Virtual microscopy: The future of pathological diagnostics, dental education, and telepathology

R. V. Vatchala Rani, B. Manjunath, M. Bajpai, Rohit Sharma, P. Gupta, A. Bhargava
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Abstract

Objectives: The objectives of this study were as follows: (1) to provide an overview of the feasibility, utility, merits, and demerits of virtual microscopy (VM) in pathological diagnostics and (2) to evaluate its advantages in dental and medical teaching over conventional microscopes. Materials and Methods: A literature survey was carried out in August 2020 in electronic databases such as PubMed using keywords such as virtual microscopy and whole slide imaging. The searches revealed 956 articles out of which 36 were selected after reading the full-text articles. Results: The review of 36 articles revealed that VM or whole-slide imaging (WSI) allows access to entire scanned sections of tissue that can be viewed on a computer in exactly the same way as conventional glass slides with a microscope and can be explored at several magnifications. VM offers many advantages like ease of accessibility through the Internet anytime or in any place, and moreover, the virtual slide does not get damaged or fade away like glass slide. Since it increases learning and comprehension, virtual microscopes have been used extensively in dental and medical education. Conclusions: VM opens a new world in tissue-based diagnosis through digitization of slides. The experiences of telepathology applications have already proved that it is a promising technology which has been adopted by histopathologists and cytologists across the world and contributing immensely to telepathology consultation in underserved areas. It is a feasible, valid, and approved technology for pathological diagnosis.
虚拟显微镜:病理诊断、牙科教育和远程病理学的未来
目的:本研究的目的如下:(1)概述虚拟显微镜(VM)在病理诊断中的可行性、实用性、优缺点;(2)评估其在牙科和医学教学中相对于传统显微镜的优势。材料和方法:2020年8月,在PubMed等电子数据库中使用虚拟显微镜和全玻片成像等关键词进行了一项文献调查。搜索发现956篇文章,其中36篇是在阅读全文文章后选择的。结果:对36篇文章的综述显示,VM或全玻片成像(WSI)可以访问组织的整个扫描切片,这些切片可以在计算机上以与显微镜下的传统载玻片完全相同的方式查看,并且可以在几个放大倍数下进行探索。虚拟机提供了许多优点,如随时随地都可以通过互联网访问,而且虚拟幻灯片不会像玻璃幻灯片一样损坏或褪色。由于虚拟显微镜可以提高学习和理解能力,因此在牙科和医学教育中得到了广泛应用。结论:VM通过幻灯片的数字化为基于组织的诊断开辟了一个新的世界。远程病理学应用的经验已经证明,这是一项很有前途的技术,已被世界各地的组织病理学家和细胞学家所采用,并为服务不足地区的远程病理学咨询做出了巨大贡献。这是一种可行、有效且经批准的病理诊断技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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