King R B, Deussen A, Raymond G M, Bassingthwaighte J B
Center for Bioengineering, University of Washington, Seattle 98195.
Am J Physiol. 1993 Dec;265(6 Pt 2):H2196-208. doi: 10.1152/ajpheart.1993.265.6.H2196.
A pulse or a sharp front in concentration of a tracer or a substrate in the blood within a vessel becomes dispersed while being transported along a vessel. Cross-stream mixing and pulsations in flow with the heartbeat cause the dispersion to be less than would occur with a parabolic velocity profile (Newtonian flow). These characteristics allow intravascular mass transport to be described well by a simple two-parameter differential operator, which is a one-dimensional representation of the rather complex real situation. The operator consists of two components in series, a pure delay and a fourth-order linear differential operator. The latter is merely two underdamped second-order operators in series, with fixed relationships between the natural frequencies and damping coefficients. The operator is useful because it provides a transport function with skewness and kurtosis suitable to intravascular transport where the mean velocity profile is blunter than in Newtonian parabolic flow. The parameters of the operator are its mean transit time, t, and its relative dispersion, RD, which is the standard deviation of the response impulse divided by t. The operator transport function describes blood transport through the human leg arterial system, where the RD values are approximately 15-20%.
在血管内传输过程中,示踪剂或血液中底物浓度的脉冲或尖锐前沿会发生扩散。与心跳相关的横向流混合和流动脉动导致扩散程度小于抛物线速度分布(牛顿流)时的扩散程度。这些特性使得血管内质量传输能够通过一个简单的双参数微分算子得到很好的描述,该算子是相当复杂的实际情况的一维表示。该算子由两个串联的分量组成,一个纯延迟和一个四阶线性微分算子。后者仅仅是两个串联的欠阻尼二阶算子,固有频率和阻尼系数之间存在固定关系。该算子很有用,因为它提供了一个具有适合血管内传输的偏度和峰度的传输函数,在血管内传输中,平均速度分布比牛顿抛物线流中的更平缓。该算子的参数是其平均通过时间(t)和相对扩散(RD),相对扩散是响应脉冲的标准差除以(t)。该算子传输函数描述了血液通过人体腿部动脉系统的传输,其中(RD)值约为15% - 20%。