Giacomelli Michael G, Faulkner-Jones Beverly E, Cahill Lucas C, Yoshitake Tadayuki, Do Daihung, Fujimoto James G
Massachusetts Institute of Technology, Department of Electrical Engineering and Computer Science and Research Laboratory of Electronics, 32 Vassar Street, Cambridge, MA 02139, USA.
Harvard Medical School, Department of Pathology, Beth Israel Deaconess Medical Center, 330 Brookline Avenue, Boston, MA 02215, USA.
Biomed Opt Express. 2019 Jul 30;10(8):4249-4260. doi: 10.1364/BOE.10.004249. eCollection 2019 Aug 1.
Mohs surgery uses frozen section analysis (FSA) with complete margin examination for the excision of select basal cell carcinomas (BCC), obtaining excellent cosmetic outcomes and extremely low recurrence rates. However, Mohs with FSA is time-consuming because of the need to iteratively perform cryosectioning on sequential excisions. Fluorescent microscopies can image tissue specimens without requiring physical sectioning, potentially reducing the time to perform Mohs surgery. We demonstrate a protocol for nonlinear microscopy (NLM) imaging of surgical specimens that combines dual agent staining, virtual H&E rendering, and video rate imaging. We also introduce a novel protocol that enables micron-level co-registration of NLM images with FSA histology, and demonstrate that NLM can reproduce similar features similar to FSA in BCC specimens with both negative and positive surgical margins. We show that the fluorescent labels can be extracted with conventional vacuum infiltration processing, enabling subsequent immunohistochemistry on fluorescently labeled tissue. This protocol can also be applied to evaluate the performance of NLM compared with FSA in a wide range of pathologies for intraoperative consultation.
莫氏手术采用冰冻切片分析(FSA)并进行完整的切缘检查,以切除特定的基底细胞癌(BCC),可获得极佳的美容效果和极低的复发率。然而,由于需要对连续切除的组织进行反复冷冻切片,采用FSA的莫氏手术耗时较长。荧光显微镜无需对组织进行物理切片就能对组织标本成像,有可能缩短莫氏手术的操作时间。我们展示了一种用于手术标本非线性显微镜(NLM)成像的方案,该方案结合了双试剂染色、虚拟苏木精和伊红(H&E)染色以及视频速率成像。我们还引入了一种新方案,能够将NLM图像与FSA组织学进行微米级的配准,并证明在手术切缘为阴性和阳性的BCC标本中,NLM能够重现与FSA相似的特征。我们表明,荧光标记物可以通过传统的真空浸润处理提取出来,从而能够对荧光标记的组织进行后续的免疫组织化学分析。该方案还可用于在广泛的病理学中评估NLM与FSA相比在术中会诊方面的性能。