MRI from picture to proton:
MR is a powerful modality. At its most advanced, it can be used not just to image anatomy and pathology, but to investigate organ function, to probe in vivo chemistry, and even to visualise the brain thinking. However, clinicians, technologists and scientists struggle with the study of the subject....
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Main Authors: | , , |
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Format: | Electronic eBook |
Language: | English |
Published: |
Cambridge
Cambridge University Press
2017
|
Edition: | Third edition |
Series: | Cambridge medicine (Series)
|
Subjects: | |
Online Access: | BSB01 FHN01 TUM01 UER01 Volltext Inhaltsverzeichnis |
Summary: | MR is a powerful modality. At its most advanced, it can be used not just to image anatomy and pathology, but to investigate organ function, to probe in vivo chemistry, and even to visualise the brain thinking. However, clinicians, technologists and scientists struggle with the study of the subject. The result is sometimes an obscurity of understanding, or a dilution of scientific truth, resulting in misconceptions. This is why MRI from Picture to Proton has achieved its reputation for practical clarity. MR is introduced as a tool, with coverage starting from the images, equipment and scanning protocols and traced back towards the underlying physics theory. With new content on quantitative MRI, MR safety, multi-band excitation, Dixon imaging, MR elastography and advanced pulse sequences, and with additional supportive materials available on the book's website, this new edition is completely revised and updated to reflect the best use of modern MR technology |
Physical Description: | 1 Online-Ressource Illustrationen, Diagramme |
ISBN: | 9781107706958 |
DOI: | 10.1017/9781107706958 |
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adam_text | Titel: MRI from picture to proton
Autor: McRobbie, Donald W
Jahr: 2017
Contents
Glossary x
1 MR: What s the Attraction? 1
1.1 It s not Rocket Science, but I Like It 1
1.2 A Brief History of Medical Imaging 1
1.3 How to Use this Book 5
Part I The Basic Stuff
2 Early Daze: Your First Week in MR 11
2.1 Introduction 11
2.2 Welcome to the MR Unit 11
2.3 Safety First 14
2.4 Safety Second: Additional Practical
Guidelines 17
2.5 The Patient s Journey 21
2.6 MRI Radiographer s Blog ... A Few
Years On 23
3 Seeing is Believing: Introduction to Image
Contrast 26
3.1 Introduction 26
3.2 Introduction to the T-Words 27
3.3 T2-Weighted Images 27
3.4 FLAIR Images 28
3.5 Tt-Weighted Images 28
3.6 T-|W Images Post-Gd 29
3.7 STIR Images 30
3.8 PD-Weighted Images 32
3.9 Gradient-Echo Images 35
3.10 More About Contrast Agents 37
3.11 Angiographic Images 38
3.12 Diffusion-Weighted Images 39
4 Lost in the Pulse Sequence Jungle? 41
4.1 Introduction 41
4.2 Anatomy of a Pulse Sequence 41
4.3 Take Me for a Spin (Echo) 43
4.4 The Other Branch of the Tree:
Gradient Echo 49
4.5 Echo Planar Imaging 54
4.6 The Pulse Sequence Traveller 54
5 The Devil s in the Detail: Pixels, Matrices and
Slices 55
5.1 Introduction 55
5.2 From Analogue Signal to
Digital Image 55
5.3 Matrices, Pixels and an Introduction to
Resolution 58
5.4 Slices and Orientations 61
5.5 Displaying Images 61
5.6 What do the Pixels Represent? 63
5.7 From 2D to 3D 64
6 What You Set is What You Get: Basic Image
Optimization 67
6.1 Introduction 67
6.2 Looking on the Bright Side: What are we
Trying to Optimize? 67
6.3 Trading Places: Resolution, SNR and
Scan Time 72
6.4 Ever the Optimist: Practical Steps to
Optimization 76
7 Improving Your Image: How to Avoid
