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首页> 外文期刊>International journal of sports medicine >Spectral analysis of skin blood flowmotion before and after exercise in healthy trained and in sedentary subjects.
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Spectral analysis of skin blood flowmotion before and after exercise in healthy trained and in sedentary subjects.

机译:健康训练和久坐的受试者运动前后皮肤血液流动的频谱分析。

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Cutaneous blood flowmotion (CBF) can contribute to a reduction in the resistance in skin microvascular networks. The increase of CBF during exercise can improve the capacity of skin microvascular networks to transport and eliminate heat. In order to verify if the physical training could increase the skin blood flowmotion during exercise, we performed spectral analysis of cutaneous forearm laser Doppler signal, before and after acute maximal exercise in 15 healthy trained subjects (TS) and in 15 control sedentary subjects (SS). Within the total spectrum of 0.009 - 2.3 Hz, five frequency intervals of CBF were analysed: 0.009 - 0.02 Hz (endothelial activity), 0.02 - 0.06 Hz (sympathetic activity), 0.06 - 0.2 Hz (vascular myogenic activity), 0.2 - 0.6 Hz (respiratory activity), and 0.6 - 2.3 Hz (heart activity). In basal conditions, no difference between TS and SS was observed in the cutaneous blood perfusion (CBP), expressed in conventional perfusion units (PU), and in the mean value of CBF total spectrumpower density (PD), measured in PU/Hz, while the absolute PD of the endothelial and myogenic CBF components was significantly higher (p < 0.05) in TS (0.69 +/- 0.62 PU/Hz and 0.47 +/- 0.43 PU/Hz, respectively) than in SS (0.29 +/- 0.16 PU/Hz and 0.23 +/- 0.16 PU/Hz, respectively). In both TS and SS, acute exercise induced a significant increase of CBP mean value (30.91 +/- 20.28 PU, p < 0.0005 and 16.45 +/- 7.02 PU, p < 0.0005; respectively) and of CBF total spectrum PD (6.65 +/- 4.13 Hz/PU, p < 0.001 and 4.17 +/- 1.86 Hz/PU, p < 0.05; respectively), with a significant difference of these two parameters between the two groups (p < 0.05). After exercise, CBF components regarding endothelial and myogenic activities maintained a higher PD mean value in TS in respect to SS (1.69 +/- 1.34 PU/Hz and 1.59 +/- 0.93 versus 0.91 +/- 0.44 and 0.98 +/- 0.48 PU/Hz respectively, p < 0.05). These findings suggest that physical training is associated with the increase of CBF and particularly on its endothelial and myogenic components in response to exercise. This can favour a greater reduction of resistance in skin microvascular networks during exercise and consequently an increase of its capacity to transport and eliminate heat.
机译:皮肤血流运动(CBF)有助于减少皮肤微血管网络的阻力。运动过程中脑血流量的增加可以提高皮肤微血管网络传输和消除热量的能力。为了验证体育锻炼是否可以增加运动中的皮肤血液流动,我们在15名健康训练受试者(TS)和15名对照久坐受试者(SS)进行急性最大运动前后对前臂激光多普勒信号进行了频谱分析)。在0.009-2.3 Hz的总频谱内,分析了CBF的五个频率间隔:0.009-0.02 Hz(内皮活性),0.02-0.06 Hz(交感神经活性),0.06-0.2 Hz(血管成肌活性),0.2-0.6 Hz (呼吸活动)和0.6-2.3 Hz(心脏活动)。在基础条件下,以常规灌注单位(PU)表示的皮肤血液灌注(CBP)和以PU / Hz测量的CBF总频谱功率密度(PD)的平均值在TS和SS之间未观察到差异, TS中的内皮和肌源性CBF组分的绝对PD显着高于SS(0.29 +/-)(p <0.05)(0.69 +/- 0.62 PU / Hz和0.47 +/- 0.43 PU / Hz) 0.16 PU / Hz和0.23 +/- 0.16 PU / Hz)。在TS和SS中,急性运动均导致CBP平均值(分别为30.91 +/- 20.28 PU,p <0.0005和16.45 +/- 7.02 PU,p <0.0005;)和CBF总谱PD(6.65 + /-4.13 Hz / PU,p <0.001和4.17 +/- 1.86 Hz / PU,p <0.05;分别),两组之间的这两个参数存在显着差异(p <0.05)。运动后,关于SS的内皮和肌源性活动的CBF成分相对于SS保持较高的PD平均值(1.69 +/- 1.34 PU / Hz和1.59 +/- 0.93,而0.91 +/- 0.44和0.98 +/- 0.48 PU /Hz,p<0.05)。这些发现表明,体育锻炼与CBF的增加有关,尤其是对运动产生反应的CBF的内皮和肌源性成分。这可以有助于在运动过程中更大程度地降低皮肤微血管网络的抵抗力,从而增加其传递和消除热量的能力。

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