
Global In Vitro Diagnostics Market Size, By Product and Service, By Test Type, By Technology, By Application, By End User, and By Region, Market Share & Forecast, Global Forecast to 2022 – 2027.
Description
Global In Vitro Diagnostics Market Size, By Product and Service, By Test Type, By Technology, By Application, By End User, and By Region, Market Share & Forecast, Global Forecast to 2022 – 2027.
Global In Vitro Diagnostics Market
The Global In Vitro Diagnostics (IVD) Market size is estimated to be USD 98.2 billion in 2021 and is projected to reach USD 113.1 billion by 2026, at a Compound Annual Growth Rate (CAGR) of 2.9% during the forecast period, 2022 – 2027.
The Global In Vitro Diagnostics market delivers a comprehensive evaluation of the market. It does give a comprehensive analysis via research study which observes historical data & emerging technology to determine the industry’s growth drivers.
The growth of the In Vitro Diagnostics (IVD) market is driven by the rising geriatric population, the subsequent growth in the prevalence of chronic and infectious diseases, rising adoption of fully automated and POC instruments in developed regions, increasing awareness regarding diseases diagnosis in developing regions, and growing R&D investments by industry vendors to launch new IVD products.
In this report study, the key trend prospects & important drivers for the In Vitro Diagnostics market’s growth are explored and analysed in depth. The market dynamics included in the report includes drivers, restraints, opportunities, and challenges, which may have a positive or negative impact on market overall growth.
Global In Vitro Diagnostics Market Report Objective
This report helps the user understand the market in terms of definition, segmentation, market potential, key trends, and industry challenges. Industry analysis were undertaken across the report’s framework, which will help readers obtain a comprehensive scenario of the market. The market statistics & data were acquired from reliable sources such as websites, annual reports of companies, journals, and other publications, then double-checked and validated by industry experts.
This report also covers PORTER’S five forces to help determine several factors like the threat of substitutes, competitive analysis, power of buyer, supplier as well as the threat of new entry. The report has classified the Global In Vitro Diagnostics Market based on Product and Service, Test Type, Technology, Application, End User, and Region.
Key Players:
The Global In Vitro Diagnostics Market is dominated by major players such as QIAGEN N.V, Roche Diagnostics, Siemens Healthineers, Danaher Corporation, Abbott, Thermo Fisher Scientific, Agilent Technologies, Inc., Johnson & Johnson, Becton, Dickinson and Company, Bio-Rad Laboratories, Sysmex Corporation, bioMérieux, DiaSorin, Ortho Clinical Diagnostics, Charles River Laboratories etc.
Market Taxonomy
By Product and Service
Global In Vitro Diagnostics Market
The Global In Vitro Diagnostics (IVD) Market size is estimated to be USD 98.2 billion in 2021 and is projected to reach USD 113.1 billion by 2026, at a Compound Annual Growth Rate (CAGR) of 2.9% during the forecast period, 2022 – 2027.
The Global In Vitro Diagnostics market delivers a comprehensive evaluation of the market. It does give a comprehensive analysis via research study which observes historical data & emerging technology to determine the industry’s growth drivers.
The growth of the In Vitro Diagnostics (IVD) market is driven by the rising geriatric population, the subsequent growth in the prevalence of chronic and infectious diseases, rising adoption of fully automated and POC instruments in developed regions, increasing awareness regarding diseases diagnosis in developing regions, and growing R&D investments by industry vendors to launch new IVD products.
In this report study, the key trend prospects & important drivers for the In Vitro Diagnostics market’s growth are explored and analysed in depth. The market dynamics included in the report includes drivers, restraints, opportunities, and challenges, which may have a positive or negative impact on market overall growth.
Global In Vitro Diagnostics Market Report Objective
This report helps the user understand the market in terms of definition, segmentation, market potential, key trends, and industry challenges. Industry analysis were undertaken across the report’s framework, which will help readers obtain a comprehensive scenario of the market. The market statistics & data were acquired from reliable sources such as websites, annual reports of companies, journals, and other publications, then double-checked and validated by industry experts.
