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Life Science Microscopy Devices Market - Global Industry Analysis, Size, Forecast 2014 – 2020

Microscopes have enabled researchers to conduct in-depth academic and exploratory research. Increasing interest in life science areas such as nanoscience, and pharmacology and toxicology has created a need for advanced microscopes employing mediums much more penetrative than light i.e., electron, X-ray, etc.

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Life Science Microscopy Devices Market - Global Industry Analysis, Size, Forecast 2014 – 2020

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  1. Transparency Market Research Life Science Microscopy Devices Market - Global Industry Analysis, Size, Volume, Share, Growth, Trends and Forecast 2014 - 2020 Published Date 23-01-2015 150 Page Report Request Sample Buy Now Press Release Life Science Microscopy Devices Market Expected to Reach USD 2.61 billion globally by 2020 Transparency Market Research State Tower, 90, State Street, Suite 700. Albany, NY 12207 United States www.transparencymarketresearch.com sales@transparencymarketresearch.com

  2. Life Science Microscopy Devices Market REPORT DESCRIPTION Microscopes have enabled researchers to conduct in-depth academic and exploratory research. Increasing interest in life science areas such as nanoscience, and pharmacology and toxicology has created a need for advanced microscopes employing mediums much more penetrative than light i.e., electron, X-ray, etc. This has enabled us to venture further in the range of nanoscales and deliver potential innovations in life science field. Moreover, the medical field has always had the requirement for optical microscopes — schools and academies have introduced microscopes to teenage students at elementary level. Increasing demand has led to the proliferation of microscopy devices that are now available in creative designs, with new technology and magnification power to attract research enthusiasts. However, even with the proliferation of microscopes in nearly every principle of research and testing, microscope sales have been affected by the recent economic downturns in Europe and the Middle East. This report estimates the global market for life science microscopy devices in terms of revenue (USD million) for the period from 2012 to 2020. This research report provides a detailed analysis of the global life science microscopy devices market and helps in understanding the various driving factors for the growth of the market. The market overview section analyzes the market dynamics and trends such as drivers, restraints and opportunities that influence the current and future status of this market. Additionally, impact factors such as market attractiveness analysis, market share analysis and Porter’s five forces analysis have been explained in the market overview section in order to deliver a thorough analysis of the overall competitive scenario of the global life science microscopy devices market. This report analyzes the life science microscopy devices market from the perspective of device types and major geographies. Based on device type, this market has been classified into optical microscopes, electron microscopes and scanning probe microscopes. Optical microscopes have been sub-segmented into inverted microscope, stereomicroscope, phase contrast microscope, fluorescence microscope, confocal scanning microscope, near-field scanning microscope and other optical microscopes. Electron microscopes have been classified based on technical principles into transmission electron microscope and scanning electron microscope. Scanning probe microscopes have been categorized into scanning tunneling microscope and atomic force microscope. 2 Transparency Market Research

  3. Life Science Microscopy Devices Market Average pricing analysis of various types of optical, electron and scanning probe microscopes is included in this study, which helps in determining the worldwide volume (number of units sold) of different life science microscopes. Additionally, the market for each device type has been further categorized based on the geographic markets and life science applications. Life science applications considered in this study include cell biology, pharmacology and toxicology, clinical/pathology, biomedical engineering and neuroscience. This report provides market analysis and estimations for each device type in different geographies and life science applications for the period from 2012 to 2020 in terms of revenue. Geographically, the global life science microscopy devices market has been segmented into four major regions: North America, Europe, Asia Pacific and Rest of the World (RoW). The market for each region is provided in terms of revenue (USD million) for the period from 2012 to 2020 along with CAGR (%) for the period from 2014 to 2020, considering 2013 as the base year. The report also includes broad recommendations for the market players to increase their market share and sustain in the competitive market. The report concludes with company profiles comprising company overview, financial overview, product portfolio, business strategies, and recent developments. The major payers profiled in this report include Bruker Corporation, CAMECA SAS, Carl Zeiss AG, FEI Company, Hitachi High-Technologies Corporation, JEOL Ltd, Leica Microsystems, Nikon Corporation, Olympus Corporation, NT-MDT Company and Danish Micro Engineering A/S. The global life science microscopy devices market is segmented as follows: Global Life Science Microscopy Devices Market, by Device Type Optical Microscopes By Geography North America Europe 3 Transparency Market Research

