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July 1, 1996Journal of Applied Physiology220 citations

Carotid artery blood flow and middle cerebral artery blood flow velocity during physical exercise

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GHG HellströmWFWerner Fischer‐ColbrieNWNils Wahlgren

Structured PICO

Does supine stepwise increasing physical exercise alter cerebral blood flow and velocity compared to baseline?

P
Population
Healthy subjects
I
Intervention
Supine stepwise increasing physical exercise (moderate intensity at 60-67% of maximal capacity and high intensity at 80-90% of maximal capacity)
C
Comparator
Baseline values (resting state)
O
Outcome
Blood flow in the left common carotid artery (QCCA), left internal carotid artery (QICA), and blood flow velocity in the ipsilateral middle cerebral artery (VMCA) measured by ultrasonographysurrogate

Moderate physical exercise increases global cerebral blood flow, but high-intensity exercise attenuates this increase, likely due to hyperventilation-induced decreases in arterial PCO2.

Abstract

Factors controlling cerebral blood flow (CBF) during exercise are complex and incompletely known. Different techniques have shown partly contradictory results of changes in regional and global cerebral perfusion during dynamic exercise in healthy subjects. To elucidate the global CBF response to supine stepwise increasing physical exercise, we measured blood flow in the left common carotid artery (QCCA) and the left internal carotid artery (QICA) simultaneously with the blood flow velocity in the ipsilateral middle cerebral artery (VMCA) using duplex ultrasonography and transcranial Doppler ultrasonography. During moderate exercise intensity (60-67% of maximal capacity), the VMCA increased 14% (P < 0.001), the QICA 17% (P < 0.01), and the QCCA 33% (P < 0.001) compared with baseline values. High physical exercise intensity (80-90% of maximal capacity) tended to reduce VMCA and QICA compared with moderate exercise, in contrast to a continued increase in QCCA. The results indicate an increased global CBF during exercise. This increase was reduced during hard exercise due to a decrease of the arterial PCO2 secondary to hyperventilation.

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Cite This Study

Hellström et al. (1996) studied this question.

synapsesocial.com/papers/6a10c8bf5e6663f9d2646b54https://doi.org/10.1152/jappl.1996.81.1.413
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

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