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The sagittal and dorsal spinal sequences were performed from C1 to T3 (vertebral body), and the transverse sequences used C1 to C7 (vertebral body).
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For the transverse sequence, the values were 19 slices, 4.5-mm slice thickness, 0.6-mm interslice gap, field of view of 280 mm, TR was 4,930 msec, inversion time was 150 msec, TE was 69 msec, ETL was 9, and matrix was 256 × 256 pixels.
The following parameters were used for acquisition of the T2w turbo spin echo (TSE) transverse sequence: echo time (TE) = 100, repetition time (TR) = 5500, slice thickness was 2.2 mm with an interslice gap of 2.4 mm, voxel size = 0.4 mm, number of signal average (NSA) = 5, bandwidth (BW) = 354 Hz/pixel, echo train length = 13, and the field of view (FOV) = 100 mm.
Electronic records of the transverse MRI sequences and the CT examination were blinded, duplicated and randomized using the pseudo-random function in Statistical Analyses Software (SAS e.
Gadolinium (0.1 mmol/kg; 0.045 mmol/lb) was administered intravenously, and post-contrast transverse T1-weighted sequences of the brain and dorsal and sagittal T1-weighted sequences of the spine were acquired.
For the pre- and postcontrast transverse T1w 3D (TFE SENSE) sequences, TE was 6.2, TR was 13.3, slice thickness was 0.6 mm without interslice gap, 0.6 mm isotropic resolution, NSA = 3, flip angle = 8°, BW = 114 Hz/pixel, echo train length = 166, and the FOV = 100 mm.
The non-enhanced MR imaging protocol performed after acute shoulder dislocation includes a coronal oblique T1-weighted SE sequence, coronal oblique and transverse intermediate weighted TSE sequences with fat-saturation, and a sagittal oblique T2-weighted TSE sequence with the same geometric parameters as mentioned above.
Additional file 1: 1. Complete image series of a transverse TSE T2w sequence in one rabbit.
Images-data of a T2W transverse turbo spinecho sequence (T2W_TSE; echo time 120 ms, repetition time 4.5-12.2 sliceice thickness 1.8-5.0 1.8-5.0 0.2-0.5 mm) and a T1W multi-Fast-Field-Echo sequence (mFFE; echo time 21 ms, slice thickness 2.2 mm, gap −1.1 - −1.4 mm) with 3 measurements per echo were included in this study.
The effects of lamination sequences and transverse shear deformation on the behavior are discussed.
An analytical approach is proposed to determine delamination threshold loads of fiber-reinforced laminated composite plates with arbitrary stacking sequences under transverse loading conditions.
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