CHAPTER 1: INTRODUCTION
1.1. Report description
1.2. Key market segments
1.3. Key benefits to the stakeholders
1.4. Research methodology
1.4.1. Primary research
1.4.2. Secondary research
1.4.3. Analyst tools and models
CHAPTER 2: EXECUTIVE SUMMARY
2.1. CXO Perspective
CHAPTER 3: MARKET OVERVIEW
3.1. Market definition and scope
3.2. Key findings
3.2.1. Top impacting factors
3.2.2. Top investment pockets
3.3. Porter’s five forces analysis
3.3.1. Moderate bargaining power of suppliers
3.3.2. Low threat of new entrants
3.3.3. Low threat of substitutes
3.3.4. Moderate intensity of rivalry
3.3.5. Moderate bargaining power of buyers
3.4. Market dynamics
3.4.1. Drivers
3.4.1.1. Technological advancements in mass spectrometry
3.4.1.2. Increase in research and development activities
3.4.1.3. Surge in awareness about food safety
3.4.2. Restraints
3.4.2.1. High cost of mass spectrometry equipment
3.4.3. Opportunities
3.4.3.1. Continuous miniaturization in mass spectrometry
CHAPTER 4: MASS SPECTROMETRY MARKET, BY TECHNOLOGY
4.1. Overview
4.1.1. Market size and forecast
4.2. Hybrid Mass Spectrometry
4.2.1. Key market trends, growth factors and opportunities
4.2.2. Market size and forecast, by region
4.2.3. Market share analysis by country
4.2.4. Hybrid Mass Spectrometry Mass Spectrometry Market by Type
4.2.4.1. FT-MS Mass Spectrometry Market by Type
4.3. Single Mass Spectrometry
4.3.1. Key market trends, growth factors and opportunities
4.3.2. Market size and forecast, by region
4.3.3. Market share analysis by country
4.3.4. Single Mass Spectrometry Mass Spectrometry Market by Type
4.4. Others
4.4.1. Key market trends, growth factors and opportunities
4.4.2. Market size and forecast, by region
4.4.3. Market share analysis by country
CHAPTER 5: MASS SPECTROMETRY MARKET, BY APPLICATION
5.1. Overview
5.1.1. Market size and forecast
5.2. Pharmaceutical
5.2.1. Key market trends, growth factors and opportunities
5.2.2. Market size and forecast, by region
5.2.3. Market share analysis by country
5.3. Biotechnology
5.3.1. Key market trends, growth factors and opportunities
5.3.2. Market size and forecast, by region
5.3.3. Market share analysis by country
5.4. Industrial Chemistry
5.4.1. Key market trends, growth factors and opportunities
5.4.2. Market size and forecast, by region
5.4.3. Market share analysis by country
5.5. Environmental Testing
5.5.1. Key market trends, growth factors and opportunities
5.5.2. Market size and forecast, by region
5.5.3. Market share analysis by country
5.6. Food and Beverage Testing
5.6.1. Key market trends, growth factors and opportunities
5.6.2. Market size and forecast, by region
5.6.3. Market share analysis by country
5.7. Forensic
5.7.1. Key market trends, growth factors and opportunities
5.7.2. Market size and forecast, by region
5.7.3. Market share analysis by country
5.8. Clinical
5.8.1. Key market trends, growth factors and opportunities
5.8.2. Market size and forecast, by region
5.8.3. Market share analysis by country
5.9. Other Applications
5.9.1. Key market trends, growth factors and opportunities
5.9.2. Market size and forecast, by region
5.9.3. Market share analysis by country
CHAPTER 6: MASS SPECTROMETRY MARKET, BY REGION
6.1. Overview
6.1.1. Market size and forecast By Region
6.2. North America
