Automated scanning and measurements of particle distributions within a holographic reconstructed volume

被引:46
作者
Malkiel, E [1 ]
Abras, JN [1 ]
Katz, J [1 ]
机构
[1] Johns Hopkins Univ, Dept Mech Engn, Baltimore, MD 21218 USA
关键词
particle size and shape distribution; fluid flow velocity; in-line holography; automated analysis; particle diagnostics; plankton research;
D O I
10.1088/0957-0233/15/4/001
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Scanning and analysis of reconstructed holograms of a one-litre sample volume containing particles with varying sizes and shapes at high resolution is a major challenge. A completely automated system for analysing in-line holograms recorded in the ocean, which resolves particles larger than 10 mum, has been developed. It measures the three-dimensional coordinates of all the particles within the reconstructed volume and records their in-focus images. Scanning and analysing a reconstructed volume of about 500 cm(3) that contains several thousand particles takes about 5 h. The analysis consists of several steps. After compensating for exposure non-uniformities, the reconstructed images are scanned continuously with a digital camera. Then, superposition of thresholded images weighted by depth is introduced as a method compressing the 3D data to a plane to increase the efficiency of segmentation analysis. Subsequently, edge filtering is used for pinpointing the depth coordinate. To detect particles smaller than 50 mum, the reconstructed images are band-pass filtered optically. This approach is based on analysis that identifies interference of the reference beam with off-axis scattered light as the primary contributor to background noise. The scanning, thresholding and edge detection processes are repeated for the small particles. Additional procedures remove duplicate detections, and post-processing classifies the particles based on geometrical parameters, Sample data are presented.
引用
收藏
页码:601 / 612
页数:12
相关论文
共 27 条
[21]   APPLICATION OF OPTICAL EDGE EXTRACTION TO MICROHOLOGRAPHY [J].
ROYER, H ;
CHRISTNACHER, F .
JOURNAL OF OPTICS-NOUVELLE REVUE D OPTIQUE, 1993, 24 (02) :51-54
[22]   Single beam two-views holographic particle image velocimetry [J].
Sheng, J ;
Malkiel, E ;
Katz, J .
APPLIED OPTICS, 2003, 42 (02) :235-250
[23]   AN APPROACH FOR AUTOMATED-ANALYSIS OF PARTICLE HOLOGRAMS [J].
STANTON, AC ;
CAULFIELD, HJ ;
STEWART, GW .
OPTICAL ENGINEERING, 1984, 23 (05) :577-582
[24]   Statistical geometry of subgrid-scale stresses determined from holographic particle image velocimetry measurements [J].
Tao, B ;
Katz, J ;
Meneveau, C .
JOURNAL OF FLUID MECHANICS, 2002, 457 :35-78
[25]   HOLOGRAPHIC TECHNIQUES FOR STUDY OF DYNAMIC PARTICLE FIELDS [J].
TROLINGER, JD ;
BELZ, RA ;
FARMER, WM .
APPLIED OPTICS, 1969, 8 (05) :957-+
[26]  
Vikram Chandra S., 1992, PARTICLE FIELD HOLOG
[27]  
Watson J, 2001, MEAS SCI TECHNOL, V12, pL9, DOI 10.1088/0957-0233/12/8/101