  4. Life Science Microscopy Devices Market Asia Pacific Rest of the World By Application Cell Biology Clinical/Pathology Biomedical Engineering Pharmacology and Toxicology Neuroscience By Device Type Inverted Microscopes Stereo Microscopes Phase Contrast Microscopes Fluorescence Microscopes Confocal Scanning Microscopes Near Field Scanning Microscopes Other Optical Microscopes Electron Microscopes By Geography North America Europe Asia Pacific Rest of the World 4 Transparency Market Research

  5. Life Science Microscopy Devices Market By Application Cell Biology Clinical/Pathology Biomedical Engineering Pharmacology and Toxicology Neuroscience By Device Type Transmission Electron Microscopes Scanning Electron Microscopes Scanning Probe Microscopes By Geography North America Europe Asia Pacific Rest of the World By Application Cell Biology Clinical/Pathology Biomedical Engineering Pharmacology and Toxicology Neuroscience By Device Type 5 Transparency Market Research

  6. Life Science Microscopy Devices Market Scanning Tunneling Microscopes Atomic Force Microscopes Global Life Science Microscopy Devices Market, by Geography North America Europe Asia Pacific Rest of the World (RoW) TABLE OF CONTENT Chapter 1 Introduction 1.1 Report Description 1.2 Research Methodology 1.3 Market Segmentation Chapter 2 Executive Summary 2.1 Market Snapshot: Global Life Science Microscopy Devices Market 2.2 Global Life Science Optical Microscopes Market, by Product Type, 2013 (USD Million) 2.3 Global Life Science Electron Microscopes Market, by Product Type and Applications, 2013 (USD Million) 6 Transparency Market Research

  7. Life Science Microscopy Devices Market 2.4 Global Life Science Scanning Probe Microscopes Market, by Product Type and Applications, 2013 (USD Million) 2.5 Comparative Analysis: Global Life Science Microscopy Devices Market, by Geography, 2013 & 2020 (Value %) Chapter 3 Market Overview 3.1 Introduction 3.2 Market Dynamics 3.2.1 Market Drivers 3.2.1.1 Rapidly Growing Contract Research Organization (CRO) Market in Emerging Nations 3.2.1.2 Increasing Application Area of Microscopes in the Field of Life Science 3.2.1.3 Instrumentation Grants/Funding from Government 3.2.2 Market Restraints 3.2.2.1 High Price for New and Advanced Microscopes Restraining Penetration in Developing Economies 3.2.3 Market Opportunities 3.2.3.1 Growing Biotech and Research Parks Especially in the Emerging Economies 3.2.3.2 Untapped Opportunities in the Emerging Economies such as India, China, Brazil and Russia 3.3 Porters Five Forces Analysis: Global Life Science Microscopy Devices Market 7 Transparency Market Research

  8. Life Science Microscopy Devices Market 3.3.1 Bargaining Power of Suppliers 3.3.2 Bargaining Power of Buyers 3.3.3 Threat of Substitutes 3.3.4 Threat of New Entrants 3.3.5 Competitive Rivalry 3.4 Market Attractiveness Analysis: Global Life Science Microscopy Devices Market, by Geography 3.5 Market Share Analysis: Global Life Science Optical Microscopy Devices Market, by Key Players, 2013 (Value %) 3.6 Market Share Analysis: Global Life Science Electron Microscopy Devices Market, by Key Players, 2013 (Value %) 3.7 Heat Map Analysis: Global Life Science Scanning Probe Microscopy Devices Market, by Key Market Players Chapter 4 Global Life Science Microscopy Devices Market, by Device Type 4.1 Introduction 4.1.1 Global Life Science Microscopy Devices Market Revenue, by Device Type, 2012 – 2020 (USD Million) 4.2 Average Pricing Analysis: Global Life Science Microscopy Devices Market 4.3 Optical Microscopes 4.3.1 By Geography 8 Transparency Market Research

