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通过稳定去卷积技术获得的跨冠状动脉血管内转运功能。

Transcoronary intravascular transport functions obtained via a stable deconvolution technique.

作者信息

Knopp T J, Dobbs W A, Greenleaf J F, Bassingthwaighte J B

出版信息

Ann Biomed Eng. 1976 Mar;4(1):44-59. doi: 10.1007/BF02363557.

DOI:10.1007/BF02363557
PMID:779536
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3529720/
Abstract

Following left atrial injection of indocyanine green in closed-chest, anesthetized dogs, 60 simultaneous input–output pairs of dilution curves were sampled via identical catheter sampling systems from the aortic root, (), and the coronary sinus, (). Assuming that () was the convolution of a transport function, (), and (), a new deconvolution technique was used to solve for the ()’s which was not sensitive to noise, recirculation, or the form of (). The 60 transcoronary ()’s were observed to be unimodal, right-skewed frequency distribution functions with mean transit times, , ranging from 3 to 7 sec. The relative dispersions (standard deviation, σ, divided by ) averaged 0.38 ± 0.05, the skewness averaged 1.40 ± 0.37 and the kurtosis averaged 6.1 ± 1.8; this means that the ()’s are more sharply peaked than Gaussian distributions. The fact that parameters were statistically independent of the mean transit time implied the constancy of the shape of the various ()’s and this was verified by the coincidence of the ()’s plotted as a function of /. This “similarity” of the ()’s strongly suggests that changes in the transit time through any particular vascular pathway of the coronary bed are in proportion to the changes in other parallel pathways.

摘要

在闭胸、麻醉的犬身上向左心房注射吲哚菁绿后,通过相同的导管采样系统从主动脉根部、()和冠状窦同时采集60对输入 - 输出稀释曲线样本。假设()是传输函数()与()的卷积,采用一种新的去卷积技术求解对噪声、再循环或()的形式不敏感的()。观察到60个跨冠状动脉的()是单峰、右偏态频率分布函数,平均通过时间()范围为3至7秒。相对离散度(标准差σ除以())平均为0.38±0.05,偏度平均为1.40±0.37,峰度平均为6.1±1.8;这意味着()比高斯分布的峰值更尖锐。参数在统计上与平均通过时间无关这一事实意味着各种()的形状恒定,这通过将()绘制为/的函数时的重合得到验证。()的这种“相似性”强烈表明,通过冠状动脉床任何特定血管途径的通过时间变化与其他平行途径的变化成比例。

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Transcoronary intravascular transport functions obtained via a stable deconvolution technique.通过稳定去卷积技术获得的跨冠状动脉血管内转运功能。
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