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극저온 전자현미경 시장 보고서 : 동향, 예측, 경쟁 분석(-2031년)

Cryo-Electron Microscopy Market Report: Trends, Forecast and Competitive Analysis to 2031

발행일: | 리서치사: Lucintel | 페이지 정보: 영문 150 Pages | 배송안내 : 3일 (영업일 기준)

    
    
    




■ 보고서에 따라 최신 정보로 업데이트하여 보내드립니다. 배송일정은 문의해 주시기 바랍니다.

세계 극저온 전자현미경 시장의 미래는 유망하며, 생명과학 연구 및 학계, 암 연구, 오믹스 연구, 제약 및 생명공학 제조, 세포 및 유전자 치료, 백신, 전임상 및 임상 연구, 의료 응용 시장에서 기회가 있습니다. 세계 극저온 전자현미경 시장은 2031년까지 약 31억 달러에 달할 것으로 예상되며, 2025-2031년 연평균 12.4%의 연평균 복합 성장률(CAGR)을 보일 것으로 예측됩니다. 이 시장의 주요 촉진요인은 고해상도 구조생물학 데이터에 대한 수요 증가, 극저온 전자현미경 장비 및 소프트웨어의 지속적인 기술 발전, 세계 의료 지출 증가입니다.

  • Lucintel의 예측에 따르면 기술 범주에서 단일 입자는 예측 기간 중 신경 퇴행성 연구에 대한 첨단 기술 장비의 채택이 증가하고 소량의 정제된 샘플에 대한 요구가 증가함에 따라 단일 입자가 가장 큰 부문을 차지할 것으로 예측됩니다.
  • 용도별로는 구조생물학 연구개발을 촉진하기 위한 자금 조달이 증가함에 따라 생명과학 연구 및 학계가 가장 큰 부문이 될 것으로 예측됩니다.
  • 지역별로는 북미가 연구 활동 지원을 위한 자금이 증가하고, 임상 검사 수가 증가함에 따라 예측 기간 중 가장 규모가 큰 지역으로 남을 것으로 보입니다.

극저온 전자현미경 시장의 전략적 성장 기회

다양한 분야에서 극저온 전자현미경의 용도에서 전략적 성장 기회를 발견하고 있습니다. 이러한 기회는 기술 향상과 구조적 세부 사항에 대한 수요 증가로 인해 발생합니다.

  • 의약품 개발: 의약품 개발에는 약물 대상과 그 상호작용에 대한 상세한 구조적 정보가 필요합니다. 극저온 전자현미경은 이러한 요구를 충족시킬 수 있는 독특한 능력을 가지고 있습니다. 이 능력은 신약을 더 빨리 개발하고 더 효과적으로 설계하는 데 도움이 됩니다. 의약품 연구개발에 대한 자금 조달이 증가함에 따라 첨단 극저온 전자현미경 시스템의 필요성이 증가하고 있습니다.
  • 구조생물학 연구: 극저온 전자현미경은 원자 수준에 가까운 선명도와 중요한 분자 성분을 그 자리에서 시각화할 수 있으므로 구조생물학 분야에서 활용도가 증가하고 있습니다. 연구기관들은 단백질 초복합체, 바이러스, 세포 생물학을 연구하기 위해 극저온 전자현미경 시스템을 도입하고 있으며, 이 부문의 확장을 더욱 촉진하고 있습니다.
  • 재료 과학: 저온 전자현미경은 재료 과학, 특히 나노 및 복합재료 연구에 크게 기여하고 있습니다. 연구자들은 특정 재료가 특정 특성과 거동을 갖는 이유를 더 깊이 이해하려고 노력하고 있으며, 이는 이 산업의 성장 기회를 창출하고 있습니다.
  • 맞춤의료: 극저온 전자현미경은 질병의 물리화학적 메커니즘을 규명하고 바이오마커를 발견하여 표적치료제 개발을 가능하게 하고 있습니다. 극저온 전자현미경은 뛰어난 공간 분해능을 가지고 있으며, 치료를 보다 정확하게 이해할 수 있으므로 맞춤 의료를 촉진합니다.
  • 교육 및 연구 기관: 새로운 기술, 특히 극저온 전자현미경은 학술적, 과학적 목적으로 교육 및 연구 기관에서 점점 더 많이 채택되고 있습니다. 연구 역량 향상을 위한 자금 지원과 보조금 지원으로 대학과 연구 기관에 극저온 전자현미경 유닛을 설치하도록 장려하고 시장을 확대하고 있습니다.

