Hidden Overshoot in Cerebral Blood Flow: Implications for Accurate Assessment of Cerebral CO 2 Reactivity

The impact of temporal and individual differences in respiratory and cerebrovascular responses on the assessment of cerebrovascular carbon dioxide (CO 2 ) reactivity (CVR) using the Douglas bag method remains unclear. We hypothesized that accurate CVR assessment requires attaining a respiratory steady-state during CO 2 inhalation, followed by stabilization of middle cerebral artery mean blood velocity (MCA V mean ), mediated by changes in arterial CO 2 tension. To test this hypothesis, we conducted three 8-minute CO 2 inhalation trials (at 0%, 3.5%, and 5%) and analyzed minute-by-minute responses in 32 healthy participants. Twelve participants (37.5%) exhibited an overshoot in MCA V mean immediately after the onset of CO 2 inhalation. When averaged across all participants, CVR reached an apparent steady-state within 2–3 minutes. In contrast, in the overshoot group, MCA V mean increased acutely and thereafter decreased toward a plateau at approximately 6-7 minutes, whereas ventilation increased progressively throughout the exposure. The magnitude of the MCA V mean overshoot was significantly associated with central respiratory chemoreflex sensitivity (r = 0.560, P = 0.0009), but not with CVR (r = −0.206, P = 0.258). These findings indicate that inter-individual variability in CVR estimates obtained using the Douglas bag method may be attributable to inter-individual differences in cerebrovascular regulation arising from respiratory responses to CO 2 inhalation. Consequently, assessing CVR during the early phase of CO 2 inhalation may over- or underestimate steady-state cerebrovascular responsiveness because of inter-individual differences in respiratory or cerebrovascular control. Accordingly, we recommend a minimum CO 2 inhalation duration of 6–7 minutes to ensure attainment of a steady-state when assessing CVR.

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Journal
American Journal of Physiology-Regulatory, Integrative and Comparative Physiology
Published
2026-09-21
DOI
https://doi.org/10.1152/ajpregu.00056.2026
Primary Topic
Traumatic Brain Injury and Neurovascular Disturbances
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article
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article

Hidden Overshoot in Cerebral Blood Flow: Implications for Accurate Assessment of Cerebral CO 2 Reactivity

Keisho Katayama, Shigehiko Ogoh, Tadayoshi Miyamoto, Narumi Kunimatsu et al.
American Journal of Physiology-Regulatory, Integrative and Comparative Physiology
Traumatic Brain Injury and Neurovascular Disturbances
article

Hidden Overshoot in Cerebral Blood Flow: Implications for Accurate Assessment of Cerebral CO 2 Reactivity

Keisho Katayama, Shigehiko Ogoh, Tadayoshi Miyamoto, Narumi Kunimatsu, Marina Feeley, Jiayu Liu
article en

Abstract

The impact of temporal and individual differences in respiratory and cerebrovascular responses on the assessment of cerebrovascular carbon dioxide (CO 2 ) reactivity (CVR) using the Douglas bag method remains unclear. We hypothesized that accurate CVR assessment requires attaining a respiratory steady-state during CO 2 inhalation, followed by stabilization of middle cerebral artery mean blood velocity (MCA V mean ), mediated by changes in arterial CO 2 tension. To test this hypothesis, we conducted three 8-minute CO 2 inhalation trials (at 0%, 3.5%, and 5%) and analyzed minute-by-minute responses in 32 healthy participants. Twelve participants (37.5%) exhibited an overshoot in MCA V mean immediately after the onset of CO 2 inhalation. When averaged across all participants, CVR reached an apparent steady-state within 2–3 minutes. In contrast, in the overshoot group, MCA V mean increased acutely and thereafter decreased toward a plateau at approximately 6-7 minutes, whereas ventilation increased progressively throughout the exposure. The magnitude of the MCA V mean overshoot was significantly associated with central respiratory chemoreflex sensitivity (r = 0.560, P = 0.0009), but not with CVR (r = −0.206, P = 0.258). These findings indicate that inter-individual variability in CVR estimates obtained using the Douglas bag method may be attributable to inter-individual differences in cerebrovascular regulation arising from respiratory responses to CO 2 inhalation. Consequently, assessing CVR during the early phase of CO 2 inhalation may over- or underestimate steady-state cerebrovascular responsiveness because of inter-individual differences in respiratory or cerebrovascular control. Accordingly, we recommend a minimum CO 2 inhalation duration of 6–7 minutes to ensure attainment of a steady-state when assessing CVR.

American Journal of Physiology-Regulatory, Integrative and Comparative Physiology
University of South Wales (GB), Osaka Sangyo University (JP), Toyo University (JP), Nagoya University (JP)
Clean water and sanitation
Openalex Percentile: Top 11%
Traumatic Brain Injury and Neurovascular Disturbances
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