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运动和冷水暴露对微血管肌灌注的影响。

Effects of exercise and cold-water exposure on microvascular muscle perfusion.

机构信息

Center for Musculoskeletal Surgery Osnabrück (OZMC), Klinikum Osnabrück GmbH, Osnabrück, Germany.

Department of Radiology, University Hospital Erlangen, Friedrich-Alexander-Universität Erlangen-Nürnberg, Erlangen, Germany.

出版信息

Ultraschall Med. 2023 Aug;44(4):e191-e198. doi: 10.1055/a-2080-2937. Epub 2023 Aug 8.

Abstract

PURPOSE

Microvascular blood flow (MBF) and its intramuscular regulation are of importance for physiological responsiveness and adaptation. The quantifiable in-vivo monitoring of MBF after cycling or systemic cold-water exposure may reveal new insights into capillary regulatory mechanisms. This study aimed to assess the role of exercise and cold therapy on MBF by using contrast-enhanced ultrasound (CEUS).

METHODS

Twenty healthy athletes were recruited and randomly assigned to an intervention (IG) or a control group (CG). MBF was quantified in superficial (rectus femoris, RF) and deep muscle layers (vastus intermedius, VI). Representative perfusion parameters (peak enhancement (PE) and wash-in area under the curve (WiAUC)) were measured after a standardized measurement protocol for both groups at resting conditions (t) and after cycling (20 min., 70% Watt max, t) for both groups, after cold-water immersion exposure for IG (15 min., 12°C) or after precisely 15 minutes of rest for CG (t) and for both groups after 60 minutes of follow-up (t).

RESULTS

At t, MBF in VI increased significantly compared to resting conditions in both groups in VI (p= 0.02). After the cold-water exposure (t), there were no statistically significant changes in perfusion parameters as well as after 60 minutes of follow-up (t) (p = 0.14).

CONCLUSION

Cycling leads to an upregulation of MBF. However, cold exposure does not change the MBF. The implementation of CEUS during different physiological demands may provide deeper insight into intramuscular perfusion regulation and regenerative processes.

摘要

目的

微血管血流(MBF)及其肌肉内调节对生理反应性和适应性很重要。对运动或全身冷水暴露后 MBF 的可量化体内监测可能会揭示毛细血管调节机制的新见解。本研究旨在通过使用对比增强超声(CEUS)评估运动和冷疗对 MBF 的作用。

方法

招募了 20 名健康运动员,并将他们随机分配到干预组(IG)或对照组(CG)。在静息状态下(t)和两组均进行 20 分钟、70%瓦特最大强度的自行车运动(t)后,测量浅层(股直肌,RF)和深层肌肉层(股中间肌,VI)的 MBF。代表性灌注参数(峰值增强(PE)和洗入曲线下面积(WiAUC))在两组的标准化测量方案后进行测量。对于 IG,在冷水浸泡暴露后(15 分钟,12°C)或 CG 精确休息 15 分钟后(t)进行测量,对于两组,在 60 分钟随访后(t)进行测量。

结果

在 t 时,与静息状态相比,两组 VI 中的 MBF 在 VI 中均显著增加(p=0.02)。冷水暴露后(t),灌注参数无统计学意义变化,60 分钟随访后(t)亦无统计学意义变化(p=0.14)。

结论

自行车运动可上调 MBF。然而,冷暴露不会改变 MBF。在不同生理需求期间实施 CEUS 可能会更深入地了解肌肉内灌注调节和再生过程。

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