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  4. Hyperemic flow heterogeneity within the calf, foot, and forearm measured with continuous arterial spin labeling MRI
 
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Hyperemic flow heterogeneity within the calf, foot, and forearm measured with continuous arterial spin labeling MRI

Journal
American Journal of Physiology - Heart and Circulatory Physiology
Journal Volume
294
Journal Issue
5
Pages
H2129-H2136
Date Issued
2008
Author(s)
Wu Wen-Chau  
Wang J
Detre J.A
Wehrli F.W
Mohler III E
Ratcliffe S.J
Floyd T.F.
DOI
10.1152/ajpheart.01399.2007
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-44949236227&doi=10.1152%2fajpheart.01399.2007&partnerID=40&md5=5013138fad30fed7f5aaf5d353d6d120
https://scholars.lib.ntu.edu.tw/handle/123456789/426884
Abstract
Arterial spin labeling (ASL) is a noninvasive magnetic resonance imaging (MRI) technique for microvascular blood flow measurement. We used a continuous ASL scheme (CASL) to investigate the hyperemic flow difference between major muscle groups in human extremities. Twenty-four healthy subjects with no evidence of vascular disease were recruited. MRI was conducted on a 3.0 Tesla Siemens Trio whole body system with a transmit/receive knee coil. A nonmagnetic orthopedic tourniquet system was used to create a 5-min period of ischemia followed by a period of hyperemic flow (occlusion pressure = 250 mmHg). CASL imaging, lasting from 2 min before cuff inflation to 3 min after cuff deflation, was performed on the midcalf, midfoot, and midforearm in separate sessions from which blood flow was quantified with an effective temporal resolution of 16 s. When muscles in the same anatomic location were compared, hyperemic flow was found to be significantly higher in the compartments containing muscles known to have relatively higher slow-twitch type I fiber compositions, such as the soleus muscle in the calf and the extensors in the forearm. In the foot, the plantar flexors exhibited a slightly delayed hyperemic response relative to that of the dorsal compartment, but no between-group flow difference was observed. These results demonstrate that CASL is sensitive to flow heterogeneity between diverse muscle groups and that nonuniform hyperemic flow patterns following an ischemic paradigm correlate with relative fiber-type predominance. Copyright ? 2008 the American Physiological Society.
Subjects
Magnetic resonance imaging; Skeletal muscle
SDGs

[SDGs]SDG3

Other Subjects
adult; article; blood flowmetry; cuff; extensor muscle; female; forearm blood flow; human; human experiment; leg blood flow; leg muscle; male; muscle ischemia; normal human; nuclear magnetic resonance imaging; priority journal; soleus muscle; spin labeling; artery; biological model; blood flow; blood flow velocity; comparative study; foot; forearm; hyperemia; leg; methodology; middle aged; muscle cell; pathology; pathophysiology; skeletal muscle; time; tourniquet; vascularization; Adult; Arteries; Blood Flow Velocity; Female; Foot; Forearm; Humans; Hyperemia; Leg; Magnetic Resonance Imaging; Male; Middle Aged; Models, Cardiovascular; Muscle Fibers; Muscle, Skeletal; Regional Blood Flow; Spin Labels; Time Factors; Tourniquets
Publisher
American Physiological Society
Type
journal article

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