Scintillation Camera Market Size, Share, and Trends Analysis Report

CAGR :  Diagram

Market Size 2023 (Base Year) USD 2.32 Billion
Market Size 2032 (Forecast Year) USD 6.32 Billion
CAGR 10.54%
Forecast Period 2024 - 2032
Historical Period 2018 - 2023

According to a recent study by Market Research Store, the global scintillation camera market size was valued at approximately USD 2.32 Billion in 2023. The market is projected to grow significantly, reaching USD 6.32 Billion by 2032, growing at a compound annual growth rate (CAGR) of 10.54% during the forecast period from 2024 to 2032. The report highlights key growth drivers such as rising demand, technological advancements, and expanding applications. It also outlines potential challenges like regulatory changes and market competition, while emphasizing emerging opportunities for innovation and investment in the scintillation camera industry.

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Scintillation Camera Market: Overview

The growth of the scintillation camera market is fueled by rising global demand across various industries and applications. The report highlights lucrative opportunities, analyzing cost structures, key segments, emerging trends, regional dynamics, and advancements by leading players to provide comprehensive market insights. The scintillation camera market report offers a detailed industry analysis from 2024 to 2032, combining quantitative and qualitative insights. It examines key factors such as pricing, market penetration, GDP impact, industry dynamics, major players, consumer behavior, and socio-economic conditions. Structured into multiple sections, the report provides a comprehensive perspective on the market from all angles.

Key sections of the scintillation camera market report include market segments, outlook, competitive landscape, and company profiles. Market Segments offer in-depth details based on Product Type, End-User, Technology, Application, Distribution Channel, and other relevant classifications to support strategic marketing initiatives. Market Outlook thoroughly analyzes market trends, growth drivers, restraints, opportunities, challenges, Porter’s Five Forces framework, macroeconomic factors, value chain analysis, and pricing trends shaping the market now and in the future. The Competitive Landscape and Company Profiles section highlights major players, their strategies, and market positioning to guide investment and business decisions. The report also identifies innovation trends, new business opportunities, and investment prospects for the forecast period.

Key Highlights:

  • As per the analysis shared by our research analyst, the global scintillation camera market is estimated to grow annually at a CAGR of around 10.54% over the forecast period (2024-2032).
  • In terms of revenue, the global scintillation camera market size was valued at around USD 2.32 Billion in 2023 and is projected to reach USD 6.32 Billion by 2032.
  • The market is projected to grow at a significant rate due to rising demand for nuclear medicine imaging, advancements in gamma camera technology, increasing prevalence of cancer and cardiovascular diseases, and growth in diagnostic healthcare infrastructure.
  • Based on the Product Type, the Single-Photon Emission Computed Tomography (SPECT) Cameras segment is growing at a high rate and will continue to dominate the global market as per industry projections.
  • On the basis of End-User, the Hospitals segment is anticipated to command the largest market share.
  • In terms of Technology, the Digital Scintillation Cameras segment is projected to lead the global market.
  • By Application, the Cardiology segment is predicted to dominate the global market.
  • Based on the Distribution Channel, the Direct Sales segment is expected to swipe the largest market share.
  • Based on region, North America is projected to dominate the global market during the forecast period.

Scintillation Camera Market: Report Scope

This report thoroughly analyzes the scintillation camera market, exploring its historical trends, current state, and future projections. The market estimates presented result from a robust research methodology, incorporating primary research, secondary sources, and expert opinions. These estimates are influenced by the prevailing market dynamics as well as key economic, social, and political factors. Furthermore, the report considers the impact of regulations, government expenditures, and advancements in research and development on the market. Both positive and negative shifts are evaluated to ensure a comprehensive and accurate market outlook.

