Lab On A Chip Is A Tiny Device That Integrates Various Laboratory Analyses Into One

Lab On A Chip

 
On a single chip, Lab On A Chip (LoC) combines many types of analysis, including chemical production, biological processes, and DNA sequencing. These biochemical processes have been reduced in size and optimised, which has reduced costs and increased diagnostic turnaround time. Additionally, LoC is a device that may reduce one or more laboratory tasks to chip-format, where a chip's size might range from a few square centimetres to millimetres.

LoC is primarily the integration of biosensors, electronics, fluid mechanics, and optics.On a single chip, Lab On A Chip (LoC) combines many types of analysis, including chemical production, biological processes, and DNA sequencing. The cost-effectiveness and diagnostic speed of these biochemical processes have risen through miniaturisation. Additionally, LoC is a technology that can divide a single or a group of laboratory jobs into chips with sizes ranging from a few square centimetres to a few millimetres. In LoC, optics, electronics, fluid dynamics, and biosensors are all integrated.

A tiny device known as a Lab On A Chip merges various laboratory analysis procedures onto a single chip. Through the use of lab-on-chip technology, many laboratory analysis methods, including biochemical detection, DNA sequencing, PCR, and others, may be smoothly integrated. The parallelization, high assay sensitivity, ergonomy, waste minimization, and other benefits of this technology are only a few. The chip utilised for this technique can handle incredibly small fluid volumes as low as pico litres and can be as little as a few square centimetres.

A compact gadget known as a "lab on chip" combines various laboratory analytical techniques onto a single chip. Using lab on chip technology, a variety of laboratory analytical techniques, including DNA sequencing, biochemical analysis, PCR, and others, may be quickly and inexpensively included. Benefits of this method include parallelization, minimising waste, ergonomics, high assay sensitivity, and others. In this technology, the microprocessor can be as small as a few square millimetres and can handle incredibly tiny fluid volumes as small as picoliters.

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