Neural mechanisms of respiratory interoception.

Auton Neurosci

Department of Physiological Sciences, College of Veterinary Medicine, University of Florida, Gainesville, FL, USA. Electronic address:

Published: June 2024

AI Article Synopsis

  • Respiratory interoception is a complex system that involves various body sensations linked to breathing and is influenced by both sensory inputs and the body's breathing efforts.
  • This system integrates multiple sensory signals, leading to experiences like breathlessness or the urge to breathe, cough, or swallow.
  • Research on specific brain areas involved in processing these respiratory sensations helps create a model of how the brain manages and interprets respiratory interoception.

Article Abstract

Respiratory interoception is one of the internal bodily systems that is comprised of different types of somatic and visceral sensations elicited by different patterns of afferent input and respiratory motor drive mediating multiple respiratory modalities. Respiratory interoception is a complex system, having multiple afferents grouped into afferent clusters and projecting into both discriminative and affective centers that are directly related to the behavioral assessment of breathing. The multi-afferent system provides a spectrum of input that result in the ability to interpret the different types of respiratory interceptive sensations. This can result in a response, commonly reported as breathlessness or dyspnea. Dyspnea can be differentiated into specific modalities. These respiratory sensory modalities lead to a general sensation of an Urge-to-Breathe, driven by a need to compensate for the modulation of ventilation that has occurred due to factors that have affected breathing. The multiafferent system for respiratory interoception can also lead to interpretation of the sensory signals resulting in respiratory related sensory experiences, including the Urge-to-Cough and Urge-to-Swallow. These behaviors are modalities that can be driven through the differentiation and integration of multiple afferent input into the respiratory neural comparator. Respiratory sensations require neural somatic and visceral interoceptive elements that include gated attention and detection leading to respiratory modality discrimination with subsequent cognitive decision and behavioral compensation. Studies of brain areas mediating cortical and subcortical respiratory sensory pathways are summarized and used to develop a model of an integrated respiratory neural network mediating respiratory interoception.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.autneu.2024.103181DOI Listing

Publication Analysis

Top Keywords

respiratory interoception
20
respiratory
15
respiratory sensory
12
somatic visceral
8
afferent input
8
input respiratory
8
modalities respiratory
8
respiratory neural
8
interoception
5
neural
4

Similar Publications

Stimulation of C-tactile afferents with gentle slow stroking of the hairy skin, also called affective touch, evokes a pleasant sensation. We intended to describe psychological and tonic physiological changes evoked by slow stroking, as well as associations between pleasantness of skin sensation and physiological changes and trait-like self-reported characteristics (i.e.

View Article and Find Full Text PDF

The homeostatic regulation of pulmonary ventilation, and ultimately arterial PCO, depends on interactions between respiratory chemoreflexes and arousal state. The ventilatory response to CO is triggered by neurons in the retrotrapezoid nucleus (RTN) that function as sensors of central pH, which can be identified in adulthood by the expression of Phox2b and neuromedin B. Here, we examine the dynamic response of genetically defined RTN neurons to hypercapnia and arousal state in freely behaving adult male and female mice using the calcium indicator jGCaMP7 and fiber photometry.

View Article and Find Full Text PDF

Conditioned fear selectively increases the perception and neural processing of respiratory stimuli relative to somatosensory stimuli.

Int J Psychophysiol

December 2024

Research Group Health Psychology, Department of Psychology, KU Leuven, Belgium. Electronic address:

Interoception is crucial to the experience of bodily complaints in chronic conditions. Fear can distort the perception of sensations like breathlessness and pain, yet few studies investigated the effects of conditioned fear on both self-report and neural processing of these sensations. In the current study, we conditioned fear of neutral female faces in healthy adults, pairing certain faces (CS+) with an aversive scream.

View Article and Find Full Text PDF

I can feel my heartbeat: The relationship between interoceptive abilities and emotional states during stress and recovery in healthy adolescents.

Psychophysiology

December 2024

Department of Developmental, Personality and Social Psychology, Clinical Developmental Psychology, Ghent University, Ghent, Belgium.

The goal of the current study was to investigate the differential effects of three interoception dimensions on psychophysiological stress responses (reactivity and recovery) in adolescents. A total of 102 adolescents (M = 14.10 years, SD = 0.

View Article and Find Full Text PDF

Variations in interoceptive signals from the baroreceptors (BRs) across the cardiac and respiratory cycle can modulate cortical excitability and so affect awareness. It remains debated at what stages of processing they affect awareness-related event-related potentials (ERPs) in different sensory modalities. We investigated the influence of the cardiac (systole/diastole) and the respiratory (inhalation/exhalation) phase on awareness-related ERPs.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!