Internal Lung Volume

Internal lung volume is the amount of air contained within the lungs at a given point in the respiratory cycle, providing a functional measure of respiratory capacity and pulmonary development. It changes as contraction of the diaphragm and intercostal muscles alters thoracic pressure, driving airflow and producing measurable components such as tidal, residual, and vital volumes. In developmental biology, tracking these volumes helps characterize how lung structure and breathing function mature from fetal life through adulthood, while also revealing effects of impaired development, disease, or experimental interventions on gas-exchange capacity.

Internal Lung Volume - Related Videos

Research

JoVE Journal - Medicine

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.

Measurement of the Pressure-volume Curve in Mouse Lungs

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Cited by 47 •

2015

Here we present a protocol to simply and reliably measure the lung pressure-volume curve in mice, showing that it is sufficiently sensitive to detect phenotypic parenchymal changes in two common lung pathologies, pulmonary fibrosis and emphysema. This metric provides a means to quantify the lung’s structural changes with developing pathology.

Lung Instillation and Fixation: Introducing Liquid into the Trachea and Fixing Lungs to Measure the Fixed Lung Volume

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2023

This video describes a simple and reliable method of introducing liquid into the trachea for lung instillation, fixation, and lung volume measurement.

A Standardized Method for Measuring Internal Lung Surface Area via Mouse Pneumonectomy and Prosthesis Implantation

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Cited by 22 •

2017

Internal lung surface area (ISA) is a critical criterion for assessing lung morphology and physiology in lung diseases and injury-induced alveolar regeneration. We describe here a standardized method that can minimize the measurement bias for ISA in both lung pneumonectomy and prosthesis implantation mouse models.

Rat Heterotopic Abdominal Heart/Single-lung Transplantation in a Volume-loaded Configuration

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2015

We describe a novel technique for heterotopic abdominal heart-lung transplantation (HAHLT) in rats. The transplant configuration results in a partially loaded graft circulation, allowing direct functional assessment. This model may be employed for acute or chronic studies of function and immunologic status of the transplanted graft.

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