Showing posts with label Life Science Microscopy Devices Market. Show all posts
Showing posts with label Life Science Microscopy Devices Market. Show all posts

Tuesday, 20 June 2017

Life Science Microscopy Devices Market 2016 - Industry Perspective and Comprehensive Analysis 2024

Global Life Science Microscopy Devices Market: Overview
Microscopy devices are finding wide applications in various fields such as nanotechnology, materials science, semiconductors technology, and life science fields. New and advanced microscopes are being introduced in the market which are enabling researchers around the world to go down at miniature levels, and analyze the substance, cells, and materials, with high throughput, real time and 3D imaging facilities. A new generation of integrated microscopes which come equipped with all the necessary additional features such as imaging instruments and techniques like Raman spectroscopy, high resolution camera, and other features, are expected to drive the growth of the microscopy devices in the life science field. Global life science microscopy devices market is segmented on the basis of device types and application. Device type segment comprises of three major categories of the optical microscopes, electron microscopes, and the scanning probe microscopes.
This 202 page report gives readers a comprehensive overview of the life science microscopy devices market. Browse through 71 data tables and 53 figures to unlock the hidden opportunities in this market: http://www.transparencymarketresearch.com/life-science-microscopy-devices.html
Global Life Science Microscopy Devices Market: Scope of the Report
The market overview section of the report comprises qualitative analysis of the overall life science microscopy devices market considering the factors determining the market dynamics such as drivers, restraints and opportunities, along with Porter’s five force analysis and market attractiveness analysis. In addition, such as market opportunity analysis for the device type, application, and key industry developments has also been provided. Key industry developments include the major events occurred in past 4-5 years and are expected to occur during the forecast period which are likely to affect the market dynamics.
Global Life Science Microscopy Devices Market: Key Segments
The global life science microscopy devices market has been segmented on the basis of device type, and application. On the basis of By device type the global life science microscopy devices market is segmented into optical Microscopes (Inverted Microscopes, Stereo Microscopes, Phase Contrast Microscopes, Fluorescence Microscopes, Confocal Scanning Microscopes, Near Field Scanning Microscopes, Others), electron Microscopes (Transmission Electron Microscopes, Scanning Electron Microscopes), and scanning Probe Microscopes (Atomic Force Microscopes, Scanning Tunneling Microscopes). On the basis of application the global life science microscopy devices market is segmented into Cell Biology, Clinical / Pathology, Biomedical Engineering, Pharmacology & Toxicology, and Neuroscience. The market for these device types, and application has been extensively analyzed on the basis of factors such as usage pattern, sales revenue, volume, geographic presence and technological developments. The market size and forecast in terms of revenue (USD million), and volume (Units) for each of these segments, and the sub-segments have been provided for the period 2014 to 2024, considering 2015 as the base year. The report also provides the compounded annual growth rate (CAGR) for each segment for the forecast period 2016 to 2024.
Request a sample of this report to know what opportunities will emerge in the rapidly evolving life science microscopy devices market during 2016 - 2024: http://www.transparencymarketresearch.com/sample/sample.php?flag=S&rep_id=4017
Global Life Science Microscopy Devices Market: Regional Outlook
Geographically, the life science microscopy devices market has been classified into five segments namely, North America, Europe, Asia-Pacific, Latin America, and the Middle East & Africa. The market size and volume forecast for each region has been provided for the period 2014 to 2024, in terms of device types, and application, along with the CAGR (%) for the forecast period 2016 to 2024.
Global Life Science Microscopy Devices Market: Competitive Landscape
The report also provides a section on the competitive landscape, wherein the market share analysis of leading players in the global life science microscopy devices market, in terms of percentage share in 2016 (estimated) has been discussed. A list of recommendations has also been included for new entrants as well as existing market players to help them establish a strong presence in the market and increase their market share. The report concludes with the profiles of major players in the global Life Science Microscopy Devices market such as Olympus Corporation, Carl Zeiss Microscopy GmBH, Nikon Corporation, Bruker Corporation, Hitachi High-Technologies Corporation, Leica Microsystems, FEI Company, JOEL Ltd., Cameca SAS, and NT-MDT, among others. The major market players are evaluated on various parameters such as company overview, financial overview, product portfolio, business strategies and recent developments. 

