Global Biophotonics Market report delivers future development strategies, key companies, Possibility of competition, major challenges analysis. The reports elaborate the expansion rate of the Biophotonics market supported the highest company profile analysis. This report providing an in-depth analysis, market size, and evaluation for the developing segment among the industry. Biophotonics Market report will help you take expert decisions, recognize opportunities, plan effective professional tactics, plan new schemes, analyse drivers and restraints and give you a vision on the Biophotonics Market forecast.
The Biophotonics Market
report discusses the primary industry growth drivers and challenges that the
vendors and the market as a whole face and provides an overview of the key
trends emerging in the market. It also talks about the market size of different
segments and their growth aspects along with key leading countries in Americas,
Asia-Pacific, Europe, the Middle East, and Africa regions.
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The global biophotonics
market was valued at USD 34.29 billion in 2015 and is expected to reach USD
91.31 billion by 2024. The growth is primarily attributed to the advancements
in nanotechnology, increasing the sophistication of medical devices and healthy
demand for point-of-care treatment solutions.
Biophotonics involves the use of light energy to detect measure and
manipulate the biological materials or activities. The growing sophistication
of medical research is expected to fuel further studies in this field, thereby
providing avenues for market growth. Besides research, biophotonics finds application
in the biotechnology, defense, therapeutic, diagnostic and agriculture sector.
In-vitro diagnostic and
medical imaging is expected to be the core application areas for biophotonics.
However, the increased government support for innovative and affordable therapy
may provide wider application scope and is expected to impact the market growth
positively. Biophotonics is anticipated to witness high penetration in
point-of-care devices, owing to the potential of minute observations which may
offer targeted therapy options without causing any side effects. The
advancements in the biosensors coupled with rapid applications of light therapy
and microscopy are also expected to contribute towards industry growth.
Biophotonics techniques are
rapidly deployed in agriculture applications for testing the crops.
Microfluidics and monitoring techniques are expected to dominate the
agriculture sector, owing to advancements in food surveillance and testing
procedures. Genetically modified crops may also provide growth opportunities
due to applications of this technology in biotechnology laboratories and
research centers. Besides agriculture, the defense sector is also expected to
provide growth opportunities owing to the emergence of chemical and biological
warfare.
The market is segmented, by
the application into spectro molecular, surface imaging, biosensors,
see-through imaging, light therapy and microscopy. The see-through imaging
sector is expected to command the highest share owing to the healthy demand for
non-invasive treatment and applications in brain imaging. On the basis on end-use, the market is
segmented into medical therapeutics and diagnostics, its related test
components and non-medical applications. Although the medical sector accounts
for the ongoing industry growth, future growth may be due to the increased use
in the non-medical fields such as agriculture and defense. Environment
monitoring applications may also propel the market demand over the next eight
years.
North America biophotonics
market accounted for a sizeable share in 2015 owing to sound investment in
R&D and the healthcare industry. Asia Pacific market is expected to witness
significant growth due to rising geriatric population. Companies may eye
developing countries such as Thailand and India, which are increasing their
expenditure on healthcare facilities and R&D.
Technological advancements
in imaging techniques are poised to keep research active. Imaging solutions
such as 3D volumetric mapping are emerging as the key research areas providing
an upsurge in uptake. However, owing to the nascent nature of such
technologies, the applications are limited. Active collaboration of computer
engineers and biologists is expected to help overcome challenges, eventually
leading to industry growth. Further, y the ongoing research in nanotechnology
is anticipated to provide growth opportunities.
The industry supply chain
includes biologists and imaging solutions providers, which may integrate
research to develop new products. The industry may face fierce competition
leading to utilization of biophotonic devices at home. It may incentivize
companies to develop competencies either by research or merger &
acquisitions. Precision Photonics’ acquisition by Idex Corporation is one such
example, leading to the development of in-house manufacturing capabilities for
Idex. The healthy growth potential may incentivize firms to enter the industry.
However, with only a handful key player with hefty investments, there is a
potential barrier to new entrants.
Key players in the sector
include AdvanDx, Affymetrix, Andor, Carl Zeiss, FEI Company, Hamamatsu
Photonics, Lumenis, Olympus Corporation and Zecotek Photonics. The industry
exhibits significant dominance of the US-based firms Affymetrix, which is
established player in the healthcare instrument sector and FEI Company, which
is into microscopy and imaging solutions.
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