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首页> 外文期刊>ORL: Journal for oto-rhino-laryngology and its borderlands >Transoral Robotic Surgery: Image Guidance and Augmented Reality
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Transoral Robotic Surgery: Image Guidance and Augmented Reality

机译:机器机组手术:图像指导和增强现实

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Transoral robotic surgery (TORS) is being used increasingly as an alternative to conventional open procedures, as its minimally invasive approach results in significant benefits for the patient. This includes faster recovery times and better functional outcomes, less postoperative pain and morbidity associated with open access, shorter operative times, and a reduction in the risk of infection. However, the confined working spaces and sensory deficit, due to a lack of haptic sensation, and proximity to critical vasculature and other vitally important anatomical structures bestow significant challenges on the surgeon. Recent advances in the field of surgical image guidance show promise in helping address these issues. This overview considers a number of important recent developments, all of which exploit imaging technologies that, to a lesser or greater extent, are integrated with the surgical robot platform. In its most advanced form, this combination of technologies results in a fusion of visual information such that the operative field is combined with navigational cues and representations of key anatomical structures through augmented reality registration and overlay. In terms of registration accuracy, image guidance as applied to TORS procedures is an exciting proposition, since the regions of interest (e.g., the tongue base, oropharynx) are typically adjacent to and enclosed by rigid anatomy. Clinical indications and overall effectiveness are discussed together with the limitations of the current technologies. Where appropriate, directions for future work are identified.
机译:作为常规开放程序的替代方法,转机机器人手术(TORS)被越来越多地使用,因为其微创的方法导致患者的显着益处。这包括更快的恢复时间和更好的功能结果,与开放接入,较短的手术时间相关的术后疼痛和发病率更高,以及感染风险的降低。然而,由于缺乏触觉感觉和临界脉管系统和其他重要的解剖结构的缺乏触觉感应和感官赤字而受到狭窄的工作空间和感官赤字赋予外科医生的重大挑战。外科图像指导领域的最新进展显示帮助解决这些问题的承诺。这一概述考虑了许多重要的最新发展,所有这些开发者都与外科机器人平台集成在较小或更大程度上。在其最先进的形式中,这种技术的组合导致视觉信息的融合,使得操作场与导航线索和关键解剖结构的表示通过增强现实登记和叠加。在登记精度方面,应用于TORS程序的图像指导是一种激动的命题,因为感兴趣的区域(例如,舌底,oropharynx)通常与刚性解剖结构相邻并包围。临床适应症和整体效率与当前技术的局限性一起讨论。在适当的情况下,确定了未来工作的方向。

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