  9. Life Science Microscopy Devices Market 4.3.1.1 Global Life Science Optical Microscopy Devices Market Revenue, by Geography, 2012 – 2020 (USD Million) 4.3.2 By Product Type 4.3.2.1 Global Life Science Optical Microscopy Devices Market Revenue, by Product Type, 2012 – 2020 (USD Million) 4.3.2.2 Inverted Microscopes 4.3.2.2.1 Global Life Science Inverted Microscopes Market Revenue and Volume, 2012 – 2020 (USD Million/Number of Units) 4.3.2.3 Stereomicroscopes 4.3.2.3.1 Global Life Science Stereomicroscopes Market Revenue and Volume, 2012 – 2020 (USD Million/Number of Units) 4.3.2.4 Phase Contrast Microscopes 4.3.2.4.1 Global Life Science Phase Contrast Microscopes Market Revenue and Volume, 2012 – 2020 (USD Million/Number of Units) 4.3.2.5 Fluorescence Microscopes 4.3.2.5.1 Global Life Science Fluorescence Microscopes Market Revenue and Volume, 2012 – 2020 (USD Million/Number of Units) 4.3.2.6 Confocal Scanning Microscopes 4.3.2.6.1 Global Life Science Confocal Scanning Microscopes Market Revenue and Volume, 2012 – 2020 (USD Million/Number of Units) 4.3.2.7 Near-field Scanning Microscopes 9 Transparency Market Research

  10. Life Science Microscopy Devices Market 4.3.2.7.1 Global Life Science Near-field Scanning Microscopes Market Revenue and Volume, 2012 – 2020 (USD Million/Number of Units) 4.3.2.8 Other Optical Microscopes 4.3.2.8.1 Global Other Life Science Optical Microscopes Market Revenue and Volume, 2012 – 2020 (USD Million/Number of Units) 4.3.3 By Application 4.3.3.1 Global Life Science Optical Microscopy Devices Market Revenue, by Application, 2012 – 2020 (USD Million) 4.3.3.2 Cell Biology 4.3.3.2.1 Global Optical Microscopes Market Revenue in Cell Biology, 2012 – 2020 (USD Million) 4.3.3.3 Clinical/Pathology 4.3.3.3.1 Global Optical Microscopes Market Revenue in Clinical/Pathology, 2012 – 2020 (USD Million) 4.3.3.4 Pharmacology and Toxicology 4.3.3.4.1 Global Optical Microscopes Market Revenue in Pharmacology and Toxicology, 2012 – 2020 (USD Million) 4.3.3.5 Biomedical Engineering 4.3.3.5.1 Global Optical Microscopes Market Revenue in Biomedical Engineering, 2012 – 2020 (USD Million) 4.3.3.6 Neuroscience 10 Transparency Market Research

  11. Life Science Microscopy Devices Market 4.3.3.6.1 Global Optical Microscopes Market Revenue in Neuroscience, 2012 – 2020 (USD Million) 4.4 Electron Microscopes 4.4.1 By Geography 4.4.1.1 Global Life Science Electron Microscopy Devices Market Revenue, by Geography, 2012 – 2020 (USD Million) 4.4.2 By Product Type 4.4.2.1 Global Life Science Electron Microscopy Devices Market Revenue, by Product Type, 2014 – 2020 (USD Million) 4.4.2.2 Transmission Electron Microscopes 4.4.2.2.1 Global Life Science Transmission Electron Microscopes Market Revenue and Volume, 2012 – 2020 (USD Million/Number of Units) 4.4.2.3 Scanning Electron Microscopes 4.4.2.3.1 Global Life Science Scanning Electron Microscopes Market Revenue and Volume, 2012 – 2020 (USD Million/Number of Units) 4.4.3 By Application 4.4.3.1 Global Life Science Electron Microscopy Devices Market Revenue, by Application, 2012 – 2020 (USD Million) 4.4.3.2 Cell Biology 4.4.3.2.1 Global Electron Microscopy Devices Market Revenue in Cell Biology, 2012 – 2020 (USD Million) 11 Transparency Market Research