Wednesday, 31 May 2017

Life Science Microscopy Devices Market Overview - Key Futuristic Trends And Competitive Landscape 2024

The global life science microscopy devices market exhibits a highly consolidated vendor landscape, with the top four players accounting for a share of over 90% in 2016. These companies are Olympus Corporation, Nikon Corporation, Leica Microsystems, and Carl Zeiss Microscopy GmBH. Of these companies, holding the leading market share Olympus Corporation emerged as the dominant player, finds Transparency Market Research (TMR) in a new study. Despite the consolidated vendor landscape, the global life science microscopy devices market is reeling under fierce competitive forces. “Competition is especially tough from manufacturers in Asia Pacific as they offer microscopy devices at comparatively lower prices,” said a lead TMR analyst.
However, major players are forecast to enjoy stronghold on account of their deeper global penetration and brand value. These companies also compete based on their strong product portfolio. Given the scenario, the competition is expected to remain high in the market through the forthcoming years.
This 202 page report gives readers a comprehensive overview of the life science microscopy devices market. Browse through 71 data tables and 53 figures to unlock the hidden opportunities in this market: http://www.transparencymarketresearch.com/life-science-microscopy-devices.html
According to TMR, the global life science microscopy devices market, which stood at US$1.1 bn in 2015, is projected to reach US$2.0 bn by the end of 2024. If these figures hold true, the global life science microscopy devices market will exhibit a CAGR of 6.5% between 2016 and 2024. By device type, the optical microscopes segment held the dominant share of 51.9% in the overall market in 2015. This segment is forecast to gain from the increasing demand for various types of optical microscopes such as inverted and fluorescence microscopes.
Regionally, North America dominated the global life science microscopy devices market with a share of 47.3% in 2015 and will continue doing so through the forecast period. Besides this, Asia Pacific exhibits high potential as the regional market for life science microscopy devices owing to the rising investment in R&D activities by biotechnology and pharmaceutical companies.
Microscopy Devices Sales to Surge in Response to Higher R&D Activities
Expansion witnessed by the contract research organization market and the increasing applications of microscopes in life sciences will support growth of the life science microscopy devices market. Several companies have ventured in the contract research organization industry encouraged by growth it has been exhibiting over the past few years. This in turn has bolstered research and development activities in the field of life science, which is creating lucrative opportunities for microscopy device manufacturers. The life science industry itself has risen considerably in the last few years owing to higher healthcare spending. Spurred by these factors the global life science microscopy devices market will exhibit robust growth in the coming years.
Request a sample of this report to know what opportunities will emerge in the rapidly evolving life science microscopy devices market during 2016 - 2024: http://www.transparencymarketresearch.com/sample/sample.php?flag=S&rep_id=4017
Besides this, investments in the development of new integrated microscopes will play a major role in bolstering market opportunities. Older microscopes such as electron or scanning probe microscopes required additional equipment such as scanners, detectors, imaging, and other systems. Contrary to this, the recently introduced integrated microscopes are available with the whole package. It thus has allowed customers to save considerably on their purchase compared to their traditional counterparts. This, coupled with recent technological innovations will greatly contribute towards the market’s expansion in the coming years.
Premium Price of High-end Microscopes to Limit Their Penetration across Regions
On the downside, high-end microscopes often come for a premium price, which is an off-putting factor. These microscopes therefore have limited penetration across biotechnology and pharmaceutical companies thereby negative influencing the overall trajectory. In addition, lower allocation of budget towards research and development especially in developed countries is creating major concerns.
Nevertheless, the advent of localization microscopy is expected to provide a new dimension to the fluorescence microscopy techniques. Such innovations will pave way for a brighter future of enterprises operating in the global life science microscopy devices market.
This review is based on a TMR report, titled “Life Science Microscopy Devices Market - Global Industry Analysis, Size, Share, Volume, Growth, Trends and Forecast 2016 - 2024.”

Wednesday, 26 April 2017

Life Science Microscopy Devices Market Overview - Key Futuristic Trends And Competitive Landscape 2024