극저온 전자현미경 시장의 급속한 성장은 신약개발, 구조생물학, 재료과학, 맞춤의료, 교육기관 등 다양한 분야의 성장 기회에 힘입은 바 큽니다. 이러한 기회는 다양한 산업 및 용도에서 이 기술의 중요성이 증가하고 있는 추세와 일치합니다.

극저온 전자현미경 시장 성장 촉진요인 및 과제

극저온 전자현미경 시장은 성장과 개발에 영향을 미치는 시장 성장 촉진요인과 과제에 직면해 있습니다. 이 불안정한 산업에서는 기술, 경제, 규제 등의 요인이 모두 중요한 역할을 합니다.

극저온 전자현미경 시장 성장 촉진요인은 다음과 같습니다.

  • 기술 발전: 기술 발전: 고해상도 및 자동화 시스템 사용과 같은 기능 개선이 시장 성장을 가속할 것으로 예측됩니다. 검출기, 시료 준비, 이미지 분석 등의 분야에서 새로운 개발은 극저온 전자현미경의 효율성을 높이고 임상 연구 및 연구에서의 사용 증가로 이어질 것입니다.
  • 구조생물학에 대한 수요 증가: 극저온 전자현미경 수요는 신약 개발 및 분자 생물학에서 구조적 데이터의 필요성으로 인해 증가하고 있습니다. 극저온 전자현미경과 같은 첨단 이미징 기술은 연구자 및 제약회사의 이러한 요구를 충족시키기 위해 수요가 증가하고 있습니다.
  • 연구 자금 증가: 정부와 민간 기업 모두 생물 의학 및 재료 연구에 투자하고 있으며, 극저온 전자현미경의 도입을 촉진하고 있습니다. 자금 조달 및 보조금 지원으로 첨단 극저온 전자현미경 시스템 구매가 가능해지면서 이 분야의 기술 혁신이 촉진되고 있습니다.
  • 새로운 용도로의 확장: 극저온 전자현미경의 응용 시장은 구조생물학에 국한되지 않고 재료 과학, 맞춤형 의료 등으로 확대되며 시장 성장을 주도하고 있습니다. 다양한 영역에 걸쳐 구조를 설명할 수 있는 이 기술의 범용성이 시장 범위를 확대하고 있습니다.
  • 협업과 파트너십: 극저온 전자현미경의 개발 및 도입은 학계, 연구기관, 산업계의 파트너십을 통해 가속화되고 있습니다. 이러한 협업은 지식 교류를 촉진하고 극저온 전자현미경의 개선 및 개발에 필요한 시간을 단축합니다.

극저온 전자현미경 시장이 해결해야 할 과제는 다음과 같습니다.

  • 극저온 전자현미경 시스템의 높은 비용: 극저온 전자현미경 시스템의 높은 비용: 극저온 전자현미경 시스템의 높은 비용은 특히 소규모 연구기관과 개발도상국에서는 도입의 장벽이 되고 있습니다. 첨단 극저온 전자현미경 시스템 개발에 많은 투자가 필요하므로 기술 접근성이 제한된 지역에서는 시장 개발이 늦어질 수밖에 없습니다.
  • 시료 준비의 복잡성: 극저온 전자현미경의 시료 준비는 여전히 시간이 많이 걸리고 어려운 과정으로, 이 기술의 효율성을 떨어뜨립니다. 시료 준비 및 조작에 문제가 있으면 결과가 저하될 수 있으며, 일상 진료에서 극저온 전자현미경의 사용을 제한할 수 있습니다.
  • 데이터 관리 및 분석 : 극저온 전자현미경에서 생성되는 대량의 데이터를 처리하기 위해서는 첨단 데이터 관리 및 분석 기술이 필요합니다. 이러한 기술은 시간이 오래 걸리며, 대규모 용도에서 극저온 전자현미경의 보급을 제한할 수 있습니다.

