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Design, simulation and evaluation of uniform magnetic field systems for head-free eye movement recordings with scleral search coils

机译:具有巩膜搜索线圈的无头眼动记录的统一磁场系统的设计,仿真和评估

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The precise measurement of eye movements is important for investigating vision, oculomotor control and vestibular function. The magnetic scleral search coil technique is one of the most precise measurement techniques for recording eye movements with very high spatial (≈ 1 arcmin) and temporal (>kHz) resolution. The technique is based on measuring voltage induced in a search coil through a large magnetic field. This search coil is embedded in a contact lens worn by a human subject. The measured voltage is in direct relationship to the orientation of the eye in space. This requires a magnetic field with a high homogeneity in the center, since otherwise the field inhomogeneity would give the false impression of a rotation of the eye due to a translational movement of the head. To circumvent this problem, a bite bar typically restricts head movement to a minimum. However, the need often emerges to precisely record eye movements under natural viewing conditions. To this end, one needs a uniform magnetic field that is uniform over a large area. In this paper, we present the numerical and finite element simulations of the magnetic flux density of different coil geometries that could be used for search coil recordings. Based on the results, we built a 2.2 × 2.2 × 2.2 meter coil frame with a set of 3 × 4 coils to generate a 3D magnetic field and compared the measured flux density with our simulation results. In agreement with simulation results, the system yields a highly uniform field enabling high-resolution recordings of eye movements.
机译:眼睛运动的精确测量对于研究视觉,动眼控制和前庭功能非常重要。磁巩膜搜索线圈技术是用于以非常高的空间(≈1 arcmin)和时间(> kHz)分辨率记录眼动的最精确的测量技术之一。该技术基于测量通过大磁场在搜索线圈中感应的电压。该搜索线圈嵌入在人类对象佩戴的隐形眼镜中。测得的电压与眼睛在空间中的方向直接相关。这需要在中心具有高均匀性的磁场,因为否则,由于头部的平移运动,磁场的不均匀性会给眼睛的旋转带来错误的印象。为了避免这个问题,咬合杆通常将头部的移动限制到最小。但是,经常需要精确记录自然观看条件下的眼睛运动。为此,需要一种在大面积上均匀的均匀磁场。在本文中,我们介绍了可用于搜索线圈记录的不同线圈几何形状的磁通密度的数值和有限元模拟。根据结果​​,我们构建了一个2.2×2.2×2.2米的线圈架,其中包含一组3×4线圈以产生3D磁场,并将测得的磁通密度与我们的仿真结果进行了比较。与仿真结果一致,该系统产生了高度均匀的视场,可以对眼动进行高分辨率记录。

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