Live Cell Imaging Market by Symptoms, Causes, Tests, and Diet


Posted December 3, 2018 by harshita24

3rd December 2018: MarketResearchFuture announced addition of new report, titled “Live Cell Imaging Market Research Report – Forecast to 2023”.
 
Market Highlights
Live cell imaging is the technique to study live cells with the help of images obtained from imaging systems such as high content screening systems and microscopes. This method is used by the scientists to obtain a better view of the cell’s biological function by studying the cellular dynamics. With the help of this technique, kinetic processes such as signal transduction, protein and receptor trafficking, membrane recycling, and enzyme activity can be conducted. Thus, owing to various benefits this technique is becoming increasingly popular in the healthcare industry.
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The increasing prevalence of chronic diseases and growing government funding in cell-based research are propelling the growth of this market. For instance, funding institutes such as Health Connexions, National Institute of Health, and W.M. Keck Foundation have granted funds to institutes such as Harvard School of Medicine, Perdue University, and Weldon School of Biomedical Engineering for the development of imaging technologies to be applied in the field of health, food, and environment. Furthermore, adoption of high content screening techniques in drug discovery and cell biology boosts the growth of the global live cell imaging market.
However, the lack of availability of skilled professional and the high cost of high-content screening systems may hinder the growth of the market during the forecast period.
Many prominent players in the market have incorporated into acquisitions, mergers and continuous launch of quality systems to hold the market position. For instance, in April 2016, BioTek Instruments launched Lionheart FX, an automated live cell imager with augmented microscopy. Moreover, in the same year, the company announced the collaboration with MilliporeSigma for long-term dynamic time-lapse analyses and live cell experiments. This collaboration involved the development of an integrated solution comprising MilliporeSigma's CellASIC ONIX2 Microfluidic system and BioTek's Lionheart FX Automated Live Cell Imager.

Regional Analysis
The global live cell imaging market consists of four regions, namely, Americas, Europe, Asia Pacific and the Middle East & Africa. The North American region holds the major share of the global live cell imaging market, owing to the existing well-established healthcare system, increasing prevalence of cancer cases, and technological advancements. According to the report published by American Cancer Society, in 2017, around 190,500 of the estimated 600,920 cancer deaths in the United States will be caused owing to the cigarette smoking. Moreover, factors such as high capitalization in imaging systems as well as intensive research and development to improve the imaging quality and data functionality fuels the market growth in this region.
Europe holds the second position in the global live cell imaging market. It is expected that the government support towards research & development expenditure and rising prevalence chronic diseases is likely to drive the European live cell imaging market. Additionally, the presence of some key players such as Carl Zeiss AG, Leica Microsystems, and GE Healthcare. For instance, in November 2016, Carl Zeiss AG launched ZEISS celldiscovery 7 automated microscope for live cell imaging. With this launch, the company expanded its product portfolio in live cell imaging.
The Asia Pacific live cell imaging market consists of countries namely China, Japan, Republic of Korea, India, Australia and Rest of Asia Pacific. Japan is the largest market for live cell imaging due to an increase in the prevalence of cancer and demand for live cell imaging techniques. In China, factors responsible for the market growth are rising geriatric population with chronic diseases and availability of low-cost diagnostic and treatment options.
The Middle East & Africa holds the lowest share of the global market due to low development, lack of technical knowledge, and poor medical facilities.

Segmentation
The global live cell imaging market is segmented on the basis of the product, technology, application, and end-user.
On the basis of product, the market is classified as equipment, consumables, and software. The equipment is further segmented as microscopes, standalone systems, cell analyzer, and image-capturing devices. The microscopes are further sub-segmented as conventional microscopes, confocal microscopes, and advanced fluorescence microscopes. The consumables are sub-segmented as assay kits, reagents, media, and others.
The global live cell imaging market on the basis of technology is segmented as fluorescence resonance energy transfer, fluorescence recovery after photobleaching, high-content analysis, ratiometric imaging, fluorescence in situ hybridization, total internal reflection fluorescence microscopy, multiphoton excitation microscopy and other technologies.
On the basis of application, the market is segmented into cell biology, stem cells, developmental biology, and drug discovery.
On the basis of end-user, the market is segmented as pharmaceutical companies, biotechnology companies, hospitals, diagnostic laboratories, and others.

Global Live Cell Imaging Key Players
Carl Zeiss AG (Germany), Leica Microsystems (Germany), Olympus Corporation (Japan), Sigma-Aldrich Corporation (U.S.), Nikon Corporation (Japan), Molecular Devices, LCC (U.S.), PerkinElmer, Inc. (U.S.), GE Healthcare (U.K.), Becton, Dickinson and Company (U.S.), Thermo Fisher Scientific, Inc. (U.S.), Danaher Corporation (U.S.), and BioTek Instruments (U.S.) are some prominent players in this market.

Table of Content: Key Points
Chapter 1. Report Prologue
Chapter 2. Market Introduction
Chapter 3. Research Methodology
Chapter 4. Market Dynamics
Chapter 5. Market Factor Analysis
Chapter 6. Global Live Cell Imaging Market, By Product
…Continued
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Issued By Harshita
Country India
Categories Health , Medical , Science
Last Updated December 3, 2018