  12. Life Science Microscopy Devices Market 4.4.3.3 Clinical/Pathology 4.4.3.3.1 Global Electron Microscopy Devices Market Revenue in Clinical/Pathology , 2012 – 2020 (USD Million) 4.4.3.4 Pharmacology/Toxicology 4.4.3.4.1 Global Electron Microscopy Devices Market Revenue in Pharmacology/Toxicology, 2012 – 2020 (USD Million) 4.4.3.5 Biomedical Engineering 4.4.3.5.1 Global Electron Microscopy Devices Market Revenue in Biomedical Engineering, 2012 – 2020 (USD Million) 4.4.3.6 Neuroscience 4.4.3.6.1 Global Electron Microscopy Devices Market Revenue in Neuroscience, 2012 – 2020 (USD Million) 4.5 Scanning Probe Microscopes 4.5.1 By Geography 4.5.1.1 Global Life Science Scanning Probe Microscopy Devices Market Revenue, by Geography, 2012 – 2020 (USD Million) 4.5.2 By Product Type 4.5.2.1 Global Life Science Scanning Probe Microscopy Devices Market Revenue, by Product Type, 2012 – 2020 (USD Million) 4.5.2.2 Scanning Tunneling Microscopes (STM) 12 Transparency Market Research

  13. Life Science Microscopy Devices Market 4.5.2.2.1 Global Life Science Scanning Tunneling Microscopes Market Revenue and Volume, 2012 – 2020 (USD Million/Number of Units) 4.5.2.3 Atomic Force Microscopes (AFM) 4.5.2.3.1 Global Life Science Atomic Force Microscopes Market Revenue and Volume, 2012 – 2020 (USD Million/Number of Units) 4.5.3 By Application 4.5.3.1 Global Life Science Scanning Probe Microscopy Devices Market Revenue, by Application, 2012 – 2020 (USD Million) 4.5.3.2 Cell Biology 4.5.3.2.1 Global Scanning Probe Microscopy Devices Market Revenue in Cell Biology, 2012 – 2020 (USD Million) 4.5.3.3 Clinical/ Pathology 4.5.3.3.1 Global Scanning Probe Microscopy Devices Market Revenue in Clinical/Pathology, 2012 – 2020 (USD Million) 4.5.3.4 Pharmacology/toxicology 4.5.3.4.1 Global Scanning Probe Microscopy Devices Market Revenue in Pharmacology/Toxicology, 2012 – 2020 (USD Million) 4.5.3.5 Biomedical Engineering 4.5.3.5.1 Global Scanning Probe Microscopy Devices Market Revenue in Biomedical Engineering, 2012 – 2020 (USD Million) 4.5.3.6 Neuroscience 13 Transparency Market Research

  14. Life Science Microscopy Devices Market 4.5.3.6.1 Global Scanning Probe Microscopy Devices Market Revenue in Neuroscience, 2012 – 2020 (USD Million) Chapter 5 Global Life Science Microscopy Devices Market, by Geography 5.1 Overview 5.1.1 Global Life Science Microscopy Devices Market Revenue, by Geography, 2012 – 2020 (USD Million) 5.2 North America 5.2.1 North America Life Science Microscopy Devices Market Revenue, 2012 – 2020 (USD Million) 5.3 Europe 5.3.1 Europe Life Science Microscopy Devices Market Revenue, 2012 – 2020 (USD Million) 5.4 Asia Pacific 5.4.1 Asia Pacific Life Science Microscopy Devices Market Revenue, 2012 – 2020 (USD Million) 5.5 Rest of the World (RoW) 5.5.1 Rest of the World Life Science Microscopy Devices Market Revenue, 2012 – 2020 (USD Million) Chapter 6 Recommendations 14 Transparency Market Research

