Image Analysis Tools

Image analysis tools are software methods that convert visual data into measurable information, helping researchers and clinicians interpret medical images more consistently. They typically preprocess scans to reduce noise, enhance contrast, and align images, then use segmentation to isolate anatomical structures or lesions and extract features such as size, shape, intensity, and texture; classification algorithms can support interpretation of these measurements. In medicine, these tools assist with radiological assessment, disease characterization, treatment planning, and monitoring changes over time. By combining quantitative analysis with expert review, image analysis can improve reproducibility, reveal patterns that are difficult to detect visually, and support research involving clinical imaging datasets.

Image Analysis Tools - Related Videos

Research

JoVE Journal - Engineering

Reusable Hepatic Imaging Tool: A Reusable 3D-Printed Tool for Hepatic Intravital Microscopy

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2026

This protocol introduces a cutting-edge, Reusable Hepatic Imaging Tool (RHIT) for intravital microscopy (IVM) of live mice, which enhances tissue stability for rapid and acute experiments. The RHIT's 3D-printed design offers cost-effective production, scalability, and versatility, enabling prolonged observation of metabolic processes in mice of various sizes.

STFEEG-Tool: A Spatial-Temporal-Frequency EEG Analysis Tool for Motor Imagery Brain-Computer Interfaces

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2026

This study presents a standardized and reproducible protocol for implementing the Spatial-Temporal-Frequency EEG analysis tool (STFEEG) for motor imagery EEG decoding, incorporating configurable spatial-temporal-frequency segmentation, Common Spatial Patterns (CSP)-based feature extraction, multiple classification algorithms, and visualization capabilities.

Coulomb Explosion Imaging as a Tool to Distinguish Between Stereoisomers

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Cited by 5 •

2017

For small chiral species, Coulomb Explosion Imaging provides a new approach to determine the handedness of individual molecules.

An Analytical Tool that Quantifies Cellular Morphology Changes from Three-dimensional Fluorescence Images

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Cited by 4 •

2012

We developed a software platform that utilizes Imaris Neuroscience, ImarisXT and MATLAB to measure the changes in morphology of an undefined shape taken from three-dimensional confocal fluorescence of single cells. This novel approach can be used to quantify changes in cell shape following receptor activation and therefore represents a possible additional tool for drug discovery.

Rapid Analysis and Exploration of Fluorescence Microscopy Images

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Cited by 3 •

2014

Here we describe a workflow for rapidly analyzing and exploring collections of fluorescence microscopy images using PhenoRipper, a recently developed image-analysis platform.

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