Lung Function Imaging

Lung function imaging is the use of medical imaging to measure how air moves through the lungs, how blood reaches gas-exchanging regions, and how lung tissue changes during breathing. Depending on the modality, it captures ventilation, perfusion, airway structure, or tissue motion by tracking inhaled tracers, blood flow, or changes in signal and anatomy over the respiratory cycle. In bioengineering, these measurements support computational models, assessment of respiratory disease, and evaluation of engineered therapies or devices. By linking regional function with structure, lung function imaging can reveal abnormalities that global tests may miss and help guide diagnosis, treatment planning, and the development of more precise pulmonary technologies.

Lung Function Imaging - Related Videos

Research

JoVE Journal - Medicine
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Three-Dimensional Phase Resolved Functional Lung Magnetic Resonance Imaging

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Cited by 4 •

2024

Three-dimensional (3D) phase-resolved functional lung (PREFUL) is a functional magnetic resonance imaging (MRI) technique that allows for quantification of regional ventilation of the whole human lung volume, using tidal breathing and contrast-agent free acquisition for 8 min. Here, we present an MR protocol to collect and analyze 3D PREFUL imaging data.

Research

JoVE EoE - Lung Cancer

Whole Lung Agarose Inflation: A Method of Preparing Lungs for Ex vivo Live Imaging

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2023

This video describes a method of preparing lungs for ex vivo live imaging to study interactions between cancer cells and stromal cells, using agarose for inflation. In the sample protocol, agarose inflation procedure is described before observing live cellular interactions.

Real-time X-ray Imaging of Lung Fluid Volumes in Neonatal Mouse Lung

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Cited by 1 •

2016

We present a protocol to assess the rate of alveolar fluid clearance or pulmonary edema in neonatal mouse lung using X-ray imaging technology.

Ex vivo Live Imaging of Lung Metastasis and Their Microenvironment

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Cited by 6 •

2016

We describe a relatively simple method for ex vivo live imaging of the tumor cell-stroma interactions within lung metastasis, utilizing fluorescent reporters in mice. Using spinning-disk confocal microscopy, this technique enables visualization of live cells for at least 4 hr and could be adapted to study other inflammatory lung conditions.

Long-term High-Resolution Intravital Microscopy in the Lung with a Vacuum Stabilized Imaging Window

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Cited by 32 •

2016

This protocol describes the use of multiphoton microscopy to perform long-term high-resolution, single cell imaging of the intact lung in real time using a vacuum stabilized imaging window.

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