Schoel W M, Schürch S, Goerke J
Respiratory Research Group, Health Sciences Centre, University of Calgary, Canada.
Biochim Biophys Acta. 1994 Aug 18;1200(3):281-90. doi: 10.1016/0304-4165(94)90169-4.
For measuring the properties of lung surfactant, we provide formulas for calculating the surface tension, area, and volume of captive air bubbles in aqueous media. Only measurements of bubble height (h) and diameter (d) are required. Data processing has been automated using standard video capture hardware and software, and our own image-processing and -analyzing programs. Our polynomials in h/d describe the ratios of actual bubble surface area and volume to that of a spherical bubble having the same diameter. For surface tension, a polynomial in h/d describes the ratio of the surface tension of a flat semi-infinite bubble to the surface tension of the measured bubble of the same height. Coefficients for the area and volume polynomials were obtained from h and d, and measured areas and volumes of revolution of calibrating bubbles. Coefficients for the surface tension polynomial were obtained analytically from a published polynomial in h/d [3]. Results using these polynomials agree satisfactorily with those obtained independently [4] using bubble perimeter measurements.
为了测量肺表面活性剂的特性,我们提供了用于计算水介质中俘获气泡的表面张力、面积和体积的公式。仅需测量气泡高度(h)和直径(d)。数据处理已使用标准视频捕获硬件和软件以及我们自己的图像处理和分析程序实现自动化。我们关于h/d的多项式描述了实际气泡表面积和体积与具有相同直径的球形气泡的表面积和体积之比。对于表面张力,一个关于h/d的多项式描述了扁平半无限气泡的表面张力与相同高度的被测气泡的表面张力之比。面积和体积多项式的系数是从h和d以及校准气泡的测量面积和旋转体积中获得的。表面张力多项式的系数是从已发表的关于h/d的多项式[3]中解析得到的。使用这些多项式得到的结果与使用气泡周长测量独立获得的结果[4]令人满意地一致。