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1.
J AOAC Int ; 88(3): 780-7, 2005.
Article in English | MEDLINE | ID: mdl-16001852

ABSTRACT

The suitability of 4 theoretical distributions (normal, lognormal, negative binomial, and gamma) to predict the observed distribution of ochratoxin A (OTA) in green coffee was investigated. One symmetrical and 3 positively skewed theoretical distributions were each fitted to 25 empirical distributions of OTA test results for green coffee beans. Parameters of each theoretical distribution were calculated by using Methods of Moments. The 3 skewed theoretical distributions provided acceptable fits to each of the 25 observed distributions. Because of its simplicity, the lognormal distribution was selected to model OTA test results for green coffee. Using variance equations determined in previous studies, mathematical expressions were developed to calculate the parameters of the log normal distribution for a given OTA lot concentration and test procedure. Observed acceptance probabilities were compared to an operating characteristic curve predicted from the lognormal distribution, and all 25 observed acceptance probabilities were found to lie within the 95% confidence band associated with the predicted operating characteristic curve. The parameters of compound gamma distribution were used to calculate the fraction of OTA contamination beans within a contaminated lot. The percent-contaminated beans were a function of the lot concentration and increased with lot concentration. At a lot concentration of 5 microg/kg, approximately 6 beans per 10,000 beans are contaminated.


Subject(s)
Chromatography, Affinity/methods , Chromatography, Liquid/methods , Coffee/metabolism , Food Contamination , Ochratoxins/analysis , Buffers , Calibration , Chemistry Techniques, Analytical , Dose-Response Relationship, Drug , Food Analysis , Reproducibility of Results , Sodium Chloride/chemistry , Spectrometry, Fluorescence , Time Factors
2.
J AOAC Int ; 87(4): 884-91, 2004.
Article in English | MEDLINE | ID: mdl-15295883

ABSTRACT

The variability associated with testing lots of green coffee beans for ochratoxin A (OTA) was investigated. Twenty-five lots of green coffee were tested for OTA contamination. The total variance associated with testing green coffee was estimated and partitioned into sampling, sample preparation, and analytical variances. All variances increased with an increase in OTA concentration. Using regression analysis, mathematical expressions were developed to model the relationship between OTA concentration and the total, sampling, sample preparation, and analytical variances. The expressions for these relationships were used to estimate the variance for any sample size, subsample size, and number of analyses for a specific OTA concentration. Testing a lot with 5 microg/kg OTA using a 1 kg sample, Romer RAS mill, 25 g subsamples, and liquid chromatography analysis, the total, sampling, sample preparation, and analytical variances were 10.75 (coefficient of variation [CV] = 65.6%), 7.80 (CV = 55.8%), 2.84 (CV = 33.7%), and 0.11 (CV = 6.6%), respectively. The total variance for sampling, sample preparation, and analytical were 73, 26, and 1%, respectively.


Subject(s)
Carcinogens/analysis , Coffee/chemistry , Ochratoxins/analysis , Algorithms , Analysis of Variance , Chromatography, Liquid , Cost-Benefit Analysis , Reproducibility of Results , Spectrophotometry, Ultraviolet
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