This report also covers PORTER’S five forces to help determine several factors like the threat of substitutes, competitive analysis, power of buyer, supplier as well as the threat of new entry. The report has classified the Global In Vitro Diagnostics Market based on Product and Service, Test Type, Technology, Application, End User, and Region.
Key Players:
The Global In Vitro Diagnostics Market is dominated by major players such as QIAGEN N.V, Roche Diagnostics, Siemens Healthineers, Danaher Corporation, Abbott, Thermo Fisher Scientific, Agilent Technologies, Inc., Johnson & Johnson, Becton, Dickinson and Company, Bio-Rad Laboratories, Sysmex Corporation, bioMérieux, DiaSorin, Ortho Clinical Diagnostics, Charles River Laboratories etc.
Market Taxonomy
By Product and Service
- Reagents & Kits
- Instruments
- Services
- Data Management Software
- Clinical Chemistry
- Molecular Diagnostics
- Immuno Diagnostics
- Hematology
- Diesel Locomotive
- Reagents & Kits
- Instruments
- Services
- Data Management Software
- Others
- Reagents & Kits
- Instruments
- Services
- Data Management Software
- Hospital laboratories
- Clinical laboratories
- Point-of-care testing centers
- Academic institutes
- Patients
- Other
- North America
- Europe
- Asia Pacific
- Latin America
- Middle East & Africa
Table of Contents
- 1 Introduction
- 1.1 Objective of the Study
- 1.2 Market definition
- 1.3 Market Scope
- 2 Research Methodology
- 2.1 Data Mining
- 2.2 Validation
- 2.3 Primary Interviews
- 2.4 List of Data Sources
- 3 Executive Summary
- 4 Global In Vitro Diagnostics Market Outlook
- 4.1 Overview
- 4.2 Market Dynamics
- 4.2.1 Drivers
- 4.2.2 Restraints
- 4.2.3 Opportunities
- 4.3 Porters Five Force Model
- 4.4 Value Chain Analysis
- 5 Global In Vitro Diagnostics Market, By Product and Service
- 5.1 Y-o-Y Growth Comparison, By Product and Service
- 5.2 Global In Vitro Diagnostics Market Share Analysis, By Product and Service
- 5.3 Global In Vitro Diagnostics Market Size and Forecast, By Product and Service
- 5.3.1 Reagents & Kits
- 5.3.2 Instruments
- 5.3.3 Services
- 5.3.4 Data Management Software
- 6 Global In Vitro Diagnostics Market, By Test Type
- 6.1 Y-o-Y Growth Comparison, By Test Type
- 6.2 Global In Vitro Diagnostics Market Share Analysis, By Test Type
- 6.3 Global In Vitro Diagnostics Market Size and Forecast, By Test Type
- 6.3.1 Clinical Chemistry
- 6.3.2 Molecular Diagnostics
- 6.3.3 Immuno Diagnostics
- 6.3.4 Hematology
- 7 Global In Vitro Diagnostics Market, By Technology
- 7.1 Y-o-Y Growth Comparison, By Technology
- 7.2 Global In Vitro Diagnostics Market Share Analysis, By Technology
- 7.3 Global In Vitro Diagnostics Market Size and Forecast, By Technology
- 7.3.1 Diesel Locomotive
- 7.3.2 Reagents & Kits
- 7.3.3 Instruments
- 7.3.4 Services
- 7.3.5 Data Management Software
- 7.3.6 Others
- 8 Global In Vitro Diagnostics Market, By Application
- 8.1 Y-o-Y Growth Comparison, By Application
- 8.2 Global In Vitro Diagnostics Market Share Analysis, By Application
- 8.3 Global In Vitro Diagnostics Market Size and Forecast, By Application