기술 발전, 연구 자금 증가, 새로운 용도 확대 등 주요 촉진요인이 극저온 전자현미경 시장을 변화시키고 있습니다. 그러나 경제적인 요인, 복잡한 시료 준비, 데이터 관리 문제 등의 문제가 시장 성장을 저해하는 요인으로 작용하고 있습니다. 극저온 전자현미경 기술의 발전과 성공을 보장하기 위해서는 촉진요인에 초점을 맞추면서 이러한 과제를 해결해야 합니다.

목차

제1장 개요

제2장 세계의 극저온 전자현미경 시장 : 시장 역학

  • 서론, 배경, 분류
  • 공급망
  • 산업 촉진요인과 과제

제3장 2019-2031년 시장 동향과 예측 분석

  • 거시경제 동향(2019-2024년)과 예측(2025-2031년)
  • 세계의 극저온 전자현미경 시장 동향(2019-2024년)과 예측(2025-2031년)
  • 제품별 세계의 극저온 전자현미경 시장
    • 기기
    • 완전 자동 기기
    • 반자동 기기
  • 기술별 세계의 극저온 전자현미경 시장
    • 전자 결정학
    • 단입자 분석
    • 극저온 전자 토모그래피
    • 기타
  • 전압별 세계의 극저온 전자현미경 시장
    • 300kV
    • 200kV
    • 120kV
  • 용도별 세계의 극저온 전자현미경 시장
    • 생명과학 연구와 학술
    • 암연구
    • 오믹스 조사
    • 제약·바이오테크놀러지 제조
    • 세포·유전자 치료
    • 백신
    • 전임상과 임상 연구
    • 헬스케어/의료 용도
    • 기타

제4장 2019-2031년 지역별 시장 동향과 예측 분석

  • 지역의 극저온 전자현미경 시장
  • 북미의 극저온 전자현미경 시장
  • 유럽의 극저온 전자현미경 시장
  • 아시아태평양의 극저온 전자현미경 시장
  • 기타 지역의 극저온 전자현미경 시장

제5장 경쟁 분석

  • 제품 포트폴리오 분석
  • 운영 통합
  • Porter's Five Forces 분석

제6장 성장 기회와 전략 분석

  • 성장 기회 분석
    • 제품별 세계의 극저온 전자현미경 시장의 성장 기회
    • 기술별 세계의 극저온 전자현미경 시장의 성장 기회
    • 전압별 세계의 극저온 전자현미경 시장의 성장 기회
    • 용도별 세계의 극저온 전자현미경 시장의 성장 기회
    • 지역별 극저온 전자현미경 시장의 성장 기회
  • 세계의 극저온 전자현미경 시장의 새로운 동향
  • 전략 분석
    • 신제품 개발
    • 세계의 극저온 전자현미경 시장의 생산능력 확대
    • 세계의 극저온 전자현미경 시장에서의 합병, 인수, 합병사업
    • 인증과 라이선싱

제7장 주요 기업의 기업 개요

  • Thermos Fisher Scientific
  • Danaher
  • JEOL
  • Intertek
  • Charles River Laboratories
  • Hitachi High-Technologies
  • Carl Zeiss
KSA 25.05.14

The future of the global cryo-electron microscopy market looks promising, with opportunities in life science research & academia, cancer research, omics research, pharma & biotech manufacturing, cell & gene therapy, vaccines, preclinical & clinical research, and healthcare/medical applications markets. The global cryo-electron microscopy market is expected to reach an estimated $3.1 billion by 2031, with a CAGR of 12.4% from 2025 to 2031. The major drivers for this market are increasing demand for high-resolution structural biology data, ongoing technological advancements in cryo-EM instrumentation and software, and growing healthcare expenditure across the globe.

