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Design of a low-cost tactile robotic sleeve for autonomous endoscopes and catheters

机译:用于自主内窥镜和导管的低成本触觉机器人套管的设计

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摘要

Recent developments in medical robotics have been significant, supporting the minimally invasive operation requirements, such as smaller devices and more feedback available to surgeons. Nevertheless, the tactile feedback from a catheter or endoscopic type robotic device has been restricted mostly on the tip of the device and was not aimed to support the autonomous movement of the medical device during operation. In this work, we design a robotic sheath/sleeve with a novel and more comprehensive approach, which can function for whole body or segment-based feedback control as well as diagnostic purposes. The robotic sleeve has several types of piezo-resistive pressure and extension sensors, which are embedded at several latitudes and depths of the silicone substrate. The sleeve takes the human skin as a biological model for its structure. It has a better tactile sensation of the inner tissues in the torturous narrow channels such as cardiovascular or endoluminal tracts in human body and thus can be used to diagnose abnormalities. In addition to this capability, using the stretch sensors distributed alongside its body, the robotic sheath/sleeve can perceive the ego-motion of the robotic backbone of the catheter and can act as a position feedback device. Because of the silicone substrate, the sleeve contributes toward safety of the medical device passively by providing a compliant interface. As an active safety measure, the robotic sheath can sense blood clots or sudden turns inside a channel and by modifying the local trajectory and can prevent embolisms or tissue rupture. In the future, advanced manufacturing techniques will increase the capabilities of the tactile robotic sleeve.
机译:医学机器人的最新进程一直很有意义,支持微创的操作要求,例如较小的设备和更多的反馈可供外科医生。然而,来自导管或内窥镜型机器人器件的触觉反馈主要受到限制在装置的尖端上,并且旨在在操作期间支持医疗装置的自主运动。在这项工作中,我们设计了一种具有新颖且更全面的方法的机器人护套/套筒,可以针对整个身体或基于分段的反馈控制以及诊断目的。机器人套管具有几种类型的压电电阻和延伸传感器,其嵌入有硅基底的几个纬度和深度。套筒作为其结构的生物学模型。它具有更好的曲折窄道内组织的触觉感觉,例如人体中的心血管或内橄榄植物,因此可用于诊断异常。除了这种能力之外,使用与其身体一起分布的拉伸传感器,机器人护套/套筒可以感知导管的机器人骨架的自我运动,并且可以用作位置反馈装置。由于硅胶基板,套筒通过提供柔顺的界面被动地朝向医疗装置的安全性有助于。作为主动安全措施,机器人鞘可以感测血液凝块或突然转弯,并通过修改局部轨迹,可以防止栓塞或组织破裂。未来,先进的制造技术将增加触觉机器人套筒的能力。

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