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The global radiation detection products market is anticipated to grow at a steady rate and will post a CAGR of more than 5% during the forecast period. Increasing technological advancements witnessed in the radiation therapy segment will drive the growth prospects for the global radiation detection products market in the forthcoming years. Nuclear medicine imaging and therapy are used for the treatment of major diseases such as cancers, cardiovascular diseases, and neurological disorders, which involve computed tomography, positron emission tomography, and single photo emission computed tomography. Also, the radiation therapy devices can detect a disease, determine the extent and severity of the disease, and monitor patients' response to radiation therapy. Furthermore, some of the services provided by vendors in radiation oncology physics services are accreditation consulting, cancer center planning and design, equipment commissioning, on-site physics and dosimetry support, quality assurance review, shielding design, special physics consulting, and regulatory compliance and radiation safety programs. In addition, the quantity of radiation dose administered from the radiation producing devices during the medical imaging and radiation oncology procedures can be measured using optically stimulated luminescence (OSL) dosimeters.
Increasing innovations in radiation detection materials will drive the growth prospects for the global radiation detection products market in the coming years. Some of the materials used in radiation detectors include scintillators, high-purity germanium, doped silicon, radioisotope tritium or helium three as neutron detectors and other techniques such as low-tech photographic films or track-etch detectors and exotic bubble detectors.
The radiation detection market highly is diversified and competitive due to the presence of a large number of regional and global vendors. These vendors are increasingly adopting various marketing strategies such as leasing, providing economic benefits, and return on investment (ROI) to increase their sales. Furthermore, it has been observed that the vendors are increasingly focusing on offering a wide range of products to gain profitability.
Key vendors in this market are -
Other prominent vendors in the market include Carestream Health, FujiFilm Holdings, Esaote, FLIR Systems, Fluke, GE Healthcare, Hitachi Healthcare, Hologic, James Fisher and Sons, Toshiba Medical Systems, Shimadzu, Philips Healthcare, and Siemens Healthcare.
The medical and healthcare segment accounted for the maximum market share during 2015 and will continue to dominate the market for the next few years. This segment is categorized into positron emission tomography, radiography, and single-photon emission computed tomography. One of the major factors responsible for the market’s growth is the maximum revenue generation witnessed from positron emission tomography (PET) scan as it is used for the diagnosis of diseases such as heart diseases, endocrine disorders, different types of cancers, neurological disorders, gastrointestinal disorders, and other abnormalities.
In terms of geography, the Americas accounted for the maximum market share during 2015 and will continue to dominate the market until the end of 2020. With the increased threat of nuclear or radiological weapons in the region, the adoption of the radiation detection instruments at airports and seaport has significantly increased.
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PART 01: Executive summary
PART 02: Scope of the report
PART 03: Market research methodology
PART 04: Introduction
PART 05: Market landscape
PART 06: Market segmentation by industry application
PART 07: Geographical segmentation
PART 08: Market drivers
PART 09: Impact of drivers
PART 10: Market challenges
PART 11: Impact of drivers and challenges
PART 12: Market trends
PART 13: Vendor landscape
PART 14: Key vendor analysis
PART 15: Appendix
PART 16: Explore Technavio
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