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用于实时评估未经处理的甲状腺组织的紧凑型便携式高次谐波产生显微镜。

Compact portable higher harmonic generation microscopy for the real time assessment of unprocessed thyroid tissue.

机构信息

Vrije Universiteit Amsterdam, Faculty of Science, Department of Physics, LaserLab, Amsterdam, The Netherlands.

Department of Surgery, Amsterdam UMC, location VUmc, Amsterdam, The Netherlands.

出版信息

J Biophotonics. 2024 Jan;17(1):e202300079. doi: 10.1002/jbio.202300079. Epub 2023 Oct 2.

Abstract

During thyroid surgery fast and reliable intra-operative pathological feedback has the potential to avoid a two-stage procedure and significantly reduce health care costs in patients undergoing a diagnostic hemithyroidectomy (HT). We explored higher harmonic generation (HHG) microscopy, which combines second harmonic generation (SHG), third harmonic generation (THG), and multiphoton excited autofluorescence (MPEF) for this purpose. With a compact, portable HHG microscope, images of freshly excised healthy tissue, benign nodules (follicular adenoma) and malignant tissue (papillary carcinoma, follicular carcinoma and spindle cell carcinoma) were recorded. The images were generated on unprocessed tissue within minutes and show relevant morphological thyroid structures in good accordance with the histology images. The thyroid follicle architecture, cells, cell nuclei (THG), collagen organization (SHG) and the distribution of thyroglobulin and/or thyroid hormones T3 or T4 (MPEF) could be visualized. We conclude that SHG/THG/MPEF imaging is a promising tool for clinical intraoperative assessment of thyroid tissue.

摘要

在甲状腺手术中,快速可靠的术中病理反馈有可能避免进行两阶段手术,并显著降低接受诊断性甲状腺叶切除术(HT)的患者的医疗保健成本。我们探索了更高阶谐波产生(HHG)显微镜,它将二次谐波产生(SHG)、三次谐波产生(THG)和多光子激发自发荧光(MPEF)结合在一起用于此目的。使用紧凑型便携式 HHG 显微镜,记录了新鲜切除的健康组织、良性结节(滤泡性腺瘤)和恶性组织(乳头状癌、滤泡状癌和梭形细胞癌)的图像。这些图像在未经处理的组织中在数分钟内生成,并与组织学图像很好地显示了相关的形态学甲状腺结构。可以可视化甲状腺滤泡结构、细胞、细胞核(THG)、胶原组织(SHG)以及甲状腺球蛋白和/或甲状腺激素 T3 或 T4 的分布(MPEF)。我们得出结论,SHG/THG/MPEF 成像术是一种很有前途的临床术中评估甲状腺组织的工具。

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