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一种新型的与功能磁共振成像兼容的搜索线圈眼动追踪系统。

A novel functional magnetic resonance imaging compatible search-coil eye-tracking system.

作者信息

Oeltermann Axel, Ku Shih-Pi, Logothetis Nikos K

机构信息

Max Planck Institute for Biological Cybernetics, 72076 Tuebingen, Germany.

出版信息

Magn Reson Imaging. 2007 Jul;25(6):913-22. doi: 10.1016/j.mri.2007.02.019. Epub 2007 May 7.

DOI:10.1016/j.mri.2007.02.019
PMID:17482787
Abstract

Measuring eye movements (EMs) using the search-coil eye-tracking technique is superior to video-based infrared methods [Collewijn H, van der Mark F, Jansen TC. Precise recording of human eye movements. Vision Res 1975;15(3):447-50], which suffer from the instability of pupil size, blinking behavior and lower temporal resolution. However, no conventional functional magnetic resonance imaging (fMRI)-compatible search-coil eye tracker exists. The main problems for such a technique are the interaction between the transmitter coils and the magnetic gradients used for imaging as well as the limited amount of space in a scanner. Here we present an approach to overcome these problems and we demonstrate a method to record EMs in an MRI scanner using a search coil. The system described has a spatial resolution of 0.07 degrees (visual angle) and a high temporal resolution (22 kHz). The transmitter coils are integrated into the visual presentation system and the control/analysis unit is portable, which enables us to integrate the eye tracker with an MRI scanner. Our tests demonstrate low noise in the recorded eye traces and scanning with minimal artifact. Furthermore, the induced current in the search coil caused by the RF pulses does not lead to measurable heating. Altogether, this MR-compatible search-coil eye tracker can be used to precisely monitor EMs with high spatial and temporal resolution during fMRI. It can therefore be of great importance for studies requiring accurate fixation of a target, or measurement and study of the subject's oculomotor system.

摘要

使用搜索线圈眼动追踪技术测量眼动(EMs)优于基于视频的红外方法[科勒维恩·H、范德·马克·F、扬森·T·C。人类眼动的精确记录。《视觉研究》1975年;15(3):447 - 50],后者存在瞳孔大小不稳定、眨眼行为以及较低时间分辨率等问题。然而,目前不存在传统的与功能磁共振成像(fMRI)兼容的搜索线圈眼动追踪器。这种技术的主要问题在于发射线圈与用于成像的磁梯度之间的相互作用以及扫描仪内有限的空间量。在此,我们提出一种克服这些问题的方法,并展示一种使用搜索线圈在MRI扫描仪中记录眼动的方法。所描述的系统具有0.07度(视角)的空间分辨率和高时间分辨率(22千赫兹)。发射线圈集成到视觉呈现系统中,并且控制/分析单元是便携式的,这使我们能够将眼动追踪器与MRI扫描仪集成。我们的测试表明记录的眼动轨迹噪声低且扫描伪影最小。此外,由射频脉冲在搜索线圈中感应出的电流不会导致可测量的发热。总之,这种与MR兼容的搜索线圈眼动追踪器可用于在fMRI期间以高空间和时间分辨率精确监测眼动。因此,对于需要精确注视目标或测量和研究受试者眼动系统的研究可能非常重要。

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