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.
Sci Rep. 2018 Mar 14;8(1):4476. doi: 10.1038/s41598-018-22264-2.
Rapid histopathological evaluation of fresh, unfixed human tissue using optical sectioning microscopy would have applications to intraoperative surgical margin assessment. Microscopy with ultraviolet surface excitation (MUSE) is a low-cost optical sectioning technique using ultraviolet illumination which limits fluorescence excitation to the specimen surface. In this paper, we characterize MUSE using high incident angle, water immersion illumination to improve sectioning. Propidium iodide is used as a nuclear stain and eosin yellow as a counterstain. Histologic features of specimens using MUSE, nonlinear microscopy (NLM) and conventional hematoxylin and eosin (H&E) histology were evaluated by pathologists to assess potential application in Mohs surgery for skin cancer and lumpectomy for breast cancer. MUSE images of basal cell carcinoma showed high correspondence with frozen section H&E histology, suggesting that MUSE may be applicable to Mohs surgery. However, correspondence in breast tissue between MUSE and paraffin embedded H&E histology was limited due to the thicker optical sectioning in MUSE, suggesting that further development is needed for breast surgical applications. We further demonstrate that the transverse image resolution of MUSE is limited by the optical sectioning thickness and use co-registered NLM to quantify the improvement in MUSE optical sectioning from high incident angle water immersion illumination.
使用光学切片显微镜对新鲜、未固定的人体组织进行快速组织病理学评估,将有助于术中手术边界评估。使用紫外线表面激发的显微镜(MUSE)是一种低成本的光学切片技术,使用紫外线照明将荧光激发限制在标本表面。在本文中,我们使用高入射角、水浸照明来改善切片,对 MUSE 进行了特性描述。吖啶橙用作核染色剂,曙红用作对比染色剂。病理学家评估了使用 MUSE、非线性显微镜(NLM)和常规苏木精和伊红(H&E)组织学的标本的组织学特征,以评估其在皮肤癌的 Mohs 手术和乳腺癌的乳房切除术的潜在应用。基底细胞癌的 MUSE 图像与冷冻切片 H&E 组织学高度一致,表明 MUSE 可能适用于 Mohs 手术。然而,由于 MUSE 中的光学切片较厚,MUSE 与石蜡包埋 H&E 组织学之间在乳腺组织中的一致性有限,表明需要进一步开发用于乳腺手术的应用。我们进一步证明,MUSE 的横向图像分辨率受光学切片厚度的限制,并使用共定位的 NLM 来量化从高入射角水浸照明中获得的 MUSE 光学切片的改善。