SIEMENS MAGNETOM Skyra syngo MR D13

Similar documents
Diff Ganzkörper ep2d_diff_stir_b50_800_tra

WU-Minn HCP 1200 Subjects Release: Reference Manual

Advanced MSK MRI Protocols at 3.0T. Garry E. Gold, M.D. Associate Professor Department of Radiology Stanford University

Page 1 of 9. Protocol: adult_other_adni3_study_human_ge_3t_25w_ _ _1. 3 Plane Localizer. 3 Plane Localizer PATIENT POSITION

Siemens AG, Healthcare Sector. syngo MR D Operator Manual - Breast 0.0.

3T Unlimited. ipat on MAGNETOM Allegra The Importance of ipat at 3T. medical

Background (~EE369B)

2015 Spin echoes and projection imaging

TimTX TrueShape. The parallel transmit architecture of the future. Answers for life.

EE469B: Assignment 1 Solutions

MRI Summer Course Lab 2: Gradient Echo T1 & T2* Curves

Lab 8 6.S02 Spring 2013 MRI Projection Imaging

Simultaneous Multi-Slice (Slice Accelerated) Diffusion EPI

Application Guide & Release Notes

BOLD fmri: signal source, data acquisition, and interpretation

Image Quality/Artifacts Frequency (MHz)

Pulse Sequence Design and Image Procedures

Cardiac MR. Dr John Ridgway. Leeds Teaching Hospitals NHS Trust, UK

HETERONUCLEAR IMAGING. Topics to be Discussed:

Module 2. Artefacts and Imaging Optimisation for single shot methods. Content: Introduction. Phase error. Phase bandwidth. Chemical shift review

M R I Physics Course. Jerry Allison Ph.D., Chris Wright B.S., Tom Lavin B.S., Nathan Yanasak Ph.D. Department of Radiology Medical College of Georgia

Supplementary Figure 1

Gradient Spoiling. Average balanced SSFP magnetization Reduce sensitivity to off-resonance. FFE, FISP, GRASS, GRE, FAST, Field Echo

Further Customization of Dot Engines: AutoCoverage

MR Advance Techniques. Flow Phenomena. Class II

Applications Guide. Spectral Editing with SVS. (Works-in-Progress) MAGNETOM TaTs and Verio Systems (3T)

1 Introduction. 2 The basic principles of NMR

H 2 O and fat imaging

Annual Ceiling Amount: $

(N)MR Imaging. Lab Course Script. FMP PhD Autumn School. Location: C81, MRI Lab B0.03 (basement) Instructor: Leif Schröder. Date: November 3rd, 2010

MARP. MR Accreditation Program Quality Control Beyond Just the Scans and Measurements July 2005

Pulse Sequences: Rapid Gradient Echo

functional MRI: A primer

Encoding of inductively measured k-space trajectories in MR raw data

2014 M.S. Cohen all rights reserved

MR in Tx Planning. Acknowledgements. Outline. Overview MR in RTP

6.S02 MRI Lab Acquire MR signals. 2.1 Free Induction decay (FID)

Pulse Sequence Design Made Easier

Supplementary Material

RAD 229: MRI Signals and Sequences

PET Performance Evaluation of MADPET4: A Small Animal PET Insert for a 7-T MRI Scanner

MR Basics: Module 8 Image Quality

EE469B: Assignment 4 Solutions

EE225E/BIOE265 Spring 2014 Principles of MRI. Assignment 6. Due Friday March 7th, 2014, Self Grading Due Monday March 10th, 2014

Methods. Experimental Stimuli: We selected 24 animals, 24 tools, and 24

MR in RTP. MR Data for Treatment Planning: Spatial Accuracy Issues, Protocol Optimization, and Applications (Preview of TG117 Report) Acknowledgements

MRI Metal Artifact Reduction

Target Echo Information Extraction

k y 2k y,max k x 2k x,max

MRI Anatomy and Positioning Series Module 12: Fat Suppression Techniques

Principles of MRI EE225E / BIO265. Lecture 21. Instructor: Miki Lustig UC Berkeley, EECS. M. Lustig, EECS UC Berkeley

BACKGROUND. ** 78% of all MRI scanners have Image Quality problems. *** *** 25% of all Multi-Channel RF coils have at least one bad channel.