Artefacts 81
7.1 Introduction 81
7.2 Keep Still Please! Motion Artefacts 81
7.3 Lose the Fat! 88
7.4 Digital Imaging Artefacts 92
7.5 Susceptibility and Metal Artefacts 96
7.6 Equipment Artefacts 98
7.7 What s Causing this Artefact? 101
8 Spaced Out: Spatial Encoding 102
8.1 Introduction 102
8.2 Anatomy of a Pulse Sequence 102
8.3 From Larmor to Fourier via
Gradients 103
8.4 Something to get Excited About:
The Image Slice 106
8.5 In-Plane Localization 110
8.6 Consequences of Fourier Imaging 117
vN
Contents
8.7 Speeding It Up 120
8.8 3D FT 121
9 Getting in Tune: Resonance and
Relaxation 124
9.1 Introduction 124
9.2 Spinning Nuclei 124
9.3 Measuring the Magnetic Moment 127
9.4 Relaxation Times 129
9.5 Creating Echoes 132
9.6 Relaxation Time Mechanisms 135
9.7 Gadolinium-based Contrast Agents 141
10 Let s Talk Technical: MR Equipment 144
10.1 Introduction 144
10.2 Magnets 144
10.3 Gradient Subsystem 149
10.4 Radiofrequency Transmit
Subsystem 154
10.5 RF Receiver Subsystem 158
10.6 Computer Systems 162
10.7 Siting and Installation 163
10.8 Other Types of MRI Systems 164
11 Ghosts in the Machine: Quality Control 166
11.1 Introduction 166
11.2 The Quality Cycle 166
11.3 Signal Parameters 169
11.4 Geometric Parameters 173
11.5 Relaxation Parameters 177
11.6 Artefacts 178
11.7 Spectroscopic QA 179
11.8 Temporal Stability 179
11.9 Other Specialist QA 181
Part II The Specialist Stuff
12 Acronyms Anonymous I: Spin Echo 185
12.1 Introduction 185
12.2 Conventional Spin Echo 185
12.3 RARING to Go: Fast Spin-Echo
Techniques 186
12.4 The Extended Family of TSE 191
12.5 Combining Gradient and Spin
Echoes 200
13 Acronyms Anonymous II: Gradient Echo 207
13.1 Introduction 207
13.2 Image Formation in Gradient Echo 207
13.3 One Tree, Many Branches: FIDs, Echoes
and Coherences 207
13.4 Ultra-Fast GE Imaging 218
14 The Parallel Universe: Parallel Imaging and
Novel Acquisition Techniques 225
14.1 Introduction 225
14.2 Groundwork 225
14.3 Making SENSE: Parallel Imaging in
Image Space 227
14.4 SMASH Hits: Parallel Imaging in
k-Space 230
14.5 Undersampling by Simultaneous
Multi-Slice Excitation 236
14.6 Image Quality in Parallel Imaging 237
14.7 k-t BLAST 240
14.8 Non-Cartesian Acquisition
Schemes 242
14.9 Compressed Sensing 248
15 Go with the Flow: MR Angiography 251
15.1 Introduction 251
15.2 Effect of Flow in Conventional
Imaging 251
15.3 Non-Contrast MR Angiography 255
15.4 Contrast-Enhanced MRA 263
15.5 Susceptibility-Weighted Imaging 267
16 A Heart to Heart Discussion: Cardiac MRI 269
16.1 Introduction 269
16.2 Patient Set-up 269
16.3 Morphological Imaging 272
16.4 Functional Imaging 273
16.5 Myocardial Perfusion 282
16.6 Myocardial Viability 284
16.7 Myocardial Tissue Characterization 286
16.8 Coronary Artery Imaging 286
17 It s Not Just Squiggles: In Vivo
Spectroscopy 288
17.1 Introduction 288
17.2 Some Basic Chemistry 288
17.3 Single-Voxel Spectroscopy 291
17.4 Processing of Single-Voxel Spectra 295
17.5 Chemical Shift Imaging 297
18 To BOLDly Go: fMRI, Perfusion and
Diffusion 303
18.1 Introduction 303
18.2 Diffusion Imaging 303
Contents
18.3 Perfusion Imaging 311
18.4 Dynamic Contrast Enhancement:
Permeability Imaging 316
18.5 Brain Activation Mapping Using the
BOLD Effect 319
19 Making it Count: Quantitative MRI 326
19.1 Introduction 326
19.2 Relaxation Times 326
19.3 Diffusion Parameters 334
19.4 Tissue Perfusion and Permeability 335
19.5 Fat Quantification 335
19.6 MR Elastography 338
19.7 Accuracy, Precision, and Diagnostic
Confidence 341
20.3 Gradient Effects 347
20.4 Static Field Effects 351
20.5 MR Exposures and Pregnancy 352
