4.2 Article

Comparison of B0 versus B0 and B1 field inhomogeneity correction for glycosaminoglycan chemical exchange saturation transfer imaging

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Publisher

SPRINGER
DOI: 10.1007/s10334-018-0689-5

Keywords

Chemical exchange saturation transfer; Field inhomogeneity correction; WASSR; WASABI; Glycosaminoglycans; Intervertebral disks

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PurposeThe study compares glycosaminoglycan chemical exchange saturation transfer (gagCEST) imaging of intervertebral discs corrected for solely B-0 inhomogeneities or both B-0 and B-1 inhomogeneities.MethodsLumbar intervertebral discs of 20 volunteers were examined with T-2-weighted and gagCEST imaging. Field inhomogeneity correction was performed with B-0 correction only and with correction of both B-0 and B-1. GagCEST effects measured by the asymmetric magnetization transfer ratio (MTRasym) and signal-to-noise ratio (SNR) were compared between both methods.ResultsSignificant higher MTRasym and SNR values were obtained in the nucleus pulposus using B-0 and B-1 correction compared with B-0-corrected gagCEST. The GagCEST effect was significantly different in the nucleus pulposus compared with the annulus fibrosus for both methods.ConclusionThe B-0 and B-1 field inhomogeneity correction method leads to an improved quality of gagCEST imaging in IVDs compared with only B-0 correction.

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