MRI. Chapter 1. Larmor equation. Net magnetization. Rotating frame of reference 1/31/2017. ω0 (rad/s) = γ (rad/s/tesla) x B0 (Tesla)

Similar documents
Computer Graphic with Matrices Math 308A Project

Signal detection, Fouriertransformation, phase correction and quadrature detection

Sensing, Computing, Actuating

10. The Series Resistor and Inductor Circuit

VS203B Lecture Notes Spring, Topic: Diffraction

A1 K. 12V rms. 230V rms. 2 Full Wave Rectifier. Fig. 2.1: FWR with Transformer. Fig. 2.2: Transformer. Aim: To Design and setup a full wave rectifier.

EECE 301 Signals & Systems Prof. Mark Fowler

Power losses in pulsed voltage source inverters/rectifiers with sinusoidal currents

March 13, 2009 CHAPTER 3: PARTIAL DERIVATIVES AND DIFFERENTIATION

Variation Aware Cross-Talk Aggressor Alignment by Mixed Integer Linear Programming

ICAN meeting, Palaiseau, 11/10/2012 Some temporal aspects of Passive cavity-dumped enhancement for ICAN

Signal Characteristics

Calculation on the Inter-Lobe Clearance Distribution of Twin-Screw Compressor by Optimization Method

Lecture 4. EITN Chapter 12, 13 Modulation and diversity. Antenna noise is usually given as a noise temperature!

4.5 Biasing in BJT Amplifier Circuits

Free and Forced Vibrations of Two Degree of Systems

An off-line multiprocessor real-time scheduling algorithm to reduce static energy consumption

Parametrizations of curves on a plane (Sect. 11.1)

Review Exercises for Chapter 10

Lecture #7: Discrete-time Signals and Sampling

OpenStax-CNX module: m Elemental Signals. Don Johnson. Perhaps the most common real-valued signal is the sinusoid.

Grade 8 Math: Final Exam Review Unit 6: Linear Equations and Graphing

Experiment 6: Transmission Line Pulse Response

ANALOG AND DIGITAL SIGNAL PROCESSING LABORATORY EXPERIMENTS : CHAPTER 3

AM Demodulation (peak detect.)

Noise Reduction/Mode Isolation with Adaptive Down Conversion (ADC)

READING ASSIGNMENTS LECTURE OBJECTIVES. Problem Solving Skills. x(t) = cos(αt 2 ) ELEG-212 Signal Processing and Communications

6.003: Signals and Systems

Errata and Updates for ASM Exam MLC (Fourteenth Edition) Sorted by Page

Negative frequency communication

Question 1 TELE4353. Average Delay Spread. RMS Delay Spread = = Channel response (2) Channel response (1)

MEASUREMENTS OF VARYING VOLTAGES

2nd Annual International Conference on Advanced Material Engineering (AME 2016)

School of Electrical and Computer Engineering, Cornell University. ECE 303: Electromagnetic Fields and Waves. Fall 2007

Generalized Head Light Effect in 2D Dimensional Rotated frames using Euler rotation matrix. Asad Ali.

Discussion #7 Example Problem This problem illustrates how Fourier series are helpful tools for analyzing electronic circuits. Often in electronic

Bending Geometry Factor For Profile Corrected Involute Gear Tooth With Trochoidal Fillet

Microwave Transistor Oscillator Design

The University of Melbourne Department of Mathematics and Statistics School Mathematics Competition, 2013 JUNIOR DIVISION Time allowed: Two hours

Extra Practice 1. Name Date. Lesson 6.1: Solving Equations Using Models

Pointwise Image Operations

Notes on the Fourier Transform

12.7 One of the most prominent spectral lines of hydrogen is the line, a bright red line with a wavelength of 656.1

Communication Systems. Communication Systems

EE 330 Lecture 24. Amplification with Transistor Circuits Small Signal Modelling

Deblurring Images via Partial Differential Equations

MODEL: M6SXF1. POWER INPUT DC Power R: 24 V DC

Lecture 5: DC-DC Conversion

Extra Practice 1. Name Date. Lesson 6.1: Solving Equations Using Models

Phase-Shifting Control of Double Pulse in Harmonic Elimination Wei Peng1, a*, Junhong Zhang1, Jianxin gao1, b, Guangyi Li1, c

2.6 Special Angles on Parallel Lines Objectives: I CAN define angle pairs made by parallel lines. I CAN solve problems involving parallel lines.

Solution of ECE 342 Test 2 S12

Graphs fundamental to many problems. Web graphs. Biology. Other.

