Home » Medical Devices » Medical Radiation Detection, Monitoring & Safety Market Size, Share, Analysis Report
The world is constantly advancing the technology to protect against the threat and issues of radiation with real time and immediate results flawlessly. Radiation detectors or particle detectors are for the measurement of subatomic particles. The particles include electrons, protons, neutrons, alpha particles, gamma rays, and numerous mesons and baryons. Most detectors utilized in some way the ionization produced when these particles interact with matter. The increasing use of radioactive materials in various sectors like medical research, medical imaging, power production, industrial processes and the defense has raised a alarm regarding the health issues who are using them and who are exposed to them by one or the other way. Radiations can’t be seen by our naked eyes and thus it can’t be smelled so people working in radioactive environment should properly be dressed accordingly to the code and install the detectors at proper places so as to detect, monitor, and prevent direct exposure of harmful radioactive radiations.Medical Radiation detection Monitoring & Safety systems should be used within their functional limits and design specifications.
How Big is the Global Medical Radiation Detection, Monitoring & Safety Market?
The Medical Radiation detection, Monitoring & Safety Market is expected to be around US$ 2 Billion by 2028 at a CAGR of 6.5% in the given forecast period.
The major driving factors of Medical Radiation detection, Monitoring & Safety Market are as follows:
The restraining factors of Medical Radiation detection, Monitoring & Safety Market are as follows:
The Medical Radiation detection, Monitoring & Safety Market is segmented on the lines of its detector, monitoring product, safety product, end user and regional. Based on detector segmentation it covers gas-filled detectors, scintillators, solid-state detectors. Based on monitoring product segmentation it covers personal dosimeters, area process monitors, environmental radiation monitors, surface contamination monitors, radioactive material monitors, other products. Based on safety product segmentation it covers full-body protection, face protection, hand protection, others. Based on end user segmentation it covers hospitals, non- hospitals. The Medical Radiation detection, Monitoring & Safety Marketon geographic segmentation covers various regions such as North America, Europe, Asia Pacific, Latin America, Middle East and Africa. Each geographic market is further segmented to provide market revenue for select countries such as the U.S., Canada, U.K. Germany, China, Japan, India, Brazil, and GCC countries.
This report provides:
1) An overview of the global market for Medical Radiation detection, Monitoring & Safety Marketand related technologies.
2) Analyses of global market trends, with data from 2020, estimates for 2021 and 2022, and projections of compound annual growth rates (CAGRs) through 2028.
3) Identifications of new market opportunities and targeted promotional plans for Medical Radiation detection, Monitoring & Safety Market.
4) Discussion of research and development, and the demand for new products and new applications.
5) Comprehensive company profiles of major players in the industry.
REPORT SCOPE:
The scope of the report includes a detailed study of global and regional markets on Medical Radiation detection, Monitoring & Safety Market with the reasons given for variations in the growth of the industry in certain regions.
The report covers detailed competitive outlook including the market share and company profiles of the key participants operating in the global market. Key players profiled in the report include Mirion Technologies, Inc. (U.S.), IBA Worldwide (Belgium), Thermo Fisher Scientific (U.S.), Sun Nuclear Corporation (U.S.), Ludlum Measurements, Inc. (U.S.), Radiation Detection Company, Inc. (U.S.), Landauer, Inc. (U.S.), Biodex Medical Systems, Inc. (U.S.), Arrow-Tech, Inc. (U.S.), Fluke Biomedical (U.S.), AmRay Medical (Ireland), Infab Corporation (U.S.), and PTW Freiburg GmbH (Germany). Company profile includes assign such as company summary, financial summary, business strategy and planning, SWOT analysis and current developments.
The Top Companies Report is intended to provide our buyers with a snapshot of the industry’s most influential players.
The Medical Radiation detection, Monitoring & Safety Market has been segmented as below:
By Detector Analysis:
By Monitoring Product Analysis:
By Safety product Analysis:
By End User Analysis:
By Regional Analysis:
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1) Obtain the most up to date information available on all Medical Radiation detection, Monitoring & Safety Market.
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3) Facilitate decision making on the basis of strong historic and forecast of Medical Radiation detection, Monitoring & Safety Market data.
4) Assess your competitor’s refining portfolio and its evolution.
