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The most common remedy to control this error propagation is the utilization of cyclic redundancy check (CRC) at the relay as suggested in [10].
In order to control this error rate in a multiple-testing fashion, e.g. using False Discovery Rate (FDR), stringent thresholds need to be applied, thus leading to a high number of false negatives with a consequent loss of information.
To control this error, we propose to use the technical error value (GenCall score) for each SNP of the 200-SNP panel on an individual (per sample) basis, when used for parentage control.
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So far, existing methods have not attempted to estimate or control this error in a systematic manner.
This helps to control the error of the pizzas getting cold as they sat out.
New error indicators are introduced to control the error due to non-body-fitted meshes.
Analysis of systematic and random errors allows one to control the error in the estimated value of the aggregation rate.
Note that we only conduct partial IC in order to control the error propagation effect.
Controlling the FWER and FDR are two widely used approaches to control the error rate.
Thus, P-value correction is conducted to control the error rate using the following formula [ 39].
Controlling the family-wise error rate (FWER) and false discovery rate (FDR) are standard ways to control the error rate (Dudoit and Laan, 2008; Westfall and Young, 1993).
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