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Temporal stability of multiple response systems to 7.5% carbon dioxide challenge.


ABSTRACT: Self-reported anxiety, and potentially physiological response, to maintained inhalation of carbon dioxide (CO2) enriched air shows promise as a putative marker of panic reactivity and vulnerability. Temporal stability of response systems during low-dose, steady-state CO2 breathing challenge is lacking. Outcomes on multiple levels were measured two times, one week apart, in 93 individuals. Stability was highest during the CO2 breathing phase compared to pre-CO2 and recovery phases, with anxiety ratings, respiratory rate, skin conductance level, and heart rate demonstrating good to excellent temporal stability (ICCs?0.71). Cognitive symptoms tied to panic were somewhat less stable (ICC=0.58) than physical symptoms (ICC=0.74) during CO2 breathing. Escape/avoidance behaviors and DSM-5 panic attacks were not stable. Large effect sizes between task phases also were observed. Overall, results suggest good-excellent levels of temporal stability for multiple outcomes during respiratory stimulation via 7.5% CO2.

SUBMITTER: Roberson-Nay R 

PROVIDER: S-EPMC5331940 | biostudies-literature | 2017 Mar

REPOSITORIES: biostudies-literature

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Temporal stability of multiple response systems to 7.5% carbon dioxide challenge.

Roberson-Nay Roxann R   Gorlin Eugenia I EI   Beadel Jessica R JR   Cash Therese T   Vrana Scott S   Teachman Bethany A BA  

Biological psychology 20170202


Self-reported anxiety, and potentially physiological response, to maintained inhalation of carbon dioxide (CO<sub>2</sub>) enriched air shows promise as a putative marker of panic reactivity and vulnerability. Temporal stability of response systems during low-dose, steady-state CO<sub>2</sub> breathing challenge is lacking. Outcomes on multiple levels were measured two times, one week apart, in 93 individuals. Stability was highest during the CO<sub>2</sub> breathing phase compared to pre-CO<sub  ...[more]

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