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Published Erratum
. 2019 Jan 30;19(1):16.
doi: 10.1186/s12883-019-1240-7.

Correction to: Concordance analysis of microarray studies identifies representative gene expression changes in Parkinson's disease: a comparison of 33 human and animal studies

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Published Erratum

Correction to: Concordance analysis of microarray studies identifies representative gene expression changes in Parkinson's disease: a comparison of 33 human and animal studies

Erin Oerton et al. BMC Neurol. .

Abstract

Following publication of the original article [1], the authors reported the following errors on their article.

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Figures

Fig. 2
Fig. 2
Average concordance within subgroups of human studies of PD. Concordance increases in studies of human patients (i.e., excluding human cell line studies), and within tissue subgroups. Concordance of pathways compares regulation at the level of biological processes rather than individual genes, and accordingly concordance at the pathway level is generally higher than at the level of differential gene expression

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References

    1. Oerton E, Bender A. Concordance analysis of microarray studies identifies representative gene expression changes in Parkinson’s disease: a comparison of 33 human and animal studies. BMC Neurol. 2017;17(58). 10.1186/s12883-017-0838-x. - PMC - PubMed

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