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法医摄影中的背景校正。II. 非均匀照明或可变底物颜色条件下的血液摄影——实际情况与局限性。

Background correction in forensic photography. II. Photography of blood under conditions of non-uniform illumination or variable substrate color--practical aspects and limitations.

作者信息

Wagner John H, Miskelly Gordon M

机构信息

Forensic Science Programme, Department of Chemistry, The University of Auckland, Private Bag 92019, Auckland, New Zealand.

出版信息

J Forensic Sci. 2003 May;48(3):604-13.

Abstract

The combination of photographs taken at wavelengths at and bracketing the peak of a narrow absorbance band can lead to enhanced visualization of the substance causing the narrow absorbance band. This concept can be used to detect putative bloodstains by division of a linear photographic image taken at or near 415 nm with an image obtained by averaging linear photographs taken at or near 395 and 435 nm. Nonlinear images can also be background corrected by substituting subtraction for the division. This paper details experimental applications and limitations of this technique, including wavelength selection of the illuminant and at the camera. Characterization of a digital camera to be used in such a study is also detailed. Detection limits for blood using the three wavelength correction method under optimum conditions have been determined to be as low as 1 in 900 dilution, although on strongly patterned substrates blood diluted more than twenty-fold is difficult to detect. Use of only the 435 nm photograph to estimate the background in the 415 nm image lead to a twofold improvement in detection limit on unpatterned substrates compared with the three wavelength method with the particular camera and lighting system used, but it gave poorer background correction on patterned substrates.

摘要

在窄吸收带峰值波长及其两侧波长处拍摄的照片组合,可增强对导致窄吸收带的物质的可视化效果。这一概念可用于通过将在415纳米或其附近拍摄的线性摄影图像与在395纳米和435纳米或其附近拍摄的线性照片平均得到的图像相除,来检测疑似血迹。非线性图像也可以通过用减法代替除法进行背景校正。本文详细介绍了该技术的实验应用和局限性,包括光源和相机的波长选择。还详细介绍了用于此类研究的数码相机的特性。在最佳条件下,使用三波长校正方法检测血液的检测限已确定低至900倍稀释度中的1倍,尽管在图案强烈的底物上,稀释超过二十倍的血液很难检测到。与使用特定相机和照明系统的三波长方法相比,仅使用435纳米照片估计415纳米图像中的背景,在无图案底物上的检测限提高了两倍,但在有图案底物上的背景校正效果较差。

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