Table-top Microscope Mounted on Flexible Monitor Arm Using a Customized Multipurpose Metal Plate for Microsurgical Training: Technical Note.

IF 2.4 4区 医学 Q2 CLINICAL NEUROLOGY
Satoshi Yamaguchi, Jangbo Lee, Prabin Shrestha, Satoka Shidoh, Kyongsong Kim
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Abstract

Despite the recognized usefulness of a portable table-top microscope in microsurgical training, its effectiveness is limited when training involves anatomical models and long surgical instruments. This limitation arises from the microscope's exclusive mobility to an up-and-down direction and the restricted working space beneath it. To address these challenges, we customized the table-top microscope by attaching its scope body and focusing rack to a Visual Electronics Standards Association (San Jose, CA, USA) monitor arm, originally designed for mounting computer monitors. A multipurpose metal plate, known as a "cheese plate" and designed for use with photography cameras, was customized to function as an adapter between the microscope and the monitor arm. The plate has Visual Electronics Standards Association-standard screw holes, which allowed the connection between the microscope focusing rack and the Visual Electronics Standards Association monitor arm. This assembly, referred to as a focusing rack-adapter plate complex, was then mounted on the Visual Electronics Standards Association monitor arm. To evaluate the modified microscope, its view was compared with that of a traditional microscope using concentric circles and gauze on the slope models. The modified microscope, mounted on the Visual Electronics Standards Association monitor arm, exhibited remarkable flexibility in its working area, height, and angles. The total cost of the modification was approximately $140. The advantages of the modified microscope over the traditional one, shown by a comparative study, were primarily attributed to the enhanced mobility of the modified microscope. With its simple modification process and affordable cost, this upgraded microscope has the potential to greatly benefit neurosurgeons who undergo microsurgical training.

使用定制的多用途金属板安装在柔性监测臂上的台式显微镜用于显微外科训练:技术说明。
尽管便携式台式显微镜在显微外科训练中被公认有用,但当训练涉及解剖模型和长手术器械时,其有效性受到限制。这种限制来自于显微镜的上下移动方向和它下面有限的工作空间。为了解决这些挑战,我们定制了台式显微镜,将其瞄准镜主体和聚焦架连接到视觉电子标准协会(San Jose, CA, USA)的显示器臂上,该显示器最初是为安装计算机显示器而设计的。一个多用途的金属板,被称为“奶酪板”,设计用于摄影相机,被定制为显微镜和监测臂之间的适配器。该板有视觉电子标准协会标准的螺丝孔,允许显微镜聚焦架和视觉电子标准协会监测臂之间的连接。这个组件,被称为聚焦架-适配器板复合体,然后安装在视觉电子标准协会的监控臂上。为了评价改进后的显微镜,将其与使用同心圆和纱布的传统显微镜在斜坡模型上的观察效果进行了比较。这台经过改进的显微镜,安装在视觉电子标准协会的监测臂上,在工作区域、高度和角度上都表现出显著的灵活性。修改的总费用约为140美元。对比研究表明,改进后的显微镜优于传统的显微镜,主要是由于改进后的显微镜的移动性增强。由于其简单的修改过程和可承受的成本,这种升级的显微镜有可能极大地造福于接受显微外科训练的神经外科医生。
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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来源期刊
Neurologia medico-chirurgica
Neurologia medico-chirurgica 医学-临床神经学
CiteScore
3.70
自引率
10.50%
发文量
63
审稿时长
3-8 weeks
期刊介绍: Information not localized
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