Yamasaki Takao, Goto Yoshinobu, Taniwaki Takayuki, Kinukawa Naoko, Kira Jun-ichi, Tobimatsu Shozo
Department of Clinical Neurophysiology, Neurological Institute, Graduate School of Medical Sciences, Kyushu University, Fukuoka, Japan.
Clin Neurophysiol. 2005 Feb;116(2):393-400. doi: 10.1016/j.clinph.2004.08.005.
To investigate rapid temporal processing in the auditory cortex by using auditory 40 Hz steady-state responses (SSRs).
A 40 