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Magnetic localization of neuronal activity in the human brain.

机译:人脑中神经元活动的磁性定位。

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摘要

The performance of a cryogenic system that monitors the extracranial magnetic field simultaneously at 14 positions over the scalp has been evaluated to determine the accuracy with which neuronal activity can be located within the human brain. Initially, measurements were implemented on two model systems, a lucite sphere filled with saline and a model skull. With a magnetic field strength similar to that of a human brain, the measurement and analysis procedures demonstrated a position accuracy better than 3 mm, for a current dipole 3 cm beneath the surface. Subsequently, measurements of the magnetic field pattern appearing 100 ms after the onset of an auditory tone-burst stimulus were obtained in three human subjects. The location of the current dipole representing intracellular ionic current in active neurons of the brain was determined, with 3-mm accuracy, to be within the cortex forming the floor of the Sylvian fissure of the individual subjects, corresponding closely to the Heschl gyrus as determined from magnetic resonance images. With the sensors placed at appropriate positions, the locations of neuronal sources for different tone frequencies could be obtained without moving the recording instrument. Adaptation of activity in human auditory cortex was shown to reveal long-term features with a paradigm that compared response amplitudes for three tones randomly presented.
机译:已经评估了同时监视头皮上14个位置的颅外磁场的低温系统的性能,以确定神经元活动可在人脑内定位的准确性。最初,测量是在两个模型系统上进行的,一个装有盐水的萤石球和一个模型头骨。在与人脑相似的磁场强度下,对于表面以下3 cm的电流偶极子,测量和分析程序证明其位置精度优于3 mm。随后,在三名人类受试者中获得了听觉声调-突发刺激发作后100ms出现的磁场模式的测量值。确定了代表大脑活动神经元中细胞内离子电流的电流偶极子的位置,精确度为3毫米,位于形成个体受试者西尔维夫裂缝底部的皮层之内,与所确定的Heschl回旋紧密对应从磁共振图像。将传感器放置在适当的位置,无需移动记录仪器即可获得不同音调频率的神经源的位置。人类听觉皮层活动的适应性显示出长期的特征,其范式比较了随机呈现的三个音调的响应幅度。

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