  • Lucintel forecasts that, within the technology category, single particle will remain the largest segment over the forecast period due to growing adoption of technical advanced instruments neurodegenerative research and rising requirement of small amount of purified sample.
  • Within the application category, life science research & academia will remain the largest segment due to the increasing funding to promote research and development in structural biology.
  • In terms of regions, North America will remain the largest region during the forecast period due to growing funding to support research activities and an increasing number of clinical trials in the region.

Gain valuable insight for your business decisions with our comprehensive 150+ page report.

Emerging Trends in the Cryo-Electron Microscopy Market

The Cryo-Electron Microscopy market is growing with certain emerging trends that are revolutionizing the sector. These trends are the forces of modernization powered by advancements in technologies and methods that affect cryo-EM features and usage.

  • Linkage to Artificial Intelligence: AI and machine learning models are becoming an integral part of cryo-EM workflows. These technologies enhance the imaging processes, reduce the time taken to process data, and improve resolution through automated and advanced reconstruction techniques. This linkage contributes to the increased usability and effectiveness of cryo-EM, thus accelerating the structural biology research process.
  • Improvements in Detector Technology: Current developments in detector technology, including the introduction of direct electron detectors, have resulted in significant improvements in the sensitivity and resolution of cryo-EM systems. These newly developed detectors lower the electron dose required and improve imaging capabilities, enabling more accurate structural investigations of biomolecules and materials.
  • Construction of Faster and More Automated Systems: Cryo-EM systems are becoming faster and more automated, meaning that less time is spent on sample preparation and data acquisition. This development has been sparked by innovations in robotic systems and automated imaging protocols, which increase throughput and enhance reproducibility, benefiting both general-purpose and high-throughput research initiatives.
  • Expansion into New Applications: Cryo-EM is expanding into additional developmental tracks and non-structural biology areas. These include, but are not limited to, materials science, drug discovery, and nanotechnology. This diversification stems from cryo-EM's ability to resolve and objectively visualize these materials and biological forms, thus creating new industrial and scientific opportunities.
  • Increased Accessibility and Cost Reduction: Efforts to reduce costs and enhance user access to various forms of cryo-EM technologies are ongoing. This includes the availability of easy-to-acquire cryo-EM instruments and resource mobilization projects to support research institutions. This trend has made cryo-EM technologies more accessible, ensuring their proper application in the relevant academic and industrial sectors.

These trends are enhancing the capabilities of Cryo-EM, broadening its applications, and making it more accessible. The incorporation of AI, improvements in detector design, and the invention of automated systems are enhancing the quality and speed of research activities. The growing interest in new fields of application and the desire to reduce costs are also contributing to the increasing use of Cryo-EM equipment across various industries and disciplines.

Recent Developments in the Cryo-Electron Microscopy Market

Cryo-Electron Microscopy has seen notable developments recently, driven by technological advancements and widening research applications. This advancement in imaging technology is improving processes, expanding application areas, and enhancing access.

  • Resolution Improvements: The latest achievements in detection devices and imaging software have significantly increased the resolution of cryo-EM. New systems have reached near-atomic resolution, enabling the visualization of biomolecules and cellular structures in much greater detail, which is beneficial for drug discovery and molecular biology studies.
  • Improved Sample Preparation Methods: Automated sample preparation methods have streamlined cryo-EM processes. New developments like plunging devices and systems for intra- and extra-sample transport are standardizing samples and reducing time, making research more efficient and repeatable.
  • Analysis of Images Using Artificial Intelligence: Artificial intelligence is also being applied to analyze cryo-EM images. AI algorithms are enhancing the cycles of data processing and reconstruction, enabling quicker and more precise understanding of complex structures. This development significantly shortens research time while improving structural quality.
  • New Centers and Facilities for Cryo-EM: New cryo-EM facilities and centers have been established, increasing the penetration of modern imaging capabilities. Initiatives have been developed to create centers with the latest cryo-EM units, promoting researcher collaboration and advancing the progress of science while facilitating large studies.
  • Cost Reduction and Accessibility: Efforts to lower the cost of cryo-EM systems are attracting more players to the market. System design changes and increased competition among manufacturers have addressed pricing issues, thus improving access and encouraging broader adoption.