Report Attributes Report Details
Report Name Scintillation Camera Market
Market Size in 2023 USD 2.32 Billion
Market Forecast in 2032 USD 6.32 Billion
Growth Rate CAGR of 10.54%
Number of Pages 219
Key Companies Covered GE, Philips, Siemens, Digirad, Mediso, MIE, DDD Diagnostic, Dilon Technologies, Gamma Medica, Capintec, Beijing Hamamatsu, Basda
Segments Covered By Product Type, By End-User, By Technology, By Application, By Distribution Channel, and By Region
Regions Covered North America, Europe, Asia Pacific (APAC), Latin America, Middle East, and Africa (MEA)
Base Year 2023
Historical Year 2018 to 2023
Forecast Year 2024 to 2032
Customization Scope Avail customized purchase options to meet your exact research needs. Request For Customization

Scintillation Camera Market: Dynamics

The Scintillation Camera market is a vital component of nuclear medicine and industrial imaging, continually evolving with technological advancements and healthcare demands.

Key Growth Drivers:

The increasing global prevalence of chronic diseases, particularly cancer and cardiovascular conditions, is a primary driver, as scintillation cameras (gamma cameras) are crucial for diagnosis and monitoring in nuclear medicine. Advancements in radiopharmaceuticals and the growing adoption of personalized medicine further boost demand, as these require precise imaging capabilities. The rising number of SPECT (Single Photon Emission Computed Tomography) procedures performed globally, due to its ability to provide functional information about organs, directly fuels the market. Additionally, the increasing use of scintillation cameras in non-destructive testing (NDT) within industrial sectors, such as oil & gas and aerospace, for detecting radioactive isotopes and ensuring safety, contributes significantly to market expansion.

Restraints:

The high initial capital investment required for scintillation cameras, coupled with the ongoing costs of maintenance, specialized training, and radiopharmaceutical procurement, can pose a significant restraint, especially for smaller hospitals or clinics. The stringent regulatory approval processes for medical devices, particularly those involving radiation, can be lengthy and complex, delaying market entry for new technologies. Concerns regarding radiation exposure for both patients and healthcare professionals, despite being managed, can also create some public apprehension. Furthermore, the limited availability and fluctuating supply of certain radioisotopes necessary for imaging procedures can sporadically impact market operations.

Opportunities:

Significant opportunities arise from the integration of advanced technologies like Cadmium Zinc Telluride (CZT) detectors, which offer superior energy resolution, sensitivity, and compactness, leading to higher-quality images and reduced acquisition times. The development of hybrid imaging systems, such as SPECT/CT, combines functional and anatomical information, enhancing diagnostic accuracy and streamlining workflows. The growing adoption of artificial intelligence (AI) and machine learning (ML) for image reconstruction, analysis, and interpretation presents a transformative opportunity, improving diagnostic confidence and efficiency. The expansion of mobile gamma cameras, offering greater flexibility and accessibility for bedside imaging and underserved areas, also represents a promising growth segment.

Challenges:

A key challenge is ensuring consistent image quality and resolution across diverse patient populations and imaging conditions, as variations can impact diagnostic accuracy. The need for continuous research and development to keep pace with evolving radiopharmaceutical technologies and clinical requirements is paramount. Addressing the complexities of integrating scintillation cameras with existing hospital information systems (HIS) and picture archiving and communication systems (PACS) can be challenging. Furthermore, ensuring ongoing quality control and performance evaluation of these sophisticated systems, and providing adequate training for nuclear medicine technologists, remain crucial for optimal clinical outcomes and regulatory compliance.

Scintillation Camera Market: Segmentation Insights

The global scintillation camera market is segmented based on Product Type, End-User, Technology, Application, Distribution Channel, and Region. All the segments of the scintillation camera market have been analyzed based on present & future trends and the market is estimated from 2024 to 2032.

Based on Product Type, the global scintillation camera market is divided into Single-Photon Emission Computed Tomography (SPECT) Cameras, Positron Emission Tomography (PET) Cameras, Hybrid SPECT/PET Cameras, Portable Scintillation Cameras, Fixed Scintillation Cameras.

On the basis of End-User, the global scintillation camera market is bifurcated into Hospitals, Diagnostic Imaging Centers, Research Institutions, Veterinary Clinics, Home Healthcare Settings.

In terms of Technology, the global scintillation camera market is categorized into Digital Scintillation Cameras, Analog Scintillation Cameras, Hybrid TechnologyInnovations, Software Integration and AI Technologies, Real-time Imaging and Analysis.

Based on Application, the global scintillation camera market is split into Cardiology, Oncology, Neurology, Research and Development, Pediatric Imaging.

