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空气冷却可减少铥激光解剖喉软组织过程中的热损伤:离体小牛模型研究

Thermal damage during thulium laser dissection of laryngeal soft tissue is reduced with air cooling: ex vivo calf model study.

作者信息

Burns James A, Kobler James B, Heaton James T, Lopez-Guerra Gerardo, Anderson R Rox, Zeitels Steven M

机构信息

Department of Surgery, Harvard Medical School, Boston, Massachusetts, USA.

出版信息

Ann Otol Rhinol Laryngol. 2007 Nov;116(11):853-7. doi: 10.1177/000348940711601111.

Abstract

OBJECTIVES

The 2-microm-wavelength thulium laser has recently been shown to be an effective cutting instrument in endolaryngeal surgery, although there is increased thermal trauma as compared with the carbon dioxide laser. This study investigated temperature changes and thermal trauma during thulium laser dissection of laryngeal tissue, with and without air cooling, in an ex vivo model.

METHODS

A continuous-wave thulium laser (400-microm fiber, 4-W continuous power, 4-second duration) was used to incise 10 calf vocal folds. Paired cooled and uncooled cuts were made in each fold with a dermatologic cooling device. A thermistor inserted into the glottic subepithelium was used to measure tissue temperatures. Thermal damage was analyzed histologically by measuring the depth of the zone of lactate dehydrogenase inactivation surrounding the mucosal incision.

RESULTS

The initial vocal fold temperature averaged 24.3 degrees C without cooling and 4.4 degrees C with cooling. The peak temperature during cutting averaged 59.1 degrees C without cooling and 28.0 degrees C with cooling. The thermal damage zone surrounding the cooled incisions was approximately 27% less than that surrounding the uncooled incisions.

CONCLUSIONS

Air cooling can reduce the extent of thermal trauma associated with thulium laser surgery of the vocal folds, and the high-temperature plume generated during laser cutting is effectively cleared.

摘要

目的

2微米波长的铥激光最近已被证明是一种有效的喉内手术切割器械,尽管与二氧化碳激光相比,其热损伤有所增加。本研究在体外模型中,研究了在有或没有空气冷却的情况下,铥激光解剖喉组织期间的温度变化和热损伤。

方法

使用连续波铥激光(400微米光纤,4瓦连续功率,持续4秒)切开10条小牛声带。在每条声带中使用皮肤冷却装置进行成对的冷却和未冷却切割。将热敏电阻插入声门下上皮以测量组织温度。通过测量粘膜切口周围乳酸脱氢酶失活区域的深度,对热损伤进行组织学分析。

结果

未冷却时声带初始平均温度为24.3摄氏度,冷却时为4.4摄氏度。切割过程中的峰值温度,未冷却时平均为59.1摄氏度,冷却时为28.0摄氏度。冷却切口周围的热损伤区域比未冷却切口周围的热损伤区域小约27%。

结论

空气冷却可减少与铥激光声带手术相关的热损伤程度,并且激光切割过程中产生的高温羽流可有效清除。

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