Key result
Anticipation of severe dyspnea increased activation in the left insular, parietal opercular, and cerebellar cortices, and increased connectivity with emotion-related areas.
Why the study?
What are the brain mechanisms and neural networks activated during the anticipation of dyspnea in healthy subjects?
Observational
What are the brain mechanisms and neural networks activated during the anticipation of dyspnea in healthy subjects?
Anticipation of dyspnea activates emotion-related brain networks, providing a potential neural mechanism for activity avoidance and fear in patients with cardiorespiratory diseases.
May explain dyspnea-related fear and avoidance in cardiorespiratory disease; hypothesis-generating and requires validation in patients.
Dyspnea is common in many cardiorespiratory diseases. Already the anticipation of this aversive symptom elicits fear in many patients resulting in unfavorable health behaviors such as activity avoidance and sedentary lifestyle. This study investigated brain mechanisms underlying these anticipatory processes. We induced dyspnea using resistive-load breathing in healthy subjects during functional magnetic resonance imaging. Blocks of severe and mild dyspnea alternated, each preceded by anticipation periods. Severe dyspnea activated a network of sensorimotor, cerebellar, and limbic areas. The left insular, parietal opercular, and cerebellar cortices showed increased activation already during dyspnea anticipation. Left insular and parietal opercular cortex showed increased connectivity with right insular and anterior cingulate cortex when severe dyspnea was anticipated, while the cerebellum showed increased connectivity with the amygdala. Notably, insular activation during dyspnea perception was positively correlated with midbrain activation during anticipation. Moreover, anticipatory fear was positively correlated with anticipatory activation in right insular and anterior cingulate cortex. The results demonstrate that dyspnea anticipation activates brain areas involved in dyspnea perception. The involvement of emotion-related areas such as insula, anterior cingulate cortex, and amygdala during dyspnea anticipation most likely reflects anticipatory fear and might underlie the development of unfavorable health behaviors in patients suffering from dyspnea.
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Stoeckel et al. (2016) conducted an observational in Healthy subjects. Anticipation of severe dyspnea vs. Anticipation of mild dyspnea was evaluated on Brain activation and connectivity during dyspnea anticipation. Anticipation of severe dyspnea increased activation in the left insular, parietal opercular, and cerebellar cortices, and increased connectivity with emotion-related areas.
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