By Distribution Channel, the global scintillation camera market is divided into Direct Sales, Online Sales Platforms, Distributors and Wholesalers, Medical Equipment Retailers, Service-based Sales.

Scintillation Camera Market: Regional Insights

The North America region dominates the global scintillation camera market, accounting for the largest revenue share due to advanced healthcare infrastructure, high adoption of nuclear imaging technologies, and significant investments in medical research. According to recent market data (2023-2024), North America held over 40% of the market share, with the U.S. as the primary contributor, driven by widespread use of SPECT and PET scans in oncology and cardiology diagnostics.

Europe follows as the second-largest market, supported by government-funded healthcare systems and increasing prevalence of chronic diseases. Meanwhile, the Asia-Pacific region is projected to grow at the highest CAGR, fueled by expanding healthcare access, rising demand for early disease detection, and growing investments in nuclear medicine across countries like China, India, and Japan. However, North America's dominance remains unchallenged in the near term, owing to technological advancements, strong regulatory frameworks, and the presence of key industry players such as Siemens Healthineers, GE Healthcare, and Philips.

Scintillation Camera Market: Competitive Landscape

The scintillation camera market Report offers a thorough analysis of both established and emerging players within the market. It includes a detailed list of key companies, categorized based on the types of products they offer and other relevant factors. The report also highlights the market entry year for each player, providing further context for the research analysis.

The "Global Scintillation Camera Market" study offers valuable insights, focusing on the global market landscape, with an emphasis on major industry players such as;

  • GE
  • Philips
  • Siemens
  • Digirad
  • Mediso
  • MIE
  • DDD Diagnostic
  • Dilon Technologies
  • Gamma Medica
  • Capintec
  • Beijing Hamamatsu
  • Basda

The Global Scintillation Camera Market is Segmented as Follows:

By Product Type

  • Single-Photon Emission Computed Tomography (SPECT) Cameras
  • Positron Emission Tomography (PET) Cameras
  • Hybrid SPECT/PET Cameras
  • Portable Scintillation Cameras
  • Fixed Scintillation Cameras

By End-User

  • Hospitals
  • Diagnostic Imaging Centers
  • Research Institutions
  • Veterinary Clinics
  • Home Healthcare Settings

By Technology

  • Digital Scintillation Cameras
  • Analog Scintillation Cameras
  • Hybrid TechnologyInnovations
  • Software Integration and AI Technologies
  • Real-time Imaging and Analysis

By Application

  • Cardiology
  • Oncology
  • Neurology
  • Research and Development
  • Pediatric Imaging

By Distribution Channel

  • Direct Sales
  • Online Sales Platforms
  • Distributors and Wholesalers
  • Medical Equipment Retailers
  • Service-based Sales

By Region

  • North America
    • The U.S.
    • Canada
    • Mexico
  • Europe
    • France
    • The UK
    • Spain
    • Germany
    • Italy
    • Rest of Europe
  • Asia Pacific
    • China
    • Japan
    • India
    • Australia
    • South Korea
    • Rest of Asia Pacific
  • The Middle East & Africa
    • Saudi Arabia
    • UAE
    • Egypt
    • Kuwait
    • South Africa
    • Rest of the Middle East & Africa
  • Latin America
    • Brazil
    • Argentina
    • Rest of Latin America

Market Evolution

This section evaluates the market position of the product or service by examining its development pathway and competitive dynamics. It provides a detailed overview of the product's growth stages, including the early (historical) phase, the mid-stage, and anticipated future advancements influenced by innovation and emerging technologies.

Porter’s Analysis

Porter’s Five Forces framework offers a strategic lens for assessing competitor behavior and the positioning of key players in the scintillation camera industry. This section explores the external factors shaping competitive dynamics and influencing market strategies in the years ahead. The analysis focuses on five critical forces:

  • Competitive Rivalry
  • Threat of New Entrants
  • Threat of Substitutes
  • Supplier Bargaining Power
  • Buyer Bargaining Power

Value Chain & Market Attractiveness Analysis

The value chain analysis helps businesses optimize operations by mapping the product flow from suppliers to end consumers, identifying opportunities to streamline processes and gain a competitive edge. Segment-wise market attractiveness analysis evaluates key dimensions like product categories, demographics, and regions, assessing growth potential, market size, and profitability. This enables businesses to focus resources on high-potential segments for better ROI and long-term value.

