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Live Cell Imaging Market Trends 2019 – Competitive Analysis by Demand Status, Valuable Insights of Business, Product Scope, Driving Factors Forecast to 2024

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The “Live Cell Imaging Market” report 2019 provides information for market players, stakeholders, investors, and business strategists to achieve a leading position the market. It maintains the record of Unusual growth strategies adopted by various companies are creating new standards for competition in the global Live Cell Imaging market. Businesses around the world are aiming at increasing their profit margin and establishing a stronghold in the global market. The impact of prevailing regulatory scenario on both regional and worldwide Live Cell Imaging market is provided in detail in the report.

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Live Cell Imaging Market Covers Key Players:

  • Becton, Dickinson and Company
  • Carl Zeiss AG
  • GE Healthcare
  • Leica Microsystems
  • Olympus Corporation
  • Molecular Devices, LCC
  • Nikon Corporation
  • PerkinElmer, Inc.
  • Sigma
  • Aldrich Corporation
  • Thermo Fisher Scientific, Inc.

    Market Overview:

  • The growth of the live cell imaging market is attributed to the adoption of high-content screening techniques in drug discovery, the rising prevalence of chronic disease demanding higher and quicker diagnostic facilities, and government funding for cell-based research.
  • According to the World Health Organization (WHO), chronic disease is expected to increase by 57% by 2020. Increased demand for healthcare systems, due to the prevalence of chronic diseases, has become a major concern. Also, increasing age and lifestyle-related chronic diseases are increasing the healthcare demand and spending. In developing markets, cancer and heart diseases are becoming the main causes of death, owing to urbanization, sedentary lifestyles, changing diets, rising obesity levels, and widespread availability of tobacco products. As per WHO, China and India currently have the world’s highest number of diabetes sufferers; more than 98 million and 65 million individuals, respectively. Thus, due to the increasing prevalence of chronic diseases, there is a high demand for medical devices that enable early detection and quick diagnosis, which could prove to be particularly impactful.
  • Furthermore, government initiatives are also supporting cell-based research. For instance, the National Center for Advancing Translational Sciences (NCATS) Small Business Innovation Research (SBIR) is offering a new funding opportunity to small businesses that are focused on assays and high-throughput screening. Thus, all these efforts are expected to augment the growth of the market over the forecast period.

    Report Highlights:

    • The report provides a detailed analysis on current and future market trends to identify the investment opportunities
    • Market forecasts till 2024, using estimated market values as the base numbers
    • Key market trends across the business segments, Regions and Countries
    • Key developments and strategies observed in the market
    • Market Dynamics such as Drivers, Restraints, Opportunities and other trends
    • In-depth company profiles of key players and upcoming prominent players
    • Growth prospects among the emerging nations through 2024
    • Live Cell Imaging Market opportunities and recommendations for new investments

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    Scope of the Report:

  • As per the scope of this report, live cell imaging techniques allow the real-time examination of every aspect of cellular function under normal and experimental examinations.

    Key Market Trends:

    Equipment Segment Under Product is Expected to Grow Fastest During the Forecast Period

    The equipment segment held the maximum share in 2018. They include microscopes, cell analyzers, image capturing systems, and standalone systems. Recent technological advancements in microscopes have augmented the growth of the market. For instance, inverted research grade microscope has supported imaging of adherent cells and organelles and yield results for tissue sections of less than 5 um thickness. The overall industry trend is shifting toward automation, integration of systems, and maximizing data generation from microscopes. The increasing use of live cell imaging among cell biologists to understand the fundamental nature of the cell function and structure has resulted in the aforementioned shift.

    North America Region Holds the Largest Market Share of Live Cell Imaging Market Market Currently and is Believed to Follow the Same Trend over the Forecast Period

    North America dominated the market share in 2018. The generous investment and funding available for research in live cell imaging is the key driver in this region. Also, in 2016, the Government of Canada announced the funding to support the Canada Research Chairs Program. This fund was a part of total funding of worth more than USD 164 million that was allocated for infrastructure. Projects on cell imaging in plant development, which are untaken by the McGill University, are also included in this program.

