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不同功率剂量下二氧化碳激光诱导伪像与声门癌手术切缘的关系

Relationship between CO2 laser-induced artifact and glottic cancer surgical margins at variable power doses.

作者信息

Buchanan Malcolm A, Coleman Hedley G, Daley James, Digges James, Sandler Mark, Riffat Faruque, Palme Carsten E

机构信息

Department of Otolaryngology/Head and Neck Surgery, Westmead Hospital, University of Sydney, Westmead, New South Wales, Australia.

Department of Tissue Pathology and Diagnostic Oncology, Institute for Clinical Pathology and Medical Research, Pathology West, Westmead Hospital, University of Sydney, Sydney, Australia.

出版信息

Head Neck. 2016 Apr;38 Suppl 1:E712-6. doi: 10.1002/hed.24076. Epub 2015 Jul 15.

Abstract

BACKGROUND

The carbon dioxide laser can induce thermal cytologic artifacts at the margin of early glottic squamous cell carcinoma histologic specimens, which makes assessment of the margin difficult. This study assesses and correlates the depth of laser-induced thermal artifact with laser power rating.

METHODS

The surgical margins of 30 patients with early glottic squamous cell carcinomas who underwent laser resection were reanalyzed retrospectively.

RESULTS

Thermal damage consisted of collagen denaturation within the vocal cord lamina propria and vocalis muscle, and epithelial structural changes. There was a decrease in depth of tissue artifact with increased power rating (p > .05). The average depth of thermal damage was 380.83 ± 178.79 μm.

CONCLUSION

The laser causes less thermal damage at higher power, presumably because of the increased speed of cutting and reduced contact time with surrounding cells. Knowledge of the depth of thermal artifact is important surgically when ensuring the cancer is excised with sufficient oncologic margin. © 2015 Wiley Periodicals, Inc. Head Neck 38: E712-E716, 2016.

摘要

背景

二氧化碳激光可在早期声门鳞状细胞癌组织标本边缘诱发热细胞学假象,这使得对边缘的评估变得困难。本研究评估激光诱导热假象的深度,并将其与激光功率等级相关联。

方法

对30例行激光切除术的早期声门鳞状细胞癌患者的手术切缘进行回顾性重新分析。

结果

热损伤包括声带固有层和声带肌内的胶原变性以及上皮结构改变。随着功率等级的增加,组织假象深度减小(p>0.05)。热损伤的平均深度为380.83±178.79μm。

结论

激光在较高功率下造成的热损伤较小,可能是因为切割速度加快且与周围细胞的接触时间减少。在确保肿瘤以足够的肿瘤学切缘切除时,了解热假象的深度在手术中很重要。©2015威利期刊公司。头颈外科38:E712 - E716,2016年。

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