首页> 外文会议>2017 International Conference on Rehabilitation Robotics >A magnetic compatible supernumerary robotic finger for functional magnetic resonance imaging (fMRI) acquisitions: Device description and preliminary results
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A magnetic compatible supernumerary robotic finger for functional magnetic resonance imaging (fMRI) acquisitions: Device description and preliminary results

机译:功能性磁共振成像(fMRI)采集的磁性兼容数字机器人手指:设备描述和初步结果

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The Supernumerary robotic limbs are a recently introduced class of wearable robots that, differently from traditional prostheses and exoskeletons, aim at adding extra effectors (i.e., arms, legs, or fingers) to the human user, rather than substituting or enhancing the natural ones. However, it is still undefined whether the use of supernumerary robotic limbs could specifically lead to neural modifications in brain dynamics. The illusion of owning the part of body has been already proven in many experimental observations, such as those relying on multisensory integration (e.g., rubber hand illusion), prosthesis and even on virtual reality. In this paper we present a description of a novel magnetic compatible supernumerary robotic finger together with preliminary observations from two functional magnetic resonance imaging (fMRI) experiments, in which brain activity was measured before and after a period of training with the robotic device, and during the use of the novel MRI-compatible version of the supernumerary robotic finger. Results showed that the usage of the MR-compatible robotic finger is safe and does not produce artifacts on MRI images. Moreover, the training with the supernumerary robotic finger recruits a network of motor-related cortical regions (i.e. primary and supplementary motor areas), hence the same motor network of a fully physiological voluntary motor gestures.
机译:超级机器人肢体是最近引入的一类可穿戴机器人,与传统的假肢和外骨骼不同,其目的是为人类使用者增加额外的效应器(即手臂,腿或手指),而不是代替或增强自然的。但是,尚不清楚使用多余的机器人肢体是否会导致大脑动力学的神经改变。拥有身体部位的错觉已在许多实验观察中得到证实,例如那些依靠多感觉整合(例如橡胶手错觉),假肢甚至虚拟现实的观察。在本文中,我们介绍了一种新型的磁性兼容数字机器人手指,以及来自两个功能性磁共振成像(fMRI)实验的初步观察结果,其中在使用该机器人设备训练一段时间之前和之后以及在测量过程中测量了大脑活动使用新型MRI兼容版本的多指机器人手指。结果表明,使用兼容MR的机械手是安全的,并且不会在MRI图像上产生伪影。而且,用多余的机器人手指进行训练会招募运动相关的皮层区域(即主要和补充运动区域)的网络,因此是完全生理上自愿的运动手势的相同运动网络。

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