Livingston E H, Reedy T, Leung F W, Guth P H
Surgical Service, West Los Angeles, Veterans Administration Medical Center, California.
Am J Physiol. 1989 Oct;257(4 Pt 1):G668-75. doi: 10.1152/ajpgi.1989.257.4.G668.
Hydrogen gas clearance curves obtained from the rat gastric corpus were digitized into a computer and then analyzed by three methods: 1) linear regression of log-transformed data, 2) direct curve fitting with a modified Gauss-Newton nonlinear regression algorithm, and 3) Zierler's height-over-area algorithm. For linear regression of log-transformed data, if the initial base-line estimate was inaccurate or normal amounts of experimental noise were present, the log-transformed data was skewed, leading to deviation of the regression line and incorrect estimation of blood flow. By utilization of the direct-fit routine, the initial estimate of the parameters or experimental noise had little influence on the blood flow determination because of iterative improvement of the parameters. In a study of isoproterenol-stimulated gastric blood flow, Zierler's algorithm underestimated the blood flow estimate. We conclude that analysis of hydrogen gas clearance curves by linear regression of log-transformed data or by Zierler's algorithm may potentially introduce errors in blood flow estimates that may be avoided by analysis with a direct-fitting, nonlinear regression algorithm.
从大鼠胃体获得的氢气清除曲线被数字化输入计算机,然后用三种方法进行分析:1)对经对数转换的数据进行线性回归;2)使用改进的高斯 - 牛顿非线性回归算法进行直接曲线拟合;3)齐勒尔的高度 - 面积算法。对于经对数转换的数据进行线性回归,如果初始基线估计不准确或存在正常量的实验噪声,经对数转换的数据会出现偏差,导致回归线偏离和血流量估计错误。通过使用直接拟合程序,由于参数的迭代改进,参数的初始估计或实验噪声对血流量测定影响很小。在一项关于异丙肾上腺素刺激胃血流量的研究中,齐勒尔算法低估了血流量估计值。我们得出结论,通过对经对数转换的数据进行线性回归或通过齐勒尔算法分析氢气清除曲线,可能会在血流量估计中引入误差,而使用直接拟合的非线性回归算法进行分析可以避免这些误差。