Bilecen D, Scheffler K, Schmid N, Tschopp K, Seelig J
MR-Center and Biocenter, University of Basel, Department of Biophysical Chemistry, Switzerland.
Hear Res. 1998 Dec;126(1-2):19-27. doi: 10.1016/s0378-5955(98)00139-7.
Functional magnetic resonance imaging is a noninvasive and nonradioactive method for the detection of focal brain activity. In the present study the auditory cortex was investigated in nine normal subjects who were binaurally stimulated using pulsed sine tones of 500 Hz and 4000 Hz. The BOLD (blood oxygenation level dependent) signal change coincided with the stimulation paradigm and was detected in the plane of the superior temporal gyrus. The comparison of the spatial distribution of activated areas revealed a different behavior for the two frequencies. The present findings underline the existence of a frequency specific organization in the medio-lateral, fronto-occipital and cranio-caudal extension in both hemispheres of the auditory cortex in human. The activated areas for the high tone were found more frontally and medially orientated than the low tone stimulated areas. Furthermore, a slight cranio-caudal shift was observed for the higher frequency, more pronounced in the right than in the left temporal lobe. Finally, for most of the subjects investigated the BOLD activation area of the 500 Hz sine tone was larger than that of the 4000 Hz stimulation. Both frequencies showed a lateralization of signal response to the left temporal lobe.
功能磁共振成像是一种用于检测局部脑活动的非侵入性且无放射性的方法。在本研究中,对九名正常受试者的听觉皮层进行了研究,这些受试者通过500赫兹和4000赫兹的脉冲正弦波进行双耳刺激。血氧水平依赖(BOLD)信号变化与刺激模式一致,并在上颞回平面被检测到。对激活区域空间分布的比较揭示了两种频率的不同表现。本研究结果强调了人类听觉皮层两半球在中-外侧、额-枕和颅-尾延伸方向上存在频率特异性组织。高频刺激的激活区域比低频刺激区域更靠前且更偏向内侧。此外,观察到高频刺激有轻微的颅-尾移位,在右侧颞叶比左侧颞叶更明显。最后,对于大多数被研究的受试者,500赫兹正弦波的BOLD激活区域大于4000赫兹刺激的激活区域。两种频率均显示出对左侧颞叶的信号反应偏侧化。