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Spectral analysis of blood perfusion in the free latissimus dorsi myocutaneous flap and in normal skin

机译:游离背阔肌皮瓣和正常皮肤中血液灌注的频谱分析

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摘要

To find the properties in the oscillatory components of the cutaneous blood flow on the successful free flap, a wavelet transform was applied to the laser Doppler flowmetry (LDF) signals which were measured simultaneously on the surfaces of the free latissimus dorsi myocutaneous flap and on the adjacent intact skin of the healthy limb, of 18 patients. The frequency interval from 0.0095 to 1.6 Hz was examined and was divided into five subintervals (I: 0.0095-0.021 Hz; II: 0.021-0.052 Hz; III: 0.052-0.145 Hz; IV: 0.145-0.6 Hz and V: 0.6-1.6 Hz) corresponding to endothelial metabolic, neurogenic, myogenic, respiratory and cardiac origins. The average amplitude and total power in the frequency range 0.0095-1.6 Hz as well as within subintervals I, II, IV and V were significantly lower for signals measured on the free flap than those obtained in the healthy limb. However in interval III, they were significantly higher. The normalized spectral amplitude and power in the free flap were significantly lower in only two intervals, I and II, yet in interval III they were significantly higher; no statistical significance was observed in intervals IV and V. The distinctive finding made in this study, aside from the decrease of endothelial metabolic processes and sympathetic control, was the significant increase of myogenic activity in the free flap. It is hoped that this work will contribute towards knowledge on blood circulation in free flaps and make the monitoring by LDF more reliable.
机译:为了在成功的游离皮瓣上找到皮肤血流的振荡成分的特性,将小波变换应用于激光多普勒血流仪(LDF)信号,该信号在游离背阔肌皮瓣的表面和皮瓣上同时测量。健康的肢体的完整皮肤附近的18例患者。检查了从0.0095到1.6 Hz的频率间隔并将其分为五个子间隔(I:0.0095-0.021 Hz; II:0.021-0.052 Hz; III:0.052-0.145 Hz; IV:0.145-0.6 Hz和V:0.6-1.6 Hz)对应于内皮代谢,神经源性,肌源性,呼吸和心脏起源。在自由瓣上测得的信号,在0.0095-1.6 Hz频率范围内以及子间隔I,II,IV和V内的平均幅度和总功率明显低于健康肢体。但是,在间隔III中,它们显着更高。自由襟翼中的归一化频谱幅度和功率仅在两个间隔(I和II)中显着降低,而在间隔III中则显着更高。在间隔IV和间隔V中没有观察到统计学意义。除了内皮代谢过程的减少和交感神经的控制之外,本研究的独特发现是游离皮瓣的成肌活性显着增加。希望这项工作将有助于了解游离皮瓣的血液循环,并使LDF的监测更加可靠。

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