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Dual fast spin echo and FLAIR images were obtained in all patients.
Conventional T1-weighted spin-echo, fluid-attenuated inversion recovery and dual (fast spin-echo proton density and T2-weighted) images were acquired in all patients and interpreted by one experienced neuroradiologist [ 9].
Routine brain MRI using 1.5 or 3.0 T machines with the standard protocol for MS was performed for the five biopsied patients and consisted of the following scans: axial dual fast spin-echo T2/proton density-weighted images, spin echo T1-weighted images with and without gadolinium contrast, and fluid inversion recovery (FLAIR) scans.
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The MRI acquisition included T2-weighted fluid-attenuated inversion recovery (FLAIR), T2- and proton density-weighted dual echo fast spin echo, and T1-weighted spin echo images acquired before and after injection of a standard dose of gadolinium (0.1 mmol/kg).
In this study, a modified dual-level fast multipole boundary element method is proposed for analyzing this challenging problem.
A dual-echo fast spin-echo (FSE) acquisition was obtained in the axial plane for morphometry of cerebral structures including lateral ventricles, orbitofrontal cortex (OFC) and caudate.
Two sets of dual-echo, fast spin-echo acquisitions were obtained: one in the axial plane for morphometry of cerebrum and another in a coronal oblique plane for measurement of the hippocampus.
Dual-echo fast spin echo (FSE) axial and coronal-oblique imaging (TE = 17 ms, TR = 2500, NEX = 1, number of echoes = 2, voxel dimensions = 0.9 × 0.9 × 5 mm).
The following imaging sequence was used for BML localization on each patient: sagittal dual-echo fast spin echo fat suppressed with TR/TE of ~4,000 milliseconds/15 milliseconds, 60 milliseconds, 2.5 to 3 mm slices, no skip/gap, 256 × 256 matrix, 12 cm field of view (for distal femur and proximal tibia), and acquisition time 4.50 minutes.
Axial dual-echo fast spin echo images were also acquired with the parameters: 40 slices of thickness 4 mm, TR=5625 ms, TE=20 ms (proton density-weighted) and 102 ms (T2-weighted) with 8-echo train length, matrix size 256 × 256 and in-plane voxel dimensions 0.94 mm.
A dual-mode fast-transient average-current-mode buck converter without slope-compensation is proposed in this paper.
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