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Pharma Tech Outlook | Tuesday, August 17, 2021
The primary motivation for implementing automation is to increase the accuracy of laboratory tests. Manual procedures are dependent on human employees, who are not immune to error or external or internal variables such as fatigue.
FREMONT, CA: Automation is intended to enhance process quality, eliminate human error and variation, and ultimately make operations more cost-effective, efficient, and quick.
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Lab automation is projected to pervade laboratories as new technologies are created and implemented in the coming years. Several obstacles, however, must be overcome before lab automation can reach its full potential.
Market expansion for laboratory automation
According to recent statistics, the entire lab automation industry will reach $1027.5 million in 2019. Between now and 2025, this is predicted to increase at a compound annual growth rate (CAGR) of 6 percent, reaching 1554.94 billion. This tremendous expansion is fueled by increased demand for more accurate test findings.
Additionally, advancements in available automation technology from some of the industry's largest players, such as Siemens AG, Honeywell, and Shimadzu, increase the global usage of automated technologies.
Increased spending on healthcare, particularly in the United States, has resulted in advancing research and development processes, especially clinical trials.
The advancement of clinical trials has increased interest in automation, which is being used to enhance the quality and accuracy of testing processes. This factor alone will be a significant driver of laboratory automation in the following years.
Automation advancements in laboratories
The laboratory information management system (LIMS) is predicted to contribute to the growth of the lab automation industry in the future years.
Recent advancements in the software that governs laboratory automation systems have provided users with increased control and insight over their processes and machinery.
LIMS enables researchers to automate their workflows, integrate their instruments, and create correct and dependable data quickly and precisely. Additionally, LIMS can assist in tracking data generated by sequencing across time and multiple trials.
These systems are projected to be ubiquitous in future automated laboratories. Additionally, it is anticipated that the technology supplied by these systems will continue to evolve and improve, enhancing the benefits of implementing lab automation systems.
The study of molecular biology is one area of science projected to adopt automated processes in the following years rapidly. A recent study has established that automated systems can manage delicate biological samples without affecting the outcome.
For instance, there was initial worry about how mechanical motions during sample transportation could result in observable changes in the data. However, as technology and machines advance, the impact of mechanical movement becomes irrelevant.
As a result, biological laboratories are increasingly confident in automating their testing operations.
Finally, it is projected that future laboratory automation systems will become more user-friendly. There is a push for easier-to-manage automation systems that require less training and knowledge to run.
This will decrease the expenditure necessary to get automation systems up and running and increase cost-effectiveness. To address this need, it is projected that software management systems will improve rapidly in the future years.
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