手术数据科学时代的机器人辅助微创手术

Tamás Haidegger, József Sándor
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引用次数: 0

摘要

随着信息技术的不断发展,机器人技术和数据科学必将在未来20年对侵入性医学产生类似于近几十年来对制造技术的影响。早期的图像引导系统和手术机器人主要用于手术室,因为它们的准确性和可靠性,因为它们允许更快,更安全的干预,最小的组织损伤,特别是针对骨科和神经外科。另一方面,远程操作的达芬奇手术系统带来了真正的全球突破,这是软组织手术的理想选择。达芬奇机器人的成功和主导地位让市场上已有的数十种手术机器人黯然失色。它部分源于机器人辅助微创手术的远程操作概念,其中机器人工具的完全控制始终由人类操作员通过控制台保持。然而,大量数据的可用性带来了新的可能性,例如,术前数据的视图集成,基于手术导航的数据融合以及误差补偿在原型中越来越多地可用。手术决策支持和潜在错误的消除/排除在远程外科应用中也变得越来越重要。在通信过程中处理失真、延迟和其他甚至恶意干扰尝试的适当算法是必不可少的。机器人远程手术的概念起源于美国宇航局,即使在今天,他们也在积极探索尖端技术提供的其他可能性,以使用数据科学方法改进手术系统。在不久的将来,即使是软组织干预也将由自主机器人完成。本文的目的是向读者介绍计算机集成外科这一现代跨学科领域的基本概念,并介绍最重要的机器人和机器人系统。我们概述了不同形式的远程外科手术,并描述了数据驱动干预的概念和复杂性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robot-assisted Minimally Invasive Surgery in the age of surgical data science

With the continuous development of information technology, robotics and data science will certainly have a similar impact on invasive medicine over the next 20 years as it has had on manufacturing technology in the recent decades. Early image-guided systems and surgical robots were employed in the operating room primarily for their accuracy and reliability, as they allowed for faster and safer interventions with minimal tissue damage, targeting especially orthopedics and neurosurgery. On the other hand, a real global breakthrough came with the teleoperated da Vinci Surgical System, ideal for soft tissue procedures. The success and dominance of the da Vinci has dimmed the dozens of other surgical robots already on the market. It partially originated from the teleoperation concept of Robot-Assisted Minimally Invasive Surgery, where the full control of the robotic tools is always maintained by the human operator via the console. Nevertheless, the availability of data at large brings new possibilities, e.g., the in-view integration of preoperative data, data fusion based on surgical navigation, and error compensation have become increasingly available in prototypes. Surgical decision support and the elimination/eviction of potential errors also became increasingly important in telesurgical applications. Appropriate algorithms for handling distortions, delays, and other, even malicious, interference attempts during communication are essential. The concept of robotic telesurgery originates from NASA, and even as of today they are actively exploring the additional possibilities offered by cutting-edge technology to improve surgical systems using data science methods. In the not so distant future, even soft tissue interventions will be performed by autonomous robots. The aim of this article is to present the reader the basic concepts of this modern interdisciplinary field named Computer-Integrated Surgery, and to introduce the most important robots and robotic systems. We provide an overview of the different forms of telesurgery and describe the idea and the complexity of data-driven interventions.

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