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Pharma Tech Outlook | Monday, July 20, 2020
The fast-paced developments in computers, digital cameras, and software have led to increased practice of image analysis in pharmaceutical industries.
FREMONT, CA: Pharmaceutical labs started to use microscopes integrated with software and cameras in 1985. Towards the end of 1995, scientific instrument companies had begun to market image analysis system for the particle characterization of suspensions and powered samples both. The image analysis systems can be categorized in two ways, static image analysis, and dynamic image analysis. Static image analysis measures samples mounted on a slide and moves it by an automated stage. In contrast, a dynamic image analysis measures the samples that flow through a cell or in front of the optical lens.
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[vendor_logo_first]Advancement of Chemical Imaging
A noted development in image analysis is Chemical Imaging (CI). Chemical Imaging is a new technique that binds conventional imaging and spectroscopy to acquire spatial and spectral information about an object. A combination of vibrational spectroscopic methods and imaging has emerged to be a highly useful technique in characterizing biomolecules. It is also utilized in-process monitoring and quality control in various stages of drug development. CI can distribute a full description of the concentration and distribution of an ingredient. It has the potential to analyze samples in its different forms.
Scientists can extract a wealth of information by studying the images of the cultured cells. High content analysis (HCA) has now come up as a vital tool to accurately analyze image data and convert these complex morphological parameters extracted from individual cells into a simple numerical output. This enables researchers to identify cellular phenotypes quickly.
Various Image Analysis Software
CellProfiler- A free cell image analysis designed for specific use with multidimensional data from high-throughput experiments. It also consists of a supervised machine learning system that can be trained to identify complicated and subtle phenotypes, allowing automatic scoring of millions of cells.
DetecTiff- A newly reported image analysis software that can be used for automated object recognition and quantification of digital images. It utilizes template-based processing for quantitative analysis, with algorithms for structure recognition based on intensity thresholding and size-dependent particle filtering.
BioImageXD- An open-source software for image analysis and processing is formulated to work with single or multi-channel 2D, 3D, and 4D image data.
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