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用于神经学和耳神经学研究中动眼神经评估的基于磁阻的可穿戴眼动追踪系统的开发——体内初步测试

Development of a Magnetoresistive-Based Wearable Eye-Tracking System for Oculomotor Assessment in Neurological and Otoneurological Research-Preliminary In Vivo Tests.

作者信息

Donniacuo Aniello, Viberti Francesca, Carucci Mario, Biancalana Valerio, Bellizzi Lorenzo, Mandalà Marco

机构信息

Department of Medicine, Surgery and Neuroscience, University of Siena, U.O.C. Otorinolaringoiatria, Viale Bracci 16, 53100 Siena, Italy.

Department of Physical Sciences, Earth and Environment, University of Siena, Via Roma 56, 53100 Siena, Italy.

出版信息

Brain Sci. 2023 Oct 10;13(10):1439. doi: 10.3390/brainsci13101439.

Abstract

Over the past 20 years, several eye-tracking technologies have been developed. This article aims to present a new type of eye tracker capable of producing detailed information on eye and head movements using an array of magnetoresistive detectors fixed on the patient's head and a small magnet inserted into a contact lens, adapted to the curvature of the cornea of the subject. The software used for data analysis can combine or compare eye and head movements and can represent them as 2D or 3D images. Preliminary data involve an initial patient who was asked to perform several tasks to establish the accuracy, reliability, and tolerance of the magnetic eye tracker and software. The tasks included assessment of saccadic eye movements and pursuit, "drawing" alphabetic shapes or letters, and reading. Finally, a Head Impulse Test (HIT) was performed to estimate the VOR gain, comparing the standard deviation established via vHIT with that established via this magnetic eye tracker (mHIT). This prototypical device is minimally invasive, lightweight, relatively cheap, and tolerable, with a high degree of reliability and precision. All these characteristics could lead to the future use of the magnetic eye tracker in neurological and otoneurological fields.

摘要

在过去20年里,已经开发出了几种眼动追踪技术。本文旨在介绍一种新型眼动仪,它能够通过固定在患者头部的一系列磁阻探测器以及一枚插入隐形眼镜(该隐形眼镜贴合受试者角膜曲率)中的小磁体,生成有关眼睛和头部运动的详细信息。用于数据分析的软件可以合并或比较眼睛和头部运动,并能将它们呈现为二维或三维图像。初步数据来自一名初始患者,该患者被要求执行多项任务,以确定磁眼动仪和软件的准确性、可靠性及耐受性。这些任务包括评估眼球的扫视运动和跟踪、“绘制”字母形状或字母以及阅读。最后,进行了一次头部脉冲试验(HIT)以估计前庭眼反射增益,将通过视频头脉冲试验(vHIT)确定的标准差与通过这种磁眼动仪(mHIT)确定的标准差进行比较。这种原型设备微创、轻便、相对便宜且耐受性良好,具有高度的可靠性和精度。所有这些特性可能会使磁眼动仪在神经学和耳神经学领域得到未来应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad70/10605460/545eab77f6f7/brainsci-13-01439-g001.jpg

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