Hybrid cardiac imaging / Stephan G. Nekolla, Christoph Rischpler, editors.

This clinically oriented book provides an up-to-date review on the various hybrid imaging modalities that may be employed for the purpose of cardiac imaging. After discussion of generic aspects of hybrid imaging, SPECT/CT, PET/CT, and PET/MRI are each considered in depth. In addition, information is...

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Bibliographic Details
Online Access: Full Text (via Springer)
Other Authors: Nekolla, Stephan G. (Editor), Rischpler, Christoph (Editor)
Format: eBook
Language:English
Published: Cham : Springer, [2022]
Subjects:

MARC

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505 0 |a Intro -- Preface -- Contents -- Part I: Generic Aspects of Hybrid Imaging -- 1: Hybrid Imaging and Healthcare Economics -- 1.1 Hybrid Imaging in Stable CAD (SCAD): CTCA and MPI -- 1.2 Health-Economic Implications -- 1.3 Hybrid PET-MRI and Health-Economics Implications -- References -- 2: Industry Perspective on Hybrid Cardiac Imaging -- 2.1 Introduction -- 2.2 Ultra-Fast Cardiac Cameras Based on CZT Technology -- 2.3 Pinhole Imaging -- 2.4 Hybrid Imaging for Dedicated Cardiac SPECT Cameras -- References -- 3: Global and Regional Peculiarities: The IAEA Perspective -- 3.1 Introduction. 
505 8 |a 3.2 Health Expenditures -- 3.3 The Challenge of Introducing Newer Technologies -- 3.4 Diagnostic Efficacy and Cost Effectiveness -- 3.5 Economic Evidence on the Use of Nuclear Cardiology -- 3.6 The Program in Human Health of the IAEA to Support Nuclear Medicine and Hybrid Imaging -- 3.7 Human Resources Capacity Building -- 3.8 The Growth of Hybrid Imaging in Developing World -- 3.9 Assessment of the Utilization of Hybrid Imaging Worldwide -- References -- Part II: SPECT/CT -- 4: Perfusion, Calcium Scoring, and CTA -- 4.1 Coronary Dominancy and Variations. 
505 8 |a 4.2 Calcium Scoring and Assessment of Plaque and Stenosis -- 4.3 Myocardial CT Perfusion by Dynamic CTA -- 4.4 Hybrid Analysis and Image Fusion (SPECT or PET and CTA) -- 4.5 Future Direction and Visions -- References -- 5: Hybrid Imaging of the Autonomic Cardiac Nervous System -- 5.1 Introduction -- 5.2 Cardiac Sympathetic Nervous System Imaging -- 5.3 SPECT and PET Tracers -- 5.3.1 Presynaptic -- 5.3.2 Post-synaptic -- 5.4 Principles in Analysis, Quantification, and Software -- 5.5 Clinical Applications. 
505 8 |a 5.5.1 ANS and Myocardial Ischemia and Infarction and Heart Failure (CMP)/Heart Transplantation -- 5.5.2 Long QT, Brugada, ARVD Detection -- 5.5.3 Predicting Ventricular Arrhythmias and Sudden Cardiac Death with ANS Imaging -- 5.5.4 ANS and Cardiac Resynchronization -- 5.5.5 ANS and Cardiac Amyloidosis -- 5.5.6 ANS and DM -- 5.6 Conclusion and Future Perspectives -- 5.6.1 Potential Novel Tracers -- 5.6.2 Role of PET/MR -- 5.6.3 New Clinical Trial -- 5.6.4 Clinical Implementation -- 5.7 Conclusion -- References -- 6: Dyssynchrony. 
505 8 |a 6.1 Assessment of Left Ventricular Dyssynchrony by SPECT -- 6.2 Dyssynchrony as a Guide for Cardiac Resynchronization Therapy -- 6.3 Dyssynchrony as a Guide for Implantable Cardioverter Defibrillator -- 6.4 Value of Dyssynchrony in Ischemic Heart Disease -- 6.5 Technical Considerations in the Assessment of Dyssynchrony by SPECT -- References -- 7: Novel Techniques: Solid-State Detectors, Dose Reduction (SPECT/CT) -- 7.1 Introduction -- 7.2 Technology -- 7.2.1 Solid-State Detectors -- 7.3 Dedicated Cardiac Systems -- 7.3.1 Detectors -- 7.3.2 Dedicated Cardiac Collimators and Geometries. 
520 |a This clinically oriented book provides an up-to-date review on the various hybrid imaging modalities that may be employed for the purpose of cardiac imaging. After discussion of generic aspects of hybrid imaging, SPECT/CT, PET/CT, and PET/MRI are each considered in depth. In addition, information is provided on upcoming technologies, such as dedicated so-called fast cardiac cameras (CZT detector technology) and novel probes and radiotracers. A wide variety of topics are addressed, including important technological aspects, possible applications, imaging protocols, peculiarities of the available modalities, radiation exposure, and dose reduction. Last but not least, an estimation of the cost efficiency of dedicated and hybrid imaging devices in cardiology is provided and possible scenarios with respect to health care economics are envisioned. Hybrid Cardiac Imaging will be of particular value for nuclear medicine specialists, cardiologists, and radiologists and will also be of interest to medical physicists, medical technicians, and cardiothoracic surgeons. 
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