A vision-based instrument for measuring milk somatic cell count

Author:

Gao FeiORCID,Wang Jinchao,Ge Yisu,Lu Shufang

Abstract

Abstract The method of rapidly measuring the somatic cell count of raw milk is important for detecting the quality of milk and monitoring the health of dairy cows. This paper investigates a vision-based measurement algorithm and develops an instrument for measuring the somatic cell count. In detail, first, microscopic images of glass slides are automatically captured. Second, the Hough transform is used to calibrate the microscopic image so as to compute the sample volume. Third, a discrete optimization model is set up to determine the image segmentation threshold. Fourth, the features of milk somatic cell are expressed in area, ratio of length to width and circularity. The least-square circle method is employed to detect the circularity of the milk somatic cell. Then, an automatic milk somatic cell count is achieved via a recursion algorithm. Finally, a milk somatic cell counting instrument is developed based on the proposed algorithm, which is verified to be applicable via comparison with the FossMatic 5000, made in Denmark.

Funder

Zhejiang Provincial Natural Science Foundation of China

Zhejiang Provincial Science and Technology Planning Key Project of China

National Natural Science Foundation of China

Publisher

IOP Publishing

Subject

Applied Mathematics,Instrumentation,Engineering (miscellaneous)

Reference26 articles.

1. Experiments and observations leading to development of the California mastitis test;Schalm;J. Am. Vet. Med. Assoc.,1957

2. Symposium: 20 years under the charter: the 20th anniversary of the charter: developments in criminal law under section 7 of the charter;Jodie;Windsor Y.B. Access Just,2002

3. Relationship of somatic cell count and mastitis: an overview;Sharma;Asian-Australas. J. Anim. Sci.,2011

4. Semi-automated counting of bacteria and somatic cells in milk using epifluorescence microscopy and television image analysis;Pettipher;J. Appl. Bacteriol.,1982

5. Evaluation of automated threshold selection methods for accurately sizing microscopic fluorescent cells by image analysis;Sieracki;Appl. Environ. Microbiol.,1989

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