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Muscle oxygenation during dynamic plantar flexion exercise: combining BOLD MRI with traditional physiological measurements

机译:动态足底屈伸运动过程中的肌肉氧合:将BOLD MRI与传统生理测量相结合

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摘要

Blood‐oxygen‐level‐dependent magnetic resonance imaging (BOLD MRI) has the potential to quantify skeletal muscle oxygenation with high temporal and high spatial resolution. The purpose of this study was to characterize skeletal muscle BOLD responses during steady‐state plantar flexion exercise (i.e., during the brief rest periods between muscle contraction). We used three different imaging modalities (ultrasound of the popliteal artery, BOLD MRI, and near‐infrared spectroscopy [NIRS]) and two different exercise intensities (2 and 6 kg). Six healthy men underwent three separate protocols of dynamic plantar flexion exercise on separate days and acute physiological responses were measured. Ultrasound studies showed the percent change in popliteal velocity from baseline to the end of exercise was 151 ± 24% during 2 kg and 589 ± 145% during 6 kg. MRI studies showed an abrupt decrease in BOLD signal intensity at the onset of 2 kg exercise, indicating deoxygenation. The BOLD signal was further reduced during 6 kg exercise (compared to 2 kg) at 1 min (−4.3 ± 0.7 vs. −1.2 ± 0.4%, P < 0.001). Similarly, the change in the NIRS muscle oxygen saturation in the medial gastrocnemius was −11 ± 4% at 2 kg and −38 ± 11% with 6 kg (P = 0.041). In conclusion, we demonstrate that BOLD signal intensity decreases during plantar flexion and this effect is augmented at higher exercise workloads.
机译:依赖于血氧水平的磁共振成像(BOLD MRI)具有以高时间和高空间分辨率量化骨骼肌氧合的潜力。这项研究的目的是表征稳态足底屈曲运动期间(即在肌肉收缩之间的短暂休息期间)骨骼肌的BOLD反应。我们使用了三种不同的成像方式(the动脉超声,BOLD MRI和近红外光谱法[NIRS])和两种不同的运动强度(2和6kg)。六名健康男性在不同的日子分别进行了三种动态足底屈曲运动方案,并测量了急性生理反应。超声研究表明,从基线到运动结束的pop速度的百分比变化在2 kg时为151±24%,在6 kg时为589±145%。 MRI研究表明,开始进行2公斤运动后BOLD信号强度突然下降,表明存在脱氧作用。 1分钟运动6公斤(相比2公斤)时,BOLD信号进一步降低(-4.3±0.7 vs -1.2±0.4%,P <0.001)。同样,腓肠肌内侧的NIRS肌肉氧饱和度在2 kg时变化为-11±4%,在6 kg时为-38±11%(P = 0.041)。总之,我们证明了BOLD信号强度在plant屈期间会降低,并且这种影响在较高的运动负荷下会增强。

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