Three-dimensional Visualization

Three-dimensional visualization is the computer-based representation of objects, spaces, or environmental systems with depth, height, and spatial relationships, making complex information easier to interpret. It works by converting measurements or geographic data into digital models and rendering them from adjustable viewpoints, often using elevation, surface geometry, color, and scale to convey structure. In environmental research, three-dimensional visualization can represent terrain, vegetation, waterways, buildings, and changes across landscapes. These models support habitat assessment, environmental monitoring, resource management, and communication of spatial patterns, helping researchers evaluate conditions and potential impacts more effectively.

Three-dimensional Visualization - Related Videos

Research

JoVE EoE - Neuroimaging

Three-Dimensional Visualization of a Rabies Virus Infection in Mouse Brain Tissue

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2025

Source: Zaeck, L., et al. High-Resolution 3D Imaging of Rabies Virus Infection in Solvent-Cleared Brain Tissue. J. Vis. Exp. (2019). This video demonstrates the process of preparing and imaging mouse brain tissue infected with the rabies virus (RABV) to evaluate infection progression. It outlines key steps, including tissue staining with fluorescent markers, dehydration, clearing, and mounting for confocal laser scanning microscopy, culminating in the generation of a three-dimensional...

Visualization of UV-induced Replication Intermediates in E. coli using Two-dimensional Agarose-gel Analysis

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Cited by 2 •

2010

We present a procedure by which two-dimensional agarose-gel analysis can be used to identify the structure of replication intermediates that occur following UV irradiation.

Visualization of Endosome Dynamics in Living Nerve Terminals with Four-dimensional Fluorescence Imaging

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2014

Four-dimensional (4D) imaging is utilized to study the behavior and interactions among two types of endosomes in living vertebrate nerve terminals. Movement of these small structures is characterized in three dimensions, permitting confirmation of events such as endosome fusion and exocytosis.

Using High Resolution Computed Tomography to Visualize the Three Dimensional Structure and Function of Plant Vasculature

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Cited by 62 •

2013

High resolution x-ray computed tomography (HRCT) is a non-destructive diagnostic imaging technique that can be used to study the structure and function of plant vasculature in 3D. We demonstrate how HRCT facilitates exploration of xylem networks across a wide range of plant tissues and species.

Light-sheet Microscopy for Three-dimensional Visualization of Human Immune Cells

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Cited by 20 •

2018

Here, we present a protocol to visualize immune cells embedded in a three-dimensional (3D) collagen matrix using light-sheet microscopy. This protocol also elaborates how to track cell migration in 3D. This protocol can be employed for other types of suspension cells in the 3D matrix.

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