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Assessment of Local Heating Effect on the Cytaneous Microcirculatory Vasodilatation

机译:评估局部供热对细胞微循环血管血管血管血管的影响

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The skin provides a conveniently accessible site to assess the peripheral microvascular function which may be used as an early index of allover cardiovascular system. In the study, the laser Doppler flowmetry (LDF) was applied to investigate the vasodilatation of microcirculation on the foot bottom during a local heating protocol in 21 healthy participants. The temperature was heated up to 44 °C in one minute and maintained such temperature through the 30-min heating period. Both a 10-min record of LDF signals during the baseline and a 30-min record during the heating period were registered and then analyzed using the wavelet transform. For the 21 participants, the amplitudes of the initial peak [208 ± 64 perfusion unit (PU)] and the plateau (279 ± 80 PU) of the LDF signals were significantly higher during the local heating period than the baseline (85 ± 25 PU). Meanwhile, the composite vasodilatation indexes for the initial peak and the plateau were 154 ± 65 and 239 ± 93%, respectively. Also found was a significant decline in the spectral power density percentage associated with the endothelial nitric oxide-dependent metabolic activity band during the heating period, as compared with the baseline. Those findings may help to assess the skin microcirculation dysfunction in patients with diabetes or hypertension in future clinical applications.
机译:皮肤提供方便的位点,以评估外周微血管功能,可用作整个心血管系统的早期指标。在该研究中,应用激光多普勒流动性(LDF)来研究在21名健康参与者中局部加热方案期间脚底对脚底的微循环的血管扩大。将温度在一分钟内加热至44℃并通过30分钟的加热时段保持这种温度。登记在基线期间的LDF信号的10分钟记录和在加热时段期间的30分钟记录,然后使用小波变换分析。对于21个参与者,初始峰的幅度[208±64灌注单元(PU)]和LDF信号的平台(279±80普)在本地加热期间显着高于基线(85±25 PU) )。同时,初始峰值和平台的复合血管划分指数分别为154±65和239±93%。与基线相比,也发现与加热时段期间与内皮酰基依赖性代谢活动带相关的光谱功率密度百分比显着下降。这些发现可能有助于评估未来临床应用中糖尿病或高血压患者的皮肤微循环功能障碍。

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