Biosensor National Special Laboratory, College of Biomedical Engineering and Instrument Science, Zhejiang University, Hangzhou, 310027, People's Republic of China.
State Key Laboratory of CAD and CG, Zhejiang University, Hangzhou, 310058, People's Republic of China.
Biomed Eng Online. 2021 Jan 6;20(1):5. doi: 10.1186/s12938-020-00845-5.
Novel endoscopic biophotonic diagnostic technologies have the potential to non-invasively detect the interior of a hollow organ or cavity of the human body with subcellular resolution or to obtain biochemical information about tissue in real time. With the capability to visualize or analyze the diagnostic target in vivo, these techniques gradually developed as potential candidates to challenge histopathology which remains the gold standard for diagnosis. Consequently, many innovative endoscopic diagnostic techniques have succeeded in detection, characterization, and confirmation: the three critical steps for routine endoscopic diagnosis. In this review, we mainly summarize researches on emerging endoscopic optical diagnostic techniques, with emphasis on recent advances. We also introduce the fundamental principles and the development of those techniques and compare their characteristics. Especially, we shed light on the merit of novel endoscopic imaging technologies in medical research. For example, hyperspectral imaging and Raman spectroscopy provide direct molecular information, while optical coherence tomography and multi-photo endomicroscopy offer a more extensive detection range and excellent spatial-temporal resolution. Furthermore, we summarize the unexplored application fields of these endoscopic optical techniques in major hospital departments for biomedical researchers. Finally, we provide a brief overview of the future perspectives, as well as bottlenecks of those endoscopic optical diagnostic technologies. We believe all these efforts will enrich the diagnostic toolbox for endoscopists, enhance diagnostic efficiency, and reduce the rate of missed diagnosis and misdiagnosis.
新型内镜生物光子学诊断技术具有非侵入性地以亚细胞分辨率检测人体中空器官或腔体内部或实时获得组织生化信息的潜力。这些技术具有在体内可视化或分析诊断靶标的能力,逐渐发展成为挑战组织病理学的潜在候选技术,而组织病理学仍然是诊断的金标准。因此,许多创新的内镜诊断技术在检测、特征描述和确认方面取得了成功:这是常规内镜诊断的三个关键步骤。在这篇综述中,我们主要总结了新兴的内镜光学诊断技术的研究进展,重点介绍了最新进展。我们还介绍了这些技术的基本原理和发展,并比较了它们的特点。特别地,我们强调了新型内镜成像技术在医学研究中的优势。例如,高光谱成像和拉曼光谱提供了直接的分子信息,而光学相干断层扫描和多光子内窥技术提供了更广泛的检测范围和出色的时空分辨率。此外,我们总结了这些内镜光学技术在主要医院科室中尚未开发的应用领域,为生物医学研究人员提供参考。最后,我们对这些内镜光学诊断技术的未来展望和瓶颈进行了简要概述。我们相信,所有这些努力将丰富内镜医生的诊断工具包,提高诊断效率,并降低漏诊和误诊的几率。