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    Detailed TOC of Live Cell Imaging Market Report 2019-2024:

    1 INTRODUCTION
    1.1 Study Deliverables
    1.2 Study Assumptions
    1.3 Scope of the Study

    2 RESEARCH METHODOLOGY

    3 EXECUTIVE SUMMARY

    4 MARKET DYNAMICS
    4.1 Market Overview
    4.2 Market Drivers
    4.2.1 Adoption of High-Content Screening Techniques in Drug Discovery
    4.2.2 Rising Prevalence of Chronic Disease Demanding Higher & Quicker Diagnostic Facilities
    4.2.3 Government Funding for Cell-Based Research
    4.3 Market Restraints
    4.3.1 High Cost of High-Content Screening Systems
    4.3.2 Shortage of Skilled Professionals
    4.4 Porter’s Five Force Analysis
    4.4.1 Threat of New Entrants
    4.4.2 Bargaining Power of Buyers/Consumers
    4.4.3 Bargaining Power of Suppliers
    4.4.4 Threat of Substitute Products
    4.4.5 Intensity of Competitive Rivalry

    5 MARKET SEGMENTATION
    5.1 By Product
    5.1.1 Equipment
    5.1.1.1 Standalone Systems
    5.1.1.2 Microscopes
    5.1.1.3 Cell Analyzers
    5.1.1.4 Image Capturing Devices
    5.1.2 Consumables
    5.1.2.1 Assay Kits
    5.1.2.2 Reagents
    5.1.2.3 Media
    5.1.2.4 Other Consumables
    5.2 By Technology
    5.2.1 Fluorescence Resonance Energy Transfer (FRET)
    5.2.2 Fluorescence in Situ Hybridization (FISH)
    5.2.3 High-Content Screening (HCS)
    5.2.4 Fluorescence Recovery After Photobleaching (FRAP)
    5.2.5 Ratiometric Imaging
    5.2.6 Total Internal Reflection Fluorescence Microscopy (TRIF)
    5.2.7 Multiphoton Excitation Microscopy (MPE)
    5.2.8 Others
    5.3 By Application
    5.3.1 Cell Biology
    5.3.2 Developmental Biology
    5.3.3 Stem Cell Biology
    5.3.4 Drug Discovery
    5.4 Geography
    5.4.1 North America
    5.4.1.1 US
    5.4.1.2 Canada
    5.4.1.3 Mexico
    5.4.2 Europe
    5.4.2.1 Germany
    5.4.2.2 UK
    5.4.2.3 France
    5.4.2.4 Italy
    5.4.2.5 Spain
    5.4.2.6 Rest of Europe
    5.4.3 Asia Pacific
    5.4.3.1 China
    5.4.3.2 Japan
    5.4.3.3 India
    5.4.3.4 Australia
    5.4.3.5 South Korea
    5.4.3.6 Rest of Asia-Pacific
    5.4.4 Middle East and Africa
    5.4.4.1 GCC
    5.4.4.2 South Africa
    5.4.4.3 Rest of Middle East and Africa
    5.4.5 South America
    5.4.5.1 Brazil
    5.4.5.2 Argentina
    5.4.5.3 Rest of South America

    6 COMPETITIVE LANDSCAPE
    6.1 Company Profiles
    6.1.1 Becton, Dickinson and Company
    6.1.2 Carl Zeiss AG
    6.1.3 GE Healthcare
    6.1.4 Leica Microsystems
    6.1.5 Olympus Corporation
    6.1.6 Molecular Devices, LCC
    6.1.7 Nikon Corporation
    6.1.8 PerkinElmer, Inc.
    6.1.9 Sigma-Aldrich Corporation
    6.1.10 Thermo Fisher Scientific, Inc.

    7 MARKET OPPORTUNITIES AND FUTURE TRENDS

     

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