PESTEL Analysis

PESTEL analysis is a powerful tool in market research reports that enhances market understanding by systematically examining the external macro-environmental factors influencing a business or industry. The acronym stands for Political, Economic, Social, Technological, Environmental, and Legal factors. By evaluating these dimensions, PESTEL analysis provides a comprehensive overview of the broader context within which a market operates, helping businesses identify potential opportunities and threats.

  • Political factors assess government policies, stability, trade regulations, and political risks that could impact market operations.
  • Economic factors examine variables like inflation, exchange rates, economic growth, and consumer spending power to determine market viability.
  • Social factors explore cultural trends, demographics, and lifestyle changes that shape consumer behavior and preferences.
  • Technological factors evaluate innovation, R&D, and technological advancements affecting product development and operational efficiencies.
  • Environmental factors focus on sustainability, climate change impacts, and eco-friendly practices shaping market trends.
  • Legal factors address compliance requirements, industry regulations, and intellectual property laws impacting market entry and operations.

Import-Export Analysis & Pricing Analysis

An import-export analysis is vital for market research, revealing global trade dynamics, trends, and opportunities. It examines trade volumes, product categories, and regional competitiveness, offering insights into supply chains and market demand. This section also analyzes past and future pricing trends, helping businesses optimize strategies and enabling consumers to assess product value effectively.

Scintillation Camera Market: Company Profiles

The report identifies key players in the scintillation camera market through a competitive landscape and company profiles, evaluating their offerings, financial performance, strategies, and market positioning. It includes a SWOT analysis of the top 3-5 companies, assessing strengths, weaknesses, opportunities, and threats. The competitive landscape highlights rankings, recent activities (mergers, acquisitions, partnerships, product launches), and regional footprints using the Ace matrix. Customization is available to meet client-specific needs.

Regional & Industry Footprint

This section details the geographic reach, sales networks, and market penetration of companies profiled in the scintillation camera report, showcasing their operations and distribution across regions. It analyzes the alignment of companies with specific industry verticals, highlighting the industries they serve and the scope of their products and services within those sectors.

Ace Matrix

This section categorizes companies into four distinct groups—Active, Cutting Edge, Innovator, and Emerging—based on their product and business strategies. The evaluation of product strategy focuses on aspects such as the range and depth of offerings, commitment to innovation, product functionalities, and scalability. Key elements like global reach, sector coverage, strategic acquisitions, and long-term growth plans are considered for business strategy. This analysis provides a detailed view of companies' position within the market and highlights their potential for future growth and development.

Research Methodology

The qualitative and quantitative insights for the scintillation camera market are derived through a multi-faceted research approach, combining input from subject matter experts, primary research, and secondary data sources. Primary research includes gathering critical information via face-to-face or telephonic interviews, surveys, questionnaires, and feedback from industry professionals, key opinion leaders (KOLs), and customers. Regular interviews with industry experts are conducted to deepen the analysis and reinforce the existing data, ensuring a robust and well-rounded market understanding.

Secondary research for this report was carried out by the Market Research Store team, drawing on a variety of authoritative sources, such as:

  • Official company websites, annual reports, financial statements, investor presentations, and SEC filings
  • Internal and external proprietary databases, as well as relevant patent and regulatory databases
  • Government publications, national statistical databases, and industry-specific market reports
  • Media coverage, including news articles, press releases, and webcasts about market participants
  • Paid industry databases for detailed market insights

Market Research Store conducted in-depth consultations with various key opinion leaders in the industry, including senior executives from top companies and regional leaders from end-user organizations. This effort aimed to gather critical insights on factors such as the market share of dominant brands in specific countries and regions, along with pricing strategies for products and services.

