Flow Cytometry System Market – Global Industry Analysis, Size, Share, Growth, Trends and Forecast

The global flow cytometry system market was valued at USD 4,298.1 Million in 2019 and is projected to reach USD 9,452.6 Million by 2027, expanding at a CAGR of 10.0% during the forecast period. Flow cytometry is technique, which is used to measure the physical and chemical characteristics of cells. Flow cytometry systems are the instruments, which are used for analyzing the quantitative of cells and for analyzing chromosomes, m-RNA, recombinant proteins, and other molecules, which are suspended in a fluid. Flow cytometry technique is based on the principle of the measurement of scattering of light by the particles. The fluorescence light is passed through the cell. The deflection of the light occurs, according to the complexity and size of the particle. Forward-scattered light (FSC), and side-scattered light (SSC) are two methods of deflecting the light. The measurements of FSC and SSC are used for the differentiation of cell types in a heterogeneous cell suspension, while fluorescent markers are used for determining the proteins or nucleic acids. Fluorescence pattern of each cell suspension, which are mixed with FSC and SSC, can be used to identify the cells and to count their percentage. For the detection of specific antibodies, cells are coated with fluorochrome-conjugated antibodies specific to the surface markers present on different cells. Flow cytometry techniques are used for identifying hematological malignancies. Cell size, granularity of the cell, and intracellular proteins can be identified using flow cytometry. Flow cytometry systems are used for precise analysis of small population of cells at high speed.Market Dynamics
Increased Use of Artificial Intelligence (AI) in Flow Cytometry Systems
The advent of new technology, has led to the adoption of the artificial intelligence (AI) for the detection and separation of the cells, molecules, and deoxyribonucleic acid (DNA), using a software, which is used in the flow cytometry systems process. AI i

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