文献检索文档翻译深度研究
Suppr Zotero 插件Zotero 插件
邀请有礼套餐&价格历史记录

新学期,新优惠

限时优惠:9月1日-9月22日

30天高级会员仅需29元

1天体验卡首发特惠仅需5.99元

了解详情
不再提醒
插件&应用
Suppr Zotero 插件Zotero 插件浏览器插件Mac 客户端Windows 客户端微信小程序
高级版
套餐订阅购买积分包
AI 工具
文献检索文档翻译深度研究
关于我们
关于 Suppr公司介绍联系我们用户协议隐私条款
关注我们

Suppr 超能文献

核心技术专利:CN118964589B侵权必究
粤ICP备2023148730 号-1Suppr @ 2025

头戴式手术双目镜中的计算机增强立体视觉。

Computer-enhanced stereoscopic vision in a head-mounted operating binocular.

作者信息

Birkfellner Wolfgang, Figl Michael, Matula Christian, Hummel Johann, Hanel Rudolf, Imhof Herwig, Wanschitz Felix, Wagner Arne, Watzinger Franz, Bergmann Helmar

机构信息

CARCAS-Group at the University Hospital Basel, Switzerland.

出版信息

Phys Med Biol. 2003 Feb 7;48(3):N49-57. doi: 10.1088/0031-9155/48/3/402.


DOI:10.1088/0031-9155/48/3/402
PMID:12608617
Abstract

Based on the Varioscope, a commercially available head-mounted operating binocular, we have developed the Varioscope AR, a see through head-mounted display (HMD) for augmented reality visualization that seamlessly fits into the infrastructure of a surgical navigation system. We have assessed the extent to which stereoscopic visualization improves target localization in computer-aided surgery in a phantom study. In order to quantify the depth perception of a user aiming at a given target, we have designed a phantom simulating typical clinical situations in skull base surgery. Sixteen steel spheres were fixed at the base of a bony skull, and several typical craniotomies were applied. After having taken CT scans, the skull was filled with opaque jelly in order to simulate brain tissue. The positions of the spheres were registered using VISIT, a system for computer-aided surgical navigation. Then attempts were made to locate the steel spheres with a bayonet probe through the craniotomies using VISIT and the Varioscope AR as a stereoscopic display device. Localization of targets 4 mm in diameter using stereoscopic vision and additional visual cues indicating target proximity had a success rate (defined as a first-trial hit rate) of 87.5%. Using monoscopic vision and target proximity indication, the success rate was found to be 66.6%. Omission of visual hints on reaching a target yielded a success rate of 79.2% in the stereo case and 56.25% with monoscopic vision. Time requirements for localizing all 16 targets ranged from 7.5 min (stereo, with proximity cues) to 10 min (mono, without proximity cues). Navigation error is primarily governed by the accuracy of registration in the navigation system, whereas the HMD does not appear to influence localization significantly. We conclude that stereo vision is a valuable tool in augmented reality guided interventions.

摘要

基于一款市售的头戴式手术双目镜Varioscope,我们开发了Varioscope AR,这是一种用于增强现实可视化的透视头戴式显示器(HMD),它能无缝融入手术导航系统的基础设施。我们在一项体模研究中评估了立体可视化在多大程度上改善了计算机辅助手术中的目标定位。为了量化用户瞄准给定目标时的深度感知,我们设计了一个模拟颅底手术典型临床情况的体模。16个钢球固定在一个颅骨基底上,并进行了几次典型的开颅手术。在进行CT扫描后,颅骨内填充不透明凝胶以模拟脑组织。使用VISIT(一种计算机辅助手术导航系统)记录钢球的位置。然后尝试使用VISIT和作为立体显示设备的Varioscope AR,通过开颅手术用刺刀式探针定位钢球。使用立体视觉和指示目标接近度的额外视觉线索定位直径为4毫米的目标,成功率(定义为首次尝试命中率)为87.5%。使用单目视觉和目标接近度指示时,成功率为66.6%。在立体情况下,不使用到达目标时的视觉提示,成功率为79.2%;单目视觉时为56.25%。定位所有16个目标的时间要求从7.5分钟(立体,有接近线索)到10分钟(单目,无接近线索)不等。导航误差主要由导航系统中的配准精度决定,而HMD似乎对定位没有显著影响。我们得出结论,立体视觉是增强现实引导干预中的一种有价值的工具。

相似文献

[1]
Computer-enhanced stereoscopic vision in a head-mounted operating binocular.

Phys Med Biol. 2003-2-7

[2]
A head-mounted operating binocular for augmented reality visualization in medicine--design and initial evaluation.

IEEE Trans Med Imaging. 2002-8

[3]
A fully automated calibration method for an optical see-through head-mounted operating microscope with variable zoom and focus.

IEEE Trans Med Imaging. 2005-11

[4]
Hybrid navigation interface for orthopedic and trauma surgery.

Med Image Comput Comput Assist Interv. 2006

[5]
Development of a surgical navigation system based on augmented reality using an optical see-through head-mounted display.

J Biomed Inform. 2015-6

[6]
Augmented reality as an aid in maxillofacial surgery: validation of a wearable system allowing maxillary repositioning.

J Craniomaxillofac Surg. 2014-12

[7]
Surgical navigation by autostereoscopic image overlay of integral videography.

IEEE Trans Inf Technol Biomed. 2004-6

[8]
Impact of a self-developed planning and self-constructed navigation system on skull base surgery: 10 years experience.

Acta Otolaryngol. 2007-4

[9]
Stereoscopic head-mounted display incorporated into microsurgical procedures: technical note.

Neurosurgery. 1998-8

[10]
A new head-mounted display-based augmented reality system in neurosurgical oncology: a study on phantom.

Comput Assist Surg (Abingdon). 2017-12

引用本文的文献

[1]
Augmented Reality Integration in Skull Base Neurosurgery: A Systematic Review.

Medicina (Kaunas). 2024-2-16

[2]
Evaluation Metrics for Augmented Reality in Neurosurgical Preoperative Planning, Surgical Navigation, and Surgical Treatment Guidance: A Systematic Review.

Oper Neurosurg (Hagerstown). 2023-12-26

[3]
A Review of Cognitive Support Systems in the Operating Room.

Surg Innov. 2024-2

[4]
Clinical Application of Augmented Reality in Computerized Skull Base Surgery.

Evid Based Complement Alternat Med. 2022-5-11

[5]
Development of a Mixed Reality Platform for Lateral Skull Base Anatomy.

Otol Neurotol. 2018-12

[6]
Augmented reality in neurovascular surgery: feasibility and first uses in the operating room.

Int J Comput Assist Radiol Surg. 2015-11

[7]
Human brain functional MRI and DTI visualization with virtual reality.

Quant Imaging Med Surg. 2011-12

[8]
Image-guided surgery and medical robotics in the cranial area.

Biomed Imaging Interv J. 2007-1

[9]
Inside the beating heart: an in vivo feasibility study on fusing pre- and intra-operative imaging for minimally invasive therapy.

Int J Comput Assist Radiol Surg. 2008-11-15

[10]
Perk Station--Percutaneous surgery training and performance measurement platform.

Comput Med Imaging Graph. 2009-6-17

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

推荐工具

医学文档翻译智能文献检索