MR Basics: Module 6 Pulse Sequences

Liver imaging beyond expectations with Ingenia

MRI SYSTEM COMPONENTS Module One

SUPPLEMENTARY INFORMATION

Alae Tracker: Tracking of the Nasal Walls in MR-Imaging

a. Use (at least) window lengths of 256, 1024, and 4096 samples to compute the average spectrum using a window overlap of 0.5.

RF pulse design and the Small Tip Angle Approximation

Half-Pulse Excitation Pulse Design and the Artifact Evaluation

NEMA Standards Publication MS (R2014) Determination of Signal-to-Noise Ratio (SNR) in Diagnostic Magnetic Resonance Imaging

ECE 476/ECE 501C/CS Wireless Communication Systems Winter Lecture 6: Fading

Clear delineation of optic radiation and very small vessels using phase difference enhanced imaging (PADRE)

EE225E/BIOE265 Spring 2012 Principles of MRI. Assignment 7. Due March 16, 2012

MRI & NMR spectrometer

ATB-7300 to NAV2000R Product Comparison

System on a Chip. Prof. Dr. Michael Kraft

High Field MRI: Technology, Applications, Safety, and Limitations

ISSN X CODEN (USA): PCHHAX. The role of dual spin echo in increasing resolution in diffusion weighted imaging of brain

ACRIN 6686 / RTOG 0825

Works-in-Progress package Version 1.0. For the SIEMENS Magnetom. Installation and User s Guide NUMARIS/4VA21B. January 22, 2003

EEE 309 Communication Theory

S1 Table. Characterization of the articles (n=20) included for systematic review. (A) population, acquisition and analysis parameters; (B)

IR/SR TrueFISP. Works-in-Progress package Version 1.2. For the SIEMENS Magnetom. Installation and User s Guide NUMARIS/4VA21B.

EE225E/BIOE265 Spring 2011 Principles of MRI. Assignment 6 Solutions. (y 0 + vt) dt. 2 y 0T + 3 )

Magnetic Resonance Imaging Principles, Methods, and Techniques

Echo-Planar Imaging for a 9.4 Tesla Vertical-Bore Superconducting Magnet Using an Unshielded Gradient Coil

Radar-Verfahren und -Signalverarbeitung

Magnetic Resonance Imaging

1.5T HIGH FIELD SMALL ANIMAL MRI

Multiplexed Echo Planar Imaging for Sub-Second Whole Brain FMRI and Fast Diffusion Imaging

10. Phase Cycling and Pulsed Field Gradients Introduction to Phase Cycling - Quadrature images

Optimizing the Magnetization-Prepared Rapid Gradient-Echo (MP-RAGE) Sequence

Chapter 2. The Physics of Magnetic Resonance Imaging

Notes on OR Data Math Function

A 120dB dynamic range image sensor with single readout using in pixel HDR

MRI physics for SPM users

Fundamental and Clinical Studies for Effectiveness of Zero-filling Interpolation on k-space for Improvement of Sharpness in Magnetic Resonance Imaging

Magnetic Resonance Imaging (MRI)

ECE 476/ECE 501C/CS Wireless Communication Systems Winter Lecture 6: Fading

ECE 476/ECE 501C/CS Wireless Communication Systems Winter Lecture 6: Fading

EEE 309 Communication Theory

Field Simulation Software to Improve Magnetic Resonance Imaging

PHYSIOLOGICAL DE-NOISING FMRI DATA. Katie Dickerson & Jeff MacInnes February 11th, 2013

syngo MR E11 Operator Manual Scanning and postprocessing Answers for life.

Lesson 06: Pulse-echo Imaging and Display Modes. These lessons contain 26 slides plus 15 multiple-choice questions.

A. SPECIFIC AIMS: phase graph (EPG) algorithms to cover a wide range of MRI

[Maestro Class] MAGNETOM Harmony The New Degree of Perfection

RF Pulse Design. Multi-dimensional Excitation II. M229 Advanced Topics in MRI Kyung Sung, Ph.D Class Business

Diffusion and Functional MRI of the Spinal Cord Methods and Clinical Applications

Transcription:

