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Use of Ex Vivo Confocal Scanning Laser Microscopy during Mohs Surgery for Nonmelanoma Skin Cancers.

机译:非黑素瘤皮肤癌莫氏手术中使用体外共聚焦扫描激光显微镜。

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Background. Ex vivo confocal scanning laser microscopy offers rapid optical reflectance imaging of excised tissue without conventional frozen histopathology that can potentially expedite Mohs surgery. Objective. The objective was to determine the feasibility of using ex vivo confocal scanning laser microscopy during Mohs surgery for detecting residual basal cell carcinoma and squamous cell carcinoma. Methods. One-hundred fifteen Stage I Mohs surgery excisions (92 basal cell carcinoma, 23 squamous cell carcinoma) were imaged with acetowhitening and confocal scanning laser microscopy and compared to conventional Mohs frozen histologic sections for normal and tumor features. Results. Large aggregates of residual tumor such as nodular basal cell carcinoma were easily detected by ex vivo confocal scanning laser microscopy, whereas smaller tumor foci were not consistently identified. Confocal morphology of tumor subtypes is described. Conclusion. Ex vivo confocal scanning laser microscopy can potentially expedite Mohs surgery in rapidly detecting large nodular basal cell carcinomas without conventional frozen histopathology. Further improvements in instrumentation and image quality are necessary to allow broader application and acceptance of this novel technology in Mohs surgery. THE VIVASCOPE 2000 WAS LOANED BY LUCID, P. DWYER WORKED FOR LUCID DURING THE TIME OF THE STUDY AND M. RAJADHYAKSHA WAS AN EMPLOYEE OF LUCID. HE WAS ALSO INVENTOR/DEVELOPER OF THE IMAGING TECHNIQUE, HOLDS PATENTS ON THE PRODUCT, AND OWNS STOCK OPTIONS IN LUCID.
机译:背景。离体共聚焦扫描激光显微镜可对切除的组织进行快速光反射成像,而无需进行可能会加快莫氏手术速度的常规冷冻组织病理学检查。目的。目的是确定在Mohs手术中使用离体共聚焦扫描激光显微镜检测残留的基底细胞癌和鳞状细胞癌的可行性。方法。用乙酰化增白和共聚焦扫描激光显微镜对一百一十五个第一期Mohs手术切除物(92例基底细胞癌,23例鳞状细胞癌)进行成像,并与常规Mohs冷冻组织学切片进行正常和肿瘤特征比较。结果。大量残留肿瘤如结节性基底细胞癌的聚集体很容易通过离体共聚焦扫描激光显微镜检查,而较小的肿瘤灶并不能始终如一地被发现。描述了肿瘤亚型的共聚焦形态。结论。离体共聚焦扫描激光显微术可以快速检测大型结节性基底细胞癌而无需常规冷冻组织病理学,从而有可能加快莫氏手术的速度。为了使这种新技术在莫氏手术中得到更广泛的应用和接受,有必要在仪器和图像质量上进行进一步的改进。在研究期间,LUCID租借了VIVASCOPE 2000,P。DWYER在研究期间为LUCID工作,而M. RAJADHYAKSHA是LUCID的雇员。他还是成像技术的发明者/开发者,拥有该产品的专利,并拥有LUCID的股票期权。

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