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1Section of Dental Anesthesiology, Division of Maxillofacial Diagnostic & Surgical Sciences, Faculty of Dental Science, Kyushu University, 812-0053 Fukuoka, Japan
2Department of Clinical Engineering, Faculty of Health Care Sciences, Jikei University of Health Care Sciences, 532-0003 Osaka, Japan
*Corresponding Author(s):hitosugi.takashi.724@m.kyushu-u.ac.jp (Takashi Hitosugi)
† These authors contributed equally.
| History | Published: 08 August 2026 |
| Copyright: | ©2026 The Author(s). Published by MRE Press. |

No abstract available.
Cite this article
Hitosugi T, Hano K, Tanaka T, Yokoyama T. Correction: Effect of dental chair stabilization method on manual chest compressions. Signa Vitae. 2026; 22(3): 183-183. doi: 10.22514/sv.2026.056
In the originally published article [1] (DOI: 10.22514/sv.2025.037), post-publication review by the Editorial Office identified inappropriate or irrelevant references, including Reference [22], and duplicate references (Reference [12] is identical to Reference [30]; Reference [18] is identical to Reference [28]).
In collaboration with the authors, the following corrections have been made in this Correction:
1. Reference [22] has been replaced with a more relevant citation:
[22] Armfield JM, Heaton LJ. Management of fear and anxiety in the dental clinic: a review. Australian Dental Journal. 2013; 58: 390–407; quiz 531.
2. The duplicate references have been resolved as follows:
Reference [28] has been replaced with a new citation:
[28] Kim TH, Shin SD, Song KJ, Hong KJ, Ro YS, Song SW, et al. Chest compression fraction between mechanical compressions on a reducible stretcher and manual compressions on a standard stretcher during transport in out-of-hospital cardiac arrests: the ambulance stretcher innovation of asian cardiopulmonary resuscitation (ASIA-CPR) pilot trial. Prehospital Emergency Care. 2017; 21: 636–644.
Reference [30] has been replaced with a new citation:
[30] Kopra J, Mehtonen L, Laitinen M, Litonius E, Arvola O, Östman R, et al. Chest compression synchronized ventilation during prolonged experimental cardiopulmonary resuscitation improves oxygenation but may cause pneumothoraces. Resuscitation Plus. 2025; 22: 100918.
The authors confirm that these corrections do not affect the scientific content, results, interpretations, or conclusions of the original study.
The authors sincerely apologize for these oversights and any inconvenience caused. This Correction has been approved by the Editor-in-Chief. The original article PDF remains available as published and has not been altered. Readers are advised to refer to this Correction for the updated references [22], [28], and [30].