Over the past few years, microscopy devices have soared in popularity driven by their applications in studying various biological interactions and processes at cellular level. Their use have facilitated the discovery of novel therapies and advanced diagnostics in treating a wide variety of diseases worldwide. The need for advanced technologies to investigate various cell types and meticulously examine their interactions with other compounds has stimulated the demand for microscopy devices. An increasing number of biotechnology and pharmaceutical companies have shifted toward forming collaborations with contract research organizations (CRO) in order to leverage the potential of modern technical expertise and reduce the cost of R&D activities. This development has spurred the demand for microscopy devices in the life sciences industry.
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In recent years, the advent of ultra-precision and high-resolution microscopy and increasing adoption of automation technologies in biosciences are key trends catalyzing the demand for microscopy devices in life sciences applications. The launch of fluorescence microscopes is an encouraging development in this regard. The worldwide market for life science microscopy devices is projected to reach US$2.0 bn by the end of the forecast period and is expected to rise at 6.5% CAGR of during 2016–2024.
Which are the microscopy device types likely to witness significant uptake in the life sciences industry?
The major types of microscopy devices used in life sciences applications are optical microscopes, electron microscopes, and scanning probe microscopes. Optical microscopes constitute a major segment in the market. The impressive demand for optical microscopes is attributed to their wide applications in research laboratories across various emerging nations and soaring demand in areas such as clinical, pathology, pharmacology and toxicology. The low cost of these devices is crucial factor bolstering their uptake. The development of integrated microscopes is also expected to fuel their demand. The prominence of integrated optical microscopes over electron and scanning probe microscopes is due to the cost-effectiveness of the former, as they do not need any additional systems such as detectors, scanners, and imaging.
The demand for optical microscopes is primarily fuelled by the growing popularity of fluorescence microscopes. The high sensitivity and specificity of fluorescence microscopes has led to their extensive use in a variety of intra and intercellular processes such as exocytosis and endocytosis. However, the prevalence of intense competition among vendors may slightly hamper the demand for optical microscopes in the forthcoming years.
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Which regions are projected to provide abundant promising opportunities for manufacturers of microscopy devices?
North America is expected to provide lucrative avenues for players in the life sciences microscopy devices market. The regional market held the dominant share in 2016 and is forecast to maintain its lead throughout the forecast period.  Spiraling R&D spending in the life sciences and biomedical industries is anticipated to bolster the demand for various types of microscopy in the region.
Meanwhile, the Asia Pacific market for microscopy devices in life sciences will exhibit a stellar performance along the forecast period. The substantial demand for microscopy devices in the region is on the account of rapid advances made in nanotechnology, especially in China and Japan, and continuous technological advancements in microscopy devices.
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Wednesday, 1 March 2017

Life Science Microscopy Devices Market size and Key Trends in terms of volume and value 2014-2020

Microscopy devices have paved the way for innovation in life science through their most potential feature — imaging minute details of any matter. Researchers are able to obtain images of neurons, synapses, cell structure and its processes of high quality using advanced microscopes. Microscopes are also used extensively in academic institutes for primary research. However, the demand for different types of microscopes varies based on the sample type and objective of study. For instance, optical microscopes are used for basic life science research in academic institutes, and private and public research laboratories. Additionally, price of a microscope plays an important role in determining demand, as emerging economies face funding issues. With improving technology, optical microscopes are being increasingly used for advanced life science research. Fluorescence and phase contrast microscopes are realizing their potential extensively in cell biology, pathology and toxicology studies. On the other hand, the use of electron and scanning probe microscopes is rapidly growing with the advancement in the research objectives.
The global life science microscopy devices market has been analyzed based on product type and geography. Three major types of microcopy devices are used in life science research: optical microscope, electron microscope and scanning probe microscope. Optical microscopes are extensively used in life science research because they cost less and address the primary objectives of researchers in academic institutes, and private and public research laboratories. The optical microscopes segment has been sub-segmented based on geography, applications and product type. Cell biology dominated the optical microscopes segment because of their light microscopy features that support cell biology research at minimal cost and effort over other life science applications. Stereo microscopes are the most commonly used optical microscopes in life science research across the world due to their low cost and the ability to generate three-dimensional perspective of the sample under study. However, demand for fluorescence microscopes is increasing rapidly, as staining techniques are being widely used in life science research. On the other hand, phase contrast microscopes are expected to replace fluorescence microscopes in the near future due to their ease of sample preparation and better image capturing features.
Electron microscopes offer high-resolution and magnification power up to 10 million times, which makes them appropriate for the visualization of three-dimensional structures of cells and tissues, determining the spatial arrangement of protein structures and the pathology of disease conditions. The electron microscopes segment has been sub-segmented into transmission electron microscope (TEM) and scanning electron microscope (SEM). The scanning electron microscope segment held the largest share of the global life science electron microscopy devices segment due to low cost and the capability to provide data on taxonomic and systemic parasite studies. However, the demand for transmission electron microscopes, which is an established technique used in cell biology applications, is increasing. Moreover, their use in neuroscience and biomedical engineering is growing rapidly, as researchers gain more interest in the study of brain activity.
The scanning electron microscopes segment has been sub-segmented into atomic force microscope and scanning tunneling microscope. Ease in sample preparation and better imaging is driving the demand for atomic force microscopes. Microscope manufacturers and researchers find these microscopes more useful in neuroscience, biomedical engineering and toxicology studies, as they can be used in vacuum, air, and water. Moreover, electron and scanning probe microscopes find wide applications in neuroscience, as these advanced microscopes offer atomic level imaging of brain sections.
Geographically, North America accounted for the largest share of the global life science microscopy devices market in 2013. However, demand for microscopy devices in Asia Pacific and Latin America is expected to be high during the forecast period due to the growing contract research organization (CRO) market in these regions.
The global life science microscopy devices market is characterized by the presence of few prominent players such as Nikon Corporation, FEI, JEOL Ltd., Leica Microsystems, Hitachi High-technology Corporation, Olympus Corporation, and Carl Zeiss AG.