6.2.1. Key market trends, growth factors and opportunities
6.2.2. Market size and forecast, by Technology
6.2.3. Market size and forecast, by Application
6.2.4. Market size and forecast, by country
6.2.4.1. U.S.
6.2.4.1.1. Market size and forecast, by Technology
6.2.4.1.2. Market size and forecast, by Application
6.2.4.2. Canada
6.2.4.2.1. Market size and forecast, by Technology
6.2.4.2.2. Market size and forecast, by Application
6.2.4.3. Mexico
6.2.4.3.1. Market size and forecast, by Technology
6.2.4.3.2. Market size and forecast, by Application
6.3. Europe
6.3.1. Key market trends, growth factors and opportunities
6.3.2. Market size and forecast, by Technology
6.3.3. Market size and forecast, by Application
6.3.4. Market size and forecast, by country
6.3.4.1. Germany
6.3.4.1.1. Market size and forecast, by Technology
6.3.4.1.2. Market size and forecast, by Application
6.3.4.2. France
6.3.4.2.1. Market size and forecast, by Technology
6.3.4.2.2. Market size and forecast, by Application
6.3.4.3. UK
6.3.4.3.1. Market size and forecast, by Technology
6.3.4.3.2. Market size and forecast, by Application
6.3.4.4. Italy
6.3.4.4.1. Market size and forecast, by Technology
6.3.4.4.2. Market size and forecast, by Application
6.3.4.5. Spain
6.3.4.5.1. Market size and forecast, by Technology
6.3.4.5.2. Market size and forecast, by Application
6.3.4.6. Rest of Europe
6.3.4.6.1. Market size and forecast, by Technology
6.3.4.6.2. Market size and forecast, by Application
6.4. Asia-Pacific
6.4.1. Key market trends, growth factors and opportunities
6.4.2. Market size and forecast, by Technology
6.4.3. Market size and forecast, by Application
6.4.4. Market size and forecast, by country
6.4.4.1. Japan
6.4.4.1.1. Market size and forecast, by Technology
6.4.4.1.2. Market size and forecast, by Application
6.4.4.2. China
6.4.4.2.1. Market size and forecast, by Technology
6.4.4.2.2. Market size and forecast, by Application
6.4.4.3. India
6.4.4.3.1. Market size and forecast, by Technology
6.4.4.3.2. Market size and forecast, by Application
6.4.4.4. Australia
6.4.4.4.1. Market size and forecast, by Technology
6.4.4.4.2. Market size and forecast, by Application
6.4.4.5. South Korea
6.4.4.5.1. Market size and forecast, by Technology
6.4.4.5.2. Market size and forecast, by Application
6.4.4.6. Rest of Asia-Pacific
6.4.4.6.1. Market size and forecast, by Technology
6.4.4.6.2. Market size and forecast, by Application
6.5. LAMEA
6.5.1. Key market trends, growth factors and opportunities
6.5.2. Market size and forecast, by Technology
6.5.3. Market size and forecast, by Application
6.5.4. Market size and forecast, by country
6.5.4.1. Brazil
6.5.4.1.1. Market size and forecast, by Technology
6.5.4.1.2. Market size and forecast, by Application
6.5.4.2. Saudi Arabia
6.5.4.2.1. Market size and forecast, by Technology
6.5.4.2.2. Market size and forecast, by Application
6.5.4.3. South Africa
6.5.4.3.1. Market size and forecast, by Technology
6.5.4.3.2. Market size and forecast, by Application
6.5.4.4. Rest of LAMEA
6.5.4.4.1. Market size and forecast, by Technology
6.5.4.4.2. Market size and forecast, by Application
CHAPTER 7: COMPETITIVE LANDSCAPE
7.1. Introduction
7.2. Top winning strategies
7.3. Product mapping of top 10 player
7.4. Competitive dashboard
7.5. Competitive heatmap
