Automated Microbiology Market - Global Industry Analysis, Size, Share, Growth, Trends And Forecast 2014 - 2020

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Automated Microbiology Market Global Industry Analysis, Size,
Share, Growth, Trends And Forecast
2014 - 2020
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REPORT DESCRIPTION
Automated microbiology is the advanced microbiology technique that allows microbiologists to perform
microbiology testing more quickly and accurately. Automated microbiology technique is an improved
method for isolation, early detection, enumeration and characterization of micro organism and their
products in clinical, food and environment industries. Automated microbiology techniques provide variety
of experimental approaches such as sequencing and synthesis to modify or mimic a biological system. The
main objective for using automated microbiology technologies is to develop and understand human
diseases such as genetic diseases, cancer and identifies new molecular targets for drug discovery. In
addition, the advancement in automated microbiology technique lowers the turnaround time, enhance
quality control and boosts the accuracy of microbial experiments.
Browse Full Report with TOC @ http://www.transparencymarketresearch.com/automated-microbiologymarket-size.html
The market of automated microbiology market is segmented as follows:

By Diagnostic Technologies
◦ DNA Sequencing
◦ DNA and RNA Probe Technology
◦ Labeling Techniques
◦ Amplification Methods
◦ Others

Detection Techniques
◦ Radioactive Methods
◦ Non-Isotopic Methods
◦ Monoclonal Antibodies
◦ Immunoassays
◦ Others

By End Users
◦ Clinical Laboratories
◦ Biotechnology Industries
◦ Others
The market of automated microbiology is majorly driven by technological advancements that have made
microbial tests faster and more accurate. For example, in February 2012, BioControl Systems introduced
Non-O157 Shiga Toxigenic E.coli (STEC) test. This test provides advancement in food microbiology and
molecular technology for the detection of non-O157 serotype of E.coli. In addition, bioMeriux offers
BacT/ALERT 3D microbial detection system. The system that provides high advantages such as easy
access system and early detection as compared to other commercially available microbial detection
system. Thus, these types of innovative introductions attract new end users (i.e. clinical laborites and
biotechnologies) hence drive the market growth. In addition, wide application areas of microbial products
in the energy, healthcare and environment further stimulates the uptake of automated microbiology
techniques hence drives the market growth. However, stringent regulatory requirements for the use of
microbiology products restrain the market growth. In addition, high cost of automated microbiology testing
further restrains the market growth of automated microbiology to some extent.
Geographically, North America dominates the global automated microbiology market. The growth is mainly
attributed to the presence of large number of key players that offers broad portfolio of automated
microbiology. Europe is considered as the second largest region for automated microbiology market.
Introduction of advancements in molecular diagnostic such as genetic probe test and others will augment
the market growth in European region. In addition, positive initiatives by governments are expected to
increase the number of end users of this market hence drives the market growth. For example, Abbott
Laboratories received CE Marking approval in the European Union to market PLEX-ID instruments in March
2012. This instrument is featured with molecular diagnostic technology which enables to detect and
identify broad range of microbes. Thus, this factor would in turn establish healthy platform to develop the
market in European region hence drives the market growth. In addition, India, South East Asia and China
are considered as the emerging markets for automated microbiology because of increasing demand of this
techniques coupled with rising investments by Asia Pacific governments to improve healthcare
infrastructure.
Some of the key players contributing to automated microbiology market comprise Abbott Laboratories,
Affymetrix, Inc., Agilent Technologies, Inc., Beckman Coulter, bioMeriux, Inc., Bio-Rad Laboratories, Inc. and
others.
This research report analyzes this market on the basis of its market segments, major geographies, and
current market trends. Geographies analyzed under this research report include

North America

Asia Pacific

Europe

Middle East and Africa

Latin America
This report provides comprehensive analysis of

Market growth drivers

Factors limiting market growth

Current market trends

Market structure

Market projections for upcoming years
This report is a complete study of current trends in the market, industry growth drivers, and restraints. It
provides market projections for the coming years. It includes analysis of recent developments in
technology, Porter’s five force model analysis and detailed profiles of top industry players. The report also
includes a review of micro and macro factors essential for the existing market players and new entrants
along with detailed value chain analysis.
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Automated microbiology is the advanced microbiology technique that allows microbiologists to perform microbiology testing more quickly and accurately. Automated microbiology technique is an improved method for isolation, early detection, enumeration and characterization of micro organism and their products in clinical, food and environment industries. Automated microbiology techniques provide variety of experimental approaches such as sequencing and synthesis to modify or mimic a biological system. The main objective for using automated microbiology technologies is to develop and understand human diseases such as genetic diseases, cancer and identifies new molecular targets for drug discovery. In addition, the advancement in automated microbiology technique lowers the turnaround time, enhance quality control and boosts the accuracy of microbial experiments. Browse Full Report with TOC @ http://www.transparencymarketresearch.com/automated-microbiology-market-size.html