These developments are important for the Cryo-EM market, such as increasing resolution, novel advancements in sample preparation and image analysis, and the establishment of new facilities to overcome barriers to access at reduced costs. These advancements are propelling the field forward and enabling more efficient investigations.

Strategic Growth Opportunities for the Cryo-Electron Microscopy Market

Various sectors are finding strategic growth opportunities from the applications of Cryo-Electron Microscopy. These opportunities stem from improvements in technology and the growing demand for structural details.

  • Drug Discovery and Development: Drug development efforts require detailed structural information about drug targets and their interactions. Cryo-EM provides the unique ability to meet this demand. This capability helps to develop new medicines faster and design them more effectively. The growing funding in drug research and development is increasing the need for advanced cryo-EM systems.
  • Structural Biology Research: Cryo-EM is increasingly being used in structural biology due to its near-atomic clarity and ability to visualize important molecular components in situ. Research institutions are acquiring cryo-EM systems to study protein super complexes, viruses, and cell biology, further driving expansion in this field.
  • Materials Science: Cryo-EM is making significant contributions to materials science, particularly in the study of nanomaterials and complex materials. Researchers are seeking a better understanding of why certain materials have specific properties and behaviors, creating opportunities for growth in this industry.
  • Personalized Medicine: Cryo-EM is helping to elucidate the physicochemical mechanisms of diseases and discover biomarkers, enabling the development of targeted therapies. With its superior spatial resolution, cryo-EM provides a more accurate understanding of treatments, thus advancing personalized medicine.
  • Educational and Research Institutions: New technologies, especially cryo-EM, are being increasingly adopted by educational and research institutions for academic and scientific purposes. Funding and grants aimed at enhancing research capabilities are encouraging the establishment of cryo-EM units in colleges and research institutions, expanding the market.

The rapid development of the Cryo-EM market is driven by growth opportunities in drug discovery, structural biology, materials science, personalized medicine, and educational institutions. These opportunities align with the growing importance of the technology across a broad range of industries and applications.

Cryo-Electron Microscopy Market Drivers and Challenges

The Cryo-Electron Microscopy market faces both drivers and challenges that will influence its growth and development. In this volatile industry, factors such as technology, economics, and regulation all play a significant role.

The drivers of the cryo-electron microscopy market include:

  • Technological Advancements: Improved capabilities, such as higher resolution and the use of automated systems, are expected to fuel market growth. New developments in areas such as detectors, sample preparation, and image analysis will enhance the effectiveness of cryo-EM, leading to increased use in clinical and research studies.
  • Rising Demand for Structural Biology: The demand for cryo-EM is increasing due to the need for structural data in drug discovery and molecular biology. Advanced imaging techniques like cryo-EM are in high demand to meet these needs from researchers and pharmaceutical companies.
  • Increased Research Funding: Both government and private industries are investing in biomedical and materials research, which is promoting cryo-EM adoption. Funding and grants are enabling the purchase of advanced cryo-EM systems, stimulating innovation in this area.
  • Expansion into New Applications: Cryo-EM's application markets extend beyond structural biology to materials science and personalized medicine, among others, driving market growth. The technology's versatility in explaining structures across diverse domains is expanding its market scope.
  • Collaborations and Partnerships: Cryo-EM development and adoption are accelerating through partnerships between academic institutions, research organizations, and industry players. These collaborations foster knowledge exchange, reducing the time needed to develop improvements in cryo-EM.

