Robotic Assistance for Intraocular Microsurgery: Challenges and Perspectives

IF 23.2 1区 计算机科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Iulian I. Iordachita;Marc D. De Smet;Gerrit Naus;Mamoru Mitsuishi;Cameron N. Riviere
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引用次数: 10

Abstract

Intraocular surgery, one of the most challenging discipline of microsurgery, requires sensory and motor skills at the limits of human physiological capabilities combined with tremendously difficult requirements for accuracy and steadiness. Nowadays, robotics combined with advanced imaging has opened conspicuous and significant directions in advancing the field of intraocular microsurgery. Having patient treatment with greater safety and efficiency as the final goal, similar to other medical applications, robotics has a real potential to fundamentally change microsurgery by combining human strengths with computer and sensor-based technology in an information-driven environment. Still in its early stages, robotic assistance for intraocular microsurgery has been accepted with precaution in the operating room and successfully tested in a limited number of clinical trials. However, due to its demonstrated capabilities including hand tremor reduction, haptic feedback, steadiness, enhanced dexterity, micrometer-scale accuracy, and others, microsurgery robotics has evolved as a very promising trend in advancing retinal surgery. This article will analyze the advances in retinal robotic microsurgery, its current drawbacks and limitations, as well as the possible new directions to expand retinal microsurgery to techniques currently beyond human boundaries or infeasible without robotics.

Abstract Image

Abstract Image

眼内显微外科的机器人辅助:挑战与展望
眼内手术是显微外科中最具挑战性的学科之一,它需要人类生理能力极限的感觉和运动技能,同时对准确性和稳定性提出了极其困难的要求。如今,机器人技术与先进的成像技术相结合,为眼内显微外科的发展开辟了显著而重要的方向。与其他医疗应用一样,以更安全、更高效的患者治疗为最终目标,机器人技术在信息驱动的环境中将人类力量与基于计算机和传感器的技术相结合,具有从根本上改变显微外科手术的真正潜力。眼内显微外科手术的机器人辅助仍处于早期阶段,在手术室中已被谨慎接受,并在数量有限的临床试验中成功测试。然而,由于其已证明的能力,包括减少手部震颤、触觉反馈、稳定性、增强的灵活性、微米级精度等,显微外科机器人已成为推进视网膜手术的一个非常有前途的趋势。本文将分析视网膜机器人显微外科手术的进展、目前的缺点和局限性,以及将视网膜显微外科手术扩展到目前超出人类界限或在没有机器人的情况下不可行的技术的可能新方向。
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
Proceedings of the IEEE
Proceedings of the IEEE 工程技术-工程:电子与电气
CiteScore
46.40
自引率
1.00%
发文量
160
审稿时长
3-8 weeks
期刊介绍: Proceedings of the IEEE is the leading journal to provide in-depth review, survey, and tutorial coverage of the technical developments in electronics, electrical and computer engineering, and computer science. Consistently ranked as one of the top journals by Impact Factor, Article Influence Score and more, the journal serves as a trusted resource for engineers around the world.
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