Bernard S L, Ewen J R, Barlow C H, Kelly J J, McKinney S, Frazer D A, Glenny R W
Division of Pulmonary and Critical Care Medicine, University of Washington, Seattle 98195, USA.
Am J Physiol Heart Circ Physiol. 2000 Nov;279(5):H2043-52. doi: 10.1152/ajpheart.2000.279.5.H2043.
With the use of a newly developed Imaging Cryomicrotome to determine the spatial location of fluorescent microspheres in organs, we validate and report our processing algorithms for measuring regional blood flow in small laboratory animals. Microspheres (15-microm diameter) of four different fluorescent colors and one radioactive label were simultaneously injected into the left ventricle of a pig. The heart and kidneys were dissected, and the numbers of fluorescent and radioactive microspheres were determined in 10 randomly selected pieces. All microsphere counts fell well within the 95% expected confidence limits as determined from the radioactive counts. Fluorescent microspheres (15-microm diameter) of four different colors were also injected into the tail vein of a rat and the left ventricle of a rabbit. After correction for Poisson noise, correlation coefficients between the colors were 0.99 +/- 0.02 (means +/- SD) for the rabbit heart and 0.99 +/- 0.02 for the rat lung. Mathematical dissection algorithms, statistics to analyze the spatial data, and methods to visualize blood flow distributions in small animal organs are presented.
通过使用新开发的成像冷冻切片机来确定荧光微球在器官中的空间位置,我们验证并报告了用于测量小型实验动物局部血流量的处理算法。将四种不同荧光颜色的微球(直径15微米)和一种放射性标记物同时注入猪的左心室。解剖心脏和肾脏,并在随机选择的10个切片中确定荧光微球和放射性微球的数量。所有微球计数均落在根据放射性计数确定的95%预期置信限内。四种不同颜色的荧光微球(直径15微米)也被注入大鼠的尾静脉和兔子的左心室。校正泊松噪声后,兔子心脏颜色之间的相关系数为0.99±0.02(均值±标准差),大鼠肺的相关系数为0.99±0.02。本文介绍了数学解剖算法、分析空间数据的统计方法以及可视化小动物器官血流分布的方法。