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| | | | | | SPGR SPoiled Gradient Recalled | | | Searchterm 'spgr' was found in the Abbreviation Register. | |
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Result : Searchterm 'spgr' found in 0 term [] and 16 definitions []
| 1 - 5 (of 16) nextResult Pages : [1 2 3 4] | | | | Searchterm 'spgr' was also found in the following service: | | | | |
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From GE Healthcare;
The Signa HDx MRI system is GE's leading edge whole body magnetic resonance scanner designed to support high resolution, high signal to noise ratio, and short scan times.
Signa HDx 3.0T offers new technologies like ultra-fast image reconstruction through the new XVRE recon engine, advancements in parallel imaging algorithms and the broadest range of premium applications. The HD applications, PROPELLER (high-quality brain imaging extremely resistant to motion artifacts), TRICKS (contrast-enhanced angiographic vascular lower leg imaging), VIBRANT (for breast MRI), LAVA (high resolution liver imaging with shorter breath holds and better organ coverage) and MR Echo (high-definition cardiac images in real time) offer unique capabilities.
Device Information and Specification CLINICAL APPLICATION Whole body
CONFIGURATION Compact short bore SE, IR, 2D/3D GRE, RF-spoiled GRE, 2DFGRE, 2DF SPGR, 3DFGRE, 3DF SPGR, 3DTOFGRE, 3DF SPGR, 2DFSE, 2DFSE-XL, 2DFSE-IR, T1-FLAIR, SSFSE, EPI, DW-EPI, BRAVO, Angiography: 2D/3D TOF, 2D/3D phase contrast vascular IMAGING MODES Single, multislice, volume study, fast scan, multi slab, cine, localizer H*W*D 240 x 2216,6 x 201,6 cm POWER REQUIREMENTS 480 or 380/415, 3 phase ||
COOLING SYSTEM TYPE Closed-loop water-cooled grad. | | | | | • Share the entry 'Signa HDx 3.0T™': | | | | |
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| | | | • View the DATABASE results for 'Spoiled Gradient Recalled' (2).
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(IR-F SPGR) This sequence uses an inversion pulse followed by a spoiled low flip angle and short TR gradient echo train to collect all partition data.
The 3D-IR-F SPGR uses centric ordering of Gz. The selected TI is also the effective TI. The centric reordering strategy can lead to image blurring if a steady state is not achieved quickly with low flip angles (less than 20°). | | | | | |
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From GE Healthcare;
GE's Signa Contour/i system uses the innovations like K4 technology and real-time interactive imaging.
This compact magnet with wide-flare gantry obtains high patient comfort with low costs.
Device Information and Specification CLINICAL APPLICATION Whole body Head and body coil standard; all other coils optional; open architecture makes system compatible with a wide selection of coils Standard: SE, IR, 2D/3D GRE and SPGR, Angiography;; 2D/3D TOF, 2D/3D Phase Contrast;; 2D/3D FSE, 2D/3D FGRE and F SPGR, SSFP, FLAIR, optional: EPI, 2D/3D Fiesta, FGRET, Spiral2D 0.8 mm to 20 mm; 3D 0.1 mm to 5 mm 128x512 steps 32 phase encode POWER REQUIREMENTS 480 or 380/415 V STRENGTH SmartSpeed 23 mT/m, HiSpeed Plus 33 mT/m | | | | | |
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From GE Healthcare;
GE Healthcare has added the Signa HDe 1.5T™, a compact MRI device at an affordable price to its family of MRI products. It has a single electronic cabinet that can be positioned inside the scanner room rather than
in a separate equipment room. The Signa HDe 1.5T can be installed in the same physical location as 0.5T MRI systems with minimal construction costs. According to GE, the installation has been simplified to last only 7 days and has a 30 percent smaller footprint than a typical 1.5T system.
The 1.5T Signa™ HDe MRI system is substantially equivalent to the currently marketed GE 1.5T machines. The data acquisition system supports 1, 4, 8 independent receive channels and multiple independent coil elements per channel during a single acquisition series. The gradient specifications of HDe are lower than other GE Signa 1.5T MRI systems, but it can support clinical applications in cardiac and spectroscopy imaging.
Device Information and Specification CLINICAL APPLICATION Whole body CONFIGURATION Compact short bore 2D 0.7 mm to 20 mm; 3D 0.1 mm to 5 mm 128x512 steps 32 phase encode POWER REQUIREMENTS 480 or 380/415 less than 0.03 L/hr liquid helium | | | | • View the NEWS results for 'Signa HDe 1.5T™' (1).
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