Dermatology Service, Memorial Sloan-Kettering Cancer Center, 160 East 53rd Street, New York 10022, New York, USA.
J Surg Res. 2012 Dec;178(2):533-8. doi: 10.1016/j.jss.2012.05.059. Epub 2012 Jun 7.
Complete and accurate excision of cancer is guided by the examination of histopathology. However, preparation of histopathology is labor intensive and slow, leading to insufficient sampling of tissue and incomplete and/or inaccurate excision of margins. We demonstrate the potential utility of multimodal confocal mosaicing microscopy for rapid screening of cancer margins, directly in fresh surgical excisions, without the need for conventional embedding, sectioning, or processing.
A multimodal confocal mosaicing microscope was developed to image basal cell carcinoma margins in surgical skin excisions, with the resolution that shows nuclear detail. Multimodal contrast is with fluorescence for imaging nuclei and reflectance for cellular cytoplasm and dermal collagen. Thirty-five excisions of basal cell carcinomas from Mohs surgery were imaged, and the mosaics analyzed by comparison with the corresponding frozen pathology.
Confocal mosaics are produced in about 9 min, displaying tissue in fields of view of 12 mm with ×2 magnification. A digital staining algorithm transforms black and white contrast to purple and pink, which simulates the appearance of standard histopathology. Mosaicing enables rapid digital screening, which mimics the examination of histopathology.
Multimodal confocal mosaicing microscopy offers a technology platform to potentially enable real-time pathology at the bedside. The imaging may serve as an adjunct to conventional histopathology to expedite screening of margins and guide surgery toward more complete and accurate excision of cancer.
癌症的完整和准确切除由组织病理学检查指导。然而,组织病理学准备工作繁琐且耗时,导致组织采样不足,边缘切除不完全和/或不准确。我们展示了多模态共焦拼接显微镜在直接对新鲜外科切除物进行快速筛选癌症边缘方面的潜在应用,无需常规包埋、切片或处理。
开发了一种多模态共焦拼接显微镜,用于对手术皮肤切除物中的基底细胞癌边缘进行成像,分辨率可显示核细节。多模态对比度为荧光成像细胞核和反射率成像细胞细胞质和真皮胶原。对 35 例Mohs 手术切除的基底细胞癌进行了成像,并与相应的冷冻病理学进行比较分析拼接图像。
拼接图像大约需要 9 分钟即可生成,以 2 倍放大率显示 12mm 视场的组织。数字染色算法将黑白对比度转换为紫色和粉红色,模拟标准组织病理学的外观。拼接实现了快速的数字筛选,模拟了组织病理学检查。
多模态共焦拼接显微镜提供了一个技术平台,有可能实现床边实时病理学。该成像可以作为常规组织病理学的辅助手段,加快边缘筛查,并指导手术更完整和准确地切除癌症。