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市場調查報告書
商品編碼
1308612
到 2030 年電子顯微鏡市場預測:按產品、類型、應用、最終用戶和地區劃分的全球分析Electron Microscopes Market Forecasts to 2030 - Global Analysis By Product, Type (Scanning Electron Microscope and Transmission Electron Microscope ), Application, End User and By Geography |
據Stratistics MRC預測,2023年全球電子顯微鏡市場規模將達到19.1億美元,預計到2030年將達到44.8億美元,預測期內復合年增長率為12.9%。
電子顯微鏡是功能強大的科學儀器,它使用電子束而不是光來以高分辨率放大和可視化樣品。電子顯微鏡能夠產生詳細的圖像,在微觀和納米級水平上深入了解各種材料的結構、成分和特性。電子顯微鏡廣泛應用於需要高分辨率成像的各個領域,例如科學研究、材料科學、納米技術和生命科學。
據美國癌症協會估計,2022年美國將診斷出190萬新癌症病例,609,360人將死於癌症。
數字化、活細胞成像、超高分辨率和高通量技術是顯微鏡技術發展的例子。這一進步降低了產品價格和檢驗價格。顯微鏡技術的最新進展包括放大顯微鏡、掃描氦顯微鏡 (SHeM)、多視圖顯微鏡以及集成顯微鏡工藝的發展。樣品製備和電子顯微鏡市場的最新發展是數碼顯微鏡。數字成像的圖像質量和精度得到提高,圖像失真更少,樣品觀察效果更好。由於全玻片掃描技術的引入,數字顯微鏡得到了更廣泛的採用。
任何有權訪問該軟件的程序員都可以對其進行審查、改進,並在必要時修復出現的問題。另一方面,開源軟件通常是免費的,而大多數商業軟件解決方案是閉源的、專有的且昂貴。開源和免費的共焦顯微鏡分析工具包括 ImageJ/FIJI、Cell Profiler/Cell Analyst、Neuronstudio、體積集成和對準系統 (VIAS) 以及 L-measure。大多數小型最終用戶、學術機構和研究機構強烈偏愛開源解決方案,直接減少了對許可的閉源軟件的需求。
電子顯微鏡和樣品製備市場的公司可能會在中國、印度、俄羅斯和巴西等新興國家顯著增長。這些國家的政府對先進顯微鏡研究和開發的資助大幅增加。例如,2017年2月,印度政府捐款45,000美元,用於設計和建造採用傅裡葉光學成像的多模態光學顯微鏡。自2011年成立以來,納米技術和納米材料中心製造了一種獨特的顯微鏡納米鑷子,能夠捕獲30納米微粒。樣品製備和電子顯微鏡的這種市場變化趨勢在電子和醫療保健領域具有許多潛在的應用。
標準複合顯微鏡對於物理學家和實驗室專業人員來說很容易使用,但隨著先進顯微鏡的開發,它們需要經過培訓的人員。例如,廣泛應用於納米技術的原子力顯微鏡,在原子和分子水平上研究化學和生物化合物的性質,使物理學家和工程師能夠研究表面物理和表面分析,這需要深厚的跨學科知識。然而,市場的長期前景可能會影響預期期間的增長。
COVID-19大流行在全球爆發,對整個半導體行業產生了重大影響。多個國家政府宣布全國范圍內封鎖並暫時關閉多個行業,嚴重影響了業務連續性和供應鏈。由於製造設備停工造成供應短缺,半導體元件價格上漲2-3%。此外,貿易壁壘進一步影響供需缺口。為了確保業務可持續性並防止單點故障,電子顯微鏡市場的主要參與者正在轉向靈活的供應鍊網絡模型,通過多種途徑來平衡成本。我在這裡。
在預測期內,與其他行業相比,材料科學行業預計將佔據最大份額。掃描電子顯微鏡是材料研究中最常用的表徵工具之一。材料科學使用掃描電子顯微鏡進行故障分析、研究和質量控制。SEM 的使用在現代材料科學中極其重要,例如納米纖維和納米管的研究。高介孔結構、溫度超導體和合金強度預計將在預測期內推動全球電子顯微鏡市場。
掃描電子顯微鏡 (SEM) 利用聚焦的高能電子流在固體樣品表面產生各種信號。SEM 可以放大至 100,000 倍。這些顯微鏡可生成具有高景深、高分辨率(分辨率低於 TEM)的三維圖像以及有關物體的形貌、形態和成分的信息。因此,它們已成為冶金、寶石學、醫學、法醫學和生物科學領域的重要研究儀器。
北美地區在全球電子顯微鏡市場中佔有最高份額,預計將成為預測期內增長最快的地區。增長的原因是該地區存在研究和學術機構,以及正在進行許多臨床試驗。生命科學、生物技術和製藥行業的研究活動是北美國家創新體系的重要組成部分,預計將在預測期內推動該地區對SEM的需求。
預計亞太地區在預測期內的增長率最高。亞太地區電子顯微鏡和樣品製備市場在預測期內可能會快速增長,特別是在中國、日本和印度。在預測期內,亞太地區市場的增長將受到顯微研究研發支出的增加、相關顯微技術在納米技術和生命科學研究中的使用增加、顯微研究聯合研究中心的建立以及原始設備製造商的原材料的推動。熟練勞動力的可用性。
2022 年 6 月,美國科學儀器製造商布魯克宣佈在大視場多組學組織成像和高度多重空間蛋白質組學方面取得了顯著進展。此外,與 AmberGen 的戰略合作夥伴關係還宣布對質譜成像 MALDI HiPLEX-IHC 進行重大改進。
2022年5月,Hitachi High-Tech Corporation宣佈在常陸那珂市設立先進技術創新中心(ACN),作為示範和合作基地。我們將加強與客戶的合作,加強電子顯微鏡、探針顯微鏡相關領域整體解決方案的開發。
2021年12月,美國科學儀器供應商Thermo Fisher Scientific Inc.宣布將以174億美元收購PPD。收購PPD將使Thermo Fisher能夠提供世界一流的臨床開發服務,從科學發現到安全性、臨床結果和療效分析、臨床試驗物流管理、藥物開發和製造。
根據產品組合、地域分佈和戰略聯盟對主要參與者進行基準測試
