The global Medical Radiation Detection, Monitoring, and Safety Market is forecasted to be worth USD 1,339.4 Million by 2027, according to a current analysis by Emergen Research. The market is expected to grow due to the rising number of cancer-related incidence. The increasing usage of radiation therapy and nuclear medicine for diagnosis and treatment will drive the demand for the market. The report throws light on the current economic landscape of this business vertical and evaluates the top market trends. It has been compiled through significant primary research, including surveys, interviews, and expert analysts' observations. The Global Medical Radiation Detection, Monitoring, and Safety Market report provides full coverage of the companies' data, including details about their production and manufacturing capacity, product portfolio, business overview, revenue, gross profit margins, sales network and distribution channel, financial standing, and market position.
Another driving factor is the growth in diagnostic imaging centers and a surge in the number of people covered under insurance. The usage of advanced technologies through R&D affects the market positively. Medical radiation is related to several health complications. The government is supporting the initiatives taken to find a solution to the problems regarding radiation. The growing awareness among the people across the globe is also a driving factor in the market. The adverse effects of these devices on human involvement in the healthcare industry is creating a demand for safety devices.
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Key Highlights From The Report
- In May 2019, Kromek launched D3S PRD personal radiation detector. It is a high-speed SPRD (spectroscopic radiation detector) or PRD replacement that is a cost-effective radiation detection device that puts a very powerful and sensitive radiation detector into the hands of first-line users.
- Personal dosimetry is a part of radiation dosimetry. It is used to determine doses to individuals who are exposed to radiation-related to their working environment. The dosimetry techniques vary and depend partly on the source of radiation outside the body or taken into the body. It is also used to measure external radiation exposure.
- The gas-filled detectors segment is expected to grow with the fastest CAGR due to the favorable performance-to-cost ratio of the gas-filled detectors along with the growing usage of the medical imaging field, which is propelling the demand for the segment.
The dearth of skilled professionals or educated medical physicists hampers the demand for these products. Stringent regulations will also reduce the demand for these technologies. However, the adoption of market technology by the diagnostic centers, hospitals, cancer institutes, and ambulatory surgical centers will influence the market positively. The Global Medical Radiation Detection, Monitoring, and Safety Market report presents comprehensive information covering insightful data for businesses and investors for the time period of 2020-2027. The report studies the historical data of the Medical Radiation Detection, Monitoring, and Safety market and offers valuable information about the key segments and sub-segments, revenue generation, demand and supply scenario, trends, and other vital aspects. The report also studies business strategies and strategic alliances undertaken by companies to gain a robust footing in the market. The report sheds light on the mergers and acquisitions, collaborations, joint ventures, brand promotions and product launches, agreements and partnerships, and corporate and government deals. The comprehensive analysis of the competitive landscape offers the readers a deeper understanding about the competitors.
Top competitors of the Medical Radiation Detection, Monitoring, and Safety Market profiled in the report include:
- Mirion Technologies, Inc., Sun Nuclear Corporation, Thermo Fisher Scientific, Fortive Corporation, Bertin Instruments, Polimaster, Inc., Biodex Medical Systems, Inc., Amray Group, PTW Freiburg GmBH, Infab Corporation, among others.
The research report on the Medical Radiation Detection, Monitoring, and Safety market is formulated through extensive primary and secondary research along with qualitative and quantitative analysis of vital aspects of the market. The insightful data is further validated and verified by the industry professionals. The report strives to offer deeper insights into the overall market scenario of the Medical Radiation Detection, Monitoring, and Safety business sphere.
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The report aims to deliver a comprehensive understanding of the Medical Radiation Detection, Monitoring, and Safety market growth and expansion in each key region of the world. It offers accurate estimations about the expected market size and growth over the projected timeline of 2020-2027.
For the purpose of this report, Emergen Research has segmented into the global Medical Radiation Detection, Monitoring and Safety Market on the product, detectors, application, and region:
- Product Outlook (Revenue, USD Billion; 2017-2027)
- Personal Dosimeters
- Passive Dosimeters
- Active Dosimeters
- Area Process Monitors
- Environment Radiation Monitors
- Surface Contamination Monitors
- Radioactive Material Monitors
- Other Medical Radiation Detection and Monitoring Products
- Detectors Outlook (Revenue, USD Billion; 2017-2027)
- Gas-Filled Detectors
- GM Counters
- Ionization Chambers
- Proportional Counters
- Inorganic Scintillators
- Organic Scintillators
- Solid-State Detectors
- Semiconductor Detectors
- Diamond Detectors
- Application Outlook (Revenue, USD Billion; 2017-2027)
- Ambulatory Surgical Centers
The report offers a comprehensive analysis of the current growth opportunities for various regions of the Medical Radiation Detection, Monitoring, and Safety market. It gauges the revenue shares of these regions over the forecast timeline. Furthermore, the report analyzes the year-on-year growth rate of these regions over the forecast duration. The leading geographic regions encompassed in the report include North America, Europe, Asia Pacific, Latin America, and Middle East & Africa.
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Table of Content
Chapter 1. Methodology & Sources
1.1. Nanopharmaceutical Drugs Market Definition
1.2. Research Scope
1.4. Research Sources
1.5. Nanopharmaceutical Drugs Market Estimation Technique
Chapter 2. Executive Summary
2.1. Summary Snapshot, 2021-2028
Chapter 3. Key Insights
Chapter 4. Nanopharmaceutical Drugs Market Segmentation & Impact Analysis
4.1. Nanopharmaceutical Drugs Market Material Segmentation Analysis
4.2. Industrial Outlook
4.2.1. Nanopharmaceutical Drugs Market indicators analysis
4.2.2. Nanopharmaceutical Drugs Market drivers analysis
184.108.40.206. Rapid urbanization and industrialization
220.127.116.11. Stringent government regulations regarding carbon emissions
18.104.22.168. Increasing prevalence of respiratory diseases
22.214.171.124. Rising need to enhance indoor air quality
4.2.3. Nanopharmaceutical Drugs Market restraints analysis
126.96.36.199. High cost associated with the maintenance of Nanopharmaceutical Drugs products
188.8.131.52. Availability of renewable sources of energy
4.3. Technological Insights
4.4. Regulatory Framework
4.5. Porter's Five Forces Analysis
4.6. Competitive Metric Space Analysis
4.7. Price trend Analysis
4.8. Covid-19 Impact Analysis
Key Benefits of Buying the Global Medical Radiation Detection, Monitoring, and Safety Report:
- Comprehensive analysis of the changing competitive landscape
- Assists in decision making processes for the businesses along with detailed strategic planning methodologies
- The report offers an 8-year forecast and assessment of the Global Medical Radiation Detection, Monitoring, and Safety Market
- Helps in understanding the key product segments and their estimated growth rate
- In-depth analysis of market drivers, restraints, trends, and opportunities
- Comprehensive regional analysis of the Global Medical Radiation Detection, Monitoring, and Safety Market
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