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Thermo Scientific Avizo Software delivers comprehensive insights from image-based analysis across various material types and multiple imaging techniques. Supporting both advanced research investigations and routine industrial inspections, Avizo Software combines powerful analytical workflows with deep learning capabilities. The software transforms image data features into accurately quantified parameters, offering actionable information for materials science applications.
Avizo Software empowers composite materials scientists to enhance material performance through advanced image data analysis. The software precisely identifies critical features including cracks, fibers, polymer resin, delamination, and various material phases essential for composite research.
Complex separation challenges are solved using deep learning capabilities that effectively denoise rapid imaging and isolate chemically similar materials. After separation, the software measures segmented materials to detect defects, inclusions, and breaks, and to perform comprehensive bulk characterization.
Additionally, Avizo Software includes Digital Volume Correlation (DVC) functionality to accurately measure volumetric displacement and strain in materials under physical stress conditions such as compression.
Avizo Software specializes in metal and alloy analysis for additive manufacturing, cast mold inspection, and grain structure characterization. Its flexible data architecture supports multi-modality and 3D spectroscopy data for chemical mapping that complements various imaging techniques.
The software's deep learning tools excel at detecting challenging features like faint grain boundaries and subtle pores. Routine workflows can be automated to accelerate part inspection, weld analysis, and corrosion studies.
Avizo Software also includes Digital Volume Correlation (DVC) functionality for precise measurement of volumetric displacement and strain in materials subjected to physical stresses such as compression or thermal expansion.
Avizo Software provides a flexible environment for comprehensive battery analysis, enabling detailed study of cells and their components, cathode grains, anode materials, and polymer separators. The software automates routine analysis through adaptive recipes that process image data with high throughput and repeatability.
Its sophisticated handling of multi-modality data from FIB-SEM and CT scanning is particularly valuable for analyzing the multiscale behaviors of batteries. Avizo Software's precise measurement capabilities for battery swelling, particle cracking, lithiation processes, and interface characteristics contribute directly to developing batteries that are more cost-effective, safer, and reliable.
Avizo Software offers digital rock analysts a comprehensive multi-scale platform for fluid flow analysis, rock typing, reservoir evaluation, grain size analysis, and pore space characterization. Its fully automated material separation capabilities enable repeatable and reliable porosity analysis, facies characterization, and composition analysis. The software allows correlation between whole cores and well logs for holistic reservoir assessment.
Avizo Software's sophisticated pore segmentation technology supports advanced Pore Network Modeling and laminar flow simulation, providing critical insights into reservoir performance for more sustainable oil and gas production or carbon storage applications.
Avizo Software integrates image data from multiple sources to enable multi-modal characterization of advanced catalytic materials. Its powerful deep learning models excel at distinguishing between particles with indistinct boundaries or similar chemical compositions at high resolution.
The software provides comprehensive tools to investigate and characterize porosity networks, accurately measuring surface area and quantifying sintering effects.
Active component particles can be precisely analyzed based on shape, orientation, and proximity to surfaces or other particles. Avizo Software leverages 3D spectroscopy images to enhance separation between chemical phases, facilitating the development of efficient and effective catalysts.
Avizo Software for industrial inspection generates quantitative reports from image data, enabling measurement of internal and difficult-to-access features.
The software compares nominal CAD surfaces to actual scan data to verify tolerances of automotive and aerospace components. It precisely identifies and measures porosity in cast aluminum or additively manufactured parts, analyzing volume, regional clustering, and proximity to surfaces. The software's advanced deep learning tools effectively process noisy and rapidly acquired CT scans for in-line 3D part QA/QC applications.
Avizo Software streamlines complex industrial metrology tasks through automation, making it a manufacturing-focused solution for comprehensive component inspection and quality control.
Avizo Software enables non-destructive inspection of mass-produced foods through automated testing capabilities including ice cream porosity measurement, foreign object detection, contamination recognition, and packaging safety inspection.
The software utilizes recipe-based and deep learning-based workflows to efficiently handle repetitive tasks for in-line QA/QC processes. Avizo Software's flexible toolset supports agricultural research applications such as analyzing fertilizer influence on root growth and seed germination. Its comprehensive 2D and time-series analysis capabilities can process radiographs of cooking meats, beer fermentation, and food spoilage to track temporal changes and enhance food safety protocols.
Avizo Software enables digital excavation of bones and fossils from surrounding matrix using manual, automated, and deep learning segmentation techniques. Its powerful 3D visualization capabilities produce impactful publication figures and videos for paleontological research.
Once skulls or muscles are segmented, Avizo Software generates high-quality surface models suitable for 3D printing, geometric morphometrics analysis, and export to other specialized software. The platform creates precise tetrahedral meshes for finite element modeling of bones, allowing researchers to simulate loading capacity, dental wear patterns, and complex multibody dynamics in extinct and extant species.
For Research Use Only. Not for use in diagnostic procedures.