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市場調查報告書
商品編碼
1521292
2024-2032 年按產品類型(成像劑和碳粉、印刷油墨、影像顯影劑等)、應用(醫療、包裝和印刷、紡織、採礦等)和地區分類的成像化學品市場報告Imaging Chemicals Market Report by Product Type (Imaging Agents and Toners, Printing Inks, Image Developers, and Others), Application (Medical, Packaging and Printing, Textile, Mining, and Others), and Region 2024-2032 |
IMARC Group年全球影像化學品市場規模達100億美元。療養院和診所擴大採用醫學影像,以及教育機構、醫療中心和購物中心對印表機的需求不斷增加是推動市場的一些主要因素。
成像化學物質是指在各種成像技術中使用的一類物質,用於增強或產生物體、組織或過程的視覺表現。它們由造影劑、染料或放射性同位素組成,與目標材料相互作用以產生獨特的訊號。它們用於 X 光、超音波、磁振造影 (MRI)、電腦斷層掃描 (CT) 和正子斷層掃描 (PET) 等技術。它們幫助研究人員研究細胞和分子相互作用、研究疾病機制並開發新的治療干預措施。它們在印刷領域也發揮著重要作用,特別是在傳統照相工藝和現代數位印刷技術中。
目前,對印刷化學品的需求不斷成長,因為它們提供高品質和自發性的周轉時間,並最大限度地降低小批量印刷的印刷成本,正在推動市場的成長。除此之外,擴大採用數位成像作為傳統膠片攝影的替代品,也促進了市場的成長。此外,教育機構、辦公室、醫院和商場對印表機列印各種重要文件、收據和傳單的需求不斷成長,這提供了良好的市場前景。除此之外,由環保溶劑製成的對環境影響較小的環保成像化學品的供應不斷增加,正在支持市場的成長。此外,專業攝影師對底片攝影的使用不斷增加,也推動了市場的成長。
奈米技術不斷進步
奈米技術連結了多個學科,包括物理學、生物學、化學、工程和醫學。這導致了這些領域的合作研究激增,帶來了創新的解決方案和突破。認知到奈米技術徹底改變各個部門的潛力,世界各地的政府和私人實體正在增加對奈米技術研究和開發 (R&D) 的資金和支持。此外,奈米粒子經過精心設計,具有特定的特性,使其成為成像中理想的造影劑。它們可以透過與疾病特異性標記物結合的特定分子進行功能化,並允許對體內特定細胞或區域進行靶向成像,從而提高疾病診斷的準確性。此外,它們還能夠開發多模式成像化學品。
醫學影像應用的採用率不斷提高
由於各種慢性病的發生率不斷上升以及世界各地老年人口的不斷成長,對醫學影像的需求不斷增加。除此之外,住院率的上升也推動了對醫學影像的需求。醫學影像技術的進步也增加了其功能和應用,從而導致更廣泛的使用。除此之外,向預防性醫療保健和早期疾病檢測的日益轉變,加上患者對這些服務的認知不斷提高,導致對醫學影像程序的需求增加。醫學成像依靠成像化學品來提高診斷影像的清晰度和準確性。影像化學品透過與身體和影像技術的相互作用,提供對患者狀況的詳細了解,有助於準確的診斷和治療計劃。
數位印刷的需求不斷增加
數位印刷可以輕鬆修改和客製化設計,這對於需要獨特和個性化印刷的小型企業和個人專案尤其有利。它快速、高效,並且能夠在比傳統印刷方法更短的時間內生產出高品質的印刷品。除此之外,數位印刷的品質正在顯著提高,技術的進步提供了可與傳統方法相媲美的高解析度印刷品以及高品質成像化學品的使用。此外,數位列印使用墨水(用於噴墨印表機)或碳粉(用於雷射印表機),它們由各種成像化學品組成。這些配方旨在提供最佳的影像品質、色彩保真度和耐用性。
The global imaging chemicals market size reached US$ 10.0 Billion in 2023. Looking forward, IMARC Group expects the market to reach US$ 15.1 Billion by 2032, exhibiting a growth rate (CAGR) of 4.62% during 2024-2032.The growing advancements in nanotechnology, rising adoption of medical imaging in hospitals, nursing homes, and clinics, and increasing demand for printers in educational institutions, medical centers, and shopping malls are some of the major factors propelling the market.