EE 40 Final Project Basic Circuit

Connection. Input II EEx ia IIC without SC red. Composition

ECE 391: Suggested Homework Problems

7 th International Conference on DEVELOPMENT AND APPLICATION SYSTEMS S u c e a v a, R o m a n i a, M a y 27 29,

EECE 301 Signals & Systems Prof. Mark Fowler

ELEG 3124 SYSTEMS AND SIGNALS Ch. 1 Continuous-Time Signals

Communication Systems. Department of Electronics and Electrical Engineering

How to Shorten First Order Unit Testing Time. Piotr Mróz 1

ECE-517 Reinforcement Learning in Artificial Intelligence

Test 1 Review. Test 1 Review. Communication Systems: Foundational Theories. Communication System. Reference: Sections and

The student will create simulations of vertical components of circular and harmonic motion on GX.

ECE3204 Microelectronics II Bitar / McNeill. ECE 3204 / Term D-2017 Problem Set 7

Sound so far: 10/13/2013. Sound and stringed instruments

VS203B Lecture Notes Spring, Topic: Thin Film Interference

5 Spatial Relations on Lines

University oftokyo. LSI esign & ducation enter

16.5 ADDITIONAL EXAMPLES

EXPERIMENT #4 AM MODULATOR AND POWER AMPLIFIER

Optical Short Pulse Generation and Measurement Based on Fiber Polarization Effects

Announcement. Allowed

ENDA ETM442 DIGITAL TIMER

UNIT IV DIGITAL MODULATION SCHEME

Position Control of Robotino Mobile Robot Using Fuzzy Logic

Design of compact joint transform correlator

THE UNIVERSITY OF NEW SOUTH WALES. School of Electrical Engineering & Telecommunications

Principles of Communications

weight: amplitude of sine curve

Simulation Series Termination

The Cavity Beam Position Monitor (BPM) Massimo Dal Forno

13.1 Analog/Digital Lowpass Butterworth Filter

TELE4652 Mobile and Satellite Communications

Trigonometry: Angles between 0 and 360

Competition between the Internet and Conventional Retailer: A Strategic Analysis of the Effect of Online Channel Efficiency

f t 2cos 2 Modulator Figure 21: DSB-SC modulation.

Chapter 2: Fourier Representation of Signals and Systems

Example Message bandwidth and the transmitted signal bandwidth

Related-Cipher Attacks

MODEL: M6NXF1. POWER INPUT DC Power R: 24 V DC

THE OSCILLOSCOPE AND NOISE. Objectives:

Lines and Angles Notes Geometry Unit 3: Lesson 1. Parallel lines. Skew lines. Parallel planes. Transversal. Alternate Interior Angles t

A Bidirectional Three-Phase Push-Pull Converter With Dual Asymmetrical PWM Method

Solid-state Multi-functional Timer

Photonic time-stretching of 102 GHz millimeter waves using 1.55 µm nonlinear optic polymer EO modulators

ESD. What is ESD? Lightning to the buildings. ESD to IC s. ESD protection circuit for IC s. Lightning Rod for Buildings

About this lecture. Representation of Graph Adjacency List, Adjacency Matrix. Breadth First Search

NCTM Content Standard/National Science Education Standard:

Chapter 1: Introduction

Transcription:

37 RI Chape FYS-KJ 474 loch equaions an main pinciples FYS-KJ 474 he loch equaion Lamo equaion ωl ωl ωl ω as = γ asesla esla ωl γhogen =.68 *8 asesla π Figue Eo! No e of specifie sle in ocumen.-. he magneic momen oaes aoun Joseph Lamo he magneic momen oaes aoun he saic -fiel a he Lamo fequenc fl H = γ Hesla esla γhogen = 4.58 Hesla FYS-KJ 474 3 Roaing fame of efeence ω FYS-KJ 474 Aleøneu 4 Ne magneiaion ` o ` Laboao fame FYS-KJ 474 ` Roaing fame Hanson: Inoucion o agneic Resonance Imaging echniques 5 FYS-KJ 474 6

37 Flipping awa he agneiaion fom is equilibium In RI, sho RF pulses aiowaves ae use o o change he iecion of he magneiaion RF eciaion o ge o oae aoun o ais, A lineal polaie magneic fiel is use uing sho ime pulse o ge o oae aoun ais ` ` hp:www.cm.kr#ri_eplaine FYS-KJE 474 7 FYS-KJ 474 8 he RF-coil geneaes a magneic fiel along he -ais FYS-KJE 474 9 Roaion he magneic fiel ue o he RF pulse,, is geneae b wo ciculal polaie fiels wih opposing iecion of oaion wih angula fequenc +- loch equaion cos cos cos sin sin cos - he oaing fame,, -cooinaes ime - + eff FYS-KJ 474 eff= + + γ

