Näätänen R, Ilmoniemi R J, Alho K
Dept of Psychology, University of Helsinki, Finland.
Trends Neurosci. 1994 Sep;17(9):389-95. doi: 10.1016/0166-2236(94)90048-5.
Magnetoencephalography provides a new dimension to the functional imaging of the brain. The cerebral magnetic fields recorded noninvasively enable the accurate determination of locations of cerebral activity with an uncompromized time resolution. The first whole-scalp sensor arrays have just recently come into operation, and significant advances are to be expected in both neurophysiological and cognitive studies, as well as in clinical practice. However, although the accuracy of locating isolated sources of brain activity has improved, identification of multiple simultaneous sources can still be a problem. Therefore, attempts are being made to combine magnetoencephalography with other brain-imaging methods to improve spatial localization of multiple sources and, simultaneously, to achieve a more complete characterization of different aspects of brain activity during cognitive processing. Owing to its good time resolution and considerably better spatial accuracy than that provided by EEG, magnetoencephalography holds great promise as a tool for revealing information-processing sequences of the human brain.
脑磁图为大脑功能成像提供了一个新的维度。通过非侵入性记录的脑磁场能够以不受影响的时间分辨率准确确定大脑活动的位置。首批全头皮传感器阵列最近才开始投入使用,预计在神经生理学和认知研究以及临床实践方面都将取得重大进展。然而,尽管定位孤立脑活动源的准确性有所提高,但识别多个同时存在的源仍然可能是个问题。因此,人们正在尝试将脑磁图与其他脑成像方法相结合,以改善多个源的空间定位,同时在认知过程中更全面地描述大脑活动的不同方面。由于其良好的时间分辨率以及比脑电图提供的空间精度高得多,脑磁图作为揭示人类大脑信息处理序列的工具具有巨大的潜力。