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7T 下使用径向采集技术在小牛肌肉中进行亚最大运动时的灌注和 T* 的同步测量。

Simultaneous Measurement of Perfusion and T* in Calf Muscle at 7T with Submaximal Exercise using Radial Acquisition.

机构信息

Department of Electrical and Computer Engineering, Auburn University, Auburn, AL, 36849, USA.

School of Kinesiology, Auburn University, Auburn, AL, 36849, USA.

出版信息

Sci Rep. 2020 Apr 14;10(1):6342. doi: 10.1038/s41598-020-63009-4.

Abstract

Impairments in oxygen delivery and consumption can lead to reduced muscle endurance and physical disability. Perfusion, a measure of microvascular blood flow, provides information on nutrient delivery. T* provides information about relative tissue oxygenation. Changes in these parameters following stress, such as exercise, can yield important information about imbalance between delivery and consumption. In this study, we implemented novel golden angle radial MRI acquisition technique to simultaneously quantify muscle perfusion and T* at 7T with improved temporal resolution, and demonstrated assessment of spatial and temporal changes in these parameters within calf muscles during recovery from plantar flexion exercise. Nine healthy subjects participated the studies. At rest, perfusion and T* in gastrocnemius muscle group within calf muscle were 5 ± 2 mL/100 g/min and 21.1 ± 3 ms respectively. Then the subjects performed plantar flexion exercise producing a torque of ~8ft-lb. Immediately after the exercise, perfusion was elevated to 79.3 ± 9 mL/100 g/min and T* was decreased by 6 ± 3%. The time constants for 50% perfusion and T* recovery were 54.1 ± 10 s and 68.5 ± 7 s respectively. These results demonstrate successful simultaneous quantification of perfusion and T* in skeletal muscle using the developed technique.

摘要

氧输送和消耗的损伤可导致肌肉耐力和身体残疾降低。灌注是衡量微血管血流的指标,提供了关于营养输送的信息。T* 提供了有关相对组织氧合的信息。在应激(如运动)后,这些参数的变化可以提供关于输送和消耗之间失衡的重要信息。在这项研究中,我们实施了一种新的黄金角径向 MRI 采集技术,以在 7T 下同时提高时间分辨率来量化肌肉灌注和 T*,并演示了在从足底屈曲运动恢复期间对小腿肌肉中这些参数的空间和时间变化的评估。9 名健康受试者参与了这项研究。在休息时,小腿肌肉中的比目鱼肌的灌注和 T分别为 5±2mL/100g/min 和 21.1±3ms。然后,受试者进行了产生约 8 英尺磅扭矩的足底屈曲运动。运动后,灌注立即升高至 79.3±9mL/100g/min,T降低了 6±3%。灌注和 T恢复 50%的时间常数分别为 54.1±10s 和 68.5±7s。这些结果表明,使用所开发的技术成功地同时量化了骨骼肌中的灌注和 T

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/043e/7156440/d5e4faf7a9e7/41598_2020_63009_Fig1_HTML.jpg

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