Digital Image Enhancement

Digital image enhancement is the computational improvement of an image’s visual quality or diagnostic usefulness by modifying its digital representation. Algorithms adjust properties such as contrast, brightness, sharpness, noise, and spatial resolution, often through intensity transformations, filtering, or edge-preserving processing while retaining clinically relevant structures. In medicine, enhancement supports the interpretation of radiographs, ultrasound, computed tomography, magnetic resonance imaging, and microscopy by making subtle anatomical features or abnormalities more visible. These methods can improve image visualization, assist quantitative analysis and computer-aided diagnosis, and support research when image quality is limited by acquisition conditions or inherent tissue contrast.

Digital Image Enhancement - Related Videos

Research

JoVE Journal - Medicine

Contrast Enhanced Vessel Imaging using MicroCT

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Cited by 17 •

2011

Contrast enhanced small animal vessel imaging by microCT is a rapid, cost-effective and high-throughput technique for serial in situ examination for tumor development, for analyzing the network of blood vessels that nourish them, and for following the response of tumors to preclinical therapeutic intervention(s).

Brain Imaging Investigation of the Memory-Enhancing Effect of Emotion

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Cited by 19 •

2011

We present a protocol that uses functional magnetic resonance imaging to investigate the neural correlates of the memory-enhancing effect of emotion. This protocol allows identification of brain activity specifically linked to memory-related processing, contrary to more general perceptual processing, and can be used with healthy and clinical populations.

Research

JoVE Journal - Engineering
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High-resolution, High-speed, Three-dimensional Video Imaging with Digital Fringe Projection Techniques

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Cited by 9 •

2013

This video describes the fundamentals of digital fringe projection techniques, which provide dense 3D measurements of dynamically changing surfaces. It also demonstrates the design and operation of a high-speed binary defocusing system based on these techniques.

Shrinkage of Dental Composite in Simulated Cavity Measured with Digital Image Correlation

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Cited by 12 •

2014

In order to understand the spatial development of polymerization shrinkage stress in dental resin-composite restorations, Digital Image Correlation was used to provide full-field displacement/strain measurement of restored model glass cavities by correlating images of the restoration taken before and after polymerization.

Using Digital Image Correlation to Characterize Local Strains on Vascular Tissue Specimens

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Cited by 19 •

2016

We describe the use of digital image correlation to characterize the local surface strain field on vascular tissue samples subjected to uniaxial tensile testing. These measurements facilitate precise quantification of the sample mechanical response and the generation of constitutive stress-strain relations.

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