Laboratory
automation is the usage of technology and equipment in laboratories
to raise experimental data quality, reduce lab process cycleand in
diagnostics. Laboratory automation encompasses process, devices,
technology and software that support automated workflow process in
the laboratories and thus decrease manual steps and faults. It
allowstough and faster throughput and analysis of a large number of
samples. Laboratory automation applied in different areassuch as drug
discovery and clinical testing. Laboratory robotics is the most
widely known application of laboratory automation technology.
Generally, the field of automation comprises many different devices,
software processes, automated laboratory instruments and
methodologies used to enable, accelerate and increase the proficiency
and effectiveness of laboratory scientific research in laboratories.
A laboratory automation system can be either an integrated system or
standalone.
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Lab
automation includes both hardware and software. Hardware Automation
involves total automation system where all the devices are combined
and modular automation where few of the devices in the workflow are
automatic. Factors contributing the growth of lab automation market
includes rise in diagnosis leading to work pressure, accuracy of the
results, shortage of quality lab technicians, budget constraints for
laboratories, reduction in sample contamination risk, time delay,
labor charge and areas such as microbiology and hematology are
providing better scope for this market. The market for lab automation
solutions manufacturers are expected to grow as with the introduction
and adoption of forthcoming technologies such as semantic
technologies, digital dispensing and microfluidic chips or merger of
Lab-on-a-chip (LOC) technology with the systems. Recently, there has
been a tremendous use of Microfluidic chips in advanced biological
research are gaining popularity. These are used ingenomics,
proteomics and metabolic research. The global microfluidic chips
market is developing because of their increased worldwide
use.However,there are few areas, which are hampering the growth of
the market, are affordability and flexibility by small players,
refund policies and high cost of equipment.
North
America offers the largest market share of laboratory automation
process.However, Europe and Asian Pacific countries are the emerging
markets. The rise in aging population leads to high diagnosis rate
and large volume of test samplesdriving the clinical diagnostic
laboratories opt for automation procedure.
The
application market of lab automation is based upon Clinical
Diagnostics, Genomics Solutions and Drug Discovery. According to
Equipment and Software category are classified as Automated Liquid
Handling, Automated Storage & Retrieval Systems (ASRS),
Microplate Readers, Standalone Robots, and Software &
Informatics. Lab Automation Market, by type of automation are further
divided into Total Lab Automation (TLA) and Modular automation.
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End-usersof
lab automation market consists of Pharmaceutical Industry,
Biotechnology industry, Hospitals and private laboratories, Academic
and research institutes.
Some
of the key players in lab automation market are Abbott
Diagnostics,Agilent Technologies (U.S), Biomérieux SA, Beckman
Coulter, Inc. (Subsidiary of Danaher Corporation, U.S), Hamilton
Robotics, Inc.(U.S), LabWare Inc., Perkinelmer, Inc.(U.S), Roche
Holding AG, Qiagen N.V., Siemens Healthcare, Tecan Group Ltd.
(Switzerland), Thermo Fisher Scientific, Inc. (U.S).
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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