- 8.3.1 Reagents & Kits
- 8.3.2 Instruments
- 8.3.3 Services
- 8.3.4 Data Management Software
- 9 Global In Vitro Diagnostics Market, By End User
- 9.1 Y-o-Y Growth Comparison, By End User
- 9.2 Global In Vitro Diagnostics Market Share Analysis, By End User
- 9.3 Global In Vitro Diagnostics Market Size and Forecast, By End User
- 9.3.1 Hospital laboratories
- 9.3.2 Clinical laboratories
- 9.3.3 Point-of-care testing centers
- 9.3.4 Academic institutes
- 9.3.5 Patients
- 9.3.6 Other
- 10 Global In Vitro Diagnostics Market, By Region
- 10.1 Global In Vitro Diagnostics Market Share Analysis, By Region
- 10.2 Global In Vitro Diagnostics Market Share Analysis, By Region
- 10.3 Global In Vitro Diagnostics Market Size and Forecast, By Region
- 11 North America In Vitro Diagnostics Market Analysis and Forecast (2022-2027)
- 11.1 Introduction
- 11.2 North America In Vitro Diagnostics Market Share Analysis, By Product and Service
- 11.3 North America In Vitro Diagnostics Market Size and Forecast, By Test Type
- 11.4 North America In Vitro Diagnostics Market Size and Forecast, By Technology
- 11.5 North America In Vitro Diagnostics Market Size and Forecast, By Application
- 11.6 North America In Vitro Diagnostics Market Size and Forecast, By End User
- 11.7 North America In Vitro Diagnostics Market Size and Forecast, By Country
- 11.7.1 U.S.
- 11.7.2 Canada
- 11.7.3 Mexico
- 12 Europe In Vitro Diagnostics Market Analysis and Forecast (2022-2027)
- 12.1 Introduction
- 12.2 Europe In Vitro Diagnostics Market Share Analysis, By Product and Service
- 12.3 Europe In Vitro Diagnostics Market Size and Forecast, By Test Type
- 12.4 Europe In Vitro Diagnostics Market Size and Forecast, By Technology
- 12.5 Europe In Vitro Diagnostics Market Size and Forecast, By Application
- 12.5 Europe In Vitro Diagnostics Market Size and Forecast, By End User
- 12.7 Europe In Vitro Diagnostics Market Size and Forecast, By Country
- 12.7.1 Germany
- 12.7.2 France
- 12.7.3 UK
- 12.7.4 Rest of Europe
- 13 Asia Pacific In Vitro Diagnostics Market Analysis and Forecast (2022-2027)
- 13.1 Introduction
- 13.2 Asia Pacific In Vitro Diagnostics Market Share Analysis, By Product and Service
- 13.3 Asia Pacific In Vitro Diagnostics Market Size and Forecast, By Test Type
- 13.4 Asia Pacific In Vitro Diagnostics Market Size and Forecast, By Technology
- 13.5 Asia Pacific In Vitro Diagnostics Market Size and Forecast, By Application
- 13.6 Asia Pacific In Vitro Diagnostics Market Size and Forecast, By End User
- 13.7 Asia Pacific In Vitro Diagnostics Market Size and Forecast, By Country
- 13.7.1 China
- 13.7.2 Japan
- 13.7.3 India
- 13.7.4 Rest of Asia Pacific
- 14 Latin America In Vitro Diagnostics Market Analysis and Forecast (2022-2027)
- 14.1 Introduction
- 14.2 Latin America In Vitro Diagnostics Market Share Analysis, By Product and Service
- 14.3 Latin America In Vitro Diagnostics Market Size and Forecast, By Test Type
- 14.4 Latin America In Vitro Diagnostics Market Size and Forecast, By Technology
