市场调查报告书
商品编码
1509671
光学成像的全球市场的评估:各产品,技术,各用途,各终端用户,各地区,机会,预测(2017年~2031年)Optical Imaging Market Assessment, By Product, By Technique, By Application, By End-user, By Region, Opportunities and Forecast, 2017-2031F |
全球光学成像市场规模预计将从 2023 年的 20.7 亿美元增至 2031 年的 51.8 亿美元,预计 2024-2031 年的复合年增长率为 12.12%。塑造市场的因素有很多。其中包括增加投资、更注重开发创新产品、对成像软体的需求增加、光学成像系统的广泛采用、北美的主导地位以及併购的增加。
市场受到投资增加等多种因素的推动。分配给光学成像研发的资金大幅增加。结果,整体市场不断成长,新颖的产品不断开发,技术不断进步。为了满足最终客户不断变化的需求,市场上的製造商正在专注于创造新的尖端产品。这就是我们发布尖端成像硬体、软体和配件的原因,以提高可用性、准确性和效能。
由于研究人员和医疗保健专业人员对增强型数据分析、视觉化和解释工具的需求不断增长,对复杂成像软体的需求正在迅速增加。软体供应商现在有机会创建满足光学成像产业需求的创新产品。漫射光学断层扫描、高光谱成像和光学相干断层扫描(OCT)等光学成像方法变得越来越流行,因为它们是非侵入性的、具有高分辨率,并且可以提供对多种医学疾病的详细了解。因此,光学成像设备在各种医疗和科学环境中的使用正在加速。
例如,随着光学成像系统(OIS)技术的成功转让,成像监控技术领域的知名公司Optimized Electrotech Pvt Ltd(OEPL)将在提高其监控能力方面实现一个重要的里程碑。已达成。这项举措是与印度太空研究组织 (ISRO) 下属部门 NewSpace India Limited (NSIL) 合作完成的。该系统使用单一感测器和一致的设置,在昏暗和中午的照明环境中运作良好。本发明在精确监测非常重要的应用中具有巨大潜力,特别是在沙漠和沿海地区。
增加投资对市场有正面影响
近年来,企业加大对该产业的投资,推动了全球光学成像市场的成长。公司正在投资这些整合解决方案,以提供更准确、更深入的诊断数据。由于对远端和现场护理诊断设施的需求不断增长,各公司对投资光学成像行业越来越感兴趣。这些需求可以透过开发轻质、紧凑的产品来满足。该公司也专注于开发结合光学相干断层扫描和萤光的多模态光学成像系统。
例如,2024年2月,圣路易斯华盛顿大学麦凯维工程学院生物医学工程教授週超获得了2000万美元的资助。这种经济实惠的解决方案可以让更多患者接受更好的眼科检查。此外,这项技术可能会在心臟科、皮肤病学、牙科、内视镜检查和泌尿科领域中进一步的应用。 Zhou 打算使用基于 PIC 的设计和专门製造的电子积体电路 (IC) 来建构便携式系统。因此,OCT 将为更多医疗机构和患者提供更实惠、更容易组装的服务。
本报告提供全球光学成像市场相关调查分析,提供市场规模与预测,市场动态,主要企业的形势及预测等资讯。
Global optical imaging market is projected to witness a CAGR of 12.12% during the forecast period 2024-2031F, growing from USD 2.07 billion in 2023 to USD 5.18 billion in 2031F. Various factors shape the global optical imaging market. These include increased investments, increased focus on developing innovative products, rising demand for imaging software, increasing popularity of optical imaging systems, the dominance of North America, and increased mergers and acquisitions.
The global optical imaging market is driven by several factors, such as increased investments. The amount of money allocated to optical imaging research and development has increased significantly. As a result, the market has grown overall, novel items have been developed, and technology has advanced. To satisfy the changing needs of end customers, manufacturers in the optical imaging market are putting a lot of effort into creating fresh, cutting-edge goods. This involves the release of cutting-edge imaging hardware, software, and accessories with enhanced usability, accuracy, and performance.
