Latest Update: Impact of current COVID-19 situation has been considered in this report while making the analysis.
Global Medical Radiation Detection Market by Type (Gas-Filled Detectors, Scintillators, Solid-State Detectors), By Application (Hospitals, Non-Hospitals) and Region (North America, Latin America, Europe, Asia Pacific and Middle East & Africa), Forecast From 2022 To 2030-report

Global Medical Radiation Detection Market by Type (Gas-Filled Detectors, Scintillators, Solid-State Detectors), By Application (Hospitals, Non-Hospitals) and Region (North America, Latin America, Europe, Asia Pacific and Middle East & Africa), Forecast From 2022 To 2030

Report ID: 285718 4200 Medical Devices & Consumables 377 141 Pages 4.6 (44)
                                          

Market Overview:


The global medical radiation detection market is expected to grow at a CAGR of 6.5% from 2018 to 2030. The growth in the market can be attributed to the increasing incidence of cancer, rising awareness about radiation safety, and technological advancements in medical radiation detection devices. Based on type, the gas-filled detectors segment is expected to account for the largest share of the global medical radiation detection market in 2018. This segment is also projected to grow at a higher CAGR than other segments during the forecast period. Gas-filled detectors are widely used for detecting alpha and beta particles as well as gamma rays. They are also less expensive than other types of detectors and have a longer life span. Based on application, hospitals are expected to account for the largest share of the global medical radiation detection market in 2018 followed by non-hospitals segments respectively during forecast period . Hospitals use various types of medical radiation detection devices such as Geiger counters, dosimeters, and spectrometers for detecting ionizing radiations emitted from X-ray machines and CT scanners used for diagnostic purposes . Non-hospital settings include research laboratories, nuclear power plants etc.


Global Medical Radiation Detection Industry Outlook


Product Definition:


Medical radiation detection is the process of detecting and measuring ionizing radiation. The importance of medical radiation detection is to ensure that patients are safe from unnecessary exposure to ionizing radiation.


Gas-Filled Detectors:


Gas-filled detectors are used in medical and radiation detection applications. Medical gas-filled detectors are also known as ionization chambers or ion mobility spectrometers. They are widely used for the analysis of gases, liquids & pharmaceuticals, food & beverages and other biological materials for trace contaminants including drugs, explosives, narcotics and radioactive substances.


Scintillators:


Scintillators are materials that exhibit luminescence when exposed to high-energy radiation. They can be used in medical equipment such as Geiger counters, which detect ionizing radiation. Scintillators are also used in dosimeters, which indicate the amount of dose received by a person or an area during an exposure to radioactive material.


The global scintillator market is expected to witness significant growth over the forecast period owing to increasing demand for medical.


Application Insights:


Based on application, the global medical radiation detection market is segmented into hospitals and non-hospital settings. The hospital segment dominated the overall market in terms of revenue in 2017. This high share can be attributed to factors such as a large patient base with various diseases that require diagnostic procedures, regular use of imaging devices for detecting cancer cells and other lesions, increasing number of nuclear medicine procedures across the globe which involves the usage of radioactive materials, and an increase in R&D activities pertaining to equipment used for diagnostic purposes within hospitals.


The non-hospital setting includes clinics/family practices or general healthcare facilities which are attached to a hospital or not necessarily affiliated with it; they may also include independent health centers or primary healthcare centers (PHCs).


Regional Analysis:


North America held the largest revenue share of over 40% in 2017. The presence of well-established healthcare infrastructure and high adoption rate for advanced medical devices are some factors responsible for its large share. Furthermore, the U.S., being a developed economy, has higher penetration rates of technologically advanced products such as gamma cameras and scintillators which is further expected to drive regional growth during the forecast period.


Asia Pacific is anticipated to witness lucrative growth over the forecast period owing to increasing cases of cancer and other diseases caused by exposure to radiation in countries such as Japan, China, India, Australia etc.; thus leading to an increase in demand for diagnostic equipment used for medical purposes including gamma cameras and radiation detection systems across these regions.


