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Magnetic Resonance : The Basics

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WM / MRM 2 / 01.02.98. Basics_e.ppt / 4. Resonance Principle : Precession Frequency = Gyromagnetic Ratio (depends on nuclei, e.g. protons: 42 MHz/T) ... – PowerPoint PPT presentation

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Title: Magnetic Resonance : The Basics


1
Magnetic Resonance TheBasics
2
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3
MR is very simple
U
N
S
4
Resonance Principle
Some nuclei are magnetic Hydrogen H -
1 Carbon C - 13 Fluorine F - 19 Phosphorus P -
31
B
?
Precession Frequency ?????????B
? Gyromagnetic Ratio (depends on nuclei,
e.g. protons 42 MHz/T) B Magnetic Field
Strength
5
Patient Magnet
Without magnetic field
With magnetic field
No net magnetization
Low net magnetization
6
Patient Magnet Radio Frequency
Excitation
Signal
Resonance ? Energy transfer
Signal induction in coil
7
Transverse Relaxation Time T2
Transverse Relaxation Decay of magnetization
by interaction between nuclei
(Spin-Spin-Relaxation)
8
Longitudinal Relaxation Time T1
Longitudinale Relaxation Energy transfer
between excited spins and Tissue
(Spin-Lattice-Relaxation) ?? Reestablishing of
longitudinal magnetization with time constant T1
9
Relaxation Times are Tissue Specific
Mz
S
Tissue 1
Tissue 1
Tissue 2
Tissue 2
Short TE Medium TE Long TE
TR
Transverse Relaxation
Longitudinal Relaxation
10
Spin Echo
Inhomogeneities of the magnetic field shorten
relaxation process T2 ? T2
T2
T2
Transverse relaxation T2 is too fast to receive
spatially encoded signals ??Echo of signal by
180o pulse
11
Spin Echo Pulse Sequence
TR
RF Pulse
Echo
FID
MR Signal
Slice Selection Gradient
Phase Encoding Gradient
Readout Gradient
12
Slice Selection
B B0 Gz z
?
B
Slice Excitation at ?????0
B0
Weaker Field ?????0
Stronger Field ?????0
higher field, ?????0
lower field, ?????0
z
-z
z
0
13
Spatial Resolution within the Slice
Raw Data
p256f1
p256f256
p2f1
p1f1
p1f2
p1f256
(Phase und Frequency Encoding)
14
Raw Data Matrix (k-Space)
ky
1 ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ?2 ? ? ? ? ? ? ?
? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ?
? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ?
? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ?
? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ?
? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ?
? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ?
? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ?
? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ?
? ? ? ? ? ? ? N ? ? ? ? ? ? ? ? ? ? ? ? ? ? ?
Raw data matrix or k-space is filled line by line
by variation of the Phase Encoding Gradient
kx
Line Information Frequencies of the Readout
Gradient
15
Fourier Transformation
y
Phase
x
Frequency
16
Scan Time of Spin Echo Sequence
Tac TR ? NPh ? AC
TR Repetition Time NPh Number of Phase
Encoding Steps Matrix Size AC Number of
Acquisitions (to improve S/N)
17
Spin Echo Contrasts
TR
2500 2000 1500 1000 500
PD
T2
T1
30
90
TE
18
Spin Echo Contrasts
Left Cervical spine, sagittal, T1 weighted
Right Lumbar spine, sagittal, T2 weighted
19
Further Sequence Developments
Scan Time Reduction ? Gradient Echo
Sequences Hybrid Sequences Contrast
Variations ? Gradient Echo Sequences Improved
Spatial ? 3D Gradient Echo Sequences
Resolution
20
Scan Time Reduction
Tac TR ? NPh ? AC
Minimum 0.5 (Half Fourier)
More Lines per TR Turbo Spin Echo Hybrid
Sequences (Multi Shot Sequences) Single Shot
Sequences
Gradient Echo FLASH FISP PSIF DESS CISS
21
Turbo Spin Echo Sequences
RF Pulse
MR Signal
Slice Selection Gradient
Phase Encoding Gradient
Readout Gradient
22
Turbo Spin Echo Sequences
Head, axial TR 4500 ms, TEeff 96 ms 7 Echoes,
TA 812 min
Abdomen, coronal HASTE, TEeff 74 ms 128 Echoes,
TA 1 sec
23
Gradient Echo Sequences
Spin Echo Sequence Diagram
Gradient Echo Sequence Diagram
TR
TE
Echo
Lower flip angle (lt 90o) Echo by gradient pulse
instead of 180o pulse
24
Gradient Echo Sequences
Knee sagittal, 2D FLASH, 5122, TA 712 min
MR Myelography, 3D FISP, 1.5 mm, TA 641 min
25
3D Sequences
2D
3D
No Slice Gaps Thinner Slices Rectangular Slice
Profiles Postprocessing with MPR
26
3D Postprocessing
Multiplanar Reconstructions (MPR) Sagittal Data
Set, 51 Partitions, Slice Thickness 1.5 mm, TR
27 ms, TE 9 ms, TA 544 min Orthogonal
reconstructions Oblique and double oblique
recons Curved reconstructions
27
Further Sequence Developments
Gradient Echo Percentage /
Echoes
28
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