The increasing need for enhanced data analysis, visualization, and interpretation tools among researchers and healthcare professionals has led to a surge in the need for sophisticated imaging software. Software vendors now have the chance to produce innovative products that meet the demands of the optical imaging industry. Optical imaging methods, including diffuse optical tomography, hyperspectral imaging, and optical coherence tomography (OCT), have become increasingly popular because they are non-invasive, have a high resolution, and can offer detailed insights into various medical disorders. This has accelerated the use of optical imaging devices in a range of medical and scientific settings.
For example, through a successful technology transfer of the Optical Imaging System (OIS), Optimized Electrotech Pvt Ltd (OEPL), a well-known imaging surveillance technology business, reached a critical milestone in increasing surveillance capabilities in October 2023. Working with NewSpace India Limited (NSIL), a division of the Indian Space Research Organisation (ISRO), allowed for the transfer. This system uses a single sensor and a consistent setup to work well in twilight and midday illumination settings. This invention has much potential, particularly in desert and coastal areas, and for other uses where accurate monitoring is critical.
Increased Investments Positively Impact the Market
In the last few years, companies have increased their investments in the industry, driving growth in the global optical imaging market. Businesses are spending money on these integrated solutions to offer diagnostic data that is more precise and thorough. Companies are increasingly interested in investing in the optical imaging industry because of the increasing need for remote and point-of-care diagnostic facilities. These needs can be fulfilled by the development of lightweight and compact products. Companies are also focusing on developing multimodal optical imaging systems that are comprised of optical coherence tomography and fluorescence.
For example, Chao Zhou, a biomedical engineering professor at Washington University in St. Louis's McKelvey School of Engineering, received a USD 20 million grant from the Advanced Research Projects Agency for Health (ARPA-H) in February 2024 to aid in the creation of a portable OCT device. Many more patients could receive improved eye tests thanks to the affordable solution. Furthermore, technology may find further uses in the fields of cardiology, dermatology, dentistry, endoscopy, and urology. Zhou intends to use a PIC-based design and specially created electronic integrated circuits (ICs) to construct the portable system. As a result, OCT will be more affordable and easier to assemble for a larger spectrum of healthcare facilities and patients.
Increased Focus on Developing Innovative Products is Driving the Market
The global optical imaging market is observing an increased focus on developing new and innovative solutions to satisfy the changing demands of consumers. There is a growing need for non-invasive methods of diagnosis as preferred by the elderly population and patients undergoing treatment for chronic diseases. The increasing need for precise and comprehensive diagnostic data has led to a rise in the market for high-resolution imaging equipment. For instance, cellular-resolution images of the front and posterior eye can be obtained using non-contact full-field OCT, and the resolution can be improved by reducing the constraints imposed by intrinsic eye aberrations by integrating adaptive optics with conventional optical imaging methods.
For example, Researchers Jane Crowley and George Gordon from the University of Nottingham created a novel spatial frequency domain imaging (SFDI) tool in February 2024, and it appears to have potential uses in gastrointestinal endoscopy. Their research, which was published in the Journal of Biomedical Optics, may contribute to the general public's increased access to GC screening. SFDI is a technology that shows promise in distinguishing between malignant and benign tissue. A 2D pattern of light that repeats are projected onto a target area in SFDI. The presence of malignant lesions can be detected by measuring the intensity of the reflected light patterns, which can provide information about the optical characteristics of the tissue under study.
Rise in Demand for Optical Imaging Software Boosts Market Growth
Major companies in the industry are highly interested in developing software for optical imaging devices, which is becoming a crucial factor in the steady growth of the global optical imaging market. More advanced image processing and analysis capabilities than could be achieved with hardware alone are made feasible by optical imaging software. Elements like image enhancement, segmentation, 3D reconstruction, and quantitative analysis are included to derive significant insights from optical imaging data. Beyond what is feasible with hardware alone, optical imaging software provides advanced picture processing and analysis capabilities. Features essential for deriving significant insights from optical imaging data include image enhancement, segmentation, 3D reconstruction, and quantitative analysis.
For instance, Abbott India Limited released Ultreon 1.0, a coronary imaging program, in India in October 2023. By combining artificial intelligence (AI) and optical coherence tomography (OCT), this program gives doctors an insight into coronary artery blockages and blood flow. The software can measure vessel diameter, identify the degree of calcium-based obstructions, and distinguish between calcified and non-calcified blockages. Additionally, it helps doctors ensure proper stent expansion and guide stent deployment. Abbott's OCT technology provides imaging from inside a blood vessel using near-infrared light, in contrast to traditional angiography. The program makes a procedure that improves decision-making and lessens ambiguities possible.