37 RF-eksiason me Lamo fekvens oaing fame = γ eff Using ai fomalism : α ω eff = Asin cos Using he bouna coniions = an = a =, we ge cos sin R sin cos FYS-KJE 474 3 FYS-KJ 474 4 RF pulse RF pulse uaion is popoional o he wane flip angle, a. ω Roason = a α Oppgave.: eegn -feles ske ve en.5ms, 45 RF puls. FYS-KJ 474 5 Relaaion Relaaion * 7 FYS-KJE 474 Fééic Couivau PhD 8 3

37 4 R eff R Relaaion FYS-KJ 474 9 ep ep ep Coniion: elaaion uing RF eciaion is neglece FYS-KJ 474 R R eff Summa wih eciaion an elaaion FYS-KJ 474 -weighe poon -weighe -weighe Chap. Slice-Selecive RF eciaion Image fomaion FYS-KJ 474 3 Slice Selecive RF pulse 4

37 aiens coing in space Z sample volume agneic Fiel aiens voel δ, = δ, = Y δ, = X Use of fiel gaien pulses in he 3 iecions 5 FYS-KJ 474 6 agnefel gaien Pinciples of Slice Selecion aien-ske mm Signingsi ms aien ske Slew ae mmms = Signingsi 7 RF pulse geneaion Effec of agneic Fiel aien Eample: use of fiel gaien FAVOURALE SIUAION ω g Z q m Spaial infomaion inclue in he pecession fequenc pecession fequenc : ω applie fo a ceain uaion ms Applie fiel gaien g pulse fequenc pofile HZ 9 3 5

37 6 eff If we se: =γ +, hen he effecive fiel a = becomes: eff Wha woul happen if + γ >>?? Slice-selecive eciaion @ = Slice selecive RF eciaion 3 =ω L ; eff = All effecs ogehe: eciaion, pecession an elaaion FYS-KJ 474 3 Pecession aoun -ais Eciaion aoun -ais ansvese elaaion Longiuinal elaaion All effecs ogehe: eciaion, pecession an elaaion FYS-KJ 474 33 ansvese magneiaion,, Relaaion an pecession = + ep ep = eive! Longiuinal magneiaion, ep ep eive! As we have seen befoe FYS-KJ 474 34 ansvese agneiaion,, Eciaion an Pecession = + = Coniion: How can his be achieve? A ep eneal Soluion: FYS-KJ 474 35 ansvesal magneiseing,, eksiason og peseson Desom vi sie a RF puls sae ve og vae i sek: = ep, - FYS-KJ 474 36

37 Fo a consan gaien along he -ais: = Fo a consan gaien along he -ais: =, ep ep -, ep ep Slice pofile = Fouie ansfom of he phase iecion of in he -- plane is a funcion of Phase ispeion Fouie ansfom of he envelope geen shape FYS-KJ 474 37 FYS-KJ 474 38 Eliminaion of he phase ispesion in - plane use of an ea gaien of opposie polai an half he lengh: - - his gives k, k k ep k k ep k=γ an k =γ. FYS-KJ 474 39 We wish o have a block eciaion: = sinα beween og an = elsewhee sin ep Fin he pofile fom he Fouie inegal: Develop a home! FYS-KJ 474 4 RF pulse geneaion Slice selecive RF eciaion - pulse fequenc pofile HZ applie fo a ceain uaion ms FYS-KJ 474 4 FYS-KJ 474 4 7

37 in pacice an uncaion - uaion can no be oo long he shape is uncae as a compomise beween uaion an achieve RF pulse a he cos of he slice pofile aien can no be pefecl ecangula Hawae limiaions Slew ae = aien sengh ime o each he sengh Slew ae mmms 43 44 Summa selecing lobe ephasing lobe Slice pofile & coss-alk selece slice selecing lobe ephasing lobe ime 45 46 Eecise hp:www.cm.klochsimulao We wan a slice eciaion wih a given slice hickness of 3mm an a gaien sengh of mm. We Assume he use of a sinc pulse shape fo. Fin he half-wih uaion of he envelope shape Now, having his envelope, fin he inensi of m o ge a 9 egee RF pulse. FYS-KJ 474 47 FYS-KJ 474 48 8