The challenges in the cryo-electron microscopy market include:

  • High Costs of Cryo-EM Systems: The high cost of cryo-EM systems presents a barrier to adoption, especially for smaller institutions and developing countries. The large investments required to develop advanced cryo-EM systems slow market growth in regions with limited access to the technology.
  • Complexity of Sample Preparation: Sample preparation for cryo-EM remains a time-consuming and challenging process that reduces the efficiency of the technique. Issues with sample preparation and manipulation may degrade results and limit cryo-EM's use in routine practices.
  • Data Management and Analysis: Advanced data management and analysis techniques are necessary to handle the large volumes of data generated by cryo-EM. These techniques are time-consuming and can limit the widespread use of cryo-EM in large-scale applications.

Major drivers such as technological advancements, increased research funding, and the expansion of new applications are transforming the Cryo-EM market. However, challenges such as economic factors, complex sample preparation, and data management issues are hindering market growth. These challenges need to be addressed while maintaining focus on the drivers to ensure further development and success of cryo-EM technology.

List of Cryo-Electron Microscopy Companies

Companies in the market compete based on product quality offered. Major players in this market focus on expanding their manufacturing facilities, R&D investments, infrastructural development, and leverage integration opportunities across the value chain. With these strategies, cryo-electron microscopy companies cater to increasing demand, ensure competitive effectiveness, develop innovative products & technologies, reduce production costs, and expand their customer base. Some of the cryo-electron microscopy companies profiled in this report include-

  • Thermos Fisher Scientific
  • Danaher
  • JEOL
  • Intertek
  • Charles River Laboratories
  • Hitachi High-Technologies
  • Carl Zeiss

Cryo-Electron Microscopy by Segment

The study includes a forecast for the global cryo-electron microscopy market by product, technology, voltage, application, and region.

Cryo-Electron Microscopy Market by Product [Analysis by Value from 2019 to 2031]:

  • Instruments
  • Fully Automated Instruments
  • Semi-automated Instruments

Cryo-Electron Microscopy Market by Technology [Analysis by Value from 2019 to 2031]:

  • Electron Crystallography
  • Single Particle Analysis
  • Cryo-electron Tomography
  • Others

Cryo-Electron Microscopy Market by Voltage [Analysis by Value from 2019 to 2031]:

  • 300 kV
  • 200 kV
  • 120 kV

Cryo-Electron Microscopy Market by Application [Analysis by Value from 2019 to 2031]:

  • Life Science Research & Academia
  • Cancer Research
  • Omics Research
  • Pharma & Biotech Manufacturing
  • Cell & Gene Therapy
  • Vaccines
  • Preclinical & Clinical Research
  • Healthcare/Medical Applications
  • Others

Cryo-Electron Microscopy Market by Region [Analysis by Value from 2019 to 2031]:

  • North America
  • Europe
  • Asia Pacific
  • The Rest of the World

Country Wise Outlook for the Cryo-Electron Microscopy Market

Cryo-Electron Microscopy (cryo-EM) technology has seen growing adoption due to innovations and its increasing use in structural biology and materials science. The market is expanding in key regions with focused developments aimed at improving visualization and broadening the scope of research. The following summary provides an overview of the latest updates for Cryo-EM end-user markets in the US, China, Germany, India, and Japan.

  • United States: In the United States, the cryo-EM market has seen rapid advancements, fueled by major funding from leading research institutions and biotech companies. High-resolution cryo-EM systems have been developed, enhancing the quality of images obtained. Increased budgetary allocations from the National Institutes of Health (NIH) and other private research institutions have stimulated the development and application of cryo-EM in pharmaceuticals and structural biology.
  • China: China is investing heavily in cryo-EM technology, with both government and private organizations focusing on advancing research capabilities. The Chinese government's research funds have been instrumental in establishing high-tech cryo-EM labs across leading research universities. The rapid adoption of cryo-EM in the fields of material sciences, structural biology, and drug research is a key driver for market growth in China.
  • Germany: Germany's technological innovation leadership is reflected in its advancement of cryo-EM. The country's adoption of cryo-EM for research into biomolecules, viruses, and protein structures continues to grow. Government support for research projects in the biotech industry and collaborations between institutions such as the Max Planck Institutes are contributing to increased demand for cryo-EM in Germany.
  • India: India is witnessing significant growth in cryo-EM adoption due to increasing investments in biotechnology and pharmaceutical research. Research institutions, including the Indian Institute of Technology (IIT), are acquiring cryo-EM systems to advance structural biology studies. Government funding initiatives supporting R&D are further increasing the demand for cryo-EM technology.
  • Japan: Japan is also enhancing its cryo-EM capabilities, with institutions like the RIKEN Center for Structural Biology leading the way. Investments in new systems and upgrades in cryo-EM facilities are contributing to the growing demand. The increasing interest in drug discovery and protein structural analysis in Japan is providing opportunities for the cryo-EM market to expand.

