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Diffusing-wave spectroscopy with dynamic contrast variation: disentangling the effects of blood flow and extravascular tissue shearing on signals from deep tissue

机译:具有动态对比度变化的扩散波谱:解析血流和血管外组织剪切对来自深部组织的信号的影响

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摘要

We investigate the effects of blood flow and extravascular tissue shearing on diffusing-wave spectroscopy (DWS) signals from deep tissue, using an ex vivo porcine kidney model perfused artificially at controlled arterial pressure and flow. Temporal autocorrelation functions g(1)(τ) of the multiply scattered light field show a decay which is described by diffusion for constant flow, with a diffusion coefficient scaling linearly with volume flow rate. Replacing blood by a non-scattering fluid reveals a flow-independent background dynamics of the extravascular tissue. For a sinusoidally driven perfusion, field autocorrelation functions g(1)(τ, t′) depend on the phase t′ within the pulsation cycle and are approximately described by diffusion. The effective diffusion coefficient Deff(t′) is modulated at the driving frequency in the presence of blood, showing coupling with flow rate; in the absence of blood, Deff(t′) is modulated at twice the driving frequency, indicating shearing of extravascular tissue as the origin of the DWS signal. For both constant and pulsatile flow the contribution of extravascular tissue shearing to the DWS signal is small.
机译:我们使用在受控的动脉压和流量下人工灌注的离体猪肾脏模型,研究了深层组织中血流和血管外组织剪切对扩散波谱(DWS)信号的影响。多重散射光场的时间自相关函数g(1)(τ)显示出一个衰减,该衰减用恒定流量的扩散描述,扩散系数与体积流量成线性比例。用非散射性流体代替血液可以揭示血管外组织的非流动背景动态。对于正弦驱动的灌注,场自相关函数g(1)(τ,t')取决于脉动周期内的相位t',并通过扩散近似描述。有效扩散系数Deff(t')在有血液的情况下以驱动频率进行调制,显示出与流速的耦合;在没有血液的情况下,Deff(t')以驱动频率的两倍进行调制,这表明血管外组织的剪切是DWS信号的起源。对于恒定流动和脉动流动,血管外组织剪切对DWS信号的贡献很小。

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