Related Experiment Video
Updated: Aug 18, 2026

Fabricating a UV-Vis and Raman Spectroscopy Immunoassay Platform
Published on: November 10, 2016
Estimation of the limit of detection with a bootstrap-derived standard error by a partly non-parametric approach.
1Laboratory of Clinical Biochemistry, Psychiatric University Hospital, Risskov, Denmark. linnet@post7.tele.dk
Abstract:
A recently proposed procedure for estimating the limit of detection (LoD) of an assay using a partly non-parametric approach is applied to five HPLC drug assays. The non-parametrically determined 95th percentile of the blank measurements (LoB) is obtained as the value of the N (95/100) + 0.5 ordered observations. The LoD is the lowest level of analyte that is likely to yield a measured result exceeding the LoB. The LoD equals LoB + c(beta) x SD(S), where SD S is the analytical SD at low concentrations, and c(beta) = z(1-beta)/(1-1/(4 x f )) (f = degrees of freedom). c(beta) approximately 1.65 for a type II error of 5%. The blank distributions deviated significantly from normality for four of the five assays because of skewness to the right. The estimated LoB ranged from 3.3 to 10.2 nmol/L. The LoDs were in the interval from 7.8 to 17.2 nmol/L. A new procedure for estimation of the standard error (SE) of the estimated LoD that is partly based on the bootstrap principle showed good performance in simulation studies. In conclusion, the partly non-parametric procedure for estimation of the LoD of typical HPLC drug assays was found to be a suitable approach.
Related Concept Videos
Difference from Background: Limit of Detection
The LOD indicates the presence or absence...
High-Performance Liquid Chromatography: Types of Detectors
Bootstrapping
Testing a Claim about Standard Deviation
The hypothesis testing for the claim of population standard deviation (or variance) requires the data and samples to be random and unbiased. The population distribution also must be normal. There is no specific requirement on the sample size as the estimation is based on the chi-square distribution.
As a first step, the hypothesis (null and alternative) concerning the claim about...
Gas Chromatography: Overview of Detectors
A non-destructive detector allows a sample to be analyzed without altering or consuming it, meaning the sample can be collected after detection for further analysis. Examples include thermal conductivity detectors and...
