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Published on: May 11, 2018
Cerebral Blood Flow during Exercise in Heart Failure: Effect of Ventricular Assist Devices
Kurt J Smith1,2, Ignacio M Suarez3, Anna Scheer3
1Cardiovascular Research Group, School of Human Sciences (Exercise and Sport Science), The University of Western Australia, Perth, AUSTRALIA.
Insights
Patients with left ventricular assist devices (LVAD) have higher resting cerebral blood flow (CBF) than heart failure (HF) patients but reduced exercise-induced CBF compared to healthy controls. Exercise interventions need to consider these brain blood flow differences.
Area of Science:
- Cardiovascular Physiology
- Neuroscience
- Medical Devices
Background:
- Cerebral blood flow (CBF) normally increases during exercise in healthy individuals.
- Limited research exists on CBF changes during exercise in heart failure (HF) patients compared to controls.
- The impact of left ventricular assist devices (LVAD) on cerebrovascular responses during exercise is not well understood.
Purpose of the Study:
- To compare cerebrovascular responses to exercise in patients with LVAD, HF, and healthy controls (CTRL).
- To test the hypothesis that LVAD patients exhibit impaired cerebrovascular responses to exercise compared to CTRL but enhanced responses compared to HF patients.
Main Methods:
- Utilized Doppler ultrasound to continuously measure internal carotid artery (ICA) blood flow and middle (MCAv) and posterior cerebral artery (PCAv) velocities.
- Assessed cardiorespiratory measures at rest and during an incremental submaximal cycle ergometer exercise protocol.
- Included nine LVAD participants, nine HF participants, and nine CTRL participants, matched for age and sex.
Main Results:
- At rest, ICA hemodynamics were greater in CTRL and LVAD compared to HF.
- LVAD subjects showed higher MCAv and PCAv at rest than CTRL.
- During exercise, ICA flow increased in CTRL but not in HF or LVAD.
- MCAv increased in HF and CTRL but not in LVAD.
- CTRL and LVAD demonstrated higher MCAv and PCAv throughout exercise than HF.
Conclusions:
- LVAD patients exhibit higher resting and exercise CBF than HF patients.
- LVAD patients show attenuated brain blood flow during exercise compared to healthy subjects.
- CBF should be considered in exercise training interventions for HF and LVAD patients.
Introduction:
In healthy individuals, cerebral blood flow (CBF) increases during exercise, but few studies have compared changes in CBF during exercise in patients with heart failure (HF) to healthy controls (CTRL) or assessed the effects of left ventricular assist devices (LVAD). We hypothesized that subjects implanted with LVAD would exhibit impaired cerebrovascular responses to cycle exercise when compared with age- and sex-matched healthy CTRL subjects but would have enhanced responses relative to subjects with HF.
Methods:
Internal carotid artery (ICA) blood flow and intracranial middle (MCAv) and posterior cerebral (PCAv) artery velocities were measured continuously using Doppler ultrasound, alongside cardiorespiratory measures at rest and in response to an incremental submaximal cycle ergometer exercise protocol in nine LVAD participants (58 ± 15 yr, 87 ± 16 kg, 172 ± 8 cm, six females), nine age- and sex-matched subjects with HF (58 ± 8 yr, 84 ± 11 kg, 177 ± 6 cm), and nine CTRL (55 ± 14 yr, 74 ± 16 kg, 168 ± 10 cm).
Results:
At rest, ICA hemodynamics (velocity, shear rate, and flow) were greater in CTRL and LVAD than that in HF (P < 0.05). Higher MCAv (+5.52 ± 1.59 cm·s, P = 0.003) and PCAv (+5.82 ± 1.41 cm·s, P = 0.001) were also observed in LVAD subjects than healthy CTRL. During exercise, ICA flow increased at all workloads in CTRL, but not in HF or LVAD groups. MCAv increased from baseline in both HF and CTRL participants (P = 0.0001), but not in LVAD subjects. Nonetheless, CTRL and LVAD showed higher MCAv (P = 0.006) and PCAv (P < 0.0001) values throughout exercise than HF.
Conclusion:
Our findings indicate that LVAD subjects exhibit higher CBF at rest and during exercise than matched HF participants but attenuated brain blood flows during exercise when compared with healthy subjects. CBF should be considered when designing exercise training interventions in patients with HF and LVAD.
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