J Biomed Opt. 2016 Aug 1;21(8):85002. doi: 10.1117/1.JBO.21.8.085002.
Signals from laser Doppler flowmeters widely used in intravital studies of skin blood flow include, along with a slowly varying average component, an oscillating part. However, in most clinical studies, pulsations are usually smoothed by data preprocessing and only the mean blood flow is analyzed. To reveal the relationship between average and oscillating perfusion components measured by a laser Doppler flowmeter, we examined the microvascular response to the contralateral cold pressor test recorded at two different sites of the hand: dorsal part of the arm and finger pad. Such a protocol makes it possible to provide a wide range of perfusion. The average perfusion always decreases during cooling, while the oscillating component demonstrates a differently directed response. The wavelet analysis of laser Doppler flowmetry (LDF) signals shows that the pulsatile component is nonlinearly related to the average perfusion. Under low perfusion, the amplitude of pulsations is proportional to its mean value, but, as perfusion increases, the amplitude of pulsations becomes lower. The type of response is defined by the basal perfusion and the degree of vasoconstriction caused by cooling. Interpretation of the results is complicated by the nonlinear transfer function of the LDF device, the contribution of which is studied using artificial examples.
激光多普勒流量计广泛应用于皮肤血流的活体研究,其信号包括一个缓慢变化的平均分量和一个振荡分量。然而,在大多数临床研究中,搏动通常通过数据预处理平滑,只分析平均血流。为了揭示激光多普勒流量计测量的平均和振荡灌注分量之间的关系,我们检查了在手部的两个不同部位(手臂背面和指垫)记录的对侧冷加压试验的微血管反应。这样的方案可以提供广泛的灌注范围。在冷却过程中,平均灌注总是下降,而振荡分量表现出不同的反应方向。激光多普勒流量计(LDF)信号的小波分析表明,脉动分量与平均灌注呈非线性关系。在低灌注下,脉动的幅度与其平均值成正比,但随着灌注的增加,脉动的幅度变得更低。反应的类型由基础灌注和冷却引起的血管收缩程度定义。LDF 设备的非线性传递函数使结果的解释变得复杂,我们使用人工示例研究了其贡献。