To determine total sales data, the research team conducted primary interviews across multiple countries with influential stakeholders, including:

  • Distributors
  • Marketing, Brand, and Product Managers
  • Procurement and Production Managers
  • Sales and Regional Sales Managers, Country Managers
  • Technical Specialists
  • C-Level Executives

These subject matter experts, with their extensive industry experience, helped validate and refine the findings. For secondary research, data were sourced from a wide range of materials, including online resources, company annual reports, industry publications, research papers, association reports, and government websites. These various sources provide a comprehensive and well-rounded perspective on the market.


Frequently Asked Questions

Scintillation Camera is a medical imaging device that detects gamma radiation from radioactive tracers in the body, commonly used in nuclear medicine for diagnostic scans.
The global scintillation camera market is expected to grow due to increasing demand in nuclear medical imaging (like PET/SPECT for oncology, cardiology, neurology), technological advancements in detectors (solid‑state, handheld, AI-enabled), rising healthcare infrastructure investment, and growing security/environmental radiation monitoring needs.
According to a study, the global scintillation camera market size was worth around USD 2.32 Billion in 2024 and is expected to reach USD 6.32 Billion by 2032.
The global scintillation camera market is expected to grow at a CAGR of 10.54% during the forecast period.
North America is expected to dominate the scintillation camera market over the forecast period.
Leading players in the global scintillation camera market include GE, Philips, Siemens, Digirad, Mediso, MIE, DDD Diagnostic, Dilon Technologies, Gamma Medica, Capintec, Beijing Hamamatsu, Basda, among others.
The report explores crucial aspects of the scintillation camera market, including a detailed discussion of existing growth factors and restraints, while also examining future growth opportunities and challenges that impact the market.

Table Of Content

Global Scintillation Cameras Industry Market Research Report
1 Scintillation Cameras Introduction and Market Overview
1.1 Objectives of the Study
1.2 Definition of Scintillation Cameras
1.3 Scintillation Cameras Market Scope and Market Size Estimation
1.3.1 Market Concentration Ratio and Market Maturity Analysis
1.3.2 Global Scintillation Cameras Value ($) and Growth Rate from 2014-2024
1.4 Market Segmentation
1.4.1 Types of Scintillation Cameras
1.4.2 Applications of Scintillation Cameras
1.4.3 Research Regions
1.4.3.1 North America Scintillation Cameras Production Value ($) and Growth Rate (2014-2019)
1.4.3.2 Europe Scintillation Cameras Production Value ($) and Growth Rate (2014-2019)
1.4.3.3 China Scintillation Cameras Production Value ($) and Growth Rate (2014-2019)
1.4.3.4 Japan Scintillation Cameras Production Value ($) and Growth Rate (2014-2019)
1.4.3.5 Middle East & Africa Scintillation Cameras Production Value ($) and Growth Rate (2014-2019)
1.4.3.6 India Scintillation Cameras Production Value ($) and Growth Rate (2014-2019)
1.4.3.7 South America Scintillation Cameras Production Value ($) and Growth Rate (2014-2019)
1.5 Market Dynamics
1.5.1 Drivers
1.5.1.1 Emerging Countries of Scintillation Cameras
1.5.1.2 Growing Market of Scintillation Cameras
1.5.2 Limitations
1.5.3 Opportunities
1.6 Industry News and Policies by Regions
1.6.1 Industry News
1.6.2 Industry Policies

2 Industry Chain Analysis
2.1 Upstream Raw Material Suppliers of Scintillation Cameras Analysis
2.2 Major Players of Scintillation Cameras
2.2.1 Major Players Manufacturing Base and Market Share of Scintillation Cameras in 2018
2.2.2 Major Players Product Types in 2018
2.3 Scintillation Cameras Manufacturing Cost Structure Analysis
2.3.1 Production Process Analysis
2.3.2 Manufacturing Cost Structure of Scintillation Cameras
2.3.3 Raw Material Cost of Scintillation Cameras
2.3.4 Labor Cost of Scintillation Cameras
2.4 Market Channel Analysis of Scintillation Cameras
2.5 Major Downstream Buyers of Scintillation Cameras Analysis

3 Global Scintillation Cameras Market, by Type
3.1 Global Scintillation Cameras Value ($) and Market Share by Type (2014-2019)
3.2 Global Scintillation Cameras Production and Market Share by Type (2014-2019)
3.3 Global Scintillation Cameras Value ($) and Growth Rate by Type (2014-2019)
3.4 Global Scintillation Cameras Price Analysis by Type (2014-2019)