Imaging chemicals refer to a class of substances used in various imaging techniques to enhance or produce visual representations of objects, tissues, or processes. They consist of contrast agents, dyes, or radioactive isotopes that interact with the target material to generate a distinct signal. They are employed in techniques, such as X-ray, ultrasound, magnetic resonance imaging (MRI), computed tomography (CT), and positron emission tomography (PET). They aid researchers in studying cellular and molecular interactions, investigating disease mechanisms, and developing new therapeutic interventions. They also play a significant role in the field of printing, particularly in traditional photographic processes and modern digital printing technologies.
At present, the increasing demand for printing chemicals as they offer high quality and spontaneous turnaround time and minimize printing costs for smaller quantities of printing is impelling the growth of the market. Besides this, the rising adoption of digital imaging as an alternative to conventional film-based photography is contributing to the growth of the market. In addition, the growing demand for printers in educational institutions, offices, hospitals, and malls for printing various essential documents, receipts, and flyers is offering a favorable market outlook. Apart from this, the increasing availability of eco-friendly imaging chemicals with reduced environmental impact made from eco-friendly solvents is supporting the growth of the market. Additionally, the rising utilization of film-based photography by professional photographers is bolstering the growth of the market.
Rising advancements in nanotechnology
Nanotechnology bridges multiple disciplines, including physics, biology, chemistry, engineering, and medicine. This is resulting in a surge of collaborative research across these fields, leading to innovative solutions and breakthroughs. Recognizing the potential of nanotechnology to revolutionize various sectors, governments and private entities worldwide are increasing funding and support for nanotechnology research and development (R&D). Moreover, nanoparticles are engineered to possess specific properties that make them ideal as contrast agents in imaging. They can be functionalized with specific molecules that bind to disease-specific markers and allow for targeted imaging of specific cells or regions in the body, enhancing the accuracy of disease diagnosis. Furthermore, they enable the development of multimodal imaging chemicals.
Increasing adoption of medical imaging applications
The demand for medical imaging is increasing due to the rising occurrence of various chronic diseases along with the growing geriatric population around the world. Besides this, the increasing rate of hospitalization is fueling the demand for medical imaging. Advancements in medical imaging technology are also increasing its capabilities and applications, leading to more widespread usage. Apart from this, a rising shift towards preventive healthcare and early disease detection, coupled with the increasing patient awareness about these services, is resulting in more demand for medical imaging procedures. Medical imaging relies on imaging chemicals to enhance the clarity and accuracy of diagnostic images. Imaging chemicals, through their interaction with the body and imaging technology, provide detailed insights into the condition of a patient, aiding in accurate diagnosis and treatment planning.
Increasing demand for digital printing
Digital printing allows for easy modification and customization of designs, which is especially beneficial for small businesses and personal projects that require unique and personalized prints. It is fast, efficient, and capable of producing high-quality prints in less time than traditional printing methods. Besides this, the quality of digital printing is significantly improving, with advancements in technology offering high-resolution prints that rival traditional methods and the utilization of high-quality imaging chemicals. Moreover, digital printing uses either ink (for inkjet printers) or toners (for laser printers), which are composed of various imaging chemicals. These are formulated to provide optimal image quality, color fidelity, and durability.
IMARC Group provides an analysis of the key trends in each segment of the global imaging chemicals market report, along with forecasts at the global, regional and country levels from 2024-2032. Our report has categorized the market based on product type and application.
Imaging Agents and Toners
Printing Inks
Image Developers
Others
Imaging agents and toners dominate the market
The report has provided a detailed breakup and analysis of the market based on the product type. This includes imaging agents and toners, printing inks, image developers, and others. According to the report, imaging agents and toners represented the largest segment.