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1 INTRODUCTION
1.1 Key Take Aways
1.2 Report Description
1.3 Markets Covered
1.4 Stakeholders
1.5 Research Methodology
1.5.1 Market Size
1.5.2 Market Share
1.5.3 Key Data Points From Secondary Sources
1.5.4 Key Data Points From Primary Sources
2 Research Methodology
2.1 Market Size Estimation
2.2 Market Breakdown and Data Triangulation
2.3 Market Share Estimation
2.3.1 Key Data From Secondary Sources
2.3.2 Key Data From Primary Sources
2.4 Key Industry Insights
2.5 Assumptions for the Study
3 Executive Summary
4 Premium Insights
4.1 Medical Radiation Detection, Monitoring, and Safety: Market Overview
4.2 Geographic Analysis: Medical Radiation Safety Market, By Product
4.3 Medical Radiation Detection and Monitoring Market, By Product, 2018 vs 2024
4.4 Geographical Snapshot of the Medical Radiation Detection, Monitoring, and Safety Market
5 Market Overview
5.1 Introduction
5.2 Market Dynamics
5.2.1 Drivers
5.2.1.1 Increasing Usage of Nuclear Medicine and Radiation Therapy for Diagnosis and Treatment
5.2.1.2 Growing Worldwide Prevalence of Cancer
5.2.1.3 Increasing Safety Awareness Among People Working in Radiation-Prone Environments
5.2.1.4 Growth in the Number of People Covered By Insurance
5.2.1.5 Increasing Number of Diagnostic Imaging Centers
5.2.2 Opportunities
5.2.2.1 Increasing Focus of Industry Players on Emerging Markets
5.2.2.2 Increasing Research for Designing Technologically Advanced Products for Medical Radiation Detection
5.2.3 Challenges
5.2.3.1 Lack of Skilled Radiation Professionals and Qualified Medical Physicists
5.2.3.2 Product Approval Delays Due to Stringent Regulatory Guidelines
6 Medical Radiation Detection and Monitoring Market, By Detector
6.1 Introduction
6.1.1 Gas-Filled Detectors
6.1.1.1 Geiger–Muller Counters
6.1.1.2 Ionization Chambers
6.1.1.2.1 Dosimeters
6.1.1.2.2 Radiation Survey Meters
6.1.1.3 Proportional Counters
6.1.2 Scintillators
6.1.2.1 Inorganic Scintillators
6.1.2.2 Organic Scintillators
6.1.3 Solid-State Detectors
6.1.3.1 Semiconductor Detectors
6.1.3.1.1 Ionizing Radiation Detectors
6.1.3.1.2 Terahertz Radiation Detectors
6.1.3.2 Diamond Detectors
7 Medical Radiation Detection and Monitoring Market, By Product
7.1 Introduction
7.2 Personal Dosimeters
7.2.1 Passive Dosimeters
7.2.1.1 Optically Stimulated Luminescence Dosimeters
7.2.1.2 Thermoluminescent Dosimeters
7.2.1.3 Film Badges
7.2.2 Active Dosimeters
7.2.2.1 Self-Reading Pocket Dosimeters
7.2.2.2 Pocket Electroscopes
7.3 Area Process Monitors
7.4 Environment Radiation Monitors
7.5 Surface Contamination Monitors
7.6 Radioactive Material Monitors
7.7 Other Radiation Detection and Monitoring Products
8 Medical Radiation Safety Market, By Product
8.1 Introduction
8.2 Full-Body Protection Products
8.2.1 Aprons
8.2.2 Barriers and Shields
8.3 Face Protection Products
8.3.1 Eyewear
8.3.2 Face Masks
8.4 Hand Safety
8.4.1 Gloves
8.4.2 Attenuating Sleeves
8.5 Other Radiation Safety Products
9 Medical Radiation Detection, Monitoring, and Safety Market, By End User
9.1 Introduction
9.2 Hospitals
9.2.1 Radiology
9.2.2 Dentistry
9.2.3 Emergency Care
9.2.4 Nuclear Medicine
9.2.5 Radiation Therapy
9.2.6 Other Hospital Specialties
9.3 Non-Hospitals
9.3.1 Dental Clinics
9.3.2 Ambulatory Surgical Centers
9.3.3 Orthopedic Facilities
9.3.4 Imaging Centers
9.3.5 Radiation Therapy & Cancer Centers
9.3.6 Other Non-Hospital End Users
10 Medical Radiation Detection, Monitoring and Safety Market, By Region
10.1 Introduction
10.2 North America
10.2.1 U.S.
10.2.2 Canada
10.3 Europe
10.4 Asia
10.5 Rest of the World (RoW)
11 Competitive Landscape
11.1 Overview
11.2 Market Share Analysis
11.3 Competitive Situation and Trends
11.3.1 Product & Service Launches
11.3.2 Acquisitions
11.3.3 Expansions
11.3.4 Partnerships
11.3.5 Other Strategies
12 Company Profiles
12.1 Landauer, Inc.
12.2 Mirion Technologies, Inc.
12.3 IBA Worldwide
12.4 Thermo Fisher Scientific Inc.
12.5 Sun Nuclear Corporation
12.6 Ludlum Measurements, Inc.
12.7 Radiation Detection Company Inc.
12.8 Biodex Medical Systems, Inc.
12.9 Arrow-Tech, Inc.
12.10 Fluke Biomedical
12.11 Amray Medical
12.12 Infab Corporation
12.13 Ptw Freiburg GmbH
The Medical Radiation detection, Monitoring & Safety Market has been segmented as below:
By Detector Analysis:
By Monitoring Product Analysis:
By Safety product Analysis:
By End User Analysis:
By Regional Analysis: