Isotropic Voxels

Isotropic voxels are three-dimensional imaging units with equal dimensions along the x, y, and z axes, enabling consistent spatial resolution in every direction. In volumetric neuroimaging, they are produced by acquiring or reconstructing data so that voxel width, height, and depth match, which supports comparable measurements and allows images to be reformatted in any plane without directional distortion. This property improves visualization of brain structures, registration between scans, cortical and lesion measurements, and reconstruction of neural anatomy from MRI or other imaging modalities. Isotropic voxel data also strengthen computational analyses by providing standardized inputs for segmentation, tractography, and three-dimensional brain mapping.

Isotropic Voxels - Related Videos

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...

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.

Nanoscopic Imaging of Human Tissue Sections via Physical and Isotropic Expansion

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Cited by 5 •

2019

Nanoscale imaging of clinical tissue samples can improve understanding of disease pathogenesis. Expansion pathology (ExPath) is a version of expansion microscopy (ExM), modified for compatibility with standard clinical tissue samples, to explore the nanoscale configuration of biomolecules using conventional diffraction limited microscopes.

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.

Voxel Printing Anatomy: Design and Fabrication of Realistic, Presurgical Planning Models through Bitmap Printing

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Cited by 1 •

2022

This method demonstrates a voxel-based 3D printing workflow, which prints directly from medical images with exact spatial fidelity and spatial/contrast resolution. This enables the precise, graduated control of material distributions through morphologically complex, graduated materials correlated to radiodensity without loss or alteration of data.

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