
Automated Microbiology Market: Current Analysis and Forecast (2021-2027)
Description
Automated Microbiology Market: Current Analysis and Forecast (2021-2027)
Global Automated Microbiology Market is anticipated to grow with an elevated CAGR of around 9% over the forecast period (2021-2027). Automated microbiology is an advanced method for delivering more accurate and faster test results. This method automates many of the critical microbiological processes such as isolation, detection, classification, and measurement of microorganisms in various biological, ecological, and food industries.
With rapid technological advancement and technological innovations in the area of microbiology, many of the industry players are focused on launching new products in the market to cater to the growing demand for high-quality laboratory services due to which the automated microbiology market is witnessing an uptick all over the globe. For example, in October 2021, GC Labs, a leading clinical diagnostics company in Korea, has introduced WASPLab (bioMerieux, France), the first microbiology Total Laboratory Automation system in Korea. This system automatically processes the series of steps from sample receipt to inoculation, culture, and interpretation, which had all been conducted manually. Furthermore, the ability of these systems to promptly respond to the increasing demand for public health lies and to offer accurate, better and rapid identification of diseases and causative pathogens are also some of the prominent factors driving the automated microbiology market.
Global Automated Microbiology Market is anticipated to grow with an elevated CAGR of around 9% over the forecast period (2021-2027). Automated microbiology is an advanced method for delivering more accurate and faster test results. This method automates many of the critical microbiological processes such as isolation, detection, classification, and measurement of microorganisms in various biological, ecological, and food industries.
With rapid technological advancement and technological innovations in the area of microbiology, many of the industry players are focused on launching new products in the market to cater to the growing demand for high-quality laboratory services due to which the automated microbiology market is witnessing an uptick all over the globe. For example, in October 2021, GC Labs, a leading clinical diagnostics company in Korea, has introduced WASPLab (bioMerieux, France), the first microbiology Total Laboratory Automation system in Korea. This system automatically processes the series of steps from sample receipt to inoculation, culture, and interpretation, which had all been conducted manually. Furthermore, the ability of these systems to promptly respond to the increasing demand for public health lies and to offer accurate, better and rapid identification of diseases and causative pathogens are also some of the prominent factors driving the automated microbiology market.
Global Automated Microbiology Market is anticipated to grow with an elevated CAGR of around 9% over the forecast period (2021-2027). Automated microbiology is an advanced method for delivering more accurate and faster test results. This method automates many of the critical microbiological processes such as isolation, detection, classification, and measurement of microorganisms in various biological, ecological, and food industries.
With rapid technological advancement and technological innovations in the area of microbiology, many of the industry players are focused on launching new products in the market to cater to the growing demand for high-quality laboratory services due to which the automated microbiology market is witnessing an uptick all over the globe. For example, in October 2021, GC Labs, a leading clinical diagnostics company in Korea, has introduced WASPLab (bioMerieux, France), the first microbiology Total Laboratory Automation system in Korea. This system automatically processes the series of steps from sample receipt to inoculation, culture, and interpretation, which had all been conducted manually. Furthermore, the ability of these systems to promptly respond to the increasing demand for public health lies and to offer accurate, better and rapid identification of diseases and causative pathogens are also some of the prominent factors driving the automated microbiology market.
Global Automated Microbiology Market is anticipated to grow with an elevated CAGR of around 9% over the forecast period (2021-2027). Automated microbiology is an advanced method for delivering more accurate and faster test results. This method automates many of the critical microbiological processes such as isolation, detection, classification, and measurement of microorganisms in various biological, ecological, and food industries.
With rapid technological advancement and technological innovations in the area of microbiology, many of the industry players are focused on launching new products in the market to cater to the growing demand for high-quality laboratory services due to which the automated microbiology market is witnessing an uptick all over the globe. For example, in October 2021, GC Labs, a leading clinical diagnostics company in Korea, has introduced WASPLab (bioMerieux, France), the first microbiology Total Laboratory Automation system in Korea. This system automatically processes the series of steps from sample receipt to inoculation, culture, and interpretation, which had all been conducted manually. Furthermore, the ability of these systems to promptly respond to the increasing demand for public health lies and to offer accurate, better and rapid identification of diseases and causative pathogens are also some of the prominent factors driving the automated microbiology market.
