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自由活动的人眼的三维磁共振成像。

3-Dimensional magnetic resonance imaging of the freely moving human eye.

机构信息

The Laboratory for Investigative Neurophysiology (The LINE), Department of Radiology, University Hospital Center and University of Lausanne, Lausanne, Switzerland; Department of Ophthalmology, University of Lausanne, Jules Gonin Eye Hospital, Fondation Asile des aveugles, Lausanne, Switzerland.

Department of Radiology, University Hospital Center and University of Lausanne, Lausanne, Switzerland.

出版信息

Prog Neurobiol. 2020 Nov;194:101885. doi: 10.1016/j.pneurobio.2020.101885. Epub 2020 Jul 9.

Abstract

Eye motion is a major confound for magnetic resonance imaging (MRI) in neuroscience or ophthalmology. Currently, solutions toward eye stabilisation include participants fixating or administration of paralytics/anaesthetics. We developed a novel MRI protocol for acquiring 3-dimensional images while the eye freely moves. Eye motion serves as the basis for image reconstruction, rather than an impediment. We fully reconstruct videos of the moving eye and head. We quantitatively validate data quality with millimetre resolution in two ways for individual participants. First, eye position based on reconstructed images correlated with simultaneous eye-tracking. Second, the reconstructed images preserve anatomical properties; the eye's axial length measured from MRI images matched that obtained with ocular biometry. The technique operates on a standard clinical setup, without necessitating specialized hardware, facilitating wide deployment. In clinical practice, we anticipate that this may help reduce burdens on both patients and infrastructure, by integrating multiple varieties of assessments into a single comprehensive session. More generally, our protocol is a harbinger for removing the necessity of fixation, thereby opening new opportunities for ethologically-valid, naturalistic paradigms, the inclusion of populations typically unable to stably fixate, and increased translational research such as in awake animals whose eye movements constitute an accessible behavioural readout.

摘要

眼球运动是神经科学或眼科学中磁共振成像(MRI)的一个主要混杂因素。目前,针对眼球稳定的解决方案包括参与者注视或使用麻痹剂/麻醉剂。我们开发了一种新的 MRI 协议,可在眼球自由运动的情况下获取三维图像。眼球运动是图像重建的基础,而不是障碍。我们可以完整重建眼球和头部的运动视频。我们通过两种方式针对个体参与者以毫米分辨率定量验证数据质量。首先,基于重建图像的眼球位置与同时进行的眼动追踪相关。其次,重建图像保留了解剖学特性;从 MRI 图像测量的眼球轴向长度与眼生物测量法获得的结果相匹配。该技术在标准临床设置上运行,不需要专门的硬件,便于广泛部署。在临床实践中,我们预计这可能有助于减轻患者和基础设施的负担,将多种评估整合到一个单一的综合评估中。更广泛地说,我们的方案预示着可以去除固定的必要性,从而为行为学上有效的、自然主义的范式开辟新的机会,包括通常无法稳定注视的人群,并增加转化研究,例如在眼球运动可作为可访问行为读数的清醒动物中。

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