Page 1 of 12 SIEMENS MAGNETOM Skyra syngo MR D13 \\USER\CIND\StudyProtocols\PTSA\*ep2d_M0Map_p2_TE15 TA:7.9 s PAT:2 Voxel size:2.5 2.5 3.0 mm Rel. SNR:1.00 :epfid Properties Routine Contrast Prio Recon Load to viewer Inline movie Auto store images Load to stamp segments Load images to graphic segments Auto open inline display Wait for user to start Start measurements single Nr. of slice groups 1 Slices 36 Dist. factor 20 % Orientation Transversal Phase enc. dir. AutoAlign Head > Brain Phase oversampling 0 % FoV read FoV phase 100.0 % Slice thickness 3.0 mm TR 159 TE 15. Averages 1 Concatenations 1 Filter Raw filter Coil elements HE1-4 MTC Flip angle 77 deg Fat suppr. Fat sat. Averaging mode Long term Measurements 1 Delay in TR Reconstruction Magnitude Multiple series

Page 2 of 12 Resolution Geometry Base resolution 88 Phase resolution 100 % Phase partial Fourier 7/8 Interpolation PAT mode GRAPPA Accel. factor PE 2 Ref. lines PE 24 Reference scan mode Separate Distortion Corr. Hamming Prescan Normalize Raw filter Intensity Weak Slope 25 Elliptical filter Nr. of slice groups 1 Slices 36 Dist. factor 20 % Phase enc. dir. Phase oversampling 0 % Multi-slice mode Series Descending Nr. of sat. regions 0 mode L-P-H Fat suppr. Fat sat. Special sat. Special sat. P Inline Composing

Page 3 of 12 System Physio Inline Body HE1 HE3 NE1 HE2 HE4 NE2 mode L-P-H ing mode FIX H 0 mm MSMA S - C - T Sagittal Coronal Transversal F >> H Coil Combine Mode Sum of Squares AutoAlign Head > Brain Coil Select Mode - AutoCoilSelect Shim mode Advanced Adjust with body coil Confirm freq. adjustment Assume Dominant Fat Assume Silicone Adjustment Tolerance Auto? Ref. amplitude 1H 0.000 V Rotation 0.00 deg F >> H 129 mm Frequency 1H 123.205716 MHz Correction factor 1 SincRFPulse 1H 348.354 V Gain High 0 mm Img. Scale. Cor. 1.000 1st Signal/Mode Inline Composing Distortion correction

Page 4 of 12 Sequence BOLD Introduction Averaging mode Long term Multi-slice mode Bandwidth 1894 Hz/Px Free echo spacing Echo spacing 0.61 ms EPI factor 88 RF pulse type Normal Gradient mode Fast TX/RX delta frequency 0 Hz TX Nucleus TX delta frequency 0 Hz Coil elements HE1-4 Acquisition duration GLM Statistics Dynamic t-maps Ignore meas. at start 0 Ignore after transition 0 Model transition states Temp. highpass filter Threshold 4.00 Paradigm size 20 Motion correction Spatial filter Delay in TR Distortion Corr. SIEMENS MAGNETOM Skyra syngo MR D13 \\USER\CIND\StudyProtocols\PTSA\*ep2d_pace_p2_TE27_TR2020 TA:8:12 PAT:2 Voxel size:2.5 2.5 3.0 mm Rel. SNR:1.00 :epfid

Page 5 of 12 Properties Routine Contrast Prio Recon Load to viewer Inline movie Auto store images Load to stamp segments Load images to graphic segments Auto open inline display Wait for user to start Start measurements single Nr. of slice groups 1 Slices 36 Dist. factor 20 % Orientation Transversal Phase enc. dir. AutoAlign Head > Brain Phase oversampling 0 % FoV read FoV phase 100.0 % Slice thickness 3.0 mm TR 202 TE 27. Averages 1 Concatenations 1 Filter Raw filter Coil elements HE1-4 MTC Flip angle 77 deg Fat suppr. Fat sat. Averaging mode Long term Measurements 240 Delay in TR Reconstruction Magnitude Multiple series

Page 6 of 12 Resolution Geometry Base resolution 88 Phase resolution 100 % Phase partial Fourier 7/8 Interpolation PAT mode GRAPPA Accel. factor PE 2 Ref. lines PE 24 Reference scan mode Separate Distortion Corr. Hamming Prescan Normalize Raw filter Intensity Weak Slope 25 Elliptical filter Nr. of slice groups 1 Slices 36 Dist. factor 20 % Phase enc. dir. Phase oversampling 0 % Multi-slice mode Series Descending Nr. of sat. regions 0 mode L-P-H Fat suppr. Fat sat. Special sat. Special sat. P Inline Composing

