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Pharma Tech Outlook | Wednesday, May 17, 2023
Liquid handlers, centrifuges, peelers, sealers, sample refrigerators, robotic arms, and any other technology that relieves lab workers of manual labor are all examples of lab automation. All of these tools assist you speed up tasks so you can focus on what you'd rather be doing, just like the washing machine and dishwasher are for the home.
Fremont, CA: Liquid handlers, centrifuges, peelers, sealers, sample refrigerators, robotic arms, and any other technology that relieves lab workers of manual labor are all examples of lab automation. All of these tools assist you speed up tasks so you can focus on what you'd rather be doing, just like the washing machine and dishwasher are for the home.
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The goal of lab automation is to carry out laborious activities precisely, consistently, and without a lot of groaning or stretched body parts. It is not to remove jobs.
Where do you fall on the lab automation spectrum and what it means?
Manual or not automated
In a manual lab, the scientist is still the main worker moving samples, pipetting, and performing the manual labor necessary to find answers to scientific questions. This kind of lab might exist in a university setting where science is taught, but it might exist anywhere if spending on gear is constrained and humans are required to carry the load instead.
Independent Automated
Devices are used in a lab with stand-alone automation to assist with particular activities like reading plates or dispensing reagents. Each device only does one task, and it's likely that a scientist brings the samples over and removes them. For labs that are just starting started or have a tight hardware budget, this is the most typical automation system you'll see.
Semi-Automated
The liquid handler, the pipetting industry's powerhouse, makes its appearance in the semi-automated lab. These workstations are capable of interacting with other lab equipment like peelers, sealers, and heaters in addition to managing laborious pipetting down to nano-sized dispenses. Most professional labs have at least one liquid handler because they eliminate the utter boredom of pipetting all day.
Complete Integral
Full Integration is the trickiest thing to do in the lab, yet it promises scientists faster research goals and less hands-on time than ever. The workstations and standalone gadgets in the fully integrated lab are all connected by lab orchestration software to function like a musical orchestra, generating a mellow and lovely interplay.
Looking back at the development of lab automation, the microplate, a common tool, was created in response to the need for efficient and practical automation. To simplify automation, the SBS (Society for Biomolecular Screening) standardized the microplate in the 1990s. The Society for Laboratory Automation and Screening is an organization devoted to the idea of automating lab procedures. They are an excellent resource if you want to learn more about lab automation on a global scale.
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