首页> 外文会议>Conference on Stereoscopic Displays and Virtual Reality Systems >Evaluation of stereoscopic medical video content on an autostereoscopic display for undergraduate medical education
【24h】

Evaluation of stereoscopic medical video content on an autostereoscopic display for undergraduate medical education

机译:关于本科医学教育自动立体展示立体医学视频内容的评价

获取原文

摘要

Introduction: An increasing number of surgical procedures are performed in a microsurgical and minimally-invasive fashion. However, the performance of surgery, its possibilities and limitations become difficult to teach. Stereoscopic video has evolved from a complex production process and expensive hardware towards rapid editing of video streams with standard and HDTV resolution which can be displayed on portable equipment. This study evaluates the usefulness of stereoscopic video in teaching undergraduate medical students. Material and methods: From an earlier study we chose two clips each of three different microsurgical operations (tympanoplasty type III of the ear, endonasal operation of the paranasal sinuses and laser chordectomy for carcinoma of the larynx). This material was added by 23 clips of a cochlear implantation, which was specifically edited for a portable computer with an autostereoscopic display (PC-RD1-3D, SHARP Corp., Japan). The recording and synchronization of left and right image was performed at the University Hospital Aachen. The footage was edited stereoscopically at the Waseda University by means of our original software for non-linear editing of stereoscopic 3-D movies. Then the material was converted into the streaming 3-D video format. The purpose of the conversion was to present the video clips by a file type that does not depend on a television signal such as PAL or NTSC. 25 4th year medical students who participated in the general ENT course at Aachen University Hospital were asked to estimate depth clues within the six video clips plus cochlear implantation clips. Another 25 4th year students who were shown the material monoscopically on a conventional laptop served as control. Results: All participants noted that the additional depth information helped with understanding the relation of anatomical structures, even though none had hands-on experience with Ear, Nose and Throat operations before or during the course. The monoscopic group generally estimated resection depth to much lesser values than in reality. Although this was the case with some participants in the stereoscopic group, too, the estimation of depth features reflected the enhanced depth impression provided by stereoscopy. Conclusion: Following first implementation of stereoscopic video teaching, medical students who are inexperienced with ENT surgical procedures are able to reproduce depth information and therefore anatomically complex structures to a greater extent following stereoscopic video teaching. Besides extending video teaching to junior doctors, the next evaluation step will address its effect on the learning curve during the surgical training program.
机译:在显微外科手术和微创的方式进行,越来越多的手术过程:介绍。然而,手术的表现,其可能性和局限性变得难教。立体视频已经从对与标准和高清电视的分辨率,可以在便携式设备上显示的视频流的快速编辑生产工艺复杂和昂贵的硬件发展而来的。该研究评估了本科教学医学生的立体视频的实用性。材料和方法:从早期的研究中,我们选择了各三个不同的显微外科手术(鼓室成形术III型耳朵,为喉癌,鼻窦和激光chordectomy的鼻内操作)的两个片段。用人工耳蜗植入,其特异性地与自动立体显示器(PC-RD1-3D,夏普公司制,日本)编辑的一台便携式计算机的23个剪辑添加该材料。记录和左,右图像的同步是在大学医院亚琛进行的。这段录像是由我们原创软件的立体3-d电影非线性编辑的方式在早稻田大学立体编辑。然后将材料转化为流3-d视频格式。转换的目的是通过不依赖于电视信号如PAL或NTSC文件类型呈现视频剪辑。谁参加了在亚琛大学医院耳鼻喉科一般课程25四个年级医学生被要求估计六个视频片段加上人工耳蜗植入夹内的深度线索。谁是显示在传统笔记本电脑的材料单视场另外25四名年级大学生作为对照。结果:所有与会者指出,额外的深度信息,帮助与理解解剖结构的关系,即使没有之前或过程中有动手耳,鼻,喉运营经验。单视场组一般估计切除深度少得多值比在现实中。虽然这是与在立体组一些与会者的情况下,也深度的估计的特征反射的由立体提供的增强的深度印象。结论:继第一个实现立体视频教学,谁没有经验与耳鼻喉外科手术的医学生能够重现以下立体视频教学的深度信息,因此解剖结构复杂,以更大的程度。除了扩展视频教学,初级医生,接下来的评估步骤将外科手术训练计划中解决其学习曲线效应。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号