Humidified Airstream System

A humidified airstream system is an apparatus that delivers air with controlled moisture content to an experimental subject or preparation, helping maintain consistent environmental conditions during neuroscience studies. The system passes air through a water-based humidifier or equivalent moisture-control unit, then directs the conditioned stream at a regulated flow rate while limiting changes in temperature and humidity. In neuroscience, this approach can support investigations of respiration, olfaction, airway sensory pathways, and neural responses to inhaled stimuli by reducing variability caused by dry or fluctuating air. Standardized airflow conditions improve experimental reproducibility and help distinguish stimulus-driven neural effects from environmental influences.

Humidified Airstream System - Related Videos

Research

JoVE Journal - Neuroscience

Electrophysiological Measurements from a Moth Olfactory System

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Cited by 11 •

2011

Insect olfactory systems provide unique opportunities for recording odorant-induced responses in the forms of electroantennograms (EAG) and single sensillum recordings (SSR), which are summed responses from all odorant receptor neurons (ORNs) located on the antenna and from those housed in individual sensilla, respectively.

Electrophysiological Recording From Drosophila Labellar Taste Sensilla

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Cited by 28 •

2014

This protocol describes extracellular recording of the action potential responses fired by labellar taste neurons in Drosophila.

Research

JoVE Journal - Neuroscience
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Analyzing Responses of Mouse Olfactory Sensory Neurons Using the Air-phase Electroolfactogram Recording

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Cited by 34 •

2010

The electroolfactogram (EOG) recording is an informative, easy-to-conduct, and reliable way of assessing olfactory function at the level of the olfactory epithelium. This protocol describes a recording setup, mouse tissue preparation, data collection, and basic data analysis.

The FlyBar: Administering Alcohol to Flies

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Cited by 15 •

2014

Drosophila has emerged as a significant model system for dissecting the cellular and molecular underpinnings of behavioral responses to alcohol. Here we present a protocol for the collection of alcohol sensitivity data in a circadian context that can be easily applied to other experiments and is well-suited for undergraduate research.

Preparation of a Micropatterned Substrate to Study Schwann Cell Phenotypes

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2025

The video describes the preparation of a micropatterned substrate to study cell phenotype specification. A protein-coated micropatterned PDMS stamp is used to transfer the micropattern on a PDMS-coated coverslip. The coverslip is then treated with a surfactant to hinder cell adhesion at the unwanted surfaces. Cells are then added to settle in the pattern and incubated for further analysis.

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