【レポートの概要(一部)】
Executive Summary
E.1 Opportunities in Radiation Detection Equipment
E.1.1 Opportunities in Medical Radiology Devices
E.1.2 Opportunities in Nuclear Medical Devices
E.1.3 Opportunities in Homeland Security and Military Applications
E.1.4 Opportunities in Industrial and Occupational Safety (Including Nuclear Energy)
E.1.5 Opportunities in Custom Detectors
E.2 Opportunities at the Intersection of Materials and Detectors
E.2.1 Challenges for Inorganic Scintillation Materials
E.2.2 Challenges for Semiconductors
E.2.3 Challenges for Other Emerging Materials
E.3 Companies to Watch
E.4 Summary of NanoMarkets’ Eight-Year Forecasts for Radiation Detection Equipment
Chapter One: Introduction
1.1 Background to This Report
1.1.1 Radiation Equipment Market Characterized by Diversity
1.1.2 Current Market Drivers for Radiation Detection Equipment
1.1.3 Detection Choice and Market Segmentation
1.1.4 New Opportunities and New Companies
1.2 Objectives and Scope of This Report
1.3 Methodology
1.3.1 Data Sources
1.3.2 Forecasting Methodology
1.4 Plan of This Report
Chapter Two: Medical Applications Part I: Medical X-Ray Detectors
2.1 Radiography: Film to Digital
2.1.1 Computed Radiography
2.1.2 Digital Radiography
2.1.3 Drivers in Digital Radiography
2.1.4 Is DR Growing or Shrinking?
2.2 Densitometry
2.2.1 Bone Density Technology
2.2.2 Market and Trends
2.3 Computed Tomography
2.3.1 Slices of Life
2.3.2 Radiation Detectors for CT
2.3.3 The Money in CT
2.3.4 Radiation Dose Drivers in CT
2.3.5 Regulation, the Slice Wars, and the State of the Art
2.3.6 The Rise of Volumetric CT
2.3.7 Opportunities in Volumetric CT
2.4 Key Points from this Chapter
Chapter Three: Medical Applications Part II: Medical Detectors for Gamma Radiation
3.1 Nuclear Medicine
3.1.1 Techniques in Nuclear Medicine
3.1.2 Segmentation in Nuclear Medicine
3.1.3 Population Drivers
3.1.4 Health and Safety Drivers
3.1.5 Receding Medicare Reimbursements
3.1.6 Emerging Technology Drivers in Nuclear Medicine
3.2 Gamma Cameras
3.2.1 Anger Cameras
3.2.2 Anger Management: Technology Alternatives
3.2.3 Holding On to the Anger
3.3 Combined SPECT Techniques
3.3.1 SPECT/CT
3.3.2 SPECT/MRI
3.4 PET Detectors
3.4.1 PET/CT
3.4.2 The New Breed of PETs
3.4.3 PET Scintillators
3.4.4 PET/MRI
3.5 SPECT/CT vs. PET/CT: Who wins?
3.6 Key Points from this Chapter
Chapter Four: Nuclear Safety, Homeland Security, and Military Detectors
4.1 Ionizing Radiation: A Primer
4.2 Radiation Safety, Measurement, and Interrogation Devices
4.2.1 Passive Radiation Safety Devices
4.2.2 Active Radiation Safety Devices
4.3 Technology Trends in Radiation Detection and Safety Devices
4.3.1 Personal Spectroscopy
4.3.2 Better Resolution
4.3.3 Fantastic Plastics
4.4 Nuclear Energy Safety and Trends
4.4.1 Fukushima Today
4.4.2 Operational Nuclear Facilities
4.4.3 Nations with Nuclear Anxieties
4.4.4 Feeding the Dragon
4.4.5 New Nukes
4.4.6 Market Growth and Direction
4.5 Nuclear Terrorism: Monitoring and Response
4.5.1 Assaulting Nuclear Facilities
4.5.2 Nuclear Smuggling
4.5.3 Weapons of Mass Disruption
4.5.4 Economic Impacts of Nuclear Terror
4.5.5 Homeland Security
4.5.6 Costs
4.5.7 Military and Defense
4.6 Industry Dynamics
4.6.1 Portal Monitoring Players
4.6.2 Additional Manufacturers of Radiation Security Equipment
4.6.3 Consolidation?
4.7 Key Points from this Chapter
Chapter Five: Industrial, Occupational, and Scientific Applications of Radiation Detectors
5.1 Occupational and Institutional Radiation Safety
5.1.1 Personal and Responder Risk
5.1.2 Medical and Research Radiation Safety
5.1.3 Food Irradiation
5.1.4 Scrap Metal Recycling
5.2 Industrial Radiography
5.2.1 Good Bye Gamma
5.2.2 Neutron Inspection
5.2.3 Detectors for X-Ray NDT
5.2.4 CT in NDT
5.2.5 Copy and Paste Manufacturing
5.3 Oil and Mineral Exploration
5.3.1 Overall Oil and Gas Outlook
5.3.2 Resource Exploration Challenges
5.3.3 Waste and Safety Considerations
5.4 Big Physics
5.4.1 Cosmology
5.4.2 High Energy Physics
5.5 Key Points from this Chapter
Chapter Six: Eight Year Forecasts for Radiation Detection Equipment
6.1 Introduction and Forecasting Methodology
6.1.1 Differences with Other NanoMarkets Reports
6.1.2 Market Segments and Detectors Covered
6.1.3 Key Assumptions
6.1.4 Sources of Data
6.2 Forecast for Radiation Detection Equipment by Type of Detector
6.2.1 Global Forecasts
6.2.2 Price Schedule for Different Radiation Detectors
6.2.3 Regional Forecasts
6.2.4 Market Sizes for Specific Safety and Monitoring Radiation Detectors
6.3 Forecast for Radiation Detection Equipment by Market Segment
6.3.1 Medical Diagnostic Market Segments
6.3.2 Radiation Detectors for Nuclear Energy Markets
6.3.3 Radiation Detectors for Homeland Security
6.3.4 Radiation Detectors for Military Applications
6.3.5 Radiation Detectors for Institutional and Occupational Safety
6.3.6 Radiation Detectors for Oil and Mineral Exploration
6.3.7 Radiation Detection for Big Physics
6.3.8 Radiation Detection for Industrial Inspection
6.4 Alternative Scenarios
Acronyms and Abbreviations Used In this Report
About the Author
【レポート販売概要】
■ タイトル:放射線検知機械市場■ 英文:Markets for Radiation Detection Equipment
■ 発行日:2013年5月10日
■ 調査会社:Nanomarkets
■ 商品コード:Nano-635
■ 調査対象地域:グローバル
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