Growth Factors:


  • Increasing incidence of cancer and other diseases that require radiation therapy
  • Growing demand for early detection and diagnosis of cancer
  • Rising number of nuclear accidents and terrorist threats
  • Proliferation of private diagnostic centers and hospitals
  • Technological advancements in medical radiation detection equipment

Scope Of The Report

Report Attributes

Report Details

Report Title

Medical Radiation Detection Market Research Report

By Type

Gas-Filled Detectors, Scintillators, Solid-State Detectors

By Application

Hospitals, Non-Hospitals

By Companies

Landauer, Inc., Mirion Technologies, Inc., Thermo Fisher Scientific, Ludlum Instruments, Inc., Radiation Detection Company, Biodex Medical Systems, Inc., Arrow-Tech, Inc., Unfors Raysafe, Amray Medical, Infab Corporation, Landauer, Inc.

Regions Covered

North America, Europe, APAC, Latin America, MEA

Base Year

2021

Historical Year

2019 to 2020 (Data from 2010 can be provided as per availability)

Forecast Year

2030

Number of Pages

141

Number of Tables & Figures

99

Customization Available

Yes, the report can be customized as per your need.


Global Medical Radiation Detection Market Report Segments:

The global Medical Radiation Detection market is segmented on the basis of:

Types

Gas-Filled Detectors, Scintillators, Solid-State Detectors

The product segment provides information about the market share of each product and the respective CAGR during the forecast period. It lays out information about the product pricing parameters, trends, and profits that provides in-depth insights of the market. Furthermore, it discusses latest product developments & innovation in the market.

Applications

Hospitals, Non-Hospitals

The application segment fragments various applications of the product and provides information on the market share and growth rate of each application segment. It discusses the potential future applications of the products and driving and restraining factors of each application segment.

Some of the companies that are profiled in this report are:

  1. Landauer, Inc.
  2. Mirion Technologies, Inc.
  3. Thermo Fisher Scientific
  4. Ludlum Instruments, Inc.
  5. Radiation Detection Company
  6. Biodex Medical Systems, Inc.
  7. Arrow-Tech, Inc.
  8. Unfors Raysafe
  9. Amray Medical
  10. Infab Corporation
  11. Landauer, Inc.

Global Medical Radiation Detection Market Overview


Highlights of The Medical Radiation Detection Market Report:

  1. The market structure and projections for the coming years.
  2. Drivers, restraints, opportunities, and current trends of market.
  3. Historical data and forecast.
  4. Estimations for the forecast period 2030.
  5. Developments and trends in the market.
  6. By Type:

    1. Gas-Filled Detectors
    2. Scintillators
    3. Solid-State Detectors
  1. By Application:

    1. Hospitals
    2. Non-Hospitals
  1. Market scenario by region, sub-region, and country.
  2. Market share of the market players, company profiles, product specifications, SWOT analysis, and competitive landscape.
  3. Analysis regarding upstream raw materials, downstream demand, and current market dynamics.
  4. Government Policies, Macro & Micro economic factors are also included in the report.

We have studied the Medical Radiation Detection Market in 360 degrees via. both primary & secondary research methodologies. This helped us in building an understanding of the current market dynamics, supply-demand gap, pricing trends, product preferences, consumer patterns & so on. The findings were further validated through primary research with industry experts & opinion leaders across countries. The data is further compiled & validated through various market estimation & data validation methodologies. Further, we also have our in-house data forecasting model to predict market growth up to 2030.

Regional Analysis

  • North America
  • Europe
  • Asia Pacific
  • Middle East & Africa
  • Latin America

Note: A country of choice can be added in the report at no extra cost. If more than one country needs to be added, the research quote will vary accordingly.

The geographical analysis part of the report provides information about the product sales in terms of volume and revenue in regions. It lays out potential opportunities for the new entrants, emerging players, and major players in the region. The regional analysis is done after considering the socio-economic factors and government regulations of the countries in the regions.