According to Stratistics MRC, the Global Electron Microscopes Market is accounted for $1.91 billion in 2023 and is expected to reach $4.48 billion by 2030 growing at a CAGR of 12.9% during the forecast period. Electron microscopes are powerful scientific instruments that use a beam of electrons instead of light to magnify and visualize samples at a high resolution. They are capable of producing detailed images and providing insights into the structure, composition, and properties of various materials at the microscopic and nanoscale levels. Electron microscopes find extensive applications in scientific research, materials science, nanotechnology, life sciences, and various other fields where high-resolution imaging is crucial.
According to the American Cancer Society, Inc. in 2022, an estimated 1.9 million new cancer cases will be diagnosed and an estimated 609,360 cancer deaths in the country.
Digitization, live-cell imaging, ultra-high resolution, and high throughput techniques are examples of technological developments in microscopy. This progress lowers the price of the product and testing. Recent advancements in microscope technology include the development of expansion microscopes, scanning helium microscopes (SHeM), multi-view microscopes, and integrated microscopy processes. The newest development in the markets for sample preparation and electron microscopy is digital microscopy. Enhanced image quality and increased precision provided by digital imaging result in fewer distorted images and better sample viewing. Digital microscopy has been more widely adopted as a result of the introduction of entire slide scanning technologies.
Any programmer with access to the software can review and enhance it or if necessary, solve any problems as they arise. Open-source software, on the other hand, is typically free, whereas the majority of commercial software solutions are closed-source, proprietary, and expensive. Several open-source, free confocal microscopy analysis tools include ImageJ/FIJI, Cell Profiler/Cell Analyst, Neuronstudio, Volume Integration and Alignment System (VIAS), and L-measure. The majority of small-scale end customers, academic institutions, and research facilities exhibit a strong preference for open-source solutions, directly reducing the demand for licensed closed-source software.
Companies in the markets for electron microscopy and sample preparation can grow significantly in emerging nations like China, India, Russia, and Brazil. Government financing for advanced microscope R&D has significantly grown in these nations. For example, in February 2017, the Indian government contributed USD 45,000 to the design and creation of multimodal optical microscopes that used Fourier optical image processing. Since its founding in 2011, the Center of Nanotechnology and Nanomaterials has produced distinctive nanopincers for microscopes that enable the capture of particles as small as 30 nanometers. This market-changing trend in sample preparation and electron microscopy has numerous potential applications in electronics and healthcare.
