RF-spoiled radial FLASH sequence without cardiac gating and during free breathing Sequence parameters: TR 2.0ms TE 1.3 ms Flip angle 8° Matrix Size 128x128 (two-fold oversampling, resulting in 256 sample points for each radial spoke) Radial Spokes: 125 In Plane Resolution 2mmx2mm Slice Thickness 8mm 3T System 32 channel body array coil, compressed to 12 virtual channels using svd based coil compression ote: This data set was acquired with a radial acquisition. The corresponding k-Space trajectory is also included (256x125 matrix k). The Non-Uniform-FFT Toolbox is needed for reconstruction of this data set. Florian Knoll (florian.knoll@tugraz.at) Date: 2.2.2011Supported by the Austrian Science Fund (FWF) under grant SFB F32 (SFB "Mathematica...
The purpose of this work was to develop an acquisition and reconstruction technique for two- and thr...
<p>SE measurement of the knee of a healthy volunteer Sequence parameters:</p> <p>TR 1800ms<br> TE 1...
Figure S4. Bland-Altman plot comparing the mean T1Ď (in ms) estimated from 2D and accelerated 3D im...
<p>RF-spoiled radial FLASH sequence without cardiac gating and during free breathing<br> Sequence pa...
SE measurement of the knee of a healthy volunteer Sequence parameters: TR 1800ms TE 18ms Matrix Siz...
T2 weighted TSE Scan of the brain of a healthy volunteer, 4 channel coil Sequence parameters: TR 50...
T2 weighted TSE Scan of the brain of a healthy volunteer, 32 channel coil Sequence parameters: TR 5...
Figure S3. Figure comparing T1Ď weighted images from 2D ((A)-(F)) and 3D acquisitions ((G)-(L)). Go...
Purpose To develop a method for spoiling transverse magnetizations without additional gradients to m...
Magnetic Resonance Imaging measurement data used in our paper about "Free-Breathing Myocardial T1 Ma...
Magnetic Resonance Imaging measurement data used in our paper about "Free-Breathing Myocardial T1 Ma...
Magnetic Resonance Imaging measurement data used in our paper about "Free-Breathing Myocardial T1 Ma...
Magnetic Resonance Imaging measurement data used in our paper about "Free-Breathing Myocardial T1 Ma...
Purpose: Respiratory motion‐compensated (MC) 3D cardiac fat‐water imaging at 7T. Methods: Free‐brea...
Figure S5. Comparison of reconstructions from prospectively undersampled A = 3 data and A = 4 data t...
The purpose of this work was to develop an acquisition and reconstruction technique for two- and thr...
<p>SE measurement of the knee of a healthy volunteer Sequence parameters:</p> <p>TR 1800ms<br> TE 1...
Figure S4. Bland-Altman plot comparing the mean T1Ď (in ms) estimated from 2D and accelerated 3D im...
<p>RF-spoiled radial FLASH sequence without cardiac gating and during free breathing<br> Sequence pa...
SE measurement of the knee of a healthy volunteer Sequence parameters: TR 1800ms TE 18ms Matrix Siz...
T2 weighted TSE Scan of the brain of a healthy volunteer, 4 channel coil Sequence parameters: TR 50...
T2 weighted TSE Scan of the brain of a healthy volunteer, 32 channel coil Sequence parameters: TR 5...
Figure S3. Figure comparing T1Ď weighted images from 2D ((A)-(F)) and 3D acquisitions ((G)-(L)). Go...
Purpose To develop a method for spoiling transverse magnetizations without additional gradients to m...
Magnetic Resonance Imaging measurement data used in our paper about "Free-Breathing Myocardial T1 Ma...
Magnetic Resonance Imaging measurement data used in our paper about "Free-Breathing Myocardial T1 Ma...
Magnetic Resonance Imaging measurement data used in our paper about "Free-Breathing Myocardial T1 Ma...
Magnetic Resonance Imaging measurement data used in our paper about "Free-Breathing Myocardial T1 Ma...
Purpose: Respiratory motion‐compensated (MC) 3D cardiac fat‐water imaging at 7T. Methods: Free‐brea...
Figure S5. Comparison of reconstructions from prospectively undersampled A = 3 data and A = 4 data t...
The purpose of this work was to develop an acquisition and reconstruction technique for two- and thr...
<p>SE measurement of the knee of a healthy volunteer Sequence parameters:</p> <p>TR 1800ms<br> TE 1...
Figure S4. Bland-Altman plot comparing the mean T1Ď (in ms) estimated from 2D and accelerated 3D im...