How you may use our products:

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  • Market Entry Strategies
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Global Medical Radiation Detection Market Statistics

8 Reasons to Buy This Report

  1. Includes a Chapter on the Impact of COVID-19 Pandemic On the Market
  2. Report Prepared After Conducting Interviews with Industry Experts & Top Designates of the Companies in the Market
  3. Implemented Robust Methodology to Prepare the Report
  4. Includes Graphs, Statistics, Flowcharts, and Infographics to Save Time
  5. Industry Growth Insights Provides 24/5 Assistance Regarding the Doubts in the Report
  6. Provides Information About the Top-winning Strategies Implemented by Industry Players.
  7. In-depth Insights On the Market Drivers, Restraints, Opportunities, and Threats
  8. Customization of the Report Available

Frequently Asked Questions?


Medical radiation detection is the process of detecting and identifying radioactive materials in a patient's body. This can be done through various methods, including x-ray, CT scans, and MRI scans.

Some of the major companies in the medical radiation detection market are Landauer, Inc., Mirion Technologies, Inc., Thermo Fisher Scientific, Ludlum Instruments, Inc., Radiation Detection Company, Biodex Medical Systems, Inc., Arrow-Tech, Inc., Unfors Raysafe, Amray Medical, Infab Corporation, Landauer, Inc..

The medical radiation detection market is expected to grow at a compound annual growth rate of 6.5%.

                                            
Chapter 1 Executive Summary
Chapter 2 Assumptions and Acronyms Used
Chapter 3 Research Methodology
Chapter 4 Medical Radiation Detection Market Overview    4.1 Introduction       4.1.1 Market Taxonomy       4.1.2 Market Definition       4.1.3 Macro-Economic Factors Impacting the Market Growth    4.2 Medical Radiation Detection Market Dynamics       4.2.1 Market Drivers       4.2.2 Market Restraints       4.2.3 Market Opportunity    4.3 Medical Radiation Detection Market - Supply Chain Analysis       4.3.1 List of Key Suppliers       4.3.2 List of Key Distributors       4.3.3 List of Key Consumers    4.4 Key Forces Shaping the Medical Radiation Detection Market       4.4.1 Bargaining Power of Suppliers       4.4.2 Bargaining Power of Buyers       4.4.3 Threat of Substitution       4.4.4 Threat of New Entrants       4.4.5 Competitive Rivalry    4.5 Global Medical Radiation Detection Market Size & Forecast, 2018-2028       4.5.1 Medical Radiation Detection Market Size and Y-o-Y Growth       4.5.2 Medical Radiation Detection Market Absolute $ Opportunity

Chapter 5 Global Medical Radiation Detection Market Analysis and Forecast by Type
   5.1 Introduction
      5.1.1 Key Market Trends & Growth Opportunities by Type
      5.1.2 Basis Point Share (BPS) Analysis by Type
      5.1.3 Absolute $ Opportunity Assessment by Type
   5.2 Medical Radiation Detection Market Size Forecast by Type
      5.2.1 Gas-Filled Detectors
      5.2.2 Scintillators
      5.2.3 Solid-State Detectors
   5.3 Market Attractiveness Analysis by Type

Chapter 6 Global Medical Radiation Detection Market Analysis and Forecast by Applications
   6.1 Introduction
      6.1.1 Key Market Trends & Growth Opportunities by Applications
      6.1.2 Basis Point Share (BPS) Analysis by Applications
      6.1.3 Absolute $ Opportunity Assessment by Applications
   6.2 Medical Radiation Detection Market Size Forecast by Applications
      6.2.1 Hospitals
      6.2.2 Non-Hospitals
   6.3 Market Attractiveness Analysis by Applications

