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神经磁学仪器及自发脑活动研究的进展

Advances in neuromagnetic instrumentation and studies of spontaneous brain activity.

作者信息

Williamson S J, Kaufman L

机构信息

Department of Physics, New York University, NY 10003.

出版信息

Brain Topogr. 1989 Fall-Winter;2(1-2):129-39. doi: 10.1007/BF01128850.

Abstract

Rapid progress in neuromagnetic technology has been achieved during the past two years with the introduction of a method for accurately indicating magnetic sensor locations with respect to a head-based coordinate system and the advent of refrigerator-cooled sensors and larger arrays of sensors. These make possible the real-time monitoring of evoked activity at several widely separated locations over the scalp, thus revealing sequential activity in, e.g., sensory-motor tasks. Arrays of magnetic sensors also provide sufficient information to locate the sources of spontaneous activity, such as alpha rhythm. The locations of discrete generators (alphons) of individual alpha spindles is now possible with an array of 14 sensors. Mapping techniques with a 5-sensor system have revealed preferential suppression of alpha activity within certain regions of the occipital lobe to tasks involving mental comparisons of abstract figures. These studies provide evidence that the machinery of visual cortex is involved in mental imagery.

摘要

在过去两年中,随着一种用于精确指示磁传感器相对于基于头部的坐标系位置的方法的引入,以及制冷传感器和更大规模传感器阵列的出现,神经磁技术取得了快速进展。这些使得实时监测头皮上多个广泛分离位置的诱发活动成为可能,从而揭示例如感觉运动任务中的顺序活动。磁传感器阵列还提供了足够的信息来定位自发活动的来源,如阿尔法节律。现在,使用14个传感器的阵列可以确定单个阿尔法纺锤波的离散发生器(阿尔法点)的位置。采用5传感器系统的映射技术已经揭示,在枕叶的某些区域内,阿尔法活动对涉及抽象图形心理比较的任务有优先抑制作用。这些研究提供了证据,表明视觉皮层机制参与了心理意象。

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