  15. Life Science Microscopy Devices Market Chapter 7 Company Profiles 7.1 Bruker Corporation 7.1.1 Company Overview 7.1.2 Financial Overview 7.1.3 Product Portfolio 7.1.4 Business Strategies 7.1.5 Recent Developments 7.2 Cameca SAS 7.2.1 Company Overview 7.2.2 Financial Overview 7.2.3 Product Portfolio 7.2.4 Business Strategies 7.2.5 Recent Developments 7.3 Carl Zeiss AG 7.3.1 Company Overview 7.3.2 Financial Overview 7.3.3 Product Portfolio 7.3.4 Business Strategies 7.3.5 Recent Developments 15 Transparency Market Research

  16. Life Science Microscopy Devices Market 7.4 Danish Micro Engineering A/S 7.4.1 Company Overview 7.4.2 Financial Overview 7.4.3 Product Portfolio 7.4.4 Business Strategies 7.4.5 Recent Developments 7.5 FEI Company 7.5.1 Company Overview 7.5.2 Financial Overview 7.5.3 Product Portfolio 7.5.4 Business Strategies 7.5.5 Recent Developments 7.6 Hitachi High-Technologies Corporation 7.6.1 Company Overview 7.6.2 Financial Overview 7.6.3 Product Portfolio 7.6.4 Business Strategies 7.6.5 Recent Developments 7.7 JEOL Ltd. 16 Transparency Market Research

  17. Life Science Microscopy Devices Market 7.7.1 Company Overview 7.7.2 Financial Overview 7.7.3 Product Portfolio 7.7.4 Business Strategies 7.7.5 Recent Developments 7.8 Keysight Technologies, Inc. 7.8.1 Company Overview 7.8.2 Financial Overview 7.8.3 Product Portfolio 7.8.4 Business Strategies 7.8.5 Recent Developments 7.9 Leica Microsystems GmbH 7.9.1 Company Overview 7.9.2 Financial Overview 7.9.3 Product Portfolio 7.9.4 Business Strategies 7.9.5 Recent Developments 7.10 NT-MDT Company 7.10.1 Company Overview 17 Transparency Market Research

  18. Life Science Microscopy Devices Market 7.10.2 Financial Overview 7.10.3 Product Portfolio 7.10.4 Business Strategies 7.10.5 Recent Developments 7.11 Nikon Corporation 7.11.1 Company Overview 7.11.2 Financial Overview 7.11.3 Product Portfolio 7.11.4 Business Strategies 7.11.5 Recent Developments 7.12 Olympus Corporation 7.12.1 Company Overview 7.12.2 Financial Overview 7.12.3 Product Portfolio 7.12.4 Business Strategies 7.12.5 Recent Developments About Us 18 Transparency Market Research

  19. Life Science Microscopy Devices Market Transparency Market Research is a market intelligence company providing global business information reports and services. Our exclusive blend of quantitative forecasting and trends analysis provides forward- looking insight for thousands of decision makers. We are privileged with highly experienced team of Analysts, Researchers and Consultants, who use proprietary data sources and various tools and techniques to gather, and analyze information. Our business offerings represent the latest and the most reliable information indispensable for businesses to sustain a competitive edge. Contact Transparency Market Research 90 State Street, Suite 700, Albany NY - 12207 United States Tel: +1-518-618-1030 USA - Canada Toll Free 866-552-3453 Email: sales@transparencymarketresearch.com Website: http://www.transparencymarketresearch.com/ 19 Transparency Market Research

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