Chapter 7 Global Medical Radiation Detection Market Analysis and Forecast by Region
   7.1 Introduction
      7.1.1 Key Market Trends & Growth Opportunities by Region
      7.1.2 Basis Point Share (BPS) Analysis by Region
      7.1.3 Absolute $ Opportunity Assessment by Region
   7.2 Medical Radiation Detection Market Size Forecast by Region
      7.2.1 North America
      7.2.2 Europe
      7.2.3 Asia Pacific
      7.2.4 Latin America
      7.2.5 Middle East & Africa (MEA)
   7.3 Market Attractiveness Analysis by Region

Chapter 8 Coronavirus Disease (COVID-19) Impact 
   8.1 Introduction 
   8.2 Current & Future Impact Analysis 
   8.3 Economic Impact Analysis 
   8.4 Government Policies 
   8.5 Investment Scenario

Chapter 9 North America Medical Radiation Detection Analysis and Forecast
   9.1 Introduction
   9.2 North America Medical Radiation Detection Market Size Forecast by Country
      9.2.1 U.S.
      9.2.2 Canada
   9.3 Basis Point Share (BPS) Analysis by Country
   9.4 Absolute $ Opportunity Assessment by Country
   9.5 Market Attractiveness Analysis by Country
   9.6 North America Medical Radiation Detection Market Size Forecast by Type
      9.6.1 Gas-Filled Detectors
      9.6.2 Scintillators
      9.6.3 Solid-State Detectors
   9.7 Basis Point Share (BPS) Analysis by Type 
   9.8 Absolute $ Opportunity Assessment by Type 
   9.9 Market Attractiveness Analysis by Type
   9.10 North America Medical Radiation Detection Market Size Forecast by Applications
      9.10.1 Hospitals
      9.10.2 Non-Hospitals
   9.11 Basis Point Share (BPS) Analysis by Applications 
   9.12 Absolute $ Opportunity Assessment by Applications 
   9.13 Market Attractiveness Analysis by Applications

Chapter 10 Europe Medical Radiation Detection Analysis and Forecast
   10.1 Introduction
   10.2 Europe Medical Radiation Detection Market Size Forecast by Country
      10.2.1 Germany
      10.2.2 France
      10.2.3 Italy
      10.2.4 U.K.
      10.2.5 Spain
      10.2.6 Russia
      10.2.7 Rest of Europe
   10.3 Basis Point Share (BPS) Analysis by Country
   10.4 Absolute $ Opportunity Assessment by Country
   10.5 Market Attractiveness Analysis by Country
   10.6 Europe Medical Radiation Detection Market Size Forecast by Type
      10.6.1 Gas-Filled Detectors
      10.6.2 Scintillators
      10.6.3 Solid-State Detectors
   10.7 Basis Point Share (BPS) Analysis by Type 
   10.8 Absolute $ Opportunity Assessment by Type 
   10.9 Market Attractiveness Analysis by Type
   10.10 Europe Medical Radiation Detection Market Size Forecast by Applications
      10.10.1 Hospitals
      10.10.2 Non-Hospitals
   10.11 Basis Point Share (BPS) Analysis by Applications 
   10.12 Absolute $ Opportunity Assessment by Applications 
   10.13 Market Attractiveness Analysis by Applications

Chapter 11 Asia Pacific Medical Radiation Detection Analysis and Forecast
   11.1 Introduction
   11.2 Asia Pacific Medical Radiation Detection Market Size Forecast by Country
      11.2.1 China
      11.2.2 Japan
      11.2.3 South Korea
      11.2.4 India
      11.2.5 Australia
      11.2.6 South East Asia (SEA)
      11.2.7 Rest of Asia Pacific (APAC)
   11.3 Basis Point Share (BPS) Analysis by Country
   11.4 Absolute $ Opportunity Assessment by Country
   11.5 Market Attractiveness Analysis by Country
   11.6 Asia Pacific Medical Radiation Detection Market Size Forecast by Type
      11.6.1 Gas-Filled Detectors
      11.6.2 Scintillators
      11.6.3 Solid-State Detectors
   11.7 Basis Point Share (BPS) Analysis by Type 
   11.8 Absolute $ Opportunity Assessment by Type 
   11.9 Market Attractiveness Analysis by Type
   11.10 Asia Pacific Medical Radiation Detection Market Size Forecast by Applications
      11.10.1 Hospitals
      11.10.2 Non-Hospitals
   11.11 Basis Point Share (BPS) Analysis by Applications 
   11.12 Absolute $ Opportunity Assessment by Applications 
   11.13 Market Attractiveness Analysis by Applications