Optical Imaging Systems are Highly Popular in the Market
Several factors are responsible for the increased preference for Optical imaging systems over spectral imaging systems in the global optical imaging market. Optical imaging systems are typically less expensive and easier to install than spectral imaging systems, which need specific gear and software to capture and handle spectral data. The number of spectral bands and the sensor's spectral resolution can impact on how much spatial resolution is possible with optical imaging systems compared to spectral imaging systems. The data from optical imaging devices is usually displayed as a two-dimensional image, making analysis and processing simpler. In contrast, spectral imaging systems need more intricate data processing and analysis to glean useful information from the spectrum data.
For instance, a pioneer in preclinical in-vivo optical imaging systems, Spectral Instruments Imaging LLC, was acquired by Bruker Corporation in February 2024. With this acquisition, the Bruker BioSpin Preclinical Imaging (PCI) division's offering of preclinical solutions for disease research is expanded, and a gap in its technology and product portfolio is filled. Lago X, the SII flagship system, is engineered for high-volume in-vivo imaging studies with improved sensitivity. Using a benchtop setup, the SII high-efficiency AMI HTX system enables BLI, FLI, and X-ray imaging. The software SII Aura offers a smooth workflow to increase productivity.
North America Shows Dominance in the Optical Imaging Market
North America is dominating the global optical imaging market. The region's aging population is the main driver of the market's growth, while there are other factors as well. The population of both the United States and Canada is aging significantly; by 2030, there will be 15% more persons in Canada and 20% more in the United States who are 65 years of age or older. Chronic diseases like cancer, heart disease, and neurological disorders are more common in the aging population and call for sophisticated diagnostic methods and therapies. The rising demand for cutting-edge imaging technologies like optical imaging, which are necessary for precise diagnosis and treatment, is the primary cause of the increased healthcare costs associated with chronic diseases and their diagnosis.
For example, SVision Imaging, a developer of cutting-edge ophthalmic technology, rebranded in November 2022 as Intalight Inc. and announced its growing leadership position in Optical Coherence Tomography (OCT). The company's aim and growth plan, which focus on developing the most cutting-edge ophthalmic technologies to address unmet needs in OCT imaging, are highlighted by the rebranding, as is its dedication to launching these products in the United States.
Future Market Scenario (2024-2031F)
Advancements in photoacoustic tomography will drive the global optical imaging market. This noninvasive imaging method is becoming increasingly popular because it can produce biological tissue images with excellent resolution.
Cancer biomarkers are found via hyperspectral imaging, which collects fine-grained spectral data. This technology is gaining traction in the optical imaging market.
Optical imaging devices are used in numerous therapeutic fields, including ophthalmology, cardiology, oncology, dermatology, and neurology. Because of this expansion of applications, the global optical imaging market is anticipated to increase.
The adoption in the global optical imaging market is driven by the significance of early diagnosis and detection in improving patient outcomes.
Key Players Landscape and Outlook
Many companies in the global optical imaging market are engaging in mergers and acquisitions to grow in the market. Through acquisitions, businesses can expand their product and service offerings and maintain their competitiveness in the market by gaining access to new technology. Companies can increase their market share and offer a wider selection of options to clients by expanding their product line through acquisitions. Through process simplification, resource optimization, and the elimination of unnecessary operations, acquisitions can assist businesses in cutting expenses.
For example, Headwall Photonics, Inc., a leader in spectral imaging solutions for industrial machine vision and remote sensing, announced that it has acquired inno-spec GmbH, a well-known supplier of industrial hyperspectral imaging systems used in industrial sorting, high-volume recycling, and quality testing, located in Nuremberg, Germany, in January 2024. Arsenal Capital Partners owns a portfolio firm called Headwall Photonics. The acquisition strengthens the company's leadership in the industry by enabling the development of more sophisticated, effective, and adaptable hyperspectral imaging systems. Headwall's state-of-the-art optical components and remote sensing technologies are combined with inno-spec's specialized knowledge in industrial applications.
All segments will be provided for all regions and countries covered
Companies mentioned above DO NOT hold any order as per market share and can be changed as per information available during research work.