- 14.5 Latin America In Vitro Diagnostics Market Size and Forecast, By Application
- 14.6 Latin America In Vitro Diagnostics Market Size and Forecast, By End User
- 14.7 Latin America In Vitro Diagnostics Market Size and Forecast, Country
- 14.7.1 Brazil
- 14.7.2 Rest of Latin America
- 15 Middle East In Vitro Diagnostics Market Analysis and Forecast (2022-2027)
- 15.1 Introduction
- 15.2 Middle East In Vitro Diagnostics Market Share Analysis, By Product and Service
- 15.3 Middle East In Vitro Diagnostics Market Size and Forecast, By Test Type
- 15.4 Middle East In Vitro Diagnostics Market Size and Forecast, By Technology
- 15.5 Middle East In Vitro Diagnostics Market Size and Forecast, By Application
- 15.6 Middle East In Vitro Diagnostics Market Size and Forecast, By End User
- 15.7 Middle East In Vitro Diagnostics Market Size and Forecast, By Country
- 15.7.1 Saudi Arabia
- 15.7.2 UAE
- 15.7.3 Egypt
- 15.7.4 Kuwait
- 15.7.5 South Africa
- 16 Competitive Analysis
- 16.1 Competition Dashboard
- 16.2 Market share Analysis of Top Vendors
- 16.3 Key Development Strategies
- 17 Company Profiles
- 17.1 QIAGEN N.V
- 17.1.1 Overview
- 17.1.2 Offerings
- 17.1.3 Key Financials
- 17.1.4 Business Segment & Geographic Overview
- 17.1.5 Key Market Developments
- 17.1.6 Key Strategies
- 17.2 Roche Diagnostics
- 17.2.1 Overview
- 17.2.2 Offerings
- 17.2.3 Key Financials
- 17.2.4 Business Segment & Geographic Overview
- 17.2.5 Key Market Developments
- 17.2.6 Key Strategies
- 17.3 Siemens Healthineers
- 17.3.1 Overview
- 17.3.2 Offerings
- 17.3.3 Key Financials
- 17.3.4 Business Segment & Geographic Overview
- 17.3.5 Key Market Developments
- 17.3.6 Key Strategies
- 17.4 Danaher Corporation
- 17.4.1 Overview
- 17.4.2 Offerings
- 17.4.3 Key Financials
- 17.4.4 Business Segment & Geographic Overview
- 17.4.5 Key Market Developments
- 16.4.6 Key Strategies
- 17.5 Abbott
- 17.5.1 Overview
- 17.5.2 Offerings
- 17.5.3 Key Financials
- 17.5.4 Business Segment & Geographic Overview
- 17.5.5 Key Market Developments
- 17.5.6 Key Strategies
- 17.6 Thermo Fisher Scientific
- 16.6.1 Overview
- 17.6.2 Offerings
- 17.6.3 Key Financials
- 17.6.4 Business Segment & Geographic Overview
- 17.6.5 Key Market Developments
- 17.6.6 Key Strategies
- 17.7 Agilent Technologies, Inc.
- 17.7.1 Overview
- 17.7.2 Offerings
- 17.7.3 Key Financials
- 17.7.4 Business Segment & Geographic Overview
- 17.7.5 Key Market Developments
- 17.7.6 Key Strategies
- 17.8 bioMérieux
- 17.8.1 Overview
- 17.8.2 Offerings
- 17.8.3 Key Financials
- 17.8.4 Business Segment & Geographic Overview
- 17.8.5 Key Market Developments
- 17.8.6 Key Strategies
- 17.9 Becton, Dickinson and Company
- 17.9.1 Overview
- 17.9.2 Offerings
- 17.9.3 Key Financials
- 17.9.4 Business Segment & Geographic Overview
- 17.9.5 Key Market Developments
- 17.9.6 Key Strategies
- 17.10 Bio-Rad Laboratories
- 17.10.1 Overview
- 17.10.2 Offerings
- 17.10.3 Key Financials
- 17.10.4 Business Segment & Geographic Overview
- 17.10.5 Key Market Developments
- 17.10.6 Key Strategies
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