Page 7 of 12 System Physio Inline Body HE1 HE3 NE1 HE2 HE4 NE2 mode L-P-H ing mode FIX H 0 mm MSMA S - C - T Sagittal Coronal Transversal F >> H Coil Combine Mode Sum of Squares AutoAlign Head > Brain Coil Select Mode - AutoCoilSelect Shim mode Advanced Adjust with body coil Confirm freq. adjustment Assume Dominant Fat Assume Silicone Adjustment Tolerance Auto? Ref. amplitude 1H 0.000 V Rotation 0.00 deg F >> H 129 mm Frequency 1H 123.205716 MHz Correction factor 1 SincRFPulse 1H 348.354 V Gain High 0 mm Img. Scale. Cor. 1.000 1st Signal/Mode Inline Composing Distortion correction

Page 8 of 12 Sequence BOLD Introduction Averaging mode Long term Multi-slice mode Bandwidth 1894 Hz/Px Free echo spacing Echo spacing 0.61 ms EPI factor 88 RF pulse type Normal Gradient mode Fast TX/RX delta frequency 0 Hz TX Nucleus TX delta frequency 0 Hz Coil elements HE1-4 Acquisition duration GLM Statistics Dynamic t-maps Ignore meas. at start 0 Ignore after transition 0 Model transition states Temp. highpass filter Threshold 4.00 Paradigm size 20 Motion correction Spatial filter Delay in TR Distortion Corr. SIEMENS MAGNETOM Skyra syngo MR D13 \\USER\CIND\StudyProtocols\PTSA\*gre_field_mapping_NIFD TA:1:13 Voxel size:2.5 2.5 3.0 mm Rel. SNR:1.00 :fm_r

Page 9 of 12 Properties Routine Contrast Prio Recon Load to viewer Inline movie Auto store images Load to stamp segments Load images to graphic segments Auto open inline display Wait for user to start Start measurements single Nr. of slice groups 1 Slices 36 Dist. factor 20 % Orientation Transversal Phase enc. dir. AutoAlign Head > Brain Phase oversampling 0 % FoV read FoV phase 100.0 % Slice thickness 3.0 mm TR 400. TE 1 5.3 Averages 1 Concatenations 1 Filter Prescan Normalize Coil elements HE1-4 MTC Flip angle 60 deg Fat suppr. Averaging mode Long term Measurements 1 Reconstruction Phase Multiple series

Page 10 of 12 Resolution Geometry Base resolution 88 Phase resolution 100 % Phase partial Fourier Interpolation Image Filter Distortion Corr. Unfiltered images Prescan Normalize Normalize B1 filter Raw filter Elliptical filter Nr. of slice groups 1 Slices 36 Dist. factor 20 % Phase enc. dir. Phase oversampling 0 % Multi-slice mode Series Nr. of sat. regions 0 mode L-P-H Fat suppr. Special sat. Special sat. P Inline Composing

Page 11 of 12 System Physio Inline Body HE1 HE3 NE1 HE2 HE4 NE2 mode L-P-H ing mode FIX H 0 mm MSMA S - C - T Sagittal Coronal Transversal F >> H Save uncombined Coil Combine Mode Sum of Squares AutoAlign Head > Brain Coil Select Mode - AutoCoilSelect Shim mode Standard Adjust with body coil Confirm freq. adjustment Assume Dominant Fat Assume Silicone Adjustment Tolerance Auto? Ref. amplitude 1H 0.000 V Rotation 90.00 deg F >> H 129 mm Frequency 1H 123.205716 MHz Correction factor 1 01GreFCE 1H 190.743 V Gain High 0 mm Img. Scale. Cor. 1.000 Inline Composing Distortion correction

Page 12 of 12 Sequence BOLD Introduction Dimension 2D Averaging mode Long term Multi-slice mode Asymmetric echo Contrasts 2 Bandwidth 291 Hz/Px Flow comp. Yes RF pulse type Normal Gradient mode Fast RF spoiling TX/RX delta frequency 0 Hz TX Nucleus TX delta frequency 0 Hz Coil elements HE1-4 Acquisition duration Mode Distortion Corr. Contrasts 2