![]() ![]() Workflows can be automated from initial image loading through processing, object detection, measurement extraction, visualisation, and data exporting. Thanks to Bio-Formats, MIA has native support for multi-series image formats such as Leica. Workflows are, by default, compatible with batch processing multiple files within a single folder. Both have full access to all objects and images in the analysis workspace. Functionality can be extended both internally, via integration with SciJava’s scripting interface, and externally, with Java modules that extend the MIA framework. MIA is designed for “out-of-the-box” compatibility with spatially-calibrated 5D images, yielding measurements in both pixel and physical units. Analysis workflows are batch-enabled by default, allowing easy processing of high-content datasets. Detected objects can be transformed, filtered, measured and related. ModularImageAnalysis (MIA) is an ImageJ plugin which provides a modular framework for assembling image and object analysis workflows. Export analytical data to text or CSV files. ![]() Select an extensive range of measurement parameters.Analyse areas via data thresholding using amount of x-ray counts, phase maps, height, or other material properties.Measure and quantify data across multiple layers.Generate profile (cross section) views of multimodal data.Customisation of colour palettes, data overlays, image rendering options, and document display.3D visualisation of topography combined with AFM material properties, EM images, and EDS & EBSD map overlays.Correlate both sets of data using intuitive image overlays and image matching tools.Import data from AZtec using the H5oina file format.Interactive display of multi-layer correlated dataĪnalytical tools for metadata interrogation It provides the tools you need to correlate data from different microscopes, visualise multi-layered data in 2D and 3D, and conduct correlative analyses.Ĭombining data from different imaging modalities (e.g. Relate is a correlative software package optimised to work with EM, EDS, EBSD, & AFM data and images. ![]()
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