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An investigation of the incorporation of virtual microscopy in the cytotechnology educational curriculum.

机译:将虚拟显微镜纳入细胞技术教育课程的调查。

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摘要

Traditionally, cytotechnology (CT) students have been trained by using light microscopy (LM) and glass slides. However, this method of training has some drawbacks. Several other educational programs with similar issues have incorporated virtual microscopy (VM) in their curricula. In VM, the specimens on glass slides are converted into virtual images. However, in CT programs, which comprise of few educators and students, the feasibility of incorporating VM in the curricula is unclear. The long-term goal of this dissertation is to systematically investigate the feasibility of incorporating VM technology in CT educational curricula. The central hypothesis of this dissertation was that incorporating VM technology in the CT educational curricula is feasible.;The findings of this dissertation demonstrated that: a) CT students could effectively apply the cytomorphological criteria learned through VM to glass slide screening, b) students had a preference for the VM teaching module, c) incorporation of VM as an additional teaching tool along with the traditional LM teaching in CT educational curricula is feasible, and d) the optimal scanning parameters for gynecological (GYN) cytology specimens was 3 focal plane level and 1 micron interval.;In conclusion, this dissertation verified the feasibility of VM in the GYN course of CT education. VM was found to be a promising additional resource to the traditional LM in the CT education. Future studies should investigate the feasibility of VM in other courses of CT educational curricula. Learning cytology through VM has the potential to improve the performances of CT students and thus improve their service to the community. However, glass slides and LM will be used clinically for some time to come. Therefore, it is suggested that VM technology should be used as an additional resource along with the traditional LM. Current CT students must be proficient in using both technologies.
机译:传统上,通过使用光学显微镜(LM)和载玻片对细胞技术(CT)的学生进行了培训。但是,这种训练方法有一些缺点。其他一些具有类似问题的教育计划也将虚拟显微镜(VM)纳入了他们的课程。在VM中,将载玻片上的标本转换为虚拟图像。但是,在由很少的教育者和学生组成的CT计划中,将VM纳入课程的可行性尚不清楚。本文的长远目标是系统地研究将VM技术纳入CT教育课程的可行性。本论文的主要假设是将虚拟机技术纳入CT教育课程中是可行的。论文的研究结果表明:a)CT学生可以将通过虚拟机学习的细胞形态学标准有效地应用于载玻片筛查; b)学生已经偏爱VM教学模块,c)将VM作为一种额外的教学工具与CT教学课程中的传统LM教学相结合是可行的,d)妇科(GYN)细胞学标本的最佳扫描参数为3个焦平面总的来说,本论文验证了VM在CT教学GYN课程中的可行性。在CT教育中,VM被认为是传统LM的有希望的额外资源。未来的研究应探讨在其他CT教育课程中使用VM的可行性。通过虚拟机学习细胞学有潜力改善CT学生的表现,从而改善他们对社区的服务。但是,载玻片和LM将在临床上使用一段时间。因此,建议将VM技术与传统LM一起用作附加资源。当前的CT学生必须精通使用这两种技术。

著录项

  • 作者

    Mukherjee, Maheswari S.;

  • 作者单位

    University of Nebraska Medical Center.;

  • 授予单位 University of Nebraska Medical Center.;
  • 学科 Biology Anatomy.;Education Higher.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 152 p.
  • 总页数 152
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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