Imaging agents and toners are essential components in the fields of medical imaging and digital printing, each serving unique roles. Imaging agents, also known as contrast agents or contrast media, are substances used to improve the contrast of structures or fluids within the body during medical imaging procedures. They help distinguish or contrast specific areas of the body from the surrounding tissue, enhancing the detail of the images produced. On the other hand, toner is a powder mixture employed in laser printers and photocopiers to produce printed text and images on paper. In its early form, toner is a mix of carbon powder, which gives the black color, and a polymer that helps the toner particles to melt and bind to the paper under heat and pressure.
Medical
Packaging and Printing
Textile
Mining
Others
Medical holds the largest share in the market
A detailed breakup and analysis of the market based on the application have also been provided in the report. This includes medical, packaging and printing, textile, mining, and others. According to the report, medical accounted for the largest market share.
In the medical sector, imaging chemicals are fundamental for enhancing diagnostic accuracy and delivering effective treatments. They aid in creating a clearer picture of the internal structures and processes of the human body, thereby playing a crucial role in disease identification and monitoring. They help increase the visibility of blood vessels in CT scans and X-rays, while gadolinium enhances the contrast in MRIs, enabling radiologists to differentiate between healthy and diseased tissues more effectively.
Imaging chemicals are integral to the printing and packaging industry, wherein they play a pivotal role in achieving high-quality prints, vibrant colors, and durable packaging materials. They are used in various stages of the printing and packaging process, offering a range of benefits and functionalities.
North America
United States
Canada
Asia-Pacific
China
Japan
India
South Korea
Australia
Indonesia
Others
Europe
Germany
France
United Kingdom
Italy
Spain
Russia
Others
Latin America
Brazil
Mexico
Others
Middle East and Africa
Asia Pacific exhibits a clear dominance, accounting for the largest imaging chemicals market share
The report has also provided a comprehensive analysis of all the major regional markets, which include North America (the United States and Canada); Asia Pacific (China, Japan, India, South Korea, Australia, Indonesia, and others); Europe (Germany, France, the United Kingdom, Italy, Spain, Russia, and others); Latin America (Brazil, Mexico, and others); and the Middle East and Africa. According to the report, Asia Pacific accounted for the largest market share.
Asia Pacific held the biggest market share due to the rising construction of hospitals, clinics, and nursing homes. Besides this, increasing investments in improving medical imaging techniques for better diagnosis and treatment of diseases are strengthening the growth of the market.
Another contributing aspect is the growing demand for imaging chemicals for printing labels and packaging in various industries. In addition, increasing consumerism and branding are contributing to the growth of the market.
North America is estimated to expand further in this domain due to the rising focus on sustainable packaging to reduce the carbon footprint and minimize wastage. Apart from this, the increasing emergence of e-commerce brands selling products online is propelling the growth of the market.
Key market players are investing in research and development (R&D) operations to develop innovative and high-performance products. They are also focusing on improving the quality, functionality, and environmental sustainability of their imaging chemicals. Top companies are forming strategic partnerships and collaborations with other companies, research institutions, and industry experts to leverage their expertise, resources, and market reach. They are also establishing local manufacturing facilities, distribution networks, and sales teams to cater to the specific needs and demands of these markets. Leading players are working to diversify their product portfolios to meet the evolving needs of their customers. They are introducing new imaging chemicals, developing application-specific formulations, and expanding their offerings to cover a wide range of printing, packaging, and medical imaging requirements.
Agfa-Gevaert N.V.
Altana AG
Becton Dickinson and Company
DIC Corporation
Eastman Kodak Company
Flint Group
FUJIFILM Holdings Corporation
Kao Corporation
T&K TOKA Corporation
Toray Fine Chemicals Co. Ltd.
Toyo Ink SC Holdings Co. Ltd.
Vivimed Labs Limited
In 2023, Eastman Kodak Company sets new standards in inks for inkjet printing with its KODACHROME inks which enable presses using KODAL ULTRASTREAM Continuous Inkjet Technology to acquire the highest levels of color rendition, image stability, and detail.
In July 2023, Toyo Ink SC Holdings Co. Ltd. announced the development of a silver nanoparticle paste for die-attach applications, which can be sintered at low temperatures under both pleasureless and pressure-assisted methodologies.
In June 2023, Becton Dickinson and Company announced the launch of the world's first spectral cell sorter with high-speed imaging technology, which segregates cells based on visual characteristics.