Article ID Journal Published Year Pages File Type
1806209 Magnetic Resonance Imaging 2016 7 Pages PDF
Abstract

PurposeTo investigate a method of dual k-space unaliasing by Fourier‐encoding the overlaps using the temporal dimension (DUNFOLD), a novel technique for high temporal resolution 3D functional brain imaging.MethodsTwo different methods of unaliasing by Fourier‐encoding the overlaps using the temporal dimension (UNFOLD), excitation UNFOLD (XUNFOLD) and acquisition UNFOLD, were merged to obtain a DUNFOLD. The feasibility of the DUNFOLD technique was examined by using a phantom and comparing its result to that of the previous XUNFOLD method. A high temporal resolution 3D functional brain imaging study was also performed, focusing on the microvascular response. Three different temporal resolutions, 20 s, 10 s and 5 s, were tested with a spatial resolution of 0.63 mm3 to evaluate the method. The vascular regions of interest were selected for data analysis.ResultsThe DUNFOLD method achieved a temporal resolution approximately four times greater than those of the UNFOLD and XUNFOLD methods, without apparent signal degradation. The vascular responses in the visual cortex were obtained with high spatiotemporal resolution by using the DUNFOLD method during visual stimulation. For small vessels, the percentage change in the signal reached 18%.ConclusionThe proposed DUNFOLD method yields a temporal resolution higher than those of the previous UNFOLD and XUNFOLD methods. The conclusions are likely to be important for functional imaging studies, especially those targeting cerebral vascular responsiveness.

Related Topics
Physical Sciences and Engineering Physics and Astronomy Condensed Matter Physics
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