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磁性超材料用于MRI应用

Acknowledgements第7-17页
Abstract第17-20页
摘要第21-24页
Chapter第24-41页
    1.1. Aims & aspiration of research第25页
    1.2. Maxwell wave equations第25-26页
    1.3. Helmholtz's equation for 3-D periodic magnetic structures第26-28页
    1.4. Classes of magnetic materials第28-29页
        1.4.1. Paramagnetic materials第28页
        1.4.2. Diamagnetic materials第28-29页
        1.4.3. Ferromagnetic materials第29页
    1.5. Boundary conditions & nonlinear phenomena第29-31页
    1.6. Source configuration for B-field calculations第31-32页
    1.7. Geometrical Study of EM wave (phase and magnitude) at -μ structure's interfaces第32-33页
    1.8. -μ parameters retrieval methodology第33-34页
    1.9. -μ analysis for magnetic microstructures第34-36页
    1.10. Analysis based on transmission matrix第36-38页
    References第38-41页
Chapter第41-65页
    2.1. Outline第42页
    2.2. Physical & numerical boundary conditions第42-43页
    2.3. Matrix derivative operators for grids第43-45页
        2.3.1 Graphical representation of finite difference approximations第43-44页
        2.3.2 Neumann boundary conditions第44-45页
    2.4. Polarization第45-48页
        2.4.1 Linear Polarization第45-46页
        2.4.2 Circular Polarization第46-47页
        2.4.3 Importance of Polarization第47页
        2.4.4 TE & TM Polarization第47-48页
    2.5. Scattering at an interface第48-50页
        2.5.1 Critical angle (total reflection)第49页
        2.5.2 Brewster's angle (total transmission)第49-50页
    2.6. Scattering from multiple interfaces第50-51页
    2.7. Impedance transformation technique第51-52页
    2.8. Resonance at low and very high frequency第52-53页
    2.9. Lorentz model for dielectrics第53-57页
        2.9.1 Real and imaginary parts of(ε)第55-56页
        2.9.2 Complex refractive index (n)第56页
        2.9.3 Absorption & attenuation coefficients第56-57页
    2.10. TART第57-58页
    2.11. Drude Model for metals第58-60页
        2.11.1 Skin depth第60页
    2.12. Coupled mode theory第60-63页
        2.12.1 Perturbation analysis第61-62页
        2.12.2 Mode coupling coefficient (K_(pq))第62页
        2.12.3 Butt coupling coefficient (C_(pq))第62-63页
    References第63-65页
Chapter第65-87页
    3.1 Aspiration of metamaterials第66页
    3.2 Left handed(LH) materials第66-72页
        3.2.1 Conditions in dispersive media第67-72页
    3.3 Metamaterials for MRI第72-83页
        3.3.1 μr=-1 metamaterial lens for MRI第72-74页
        3.3.2 Discrete structure metamaterial for MRI第74-77页
        3.3.3 Edge & broadside coupled SRRs第77-78页
        3.3.4 BC-SRRs designs for MRI第78-81页
        3.3.5 Non linear and wire medium SRRs designs for MRI第81-82页
        3.3.6 Metasurface, hybridized volume based resonators for MRI第82-83页
    References第83-87页
Chapter第87-100页
    4.1. Introduction第88-89页
    4.2. MR coil Configuration for B-field calculation第89-90页
        4.2.1. Geometrical Study of EM wave (phase and magnitude) at -μ lens interfaces第89-90页
    4.3. Parameters retrieval method for -μ metamaterial第90-93页
        4.3.1. -μ lens Design Configuration and circuit model analysis第90-92页
        4.3.2. Relative permeability, μr plot analysis of -μ MM lens第92-93页
    4.4. Experimental Test bed Setup Analysis For Magnetic Field And SNR第93-96页
    4.5. Conclusion第96-97页
    References第97-100页
Chapter第100-114页
    5.1. Introduction第101-102页
    5.2. MR coil Configuration for B-field calculation第102-103页
        5.2.1. Geometrical Study of EM wave phase reversal第102-103页
    5.3. Parameters retrieval method for -μ metamaterial第103-107页
        5.3.1. BC-SRR Design Configuration and circuit model analysis第103-106页
        5.3.2. Relative permeability, μr plot analysis第106-107页
    5.4. Magnetic field (B) and SNR (signal-to noise ratio) analysis第107-110页
    5.5. Conclusion第110页
    References第110-114页
Chapter第114-128页
    6.1. Introduction第115-116页
    6.2. Geometrical study of B_0 at MR coil and B_1 at ROI due to 0 μ magnetic polarizer第116-117页
    6.3. Relative permeability {μr} parameters retrieval method and plot analysis第117-118页
    6.4. Design configuration and circuit model calculations第118-120页
    6.5. B-Field and SNR comparison; Experimental Test bed Setup Analysis第120-124页
    6.6. Conclusion第124-125页
    References第125-128页
Chapter第128-143页
    7.1. Introduction第129-130页
    7.2. B-field for MR coil and -μ material hybridized trapped modes第130-131页
    7.3. -μ parameters retrieval methodology for HMMH第131-135页
        7.3.1. Design configuration and circuit model analysis第132-135页
    7.4. Experimental test bed setup analysis for B-Field and SNR第135-139页
    7.5. Conclusion第139-140页
    References第140-143页
Chapter第143-165页
    8.1. Introduction第144-145页
    8.2. Geometrical study of B_0 at MR coil and B_1 at -μ material hybridized magnetic hat第145-147页
    8.3. THMMH/un-tunable HMMH configuration & circuit model第147-155页
        8.3.1 -μ parameters retrieval methodology, THMMH/un-tunable HMMH -μ plot comparison第153-155页
    8.4. H-field comparison forTHMMH/un-tunable HMMH第155-159页
        8.4.1 B-Field and SNR comparison for THMMH & un-tunable HMMH;Experimental test bed setup analysis第155-159页
    8.5. Tunability/switchability in THMMH & transfer function plot analysis第159-161页
    8.6. Conclusion第161页
    References第161-165页
Chapter第165-168页
Our designed metamaterials for MRI scanners are defined in below mentioned projects第168-169页
List of publications第169页

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