(MoneyNewsWire.Net, August 16, 2017 ) Preclinical imaging is the visualization of living animals for research purposes, such as drug development. Imaging modalities are very crucial for researchers in observing changes, either at the organ, tissue, cell, or molecular level, responding to physiological or environmental changes. Imaging modalities that are non-invasive and in-vivo is important to study animal models longitudinally. Techniques such as high-frequency micro-ultrasound, magnetic resonance imaging (MRI) and computed tomography (CT) are usually used for anatomical imaging, while optical imaging (fluorescence and bioluminescence), positron emission tomography (PET), and single photon emission computed tomography (SPECT) are usually used for molecular visualizations. Pre-clinical in-vivo imaging industry has experienced myriad technological advancements, changes in industry due to industry consolidation, and change in government funding and support for research studies across the global over the past decade.
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Globally, factors such as technological advancements in molecular imaging modalities, growing acceptance of preclinical imaging as a legitimate drug development tool, are fueling the demand of preclinical imaging systems and reagents. Declining NIH budgets for medical science research studies and high implementation cost of sophisticated preclinical imaging systems are restricting the growth of the global preclinical imaging industry.
Global industry for Preclinical In-vivo Imaging is segmented based on Modality and Reagents. Based on modality, the global preclinical imaging industry is divided into seven major segments, namely, optical imaging, nuclear imaging, micro-MRI, micro-CT, micro-ultrasound, photoacoustic, and magnetic particle imaging systems. The preclinical optical imaging systems industry includes bioluminescence/fluorescence imaging systems, standalone fluorescence imaging systems, optical + X-ray/optical + CT imaging systems. The preclinical nuclear imaging systems industry comprises micro-PET systems (standalone PET, PET/CT, and PET/MRI), micro-SPECT systems (standalone SPECT, SPECT/CT, and SPECT/MRI), and tri-modality (PET/SPECT/CT) imaging systems. Bases on the reagents, the global preclinical imaging industry is divided into five segments, namely, optical imaging reagents, nuclear imaging reagents, MRI contrast agents, ultrasound contrast agents, and CT contrast agents. The optical imaging reagents industry is further sub-segmented as bioluminescent and fluorescent imaging reagents. Likewise, the nuclear imaging reagents industry is divided as preclinical PET tracers and SPECT probes.
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Geographically, Global industry for Preclinical In-vivo Imaging is segmented into North America, Asia Pacific, Latin America, Europe, and Africa & Middle-East. North America holds the largest share of the global preclinical imaging industry, followed by Europe. Factors including rising R&D activities by big pharma and biotech companies in developing nations and increased government funding for development of pharmaceutical industry are stimulating the growth of the preclinical imaging industry in the Asia-Pacific region.
Aspect Imaging, Biospace Lab S.A., Bruker Corporation, LI-COR Biosciences, Mediso Ltd., MILabs B.V., MR Solutions Ltd, PerkinElmer, Inc., TriFoil Imaging, and FUJIFILM VisualSonics, Inc. are the key players operating in the global preclinical imaging systems industry.
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Key Points from Table of Contents
Overview
Executive Summary
Key Inferences
New Developments
Drivers, Restraints, Opportunities, and Challenges Analysis (DROC)
Industry Segmentation
By Modality
By Reagent
Geographical Analysis
North America
Europe
Asia-Pacific
Latin America
Middle East & Africa
Strategic Analysis
PESTLE analysis
Porters Five analysis
Industry Leaders' Analysis
Competitive Landscape
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