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使用三维激光扫描仪进行 EEG-MRI 配准和传感器标记。

EEG-MRI co-registration and sensor labeling using a 3D laser scanner.

机构信息

Centre de Recherche en Automatique de Nancy, Nancy-Université, Centre National de la Recherche Scientifique, Vandoeuvre, France.

出版信息

Ann Biomed Eng. 2011 Mar;39(3):983-95. doi: 10.1007/s10439-010-0230-0. Epub 2010 Dec 8.

Abstract

This paper deals with the co-registration of an MRI scan with EEG sensors. We set out to evaluate the effectiveness of a 3D handheld laser scanner, a device that is not widely used for co-registration, applying a semi-automatic procedure that also labels EEG sensors. The scanner acquired the sensors' positions and the face shape, and the scalp mesh was obtained from the MRI scan. A pre-alignment step, using the position of three fiducial landmarks, provided an initial value for co-registration, and the sensors were automatically labeled. Co-registration was then performed using an iterative closest point algorithm applied to the face shape. The procedure was conducted on five subjects with two scans of EEG sensors and one MRI scan each. The mean time for the digitization of the 64 sensors and three landmarks was 53 s. The average scanning time for the face shape was 2 min 6 s for an average number of 5,263 points. The mean residual error of the sensors co-registration was 2.11 mm. These results suggest that the laser scanner associated with an efficient co-registration and sensor labeling algorithm is sufficiently accurate, fast and user-friendly for longitudinal and retrospective brain sources imaging studies.

摘要

本文探讨了将 MRI 扫描与 EEG 传感器进行配准的问题。我们旨在评估一种手持式三维激光扫描仪的有效性,该扫描仪在配准中并未广泛使用,我们应用了一种半自动的程序,同时对 EEG 传感器进行标记。扫描仪获取了传感器的位置和面部形状,头皮网格则从 MRI 扫描中获得。使用三个基准标记的位置进行预配准步骤,为配准提供了初始值,并自动标记了传感器。然后使用迭代最近点算法对面部形状进行配准。该过程在五个对象上进行,每个对象进行两次 EEG 传感器扫描和一次 MRI 扫描。对 64 个传感器和三个基准标记进行数字化的平均时间为 53 秒。对面部形状的平均扫描时间为 2 分 6 秒,平均点数为 5,263 个。传感器配准的平均残余误差为 2.11 毫米。这些结果表明,与高效的配准和传感器标记算法相结合的激光扫描仪在纵向和回顾性脑源成像研究中足够准确、快速且易于使用。

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