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Magnetom trio whole body mr scanner

Manufactured by Siemens

The MAGNETOM Trio is a whole-body MR scanner designed by Siemens. It is a magnetic resonance imaging device that uses a strong magnetic field and radio waves to generate detailed images of the human body.

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2 protocols using magnetom trio whole body mr scanner

1

Resting-State fMRI with 3T MRI Acquisition

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Imaging data were collected on a 3-Tesla Siemens MAGNETOM Trio whole-body MR scanner using a 12-channel head coil at the University of California, Berkeley, Henry H. Wheeler Jr. Brain Imaging Center. Whole-brain functional data were acquired in two runs using a T2*-weighted echo planar imaging pulse sequence (180 volumes/run, 37 interleaved axial slices parallel to the AC-PC line, slice thickness 3.5 mm, interslice distance = 0.7 mm, TR = 2,000 ms, TE = 24 ms, FA = 60°, matrix 64 × 64, field of view 224 mm). A high-resolution T1-weighted structural 3D MP-RAGE was also acquired (160 slices, slice thickness 1 mm, TR = 2,300 ms, TE = 2.98 ms, FA = 9°, matrix 256 × 256, field of view 256 mm). An LCD projector back projected a fixation cross for the resting-state scan onto a screen mounted to the radiofrequency (RF) coil.
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2

Multimodal Brain Imaging Protocol

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Imaging data were collected on a 3-Tesla Siemens MAGNETOM Trio whole-body MR scanner using a 12-channel head coil at the University of California, Berkeley Henry H. Wheeler Jr.
Brain Imaging Center. Whole-brain functional data were acquired in two runs using a T2*weighted echo-planar imaging (EPI) pulse sequence (180 volumes/run, 37 interleaved axial slices parallel to the AC-PC line, slice thickness 3.5 mm, interslice distance = 0.7 mm, TR = 2000 ms, TE = 24 ms, FA = 60°, matrix 64 x 64, field of view 224 mm). A high-resolution T1weighted structural 3D MP-RAGE was also acquired (160 slices, slice thickness 1 mm, TR = 2300 ms, TE = 2.98 ms, FA = 9°, matrix 256 x 256, field of view 256 mm). An LCD projector back-projected a fixation cross for the resting-state scan onto a screen mounted to the RF coil.
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