Vibroacoustic characterization of a Class II BSC and HaCaT scratch-assay wound-closure measurements

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Autori principali: Öğüç, Mete, Özünal, Zeynep Güneş
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2026
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author Öğüç, Mete
Özünal, Zeynep Güneş
author_facet Öğüç, Mete
Özünal, Zeynep Güneş
contents <p>This repository contains the data underlying the manuscript “Evaluation of the effect of vibration and acoustic signals in a Class II biological safety cabinet on wound healing in keratinocytes.” The study characterizes the vibroacoustic environment of a Class II biological safety cabinet (BSC) and a cell-culture laboratory (room noise spectrum, reverberation estimates, and tray vibration mapping), and reports HaCaT keratinocyte scratch-assay wound closure quantified at 24 h as relative area closure (based on wound area at 0 h and 24 h). The upload includes the wound-closure measurement table(s) and the acoustic/vibration measurement data used to generate the manuscript figures and statistics.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_19061337
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle Vibroacoustic characterization of a Class II BSC and HaCaT scratch-assay wound-closure measurements
Öğüç, Mete
Özünal, Zeynep Güneş
Acoustics
Vibration
Wound Healing
Keratinocytes
Cell Movement
<p>This repository contains the data underlying the manuscript “Evaluation of the effect of vibration and acoustic signals in a Class II biological safety cabinet on wound healing in keratinocytes.” The study characterizes the vibroacoustic environment of a Class II biological safety cabinet (BSC) and a cell-culture laboratory (room noise spectrum, reverberation estimates, and tray vibration mapping), and reports HaCaT keratinocyte scratch-assay wound closure quantified at 24 h as relative area closure (based on wound area at 0 h and 24 h). The upload includes the wound-closure measurement table(s) and the acoustic/vibration measurement data used to generate the manuscript figures and statistics.</p>
title Vibroacoustic characterization of a Class II BSC and HaCaT scratch-assay wound-closure measurements
topic Acoustics
Vibration
Wound Healing
Keratinocytes
Cell Movement
url https://doi.org/10.5281/zenodo.19061337