Ruidíaz Manuel E, Blair Sarah L, Kummel Andrew C, Wang-Rodriguez Jessica
Department of Bioengineering, University of California San Diego, La Jolla, CA 92093, USA.
ISRN Surg. 2012;2012:546721. doi: 10.5402/2012/546721. Epub 2012 Nov 25.
Background. Breast conservation therapy (BCT) is the standard treatment for breast cancer; however, 32-63% of procedures have a positive margin leading to secondary procedures. The standard of care to evaluate surgical margins is based on permanent section. Imprint cytology (IC) has been used to evaluate surgical samples but is limited by excessive cauterization thus requiring experienced cytopathologist for interpretation. An automated image screening process has been developed to detect cancerous cells from IC on cauterized margins. Methods. IC was prospectively performed on margins during lumpectomy operations for breast cancer in addition to permanent section on 127 patients. An 8-slide training subset and 8-slide testing subset were culled. H&E IC automated analysis, based on linear discriminant analysis, was compared to manual pathologist interpretation. Results. The most important descriptors, from highest to lowest performance, are nucleus color (23%), cytoplasm color (15%), shape (12%), grey intensity (9%), and local area (5%). There was 100% agreement between automated and manual interpretation of IC slides. Conclusion. Although limited by IC sampling variability, an automated system for accurate IC cancer cell identification system is demonstrated, with high correlation to manual analysis, even in the face of cauterization effects which supplement permanent section analysis.
背景。保乳治疗(BCT)是乳腺癌的标准治疗方法;然而,32%至63%的手术切缘为阳性,需要进行二次手术。评估手术切缘的护理标准基于永久切片。印片细胞学检查(IC)已用于评估手术标本,但受过度烧灼的限制,因此需要经验丰富的细胞病理学家进行解读。已开发出一种自动图像筛查程序,用于从烧灼切缘的印片细胞学检查中检测癌细胞。方法。除了对127例患者进行永久切片外,在乳腺癌肿块切除术中对切缘进行前瞻性印片细胞学检查。选取了一个8张玻片的训练子集和一个8张玻片的测试子集。将基于线性判别分析的苏木精-伊红印片细胞学自动分析与病理学家的手动解读进行比较。结果。从性能最高到最低,最重要的描述符依次为细胞核颜色(23%)、细胞质颜色(15%)、形状(12%)、灰度强度(9%)和局部面积(5%)。印片细胞学玻片的自动解读与手动解读完全一致。结论。尽管受印片细胞学采样变异性的限制,但即使面对烧灼效应,仍证明了一种用于准确识别印片细胞学癌细胞的自动系统,与手动分析高度相关,可作为永久切片分析的补充。