3d Reconstruction Analysis

3D reconstruction analysis is a computational approach that converts two-dimensional biological images into three-dimensional models, enabling researchers to examine structure and spatial organization more accurately. The process typically aligns serial microscopy images or views captured from different angles, segments cells or tissue features, and combines the data to render a volumetric representation. In biology, this method supports analysis of cell morphology, tissue architecture, organ development, and relationships among anatomical structures. Quantitative measurements such as volume, surface area, distance, and connectivity can reveal changes that may be missed in single images, strengthening studies of development, disease, and biological function.

3d Reconstruction Analysis - Related Videos

Research

JoVE Journal - Biology
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Imaging and 3D Reconstruction of Cerebrovascular Structures in Embryonic Zebrafish

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Cited by 1 •

2014

Imaging of cerebrovascular development in larval zebrafish is described. Techniques to facilitate 3D imaging and modify cerebrovascular development using chemical treatments are also provided.

Research

JoVE Journal - Neuroscience
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A Method for 3D Reconstruction and Virtual Reality Analysis of Glial and Neuronal Cells

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Cited by 11 •

2019

The described pipeline is designed for the segmentation of electron microscopy datasets larger than gigabytes, to extract whole-cell morphologies. Once the cells are reconstructed in 3D, customized software designed around individual needs can be used to perform a qualitative and quantitative analysis directly in 3D, also using virtual reality to overcome view occlusion.

Research

JoVE Journal - Developmental Biology

Visualization and Analysis of Pharyngeal Arch Arteries using Whole-mount Immunohistochemistry and 3D Reconstruction

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Cited by 15 •

2020

Here, we describe a protocol to visualize and analyze the pharyngeal arch arteries 3, 4, and 6 of mouse embryos using whole-mount immunofluorescence, tissue clearing, confocal microscopy, and 3D reconstruction.

Analysis of Fluorescent-Stained Lipid Droplets with 3D Reconstruction for Hepatic Steatosis Assessment

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Cited by 5 •

2023

Herein, we demonstrate an optimized BODIPY 493/503 fluorescence-based protocol for lipid droplet characterization in liver tissue. Through the use of orthogonal projections and 3D reconstructions, the fluorophore allows for successful discrimination between microvesicular and macrovesicular steatosis and may represent a complementary approach to the classical histological protocols for hepatic steatosis assessment.

Generation of Organotypic Full Skin Reconstructs: A Procedure to Establish 3D Skin Model Using Human Skin Samples

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2023

This video describes the detailed protocol for generating in vitro 3D organotypic skin reconstructs to study melanoma progression. This skin model mimics both the architecture and multicellular complexity of organs in vivo.

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