Features of the Global Cryo-Electron Microscopy Market

Market Size Estimates: Cryo-electron microscopy market size estimation in terms of value ($B).

Trend and Forecast Analysis: Market trends (2019 to 2024) and forecast (2025 to 2031) by various segments and regions.

Segmentation Analysis: Cryo-electron microscopy market size by various segments, such as by product, technology, voltage, application, and region in terms of value ($B).

Regional Analysis: Cryo-electron microscopy market breakdown by North America, Europe, Asia Pacific, and Rest of the World.

Growth Opportunities: Analysis of growth opportunities in different products, technologies, voltage, applications, and regions for the cryo-electron microscopy market.

Strategic Analysis: This includes M&A, new product development, and the competitive landscape of the cryo-electron microscopy market.

Analysis of the competitive intensity of the industry based on Porter's Five Forces model.

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This report answers the following 11 key questions:

  • Q.1. What are some of the most promising, high-growth opportunities for the cryo-electron microscopy market by product (instruments, fully automated instruments, and semi-automated instruments), technology (electron crystallography, single particle analysis, cryo-electron tomography, and others), voltage (300 KV, 200 KV, and 120 KV), application (life science research & academia, cancer research, omics research, pharma & biotech manufacturing, cell & gene therapy, vaccines, preclinical & clinical research, healthcare/medical applications, and others), and region (North America, Europe, Asia Pacific, and the Rest of the World)?
  • Q.2. Which segments will grow at a faster pace and why?
  • Q.3. Which region will grow at a faster pace and why?
  • Q.4. What are the key factors affecting market dynamics? What are the key challenges and business risks in this market?
  • Q.5. What are the business risks and competitive threats in this market?
  • Q.6. What are the emerging trends in this market and the reasons behind them?
  • Q.7. What are some of the changing demands of customers in the market?
  • Q.8. What are the new developments in the market? Which companies are leading these developments?
  • Q.9. Who are the major players in this market? What strategic initiatives are key players pursuing for business growth?
  • Q.10. What are some of the competing products in this market, and how big of a threat do they pose for loss of market share by material or product substitution?
  • Q.11. What M&A activity has occurred in the last 5 years, and what has its impact been on the industry?

Table of Contents

1. Executive Summary

2. Global Cryo-Electron Microscopy Market : Market Dynamics

  • 2.1: Introduction, Background, and Classifications
  • 2.2: Supply Chain
  • 2.3: Industry Drivers and Challenges

3. Market Trends and Forecast Analysis from 2019 to 2031

  • 3.1. Macroeconomic Trends (2019-2024) and Forecast (2025-2031)
  • 3.2. Global Cryo-Electron Microscopy Market Trends (2019-2024) and Forecast (2025-2031)
  • 3.3: Global Cryo-Electron Microscopy Market by Product
    • 3.3.1: Instruments
    • 3.3.2: Fully Automated Instruments
    • 3.3.3: Semi-automated Instruments
  • 3.4: Global Cryo-Electron Microscopy Market by Technology
    • 3.4.1: Electron Crystallography
    • 3.4.2: Single Particle Analysis
    • 3.4.3: Cryo-electron Tomography
    • 3.4.4: Others
  • 3.5: Global Cryo-Electron Microscopy Market by Voltage
    • 3.5.1: 300 kV
    • 3.5.2: 200 kV
    • 3.5.3: 120 kV
  • 3.6: Global Cryo-Electron Microscopy Market by Application
    • 3.6.1: Life Science Research & Academia
    • 3.6.2: Cancer Research
    • 3.6.3: Omics Research
    • 3.6.4: Pharma & Biotech Manufacturing
    • 3.6.5: Cell & Gene Therapy
    • 3.6.6: Vaccines
    • 3.6.7: Preclinical & Clinical Research
    • 3.6.8: Healthcare/Medical Applications
    • 3.6.9: Others

