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Updated: Apr 9, 2026

Non-invasive Assessment of Microvascular and Endothelial Function
Published on: January 29, 2013
Direct quantitative assessment of the peripheral artery collateral circulation in patients undergoing angiography
Tobias Traupe1, Jana Ortmann, Michael Stoller
1Department of Cardiology, University Hospital, CH-3010 Bern, Switzerland.
Insights
Quantifying collateral flow index (CFIp) in peripheral artery disease patients revealed that adequate resting collateral function prevents ischemia during short occlusions. Exercise, however, revealed a supply-demand mismatch or steal phenomenon.
Area of Science:
- Vascular Medicine
- Hemodynamics
- Peripheral Artery Disease
Background:
- Peripheral artery disease (PAD) lacks methods to quantify lower limb collateral arterial function.
- Improving collateral function is a key strategy for PAD patients.
Purpose of the Study:
- To develop and validate a quantitative method for assessing lower limb collateral arterial function in PAD patients.
- To correlate collateral function with ischemic symptoms during induced occlusion and exercise.
Main Methods:
- Utilized a combined pressure/Doppler wire to measure pressure-derived collateral flow index (CFIp) in the superficial femoral artery.
- Measured distal occlusive pressure and toe oxygen saturation (Sao2) under resting and exercise conditions.
- Performed balloon occlusion of the superficial femoral artery for 5-10 minutes.
Main Results:
- Resting CFIp increased during occlusion, correlating inversely with Sao2 decrease and positively with pain-free duration.
- Exercise led to a significant decline in CFIp, indicating a supply-demand mismatch.
- 89% of patients experienced ischemic symptoms during 10-minute occlusion, while CFIp predicted pain-free duration.
Conclusions:
- Resting CFIp quantitatively assesses collateral function, predicting symptom-free duration during occlusion.
- Exercise-induced decline in CFIp highlights limitations of collateral supply during increased demand.
- The study establishes CFIp as a valuable metric for evaluating collateral function in PAD.
Background:
Despite the fact that numerous studies have pursued the strategy of improving collateral function in patients with peripheral artery disease, there is currently no method available to quantify collateral arterial function of the lower limb.
Methods And Results:
Pressure-derived collateral flow index (CFIp, calculated as (occlusive pressure-central venous pressure)/(aortic pressure-central venous pressure); pressure values in mm Hg) of the left superficial femoral artery was obtained in patients undergoing elective coronary angiography using a combined pressure/Doppler wire (n=30). Distal occlusive pressure and toe oxygen saturation (Sao2) were measured for 5 minutes under resting conditions, followed by an exercise protocol (repetitive plantar-flexion movements in supine position; n=28). In all patients, balloon occlusion of the superficial femoral artery over 5 minutes was painless under resting conditions. CFIp increased during the first 3 minutes from 0.451±0.168 to 0.551±0.172 (P=0.0003), whereas Sao2 decreased from 98±2% to 93±7% (P=0.004). Maximal changes of Sao2 were inversely related to maximal CFIp (r(2)=0.33, P=0.003). During exercise, CFIp declined within 1 minute from 0.560±0.178 to 0.393±0.168 (P<0.0001) and reached its minimum after 2 minutes of exercise (0.347±0.176), whereas Sao2 declined to a minimum of 86±6% (P=0.002). Twenty-five patients (89%) experienced pain or cramps/tired muscles, whereas 3 (11%) remained symptom-free for an occlusion time of 10 minutes. CFIp values were positively related to the pain-free time span (r(2)=0.50, P=0.002).
Conclusions:
Quantitatively assessed collateral arterial function at rest determined in the nonstenotic superficial femoral artery is sufficient to prevent ischemic symptoms during a total occlusion of 5 minutes. During exercise, there is a decline in CFIp that indicates a supply-demand mismatch via collaterals or, alternatively, a steal phenomenon. CLINICAL TRIAL REGISTRATION-URL: http://www.clinicaltrials.gov. UNIQUE IDENTIFIER: NCT01742455.
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