Calibration of a vector-MEG helmet system.

A Pasquarelli, M De Melis, L Marzetti, H-P Müller, S N Erné
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Abstract

The MEG system Argos 500, recently installed at the University of Ulm, is designed for clinical application and routine use, to allow investigation of a large number of patients per day. To reach this goal, the system design meets the requirements of reliability, high field sensitivity, minimal set-up overhead before each measurement and an easy-to-handle user interface. The sensor system consists of a 163 vector-magnetometer array oriented and located in a suitable way to cover the whole head of the patient. Four additional triplets are available as references to build software gradiometers. To use this system at a high performance level, it must be properly calibrated, with these goals: to determine the actual geometry of the sensors array, which can deviate from the design specifications, and to determine the actual sensitivity of each sensor. The calibrating source consists of 31 coils placed at the corners of a head-size dodecahedron. Various details of the calibration system and process are presented here.

矢量- meg头盔系统的标定。
最近在乌尔姆大学安装的MEG系统Argos 500是为临床应用和日常使用而设计的,允许每天对大量患者进行调查。为了实现这一目标,系统设计满足可靠性、高现场灵敏度、每次测量前最小的设置开销和易于操作的用户界面的要求。传感器系统由163个矢量磁力计阵列组成,定向并以合适的方式覆盖患者的整个头部。另外四个三元组可作为构建软件梯度计的参考。为了在高性能水平上使用该系统,必须对其进行适当的校准,以实现以下目标:确定传感器阵列的实际几何形状,这可能会偏离设计规范,并确定每个传感器的实际灵敏度。校准源由放置在头部大小的十二面体的角上的31个线圈组成。这里介绍了校准系统和过程的各种细节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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