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. 2022 Oct 21;13:6282. doi: 10.1038/s41467-022-34147-2

Author Correction: QuasAr Odyssey: the origin of fluorescence and its voltage sensitivity in microbial rhodopsins

Arita Silapetere 1,✉,#, Songhwan Hwang 1,2,#, Yusaku Hontani 3,8, Rodrigo G Fernandez Lahore 1, Jens Balke 4, Francisco Velazquez Escobar 5, Martijn Tros 3, Patrick E Konold 3, Rainer Matis 6, Roberta Croce 3, Peter J Walla 6, Peter Hildebrandt 5, Ulrike Alexiev 4, John T M Kennis 3, Han Sun 2,7, Tillmann Utesch 2,, Peter Hegemann 1
PMCID: PMC9587206  PMID: 36270996

Correction to: Nature Communications 10.1038/s41467-022-33084-4, published online 20 September 2022

The original version of this Article contained an error in the Abstract, which incorrectly read “These proteins named QuasArs have been used for imaging membrane voltage changes in cell cultures and small animals, but they could not be applied in living rodents.”. The correct version replaces this sentence with “These proteins named QuasArs have been used for imaging membrane voltage changes in cell cultures and small animals. However due to the low fluorescence intensity, these constructs require use of much higher light intensity than other optogenetic tools.”. This has been corrected in both the PDF and HTML versions of the Article.

Contributor Information

Arita Silapetere, Email: arita.silapetere@hu-berlin.de.

Tillmann Utesch, Email: utesch@fmp-berlin.de.


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