Key result
Supine bicycle exercise significantly increased the collateral flow index compared to rest (0.262 vs 0.168, P=0.0002) in patients with non-occlusive coronary artery disease.
Why the study?
Does supine bicycle exercise instantaneously improve coronary collateral function in patients with stable non-occlusive coronary artery disease?
RCT (n=30)
Randomized to 'rest first' or 'exercise first' sequence
Does supine bicycle exercise instantaneously improve coronary collateral function in patients with stable non-occlusive coronary artery disease?
Absolute Event Rate: 0.262% vs 0.168%
p-value: p=0.0002
In patients with stable non-occlusive coronary artery disease, coronary collateral flow instantaneously doubles during supine bicycle exercise compared to the resting state.
Supports acute exercise-induced collateral recruitment in stable CAD; extends prior resting measurements to dynamic conditions.
AIMS: The instantaneous response of the collateral circulation to isometric physical exercise in patients with non-occlusive coronary artery disease (CAD) is not known. METHODS AND RESULTS: Thirty patients (age 59 +/- 9 years) undergoing percutaneous coronary intervention because of stable CAD were included in the study. Collateral function was determined before and during the last minute of a 6 min protocol of supine bicycle exercise during radial artery access coronary angiography. Collateral flow index (CFI, no unit) was determined as the ratio of mean distal coronary occlusive to mean aortic pressure both subtracted by central venous pressure. To avoid confounding due to recruitment of coronary collaterals by repetitive balloon occlusions, patients were randomly assigned to a group 'rest first' with CFI measurement during rest followed by CFI during exercise, and to a group 'exercise first' with antecedent CFI measurement during exercise before CFI at rest. Simultaneously, coronary collateral conductance (occlusive myocardial blood flow per aorto-coronary pressure drop) was determined by myocardial contrast echocardiography in the last 10 consecutive patients. Overall, CFI increased from 0.168 +/- 0.118 at rest to 0.262 +/- 0.166 during exercise (P = 0.0002). The exercise-induced change in CFI did not differ statistically in the two study groups. Exercise-induced CFI reserve (CFI during exercise divided by CFI at rest) was 2.2 +/- 1.8. Overall, rest to peak bicycle exercise change of coronary collateral conductance was from 0.010 +/- 0.010 to 1.109 +/- 0.139 mL/min/100 mmHg (P < 0.0001); the respective change was similar in both groups. CONCLUSION: In patients with non-occlusive CAD, collateral flow instantaneously doubles during supine bicycle exercise as compared with the resting state. ClinicalTrials.gov Identifier: NCT00947050.
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Togni et al. (2010) conducted an RCT in Non-occlusive coronary artery disease (CAD) (n=30). Supine bicycle exercise vs. Rest was evaluated on Collateral flow index (CFI) (p=0.0002). Supine bicycle exercise significantly increased the collateral flow index compared to rest (0.262 vs 0.168, P=0.0002) in patients with non-occlusive coronary artery disease.
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