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用于模拟有机组织触感的硬度变化触觉显示器。

Hardness changing tactile displays for simulating the feel of organic tissues.

作者信息

Brown Joshua, Bello Fernando

机构信息

Simulation and Modelling in Medicine and Surgery (SiMMS) Lab, Department of Surgery and Cancer, Imperial College London, London, United Kingdom.

出版信息

Front Robot AI. 2024 Aug 20;11:1404543. doi: 10.3389/frobt.2024.1404543. eCollection 2024.

Abstract

Physical interaction with patients, for example conducted as part of a diagnostic examination or surgical procedure, provides clinicians with a wealth of information about their condition. Simulating this interaction is of great interest to researchers in both haptics and medical education, and the development of softness changing tactile interfaces is important in recreating the feel of different soft tissues. This paper presents designs for a variety of novel electromechanical and electromagnetic mechanisms for controlling particle jamming-based, hardness changing tactile displays, intended to allow medical trainees to experience these physical interactions in a range of simulation settings such as clinical skills teaching laboratories. Each design is then subjected to a battery of mechanical tests to evaluate its effectiveness compared to the state of the art, as well as their suitability for simulating the physical hardness of different types of soft tissues, previously characterised in established literature. These results demonstrate that all of the technologies presented are able to exhibit a measurable hardness change, with Shore hardness values between 3A and 57A achieved by the most effective constriction-based device. The electromechanical devices based on constriction and compression, and the state-of-the-art pneumatic device, were able to achieve hardness changes within a range that is useful for replicating the softness of organic tissue. The electromechanical and electromagnetic devices were also found to effect their full range of hardness change in less than a second, compared to several seconds for the state-of-the-art. These results show that the performance of softness changing tactile displays can be improved with the electromechanical actuation techniques proposed in this paper, and that such displays are able to replicate the physical characteristics of soft tissues and may therefore be of benefit in medical training and simulation scenarios.

摘要

与患者的身体互动,例如作为诊断检查或外科手术的一部分进行的互动,为临床医生提供了有关患者病情的丰富信息。模拟这种互动对触觉和医学教育领域的研究人员都极具吸引力,而开发能够改变柔软度的触觉界面对于重现不同软组织的触感至关重要。本文介绍了多种新颖的机电和电磁机制的设计,用于控制基于颗粒堵塞的、可改变硬度的触觉显示器,旨在让医学实习生在一系列模拟环境中体验这些身体互动,如临床技能教学实验室。然后,对每个设计进行一系列机械测试,以评估其与现有技术相比的有效性,以及它们模拟不同类型软组织物理硬度的适用性,这些软组织的特性在已发表的文献中已有描述。这些结果表明,所展示的所有技术都能够呈现出可测量的硬度变化,最有效的基于收缩的设备实现的肖氏硬度值在3A至57A之间。基于收缩和压缩的机电设备以及现有技术中的气动设备,能够在一个对复制有机组织柔软度有用的范围内实现硬度变化。还发现,与现有技术需要几秒相比,机电和电磁设备能够在不到一秒的时间内实现其全部硬度变化范围。这些结果表明,本文提出的机电驱动技术可以提高可改变柔软度的触觉显示器的性能,并且这种显示器能够复制软组织的物理特性,因此可能在医学培训和模拟场景中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f8ad/11368671/2fb75020518d/frobt-11-1404543-g001.jpg

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