ArticleJACC. Cardiovascular imaging2012
Arterial spin labeling MR imaging reproducibly measures peak-exercise calf muscle perfusion: a study in patients with peripheral arterial disease and healthy volunteers.
Article in JACC. Cardiovascular imaging, 2012. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 52 papers, 1 of them a synthesis that pooled it.
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Who cites it
52 citing papers in PubMed, 1 synthesis or guideline pooled it, 88 citations in OpenAlex.
- Society for Cardiovascular Magnetic Resonance (SCMR) expert consensus for CMR imaging endpoints in clinical research: part I - analytical validation and clinical qualification.Journal of cardiovascular magnetic resonance : official journal of the Society for Cardiovascular Magnetic Resonance · 2018Guideline
- Microvascular Function and Ambulatory Capacity in Peripheral Artery Disease.Circulation. Cardiovascular interventions · 2025Trial
- Hepatocyte growth factor for walking performance in peripheral artery disease.Journal of vascular surgery · 2025Trial
- Quantification of Skeletal Muscle Perfusion in Peripheral Artery Disease UsingJournal of the American Heart Association · 2024Trial
- Prognostic Value of Radiotracer-Based Perfusion Imaging in Critical Limb Ischemia Patients Undergoing Lower Extremity Revascularization.JACC. Cardiovascular imaging · 2021Trial
- Acute effects of leg heat therapy on walking performance and cardiovascular and inflammatory responses to exercise in patients with peripheral artery disease.Physiological reports · 2021Trial
- Cocoa to Improve Walking Performance in Older People With Peripheral Artery Disease: The COCOA-PAD Pilot Randomized Clinical Trial.Circulation research · 2020Trial
- Percutaneous intervention in peripheral artery disease improves calf muscle phosphocreatine recovery kinetics: a pilot study.Vascular medicine (London, England) · 2012Trial
- Spatially and temporally resolved assessment of quantitative skeletal muscle perfusion with non-contrast MRI in patients with PAD and healthy controls.Quantitative imaging in medicine and surgery · 2026Article
- Simultaneous Assessment of Skeletal Muscle Energetics and Blood Flow During Dynamic Exercise by InterleavedMagnetic resonance in medicine · 2026Article
- Contrast-enhanced magnetic resonance imaging based calf muscle perfusion and machine learning in peripheral artery disease.Scientific reports · 2025Article
- Cardio-rheumatology: integrated care and the opportunities for personalized medicine.Therapeutic advances in musculoskeletal disease · 2025Review
- Multi-modality imaging for assessment of the microcirculation in peripheral artery disease: Bench to clinical practice.American heart journal plus : cardiology research and practice · 2024Article
- Clinical physiology: the crucial role of MRI in evaluation of peripheral artery disease.American journal of physiology. Heart and circulatory physiology · 2024Review
- Magnetic Resonance Imaging Techniques in Peripheral Arterial Disease.Advances in wound care · 2023Review
- Agreement between multiparametric MRI (PIVOT), Doppler ultrasound, and near-infrared spectroscopy-based assessments of skeletal muscle oxygenation and perfusion.Magnetic resonance imaging · 2023Article
- Microvascular response to exercise varies along the length of the tibialis anterior muscle.NMR in biomedicine · 2022Article
- Muscle perfusion and the effect of compression garments in delayed-onset muscle soreness assessed with arterial spin labeling magnetic resonance imaging.Quantitative imaging in medicine and surgery · 2022Article
- Chemical Exchange Saturation Transfer Magnetic Resonance Imaging Identifies Abnormal Calf Muscle-Specific Energetics in Peripheral Artery Disease.Circulation. Cardiovascular imaging · 2022Article
- Perfusion imaging techniques in lower extremity peripheral arterial disease.The British journal of radiology · 2022Review
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Authors and funding
8 authors at 1 institution in 1 country.
Funding
Abstract
objectivesThis study hypothesized that arterial spin labeling (ASL) magnetic resonance (MR) imaging at 3-T would be a reliable noncontrast technique for measuring peak exercise calf muscle blood flow in both healthy volunteers and patients with peripheral arterial disease (PAD) and will discriminate between these groups.
backgroundPrior work demonstrated the utility of first-pass gadolinium-enhanced calf muscle perfusion MR imaging in patients with PAD. However, patients with PAD often have advanced renal disease and cannot receive gadolinium.
methodsPAD patients had claudication and an ankle brachial index of 0.4 to 0.9. Age-matched normal subjects (NL) had no PAD risk factors and were symptom-free with exercise. All performed supine plantar flexion exercise in a 3-T MR imaging scanner using a pedal ergometer until exhaustion or limiting symptoms and were imaged at peak exercise with 15 averaged ASL images. Peak perfusion was measured from ASL blood flow images by placing a region of interest in the calf muscle region with the greatest signal intensity. Perfusion was compared between PAD patients and NL and repeat testing was performed in 12 subjects (5 NL, 7 PAD) for assessment of reproducibility.
resultsPeak exercise calf perfusion of 15 NL (age: 54 ± 9 years) was higher than in 15 PAD patients (age: 64 ± 5 years, ankle brachial index: 0.70 ± 0.14) (80 ± 23 ml/min - 100 g vs. 49 ± 16 ml/min/100 g, p < 0.001). Five NL performed exercise matched to PAD patients and again demonstrated higher perfusion (84 ± 25 ml/min - 100 g, p < 0.002). As a measure of reproducibility, intraclass correlation coefficient between repeated studies was 0.87 (95% confidence interval [CI]: 0.61 to 0.96). Interobserver reproducibility was 0.96 (95% CI: 0.84 to 0.99).
conclusionsASL is a reproducible noncontrast technique for quantifying peak exercise blood flow in calf muscle. Independent of exercise time, ASL discriminates between NL and PAD patients. This technique may prove useful for clinical trials of therapies for improving muscle perfusion, especially in patients unable to receive gadolinium.
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