4 Scintillation Cameras Market, by Application
4.1 Global Scintillation Cameras Consumption and Market Share by Application (2014-2019)
4.2 Downstream Buyers by Application
4.3 Global Scintillation Cameras Consumption and Growth Rate by Application (2014-2019)

5 Global Scintillation Cameras Production, Value ($) by Region (2014-2019)
5.1 Global Scintillation Cameras Value ($) and Market Share by Region (2014-2019)
5.2 Global Scintillation Cameras Production and Market Share by Region (2014-2019)
5.3 Global Scintillation Cameras Production, Value ($), Price and Gross Margin (2014-2019)
5.4 North America Scintillation Cameras Production, Value ($), Price and Gross Margin (2014-2019)
5.5 Europe Scintillation Cameras Production, Value ($), Price and Gross Margin (2014-2019)
5.6 China Scintillation Cameras Production, Value ($), Price and Gross Margin (2014-2019)
5.7 Japan Scintillation Cameras Production, Value ($), Price and Gross Margin (2014-2019)
5.8 Middle East & Africa Scintillation Cameras Production, Value ($), Price and Gross Margin (2014-2019)
5.9 India Scintillation Cameras Production, Value ($), Price and Gross Margin (2014-2019)
5.10 South America Scintillation Cameras Production, Value ($), Price and Gross Margin (2014-2019)

6 Global Scintillation Cameras Production, Consumption, Export, Import by Regions (2014-2019)
6.1 Global Scintillation Cameras Consumption by Regions (2014-2019)
6.2 North America Scintillation Cameras Production, Consumption, Export, Import (2014-2019)
6.3 Europe Scintillation Cameras Production, Consumption, Export, Import (2014-2019)
6.4 China Scintillation Cameras Production, Consumption, Export, Import (2014-2019)
6.5 Japan Scintillation Cameras Production, Consumption, Export, Import (2014-2019)
6.6 Middle East & Africa Scintillation Cameras Production, Consumption, Export, Import (2014-2019)
6.7 India Scintillation Cameras Production, Consumption, Export, Import (2014-2019)
6.8 South America Scintillation Cameras Production, Consumption, Export, Import (2014-2019)

7 Global Scintillation Cameras Market Status and SWOT Analysis by Regions
7.1 North America Scintillation Cameras Market Status and SWOT Analysis
7.2 Europe Scintillation Cameras Market Status and SWOT Analysis
7.3 China Scintillation Cameras Market Status and SWOT Analysis
7.4 Japan Scintillation Cameras Market Status and SWOT Analysis
7.5 Middle East & Africa Scintillation Cameras Market Status and SWOT Analysis
7.6 India Scintillation Cameras Market Status and SWOT Analysis
7.7 South America Scintillation Cameras Market Status and SWOT Analysis

