Product Description
Microfluidics deals with the behaviour, precise control and manipulation of fluids that are geometrically constrained to a small, typically sub-millimeter, scale at which capillary penetration governs mass transport. It is a multidisciplinary field at the intersection of engineering, physics, chemistry, biochemistry, nanotechnology, and biotechnology, with practical applications in the design of systems in which low volumes of fluids are processed to achieve multiplexing, automation, and high-throughput screening. Microfluidics emerged in the beginning of the 1980s and is used in the development of inkjet printheads, DNA chips, lab-on-a-chip technology, micro-propulsion, and micro-thermal technologies.
Microfluidic devices exploit the physical and chemical properties of liquids and gases at the micro scale. It offers lot of benefits over conventionally sized systems. It helps to execute many operations at the same time due to their compact size, shortening the time of experiment. It also have an excellent data quality and substantial parameter control which automate the process, while preserving the performances. The microfluidic chip is elaborated so that the incorporated automation allows the user to generate multi-step reactions requiring a low level of expertise and a lot of functionalities. They have the capacity to both process, and analyze samples with minor sample handling. The microsystems execute functions which extend from detecting toxins to analyzing DNA sequences.
The Microfluidic Devices market revenue was xx Million USD in 2019, grew to xx Million USD in 2023, and will reach xx Million USD in 2031, with a CAGR of xx during 2024-2031.
Considering the influence of COVID-19 on the global Microfluidic Devices market, this report analyzed the impact from both global and regional perspectives. From production end to consumption end in regions such as North America, Europe, China, and Japan, the report put emphasis on analysis of market under COVID-19 and corresponding response policy in different regions.
This report also analyzes the strategies for different companies to deal with the impact of COVID-19 in detail to seek a path to recovery.
Under COVID-19 Outbreak, how the Microfluidic Devices Industry will develop is also analyzed in detail in Chapter 1.8 of this report.
Major Players in Microfluidic Devices market are:
Dolomite
Micronit Microfluidics
Bio-Rad Laboratories
Dolomite
Fluigent
Cepheid
Agilent Technologies
Fluidigm Corporation
MicruX Technologies
FLUIDIGM CORPORATION
Most important types of Microfluidic Devices products covered in this report are:
In-Vitro Diagnostics
Pharmaceutical
Medical Devices
Most widely used downstream fields of Microfluidic Devices market covered in this report are:
Clinical and Veterinary Diagnostics
Point of Care
Analytical Devices
Drug Delivery
Environmental and Industrial Applications
Major Regions or countries covered in this report:
North America
Europe
China
Japan
Middle East and Africa
South America
India
South Korea
Southeast Asia
Others
In Chapter 3.4, the report provides analysis of the reasons behind price fluctuations.
In chapters 5, 6, and 7, the impact of COVID-19 on the different regions in both production and consumption end and SWOT analysis are pointed out.
In Chapters 8, the report presents company's recent development and strategies to deal with the impact of COVID-19.