Chapter 12 Latin America Medical Radiation Detection Analysis and Forecast
   12.1 Introduction
   12.2 Latin America Medical Radiation Detection Market Size Forecast by Country
      12.2.1 Brazil
      12.2.2 Mexico
      12.2.3 Rest of Latin America (LATAM)
   12.3 Basis Point Share (BPS) Analysis by Country
   12.4 Absolute $ Opportunity Assessment by Country
   12.5 Market Attractiveness Analysis by Country
   12.6 Latin America Medical Radiation Detection Market Size Forecast by Type
      12.6.1 Gas-Filled Detectors
      12.6.2 Scintillators
      12.6.3 Solid-State Detectors
   12.7 Basis Point Share (BPS) Analysis by Type 
   12.8 Absolute $ Opportunity Assessment by Type 
   12.9 Market Attractiveness Analysis by Type
   12.10 Latin America Medical Radiation Detection Market Size Forecast by Applications
      12.10.1 Hospitals
      12.10.2 Non-Hospitals
   12.11 Basis Point Share (BPS) Analysis by Applications 
   12.12 Absolute $ Opportunity Assessment by Applications 
   12.13 Market Attractiveness Analysis by Applications

Chapter 13 Middle East & Africa (MEA) Medical Radiation Detection Analysis and Forecast
   13.1 Introduction
   13.2 Middle East & Africa (MEA) Medical Radiation Detection Market Size Forecast by Country
      13.2.1 Saudi Arabia
      13.2.2 South Africa
      13.2.3 UAE
      13.2.4 Rest of Middle East & Africa (MEA)
   13.3 Basis Point Share (BPS) Analysis by Country
   13.4 Absolute $ Opportunity Assessment by Country
   13.5 Market Attractiveness Analysis by Country
   13.6 Middle East & Africa (MEA) Medical Radiation Detection Market Size Forecast by Type
      13.6.1 Gas-Filled Detectors
      13.6.2 Scintillators
      13.6.3 Solid-State Detectors
   13.7 Basis Point Share (BPS) Analysis by Type 
   13.8 Absolute $ Opportunity Assessment by Type 
   13.9 Market Attractiveness Analysis by Type
   13.10 Middle East & Africa (MEA) Medical Radiation Detection Market Size Forecast by Applications
      13.10.1 Hospitals
      13.10.2 Non-Hospitals
   13.11 Basis Point Share (BPS) Analysis by Applications 
   13.12 Absolute $ Opportunity Assessment by Applications 
   13.13 Market Attractiveness Analysis by Applications

Chapter 14 Competition Landscape 
   14.1 Medical Radiation Detection Market: Competitive Dashboard
   14.2 Global Medical Radiation Detection Market: Market Share Analysis, 2019
   14.3 Company Profiles (Details – Overview, Financials, Developments, Strategy) 
      14.3.1 Landauer, Inc.
      14.3.2 Mirion Technologies, Inc.
      14.3.3 Thermo Fisher Scientific
      14.3.4 Ludlum Instruments, Inc.
      14.3.5 Radiation Detection Company
      14.3.6 Biodex Medical Systems, Inc.
      14.3.7 Arrow-Tech, Inc.
      14.3.8 Unfors Raysafe
      14.3.9 Amray Medical
      14.3.10 Infab Corporation
      14.3.11 Landauer, Inc.

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