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Novel device for tissue cooling during endoscopic laryngeal laser surgery: thermal damage study in an ex vivo calf model.

Identifieur interne : 000596 ( Ncbi/Checkpoint ); précédent : 000595; suivant : 000597

Novel device for tissue cooling during endoscopic laryngeal laser surgery: thermal damage study in an ex vivo calf model.

Auteurs : Hae Jin Koo [États-Unis] ; James A. Burns ; James B. Kobler ; James T. Heaton ; Steven M. Zeitels

Source :

RBID : pubmed:22844869

Descripteurs français

English descriptors

Abstract

Minimizing collateral thermal damage during endoscopic laryngeal laser surgery remains a priority, and tissue cooling is one way to achieve this goal. Cooling systems utilizing compressed air have been shown to reduce the extent of thermal trauma on the vocal folds, but these units are not ideal for endoscopic applications because cooling is inefficient at the low airflows needed. We examined whether a novel vortex cooling device that generates cooled air at low flow rates would provide a cooling benefit beyond that which could be obtained by using room-temperature air for cooling tissue or by using no cooling during simulated laryngeal laser surgery.

PubMed: 22844869


Affiliations:


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pubmed:22844869

Le document en format XML

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<nlm:affiliation>Department of Surgery, Harvard Medical School, and the Center for Laryngeal Surgery and Voice Rehabilitation, Massachusetts General Hospital, Boston, Massachusetts 02114, USA.</nlm:affiliation>
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<term>Cold Temperature</term>
<term>Glottis (pathology)</term>
<term>Glottis (surgery)</term>
<term>Laryngeal Mucosa (injuries)</term>
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<div type="abstract" xml:lang="en">Minimizing collateral thermal damage during endoscopic laryngeal laser surgery remains a priority, and tissue cooling is one way to achieve this goal. Cooling systems utilizing compressed air have been shown to reduce the extent of thermal trauma on the vocal folds, but these units are not ideal for endoscopic applications because cooling is inefficient at the low airflows needed. We examined whether a novel vortex cooling device that generates cooled air at low flow rates would provide a cooling benefit beyond that which could be obtained by using room-temperature air for cooling tissue or by using no cooling during simulated laryngeal laser surgery.</div>
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