Voxel Dimension Optimization

Voxel Dimension Optimization is the process of selecting three-dimensional pixel dimensions that best represent anatomy or pathology in medical imaging. It balances spatial resolution against image noise, acquisition time, radiation dose, data volume, and computational demands: smaller voxels can reveal finer structures but may reduce signal-to-noise ratio, whereas larger voxels improve efficiency while potentially obscuring detail. In computed tomography, magnetic resonance imaging, and other volumetric modalities, optimized voxel dimensions support accurate image reconstruction, segmentation, registration, and quantitative analysis. Appropriate choices improve diagnostic visualization and help ensure that imaging data match the requirements of clinical decision-making, treatment planning, and biomedical research.

Voxel Dimension Optimization - Related Videos

Research

JoVE Journal - Neuroscience
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Using Informational Connectivity to Measure the Synchronous Emergence of fMRI Multi-voxel Information Across Time

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Cited by 23 •

2014

Informational connectivity measures the correspondence between time courses of multi-voxel information across different brain regions. Multi-voxel pattern discriminability time series are extracted from regions and compared, revealing networks that are not identified in a typical functional connectivity approach.

Education

JoVE Science Education - Psychology

Measuring Grey Matter Differences with Voxel-based Morphometry: The Musical Brain

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2023

Source: Laboratories of Jonas T. Kaplan and Sarah I. Gimbel—University of Southern California Experience shapes the brain. It is well understood that our brains are different as a result of learning. While many experience-related changes manifest themselves at the microscopic level, for example by neurochemical adjustments in the behavior of individual neurons, we may also examine anatomical changes to the structure of the brain at a macroscopic level. One famous example of this kind of change...

Three-dimensional Confocal Analysis of Microglia/macrophage Markers of Polarization in Experimental Brain Injury

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Cited by 51 •

2013

A way to gain new insights into the complexity of the brain inflammatory response is presented. We describe immunofluorescence-based protocols followed by three-dimensional confocal analysis to investigate the pattern of co-expression of microglia/macrophage phenotype markers in a mouse model of focal ischemia.

Optimal Foraging - Concepts

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2019

Optimal Foraging Organisms must acquire and use resources in their environment to survive. While food is one of the primary resources organisms must search for, individuals also need to seek habitats, shelter, and mates. This process of searching for resources is known as foraging, which involves a series of costs and benefits. More specifically, acquiring a resource provides the organism with a benefit, however, searching and capturing the resource requires expenditure of time and energy.

From Voxels to Knowledge: A Practical Guide to the Segmentation of Complex Electron Microscopy 3D-Data

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Cited by 14 •

2014

The bottleneck for cellular 3D electron microscopy is feature extraction (segmentation) in highly complex 3D density maps. We have developed a set of criteria, which provides guidance regarding which segmentation approach (manual, semi-automated, or automated) is best suited for different data types, thus providing a starting point for effective segmentation.

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