4d Confocal Imaging

4D confocal imaging is a microscopy approach that captures three-dimensional structures and their changes over time, enabling researchers to study dynamic biological systems with spatial and temporal detail. The method collects fluorescence from optical sections at successive depths, reconstructs these slices into a three-dimensional volume, and repeats acquisition to generate a time-resolved dataset. In bioengineering, 4D confocal imaging helps characterize cell migration, tissue organization, biomaterial interactions, and engineered tissue development. By revealing how cells and structures change within complex environments, it supports quantitative analysis of morphology, movement, and biological responses.

4d Confocal Imaging - Related Videos

Research

JoVE Journal - Bioengineering

Sample Drift Correction Following 4D Confocal Time-lapse Imaging

0 Views •

Cited by 222 •

2014

Time-lapse microscopy allows the visualization of developmental processes. Growth or drift of samples during image acquisition reduces the ability to accurately follow and measure cell movements during development. We describe the use of open source image processing software to correct for three dimensional sample drift over time.

Analyzing Craniofacial Morphogenesis in Zebrafish Using 4D Confocal Microscopy

0 Views •

Cited by 18 •

2014

Time-lapse confocal imaging is a powerful technique useful for characterizing embryonic development. Here, we describe the methodology and characterize craniofacial morphogenesis in wild-type, as well as pdgfra, smad5, and smo mutant embryos.

Research

JoVE Journal - Biology
Free Sample

4D Imaging of Protein Aggregation in Live Cells

0 Views •

Cited by 4 •

2013

Cellular viability depends on timely and efficient management of protein misfolding. Here we describe a method for visualizing the different potential fates of a misfolded protein: refolding, degradation, or sequestration in inclusions. We demonstrate the use of a folding sensor, Ubc9ts, for monitoring proteostasis and aggregation quality control in live cells using 4D microscopy.

4D Multimodality Imaging of Citrobacter rodentium Infections in Mice

0 Views •

Cited by 19 •

2013

Multi-modality imaging is a valuable approach for studying bacterial colonization in small animal models. This protocol outlines infection of mice with bioluminescent Citrobacter rodentium and the longitudinal monitoring of bacterial colonization using composite 3D diffuse light imaging tomography with μCT imaging to create a 4D movie of C. rodentium infection.

4D Light-sheet Imaging of Zebrafish Cardiac Contraction

0 Views •

Cited by 8 •

2024

This protocol utilizes light-sheet imaging to investigate cardiac contractile function in zebrafish larvae and gain insights into cardiac mechanics through cell tracking and interactive analysis.

View All Results

FAQs

Related Topics