Standard compound microscopes are simple for physicists and lab professionals to use, but as sophisticated microscopes are developed, trained personnel are needed. For instance, to study the characterization of chemical and biological compounds at the atomic or molecular level, atomic force scanning tunnelling microscopes widely used in nanotechnology require physicists or technicians to have in-depth interdisciplinary knowledge in the field of surface physics and surface analyses. But the long-term outlook for the market may affect growth over the anticipated period.
The outbreak of the COVID-19 pandemic across the globe has impacted the overall semiconductor industry to a great extent. With the governments of several countries announcing nationwide lockdowns and temporary closures of various industries, business continuity and the supply chain have been severely affected. The prices of semiconductor components have increased by 2-3% owing to a shortage of supplies due to the shutdown of manufacturing units. Moreover, the trade barriers have further impacted the demand-supply gap. In order to balance costs with better assurance for business sustainability and to prevent single points of failure, the key players in the electron microscopy market have shifted toward an agile supply chain network model that has multiple pathways.
The material sciences segment is projected to witness the largest share as compared to other segments over the forecast period. The scanning electron microscope is one of the most commonly used characterization tools for studying materials. Materials science uses scanning electron microscopes for failure analysis, research, and quality control. SEM utilization is crucial in modern materials science for investigations into nanofibers and nanotubes. High mesoporous architecture, temperature superconductors, and alloy strength are expected to drive the global Electron microscope market during the forecast period.
A focused stream of high-energy electrons is utilized by scanning electron microscopes (SEMs) to produce a range of signals at the surface of solid specimens. Up to 100,000x of magnification is possible with SEMs. These microscopes create 3-dimensional images with a high depth of field, high resolution (less resolution than TEMs), and information on the topography, morphology, and composition of objects. As a result, they are crucial research instruments in the fields of metallurgy, gemology, medical and forensic sciences, and biological sciences.
The North America region has the highest market share for Electron Microscopes globally and is forecast to be the fastest-growing area over the anticipated period. The growth was credited to the presence of research and academic institutes and a high number of clinical trials performed in the region. Research-based activities in the life sciences, biotechnology, and pharmaceutical industries are an integral part of the innovation system in North American countries and this is expected to boost the demand for SEMs in the region over the forecast period.
During the forecast period, Asia Pacific is anticipated to have the fastest growth rate. The Asia Pacific market for electron microscopy and sample preparation, particularly in China, Japan, and India, is likely to rise rapidly during the forecasted period. During the forecast period, growth in the APAC market is anticipated to be fueled by elements including increased R&D funding for microscopy research, growing use of correlative microscopy in nanotechnology and life science research, the establishment of collaboration centers for microscopy research, and the affordability of raw materials and skilled labor for OEMs.
Some of the key players in Electron Microscopes Market include Agilent Technologies, Bruker Corp., Carl Zeiss, COXEM, Danish Micro Engineering (DME), Delong America Inc, itachi High Technologies Corp., JEOL Ltd., Leica Microsystems, Nanoscience Instruments, Inc., Nikon Corp., Olympus Corp., Tescan, Thermo Fisher Scientific and Unisoku Co. Ltd.
In June 2022, Bruker, an American manufacturer of scientific instruments announced remarkable advancements in multi-omic tissue imaging and highly multiplexed spatial proteomics at large field of view. Moreover, key enhancements were introduced for mass spectrometry imaging MALDI HiPLEX-IHC following a strategic partnership of Bruker's with AmberGen
In May 2022, Hitachi High-Tech Corporation announced the establishment of its "Advanced-Technology Innovation Center Naka (ACN)" in Hitachinaka, which will serve as a demonstration and collaboration center. It will improve customer cooperation to boost integrated solution development in electron microscopy and probe microscope-related sectors
In December 2021, Thermo Fisher Scientific Inc., an American supplier of scientific instrumentation, announced the acquisition of PPD, Inc. for USD 17.4 billion. The acquisition of PPD will allow Thermo Fisher to provide a full range of world-class clinical development services, from scientific discovery to analyzing safety, health-care outcomes, efficacy, managing clinical trial logistics, along with drug development and manufacturing
Benchmarking of key players based on product portfolio, geographical presence, and strategic alliances
11.6 Delong America Inc.