20.6 Occupational Exposure 352
20.7 Contrast Agent Safety 354
20.8 So is MRI Safe? 356
21 Where Are We Going Now? 358
21.1 Introduction 358
21.2 7 Tesla Systems 358
21.3 Hyperpolarization 360
21.4 MR-PET 362
21.5 MR-LINAC 363
20 But is it Safe? Bio-effects 345
20.1 Introduction 345
20.2 Radiofrequency Effects 345
Appendix: maths revision 365
Index 369
|
any_adam_object | 1 |
author | McRobbie, Donald W. 1958- Moore, Elizabeth 1951- Graves, Martin |
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doi_str_mv | 10.1017/9781107706958 |
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spelling | McRobbie, Donald W. 1958- Verfasser (DE-588)135649633 aut MRI from picture to proton Donald McRobbie, Elizabeth A. Moore, Martin J. Graves Third edition Cambridge Cambridge University Press 2017 1 Online-Ressource Illustrationen, Diagramme txt rdacontent c rdamedia cr rdacarrier Cambridge medicine (Series) MR is a powerful modality. At its most advanced, it can be used not just to image anatomy and pathology, but to investigate organ function, to probe in vivo chemistry, and even to visualise the brain thinking. However, clinicians, technologists and scientists struggle with the study of the subject. The result is sometimes an obscurity of understanding, or a dilution of scientific truth, resulting in misconceptions. This is why MRI from Picture to Proton has achieved its reputation for practical clarity. MR is introduced as a tool, with coverage starting from the images, equipment and scanning protocols and traced back towards the underlying physics theory. With new content on quantitative MRI, MR safety, multi-band excitation, Dixon imaging, MR elastography and advanced pulse sequences, and with additional supportive materials available on the book's website, this new edition is completely revised and updated to reflect the best use of modern MR technology Magnetic resonance imaging Kernspintomografie (DE-588)4120806-7 gnd rswk-swf 1\p (DE-588)4123623-3 Lehrbuch gnd-content Kernspintomografie (DE-588)4120806-7 s 2\p DE-604 Moore, Elizabeth 1951- Verfasser (DE-588)141299126 aut Graves, Martin Verfasser (DE-588)1121618626 aut Erscheint auch als Druck-Ausgabe, Paperback 978-1-107-64323-9 https://doi.org/10.1017/9781107706958 Verlag URL des Erstveröffentlichers Volltext HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=029769704&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | McRobbie, Donald W. 1958- Moore, Elizabeth 1951- Graves, Martin MRI from picture to proton Magnetic resonance imaging Kernspintomografie (DE-588)4120806-7 gnd |
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title | MRI from picture to proton |
title_auth | MRI from picture to proton |
title_exact_search | MRI from picture to proton |
title_full | MRI from picture to proton Donald McRobbie, Elizabeth A. Moore, Martin J. Graves |
title_fullStr | MRI from picture to proton Donald McRobbie, Elizabeth A. Moore, Martin J. Graves |
title_full_unstemmed | MRI from picture to proton Donald McRobbie, Elizabeth A. Moore, Martin J. Graves |
title_short | MRI from picture to proton |
title_sort | mri from picture to proton |
topic | Magnetic resonance imaging Kernspintomografie (DE-588)4120806-7 gnd |
topic_facet | Magnetic resonance imaging Kernspintomografie Lehrbuch |
url | https://doi.org/10.1017/9781107706958 http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=029769704&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT mcrobbiedonaldw mrifrompicturetoproton AT mooreelizabeth mrifrompicturetoproton AT gravesmartin mrifrompicturetoproton |