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触觉反馈在机器人辅助视网膜显微手术系统中的作用:一项系统综述。

The Role of Haptic Feedback in Robotic-Assisted Retinal Microsurgery Systems: A Systematic Review.

作者信息

Griffin Julia A, Zhu Weihang, Nam Chang S

出版信息

IEEE Trans Haptics. 2017 Jan-Mar;10(1):94-105. doi: 10.1109/TOH.2016.2598341.

Abstract

Retinal microsurgery is one of the most technically difficult surgeries since it is performed at the threshold of human capability. If certain retinal conditions are left untreated, they can lead to severe damage, including irreversible blindness. Thus, techniques for reliable retinal microsurgery operations are critical. Recent research shows promise for improving surgical safety by implementing various types of sensory input and output. Sensory information is used to inform the surgeon about the environment inside the eye in real time. This review examines literature that discusses human factors and ergonomics (HFE) of sensory inputs and outputs of retinal microsurgery instrumentation with a focus on force and haptic feedback. Thirty-four studies were reviewed on the following topics: (1) variation between different input sensory devices and their performance, (2) variation between alternative output sensory devices and their performance, and (3) variation between alternative output sensory devices and their user satisfaction. This review finds that the implementation of HFE is important for the consideration of retinal microsurgery devices, but it is largely missing from current research. The addition of direct comparisons between devices, measures of user acceptance, usability evaluations, and greater realism in testing would help advance the use of haptic sensory feedback for retinal microsurgery instruments.

摘要

视网膜显微手术是技术难度最高的手术之一,因为它是在人类能力的极限下进行的。如果某些视网膜疾病得不到治疗,可能会导致严重损害,包括不可逆转的失明。因此,可靠的视网膜显微手术技术至关重要。最近的研究表明,通过实施各种类型的感官输入和输出,有望提高手术安全性。感官信息用于实时向外科医生告知眼内环境。本综述考察了讨论视网膜显微手术器械感官输入和输出的人为因素和人体工程学(HFE)的文献,重点关注力和触觉反馈。对34项研究进行了综述,主题如下:(1)不同输入感官设备之间的差异及其性能,(2)替代输出感官设备之间的差异及其性能,以及(3)替代输出感官设备之间的差异及其用户满意度。本综述发现,实施HFE对于视网膜显微手术设备的考量很重要,但目前的研究在很大程度上缺失这方面内容。增加设备之间的直接比较、用户接受度的测量、可用性评估以及测试中更高的真实度,将有助于推动触觉感官反馈在视网膜显微手术器械中的应用。

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