dimensional magnetic resonance(MR)has emerged as a powerful tool for non-invasive investigations of structures and molecular interactions.MR spectroscopy beyond one dimension allows the study of the correlation,exchange processes,and separation of overlapping spectral information.The multi-dimensional concept has been re-implemented over the last two decades to explore molecular motion and spin dynamics in porous media.Apart from Fourier transform,methods have been developed for processing the multi-dimensional time-domain data,identifying the fluid components,and estimating pore surface permeability via joint relaxation and diffusion spectra.Through the resolution of spectroscopic signals with spatial encoding gradients,multi-dimensional MR imaging has been widely used to investigate the microscopic environment of living tissues and distinguish diseases.Signals in each voxel are usually expressed as multi-exponential decay,representing microstructures or environments along multiple pore scales.The separation of contributions from different environments is a common ill-posed problem,which can be resolved numerically.Moreover,the inversion methods and experimental parameters determine the resolution of multi-dimensional spectra.This paper reviews the algorithms that have been proposed to process multidimensional MR datasets in different scenarios.Detailed information at the microscopic level,such as tissue components,fluid types and food structures in multi-disciplinary sciences,could be revealed through multi-dimensional MR. 展开更多
关键词 Multi-dimensional MR Data inversion Porous media Inverse Laplace transform FOURIERTRANSFORM
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Editorial
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作者 Ruiliang Bai Xueqian Kong +2 位作者 Siegfried Stapf Wei Wang fangrong zong 《Magnetic Resonance Letters》 2023年第2期87-89,共3页
Porous media are ubiquitous and characterized by a wide range of distinct morphological and topographical properties,often difficult to access by conventional methods.As a unique technology,magnetic resonance has been... Porous media are ubiquitous and characterized by a wide range of distinct morphological and topographical properties,often difficult to access by conventional methods.As a unique technology,magnetic resonance has been applied extensively for several decades to non-invasively characterize the structure,interactions and dynamics of fluids in porous media,as well as these media themselves.It does this via spectroscopy,relaxometry,diffusion,or imaging modalities.This special issue is dedicated to an editorial and a selection of outstanding talks/posters presented at the 15th International Bologna Conference Magnetic Resonance in Porous Media(MRPM15). 展开更多
关键词 MEDIA POROUS POROUS
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