Breath Gas Delivery System

A Breath Gas Delivery System is an apparatus that supplies a controlled mixture of gases for inhalation, analysis, or experimental exposure, enabling precise control of gas composition and flow. It typically combines gas sources through regulators and flow controllers, then directs the mixture through tubing or a breathing interface while maintaining specified delivery conditions. In chemistry, these systems support controlled studies of gas-phase reactions, respiratory analytes, sensor performance, and interactions between inhaled compounds and analytical instruments. By standardizing gas delivery, they improve measurement reproducibility, reduce exposure variability, and help researchers connect chemical composition with observed biological or instrumental responses.

Breath Gas Delivery System - Related Videos

Education

JoVE Core - Biology

Breathing

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2019

The process of breathing, inhaling and exhaling, involves the coordinated movement of the chest wall, the lungs, and the muscles that move them. Two muscle groups with important roles in breathing are the diaphragm, located directly below the lungs, and the intercostal muscles, which lie between the ribs. When the diaphragm contracts, it moves downward, increasing the volume of the thoracic cavity and creating more room for the lungs to expand. When the intercostal muscles contract, the ribs...

Research

JoVE Journal - Medicine

A Novel Inhalation Mask System to Deliver High Concentrations of Nitric Oxide Gas in Spontaneously Breathing Subjects

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Cited by 5 •

2021

This simple and highly adaptable system device for the inhalation of high-concentration nitric oxide (NO) gas does not require mechanical ventilators, positive pressure, or high gas flows. Standard medical consumables and a snug-fitting mask are used to safely deliver NO gas to spontaneously breathing subjects.

Research

JoVE Journal - Medicine
Free Sample

MRI Mapping of Cerebrovascular Reactivity via Gas Inhalation Challenges

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Cited by 79 •

2014

Non-invasive imaging of the brain vasculature’s ability to dilate or constrict may allow a better understanding of cerebrovascular pathophysiology in various neurological diseases. The present report describes a reproducible and patient-comfortable protocol to perform vascular reactivity imaging in humans using magnetic resonance imaging (MRI).

Dual Test Gas Pulmonary Diffusing Capacity Measurement During Exercise in Humans Using the Single-Breath Method

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Cited by 2 •

2024

This protocol presents a method to assess pulmonary alveolar-capillary reserve measured by combined single-breath measurement of the diffusing capacity to carbon monoxide (DL,CO) and nitric oxide (DL,NO) during exercise. Assumptions and recommendations for using the technique during exercise form the foundation of this article.

Fast and Accurate Exhaled Breath Ammonia Measurement

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Cited by 16 •

2014

Ammonia is an important physiologic metabolite relevant to various disease and wellness states. It is also a difficult molecule to measure in breath, which demands particular precautions be taken to obtain accurate results. Not all factors influencing ammonia are known, but progress can be difficult without accounting for these factors.

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