Table of Contents
238 Pages
- 1 MARKET INTRODUCTION
- 1.1 Market Definitions
- 1.2 Objective of the Study
- 1.3 Limitation
- 1.4 Stake Holders
- 1.5 Currency Used in Report
- 1.6 Scope of the Global Automated Microbiology Study
- 2 RESEARCH METHODOLOGY OR ASSUMPTION
- 2.1 Research Methodology for the Global Automated Microbiology Market
- 2.1.1 Main Objective of the Global Automated Microbiology Market
- 3 MARKET SYNOPSIS
- 4 EXECUTIVE SUMMARY
- 5 COVID-19 IMPACT
- 6 GLOBAL AUTOMATED MICROBIOLOGY MARKET REVENUE
- 7 MARKET INSIGHTS BY TECHNOLOGY
- 7.1 DNA Sequencing
- 7.2 DNA & RNA Probe Technology
- 7.3 Detection Techniques
- 7.4 Immunoassays
- 7.5 Monoclonal Antibodies
- 8 MARKET INSIGHTS BY END-USERS
- 8.1 Biotechnology Industries
- 8.2 Clinical Laboratories
- 8.3 Blood Banks
- 8.4 Others
- 9 MARKET INSIGHTS BY REGION
- 9.1 NORTH AMERICA AUTOMATED MICROBIOLOGY MARKET
- 9.1.1 United States
- 9.1.2 Canada
- 9.1.3 Rest of North America
- 9.2 EUROPE AUTOMATED MICROBIOLOGY MARKET
- 9.2.1 Germany
- 9.2.2 France
- 9.2.3 United Kingdom
- 9.2.4 Spain
- 9.2.5 Italy
- 9.2.6 Rest of Europe
- 9.3 ASIA PACIFIC AUTOMATED MICROBIOLOGY MARKET
- 9.3.1 China
- 9.3.2 Japan
- 9.3.3 India
- 9.3.4 Australia
- 9.3.5 Rest of Asia Pacific
- 9.4 REST OF THE WORLD AUTOMATED MICROBIOLOGY MARKET
- 10 AUTOMATED MICROBIOLOGY MARKET DYNAMICS
- 10.1 Market Drivers
- 10.2 Market Challenges
- 10.3 Impact Analysis
- 11 AUTOMATED MICROBIOLOGY MARKET OPPORTUNITIES
- 12 AUTOMATED MICROBIOLOGY MARKET TRENDS & INSIGHTS
- 13 LEGAL & REGULATORY FRAMEWORK
- 14 DEMAND AND SUPPLY SIDE ANALYSIS
- 14.1 Demand Side Analysis
- 14.2 Supply Side Analysis
- 14.2.1 Top Product Launches
- 14.2.2 Top Business Partnerships
- 14.2.3 Top Merger & Acquisitions
- 15 VALUE CHAIN ANALYSIS
- 16 COMPETITIVE SCENARIO
- 16.1 Porter’s Five forces analysis
- 16.1.1 Bargaining power of Supplier
- 16.1.2 Bargaining power of Buyer
- 16.1.3 Industry Rivalry
- 16.1.4 Availability of Substitute
- 16.1.5 Threat of new Entrants
- 17 COMPANY PROFILED
- 17.1 Bio-Rad Laboratories
- 17.1.1 Key Facts
- 17.1.2 Business Description
- 17.1.3 Key Product/Services Offerings
- 17.1.4 Growth Strategy
- 17.1.5 SWOT Analysis
- 17.1.6 Key Financials
- 17.1.6.1 Revenue Split
- 17.1.6.2 Financial Overview of Bio-Rad Laboratories
- 17.1.7 Recent Developments
- 17.1.7.1 Product Launch
- 17.1.7.2 Partnerships
- 17.1.7.3 Business Expansion and Investments
- 17.1.7.4 Merger and Acquisition
- 17.2 Becton Dickinson and Company
- 17.3 BioMeriux, Inc.
- 17.4 QIAGEN GmbH
- 17.5 Agilent Technologies
- 17.6 Abbott Laboratories
- 17.7 Affymetrix, Inc.
- 17.8 Gene-Probe, Inc.
- 17.9 Beckman Coulter
- 17.10 Cepheid
- 18 DISCLAIMER
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