4. Market Trends and Forecast Analysis by Region from 2019 to 2031

  • 4.1: Global Cryo-Electron Microscopy Market by Region
  • 4.2: North American Cryo-Electron Microscopy Market
    • 4.2.1: North American Market by Technology: Electron Crystallography, Single Particle Analysis, Cryo-electron Tomography, and Others
    • 4.2.2: North American Market by Application: Life Science Research & Academia, Cancer Research, Omics Research, Pharma & Biotech Manufacturing, Cell & Gene Therapy, Vaccines, Preclinical & Clinical Research, Healthcare/Medical Applications, and Others
  • 4.3: European Cryo-Electron Microscopy Market
    • 4.3.1: European Market by Technology: Electron Crystallography, Single Particle Analysis, Cryo-electron Tomography, and Others
    • 4.3.2: European Market by Application: Life Science Research & Academia, Cancer Research, Omics Research, Pharma & Biotech Manufacturing, Cell & Gene Therapy, Vaccines, Preclinical & Clinical Research, Healthcare/Medical Applications, and Others
  • 4.4: APAC Cryo-Electron Microscopy Market
    • 4.4.1: APAC Market by Technology: Electron Crystallography, Single Particle Analysis, Cryo-electron Tomography, and Others
    • 4.4.2: APAC Market by Application: Life Science Research & Academia, Cancer Research, Omics Research, Pharma & Biotech Manufacturing, Cell & Gene Therapy, Vaccines, Preclinical & Clinical Research, Healthcare/Medical Applications, and Others
  • 4.5: ROW Cryo-Electron Microscopy Market
    • 4.5.1: ROW Market by Technology: Electron Crystallography, Single Particle Analysis, Cryo-electron Tomography, and Others
    • 4.5.2: ROW Market by Application: Life Science Research & Academia, Cancer Research, Omics Research, Pharma & Biotech Manufacturing, Cell & Gene Therapy, Vaccines, Preclinical & Clinical Research, Healthcare/Medical Applications, and Others

5. Competitor Analysis

  • 5.1: Product Portfolio Analysis
  • 5.2: Operational Integration
  • 5.3: Porter's Five Forces Analysis

6. Growth Opportunities and Strategic Analysis

  • 6.1: Growth Opportunity Analysis
    • 6.1.1: Growth Opportunities for the Global Cryo-Electron Microscopy Market by Product
    • 6.1.2: Growth Opportunities for the Global Cryo-Electron Microscopy Market by Technology
    • 6.1.3: Growth Opportunities for the Global Cryo-Electron Microscopy Market by Voltage
    • 6.1.4: Growth Opportunities for the Global Cryo-Electron Microscopy Market by Application
    • 6.1.5: Growth Opportunities for the Global Cryo-Electron Microscopy Market by Region
  • 6.2: Emerging Trends in the Global Cryo-Electron Microscopy Market
  • 6.3: Strategic Analysis
    • 6.3.1: New Product Development
    • 6.3.2: Capacity Expansion of the Global Cryo-Electron Microscopy Market
    • 6.3.3: Mergers, Acquisitions, and Joint Ventures in the Global Cryo-Electron Microscopy Market
    • 6.3.4: Certification and Licensing

7. Company Profiles of Leading Players

  • 7.1: Thermos Fisher Scientific
  • 7.2: Danaher
  • 7.3: JEOL
  • 7.4: Intertek
  • 7.5: Charles River Laboratories
  • 7.6: Hitachi High-Technologies
  • 7.7: Carl Zeiss
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