Key result
Individuals at 3 months after stroke demonstrated a significantly lower peak amplitude of middle cerebral artery velocity in the stroke-affected side during moderate-intensity exercise compared to healthy controls (5.5 vs 10.9 cm/s, P<0.01).
Why the study?
Although older adults have reduced middle cerebral artery velocity response to moderate-intensity exercise compared with young adults, the MCAv response to exercise after stroke was unknown.
Does an acute bout of moderate-intensity exercise elicit a different middle cerebral artery velocity response in participants 3 months after stroke compared to age- and sex-matched older adults?
Cross-Sectional (n=32)
Single-blind
No
Does an acute bout of moderate-intensity exercise elicit a different middle cerebral artery velocity response in participants 3 months after stroke compared to age- and sex-matched older adults?
Absolute Event Rate: 5.5% vs 10.9%
p-value: p=<0.01
Stroke survivors exhibit a blunted middle cerebral artery blood flow velocity response to moderate-intensity exercise compared to healthy older adults.
Blunted MCA response to exercise may persist post-stroke; hypothesis-generating for cerebrovascular function and rehabilitation trials.
BACKGROUND AND PURPOSE: Previous work demonstrates that older adults have a lower response in the middle cerebral artery velocity (MCAv) to an acute bout of moderate-intensity exercise when compared with young adults. However, no information exists regarding MCAv response to exercise after stroke. We tested whether MCAv response to an acute bout of moderate-intensity exercise differed between participants 3 months after stroke and an age- and sex-matched control group of older adults (CON). A secondary objective was to compare MCAv response between the stroke- and non-stroke-affected MCAv. METHODS: Using transcranial Doppler ultrasound, we recorded MCAv during a 90-second baseline (BL) followed by a 6-minute moderate-intensity exercise bout using a recumbent stepper. Heart rate (HR), end-tidal CO2 (PETCO2), and beat-to-beat mean arterial blood pressure (MAP) were additional variables of interest. The MCAv response measures included BL, peak response amplitude (Amp), time delay (TD), and time constant (τ). RESULTS: The Amp was significantly lower in the stroke-affected MCAv compared with CON (P < 0.01) and in the nonaffected MCAv compared with CON (P = 0.03). No between-group differences were found between TD and τ. No significant differences were found during exercise for PETCO2 and MAP while HR was lower in participants with stroke (P < 0.01). Within the group of participants with stroke, no differences were found between the stroke-affected and non-stroke-affected sides for any measures. DISCUSSION AND CONCLUSIONS: Resolution of the dynamic response profile has the potential to increase our understanding of the cerebrovascular control mechanisms and test cerebrovascular response to physical therapy-driven interventions such as exercise.Video Abstract available for more insights from the authors (see the Video, Supplemental Digital Content 1, available at: http://links.lww.com/JNPT/A284).
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Kempf et al. (2019) conducted a cross-sectional in Ischemic Stroke (n=32). Unilateral ischemic MCA stroke vs. Age- and sex-matched healthy older adults was evaluated on Peak response amplitude (Amp) of middle cerebral artery velocity (MCAv) during exercise (p=<0.01). Individuals at 3 months after stroke demonstrated a significantly lower peak amplitude of middle cerebral artery velocity in the stroke-affected side during moderate-intensity exercise compared to healthy controls (5.5 vs 10.9 cm/s, P<0.01).
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