8 Competitive Landscape
8.1 Competitive Profile
8.2 Capintec
8.2.1 Company Profiles
8.2.2 Scintillation Cameras Product Introduction
8.2.3 Capintec Production, Value ($), Price, Gross Margin 2014-2019
8.2.4 Capintec Market Share of Scintillation Cameras Segmented by Region in 2018
8.3 Digirad
8.3.1 Company Profiles
8.3.2 Scintillation Cameras Product Introduction
8.3.3 Digirad Production, Value ($), Price, Gross Margin 2014-2019
8.3.4 Digirad Market Share of Scintillation Cameras Segmented by Region in 2018
8.4 Basda
8.4.1 Company Profiles
8.4.2 Scintillation Cameras Product Introduction
8.4.3 Basda Production, Value ($), Price, Gross Margin 2014-2019
8.4.4 Basda Market Share of Scintillation Cameras Segmented by Region in 2018
8.5 Mediso
8.5.1 Company Profiles
8.5.2 Scintillation Cameras Product Introduction
8.5.3 Mediso Production, Value ($), Price, Gross Margin 2014-2019
8.5.4 Mediso Market Share of Scintillation Cameras Segmented by Region in 2018
8.6 Beijing Hamamatsu
8.6.1 Company Profiles
8.6.2 Scintillation Cameras Product Introduction
8.6.3 Beijing Hamamatsu Production, Value ($), Price, Gross Margin 2014-2019
8.6.4 Beijing Hamamatsu Market Share of Scintillation Cameras Segmented by Region in 2018
8.7 GE
8.7.1 Company Profiles
8.7.2 Scintillation Cameras Product Introduction
8.7.3 GE Production, Value ($), Price, Gross Margin 2014-2019
8.7.4 GE Market Share of Scintillation Cameras Segmented by Region in 2018
8.8 Gamma Medica
8.8.1 Company Profiles
8.8.2 Scintillation Cameras Product Introduction
8.8.3 Gamma Medica Production, Value ($), Price, Gross Margin 2014-2019
8.8.4 Gamma Medica Market Share of Scintillation Cameras Segmented by Region in 2018
8.9 Siemens
8.9.1 Company Profiles
8.9.2 Scintillation Cameras Product Introduction
8.9.3 Siemens Production, Value ($), Price, Gross Margin 2014-2019
8.9.4 Siemens Market Share of Scintillation Cameras Segmented by Region in 2018
8.10 DDD Diagnostic
8.10.1 Company Profiles
8.10.2 Scintillation Cameras Product Introduction
8.10.3 DDD Diagnostic Production, Value ($), Price, Gross Margin 2014-2019
8.10.4 DDD Diagnostic Market Share of Scintillation Cameras Segmented by Region in 2018
8.11 MIE
8.11.1 Company Profiles
8.11.2 Scintillation Cameras Product Introduction
8.11.3 MIE Production, Value ($), Price, Gross Margin 2014-2019
8.11.4 MIE Market Share of Scintillation Cameras Segmented by Region in 2018
8.12 Dilon Technologies
8.12.1 Company Profiles
8.12.2 Scintillation Cameras Product Introduction
8.12.3 Dilon Technologies Production, Value ($), Price, Gross Margin 2014-2019
8.12.4 Dilon Technologies Market Share of Scintillation Cameras Segmented by Region in 2018
8.13 Philips
8.13.1 Company Profiles
8.13.2 Scintillation Cameras Product Introduction
8.13.3 Philips Production, Value ($), Price, Gross Margin 2014-2019
8.13.4 Philips Market Share of Scintillation Cameras Segmented by Region in 2018

9 Global Scintillation Cameras Market Analysis and Forecast by Type and Application
9.1 Global Scintillation Cameras Market Value ($) & Volume Forecast, by Type (2019-2024)
9.1.1 Single-head scintillation camera Market Value ($) and Volume Forecast (2019-2024)
9.1.2 Double-headed scintillation camera Market Value ($) and Volume Forecast (2019-2024)
9.1.3 Multi-headed scintillation camera Market Value ($) and Volume Forecast (2019-2024)
9.2 Global Scintillation Cameras Market Value ($) & Volume Forecast, by Application (2019-2024)
9.2.1 Drug development Market Value ($) and Volume Forecast (2019-2024)
9.2.2 Nuclear medical imaging Market Value ($) and Volume Forecast (2019-2024)

10 Scintillation Cameras Market Analysis and Forecast by Region
10.1 North America Market Value ($) and Consumption Forecast (2019-2024)
10.2 Europe Market Value ($) and Consumption Forecast (2019-2024)
10.3 China Market Value ($) and Consumption Forecast (2019-2024)
10.4 Japan Market Value ($) and Consumption Forecast (2019-2024)
10.5 Middle East & Africa Market Value ($) and Consumption Forecast (2019-2024)
10.6 India Market Value ($) and Consumption Forecast (2019-2024)
10.7 South America Market Value ($) and Consumption Forecast (2019-2024)

11 New Project Feasibility Analysis
11.1 Industry Barriers and New Entrants SWOT Analysis
11.2 Analysis and Suggestions on New Project Investment

12 Research Finding and Conclusion

13 Appendix
13.1 Discussion Guide
13.2 Knowledge Store: Maia Subscription Portal
13.3 Research Data Source
13.4 Research Assumptions and Acronyms Used

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