7.6. Top player positioning, 2022
CHAPTER 8: COMPANY PROFILES
8.1. Agilent Technologies, Inc.
8.1.1. Company overview
8.1.2. Key executives
8.1.3. Company snapshot
8.1.4. Operating business segments
8.1.5. Product portfolio
8.1.6. Business performance
8.2. Thermo Fisher Scientific Inc.
8.2.1. Company overview
8.2.2. Key executives
8.2.3. Company snapshot
8.2.4. Operating business segments
8.2.5. Product portfolio
8.2.6. Business performance
8.2.7. Key strategic moves and developments
8.3. PerkinElmer, Inc.
8.3.1. Company overview
8.3.2. Key executives
8.3.3. Company snapshot
8.3.4. Operating business segments
8.3.5. Product portfolio
8.3.6. Business performance
8.4. Shimadzu Corporation
8.4.1. Company overview
8.4.2. Key executives
8.4.3. Company snapshot
8.4.4. Operating business segments
8.4.5. Product portfolio
8.4.6. Business performance
8.4.7. Key strategic moves and developments
8.5. Kore Technologies, Ltd.
8.5.1. Company overview
8.5.2. Key executives
8.5.3. Company snapshot
8.5.4. Operating business segments
8.5.5. Product portfolio
8.6. Hiden Analytical Ltd.
8.6.1. Company overview
8.6.2. Key executives
8.6.3. Company snapshot
8.6.4. Operating business segments
8.6.5. Product portfolio
8.7. Leco Corporation
8.7.1. Company overview
8.7.2. Key executives
8.7.3. Company snapshot
8.7.4. Operating business segments
8.7.5. Product portfolio
8.8. Bruker Corporation
8.8.1. Company overview
8.8.2. Key executives
8.8.3. Company snapshot
8.8.4. Operating business segments
8.8.5. Product portfolio
8.8.6. Business performance
8.8.7. Key strategic moves and developments
8.9. Waters Corporation
8.9.1. Company overview
8.9.2. Key executives
8.9.3. Company snapshot
8.9.4. Operating business segments
8.9.5. Product portfolio
8.9.6. Business performance
8.9.7. Key strategic moves and developments
8.10. Danaher Corporation
8.10.1. Company overview
8.10.2. Key executives
8.10.3. Company snapshot
8.10.4. Operating business segments
8.10.5. Product portfolio
8.10.6. Business performance
| ※参考情報 質量分析(Mass Spectrometry)は、物質の質量を測定するための分析技術です。この技術は、溶液や気体中の化合物をイオン化し、そのイオンを質量と電荷に基づいて分離することによって機能します。このアプローチにより、非常に微量の成分であっても、その質量や構造を解析することが可能になります。 質量分析は、さまざまな種類があり、主に飛行時間型質量分析計(TOF)、四重極型質量分析計、イオントラップ型質量分析計、そしてフーリエ変換イオンサイクロトロン共鳴型質量分析計(FT-ICR)などが存在します。TOF型は、イオンが質量に応じて飛行時間が異なるという原理を利用します。四重極型は、電場を利用して特定の質量のイオンを選択的に通過させる技術です。一方、イオントラップ型は、イオンを一定の空間に閉じ込めて測定することで高い感度を実現します。 質量分析の用途は広範囲に及びます。化学や生物学の分野では、化合物の同定や定量分析が行われます。例えば、薬物の代謝物の分析や、環境試料中の汚染物質の検出、食品中の成分分析などに利用されます。また、蛋白質の質量分析は、プロテオミクスという研究分野で重要な役割を果たしています。これは、細胞内の蛋白質の網羅的な解析を行う手法であり、疾患の理解や新薬の開発に寄与しています。 さらに、質量分析は法医学や臨床検査においても重要なツールです。薬物中毒の診断や、病原体の同定、遺伝子関連疾患のマーカー検出などに活用され、精密なデータを提供します。最近では、質量分析の分野における技術革新が進んでおり、特に質量分析法による代謝物解析は、がん研究や新薬の開発などにおいて新たな可能性を開いています。 質量分析の関連技術には、クロマトグラフィーが存在し、これによって複雑な試料中の成分を分離し、質量分析にかけることが一般的に行われています。ガスクロマトグラフィー(GC-Ms)や液体クロマトグラフィー(LC-MS)などでは、異なる物質を効果的に分離した後、その分離された成分を質量分析で解析します。これにより、より明瞭で高精度なデータを得ることが可能になります。 最近では、質量分析と同時に他の分析技術を組み合わせるハイブリッド型質量分析計も増えてきています。例えば、質量分析と核磁気共鳴(NMR)や、質量分析と赤外分光法(IR)を組み合わせることで、より多角的な情報を得ることができるようになっています。 質量分析は、その高い感度と特異性により、多くの科学分野で欠かせない分析手法となっています。今後もその進化は続き、新たな技術や応用が展開されていくことが期待されます。これにより、私たちが理解できなかった微細な世界がより明らかになり、さまざまな領域での研究や開発に寄与していくでしょう。質量分析は、その多様な応用と発展可能性を持つため、今後の科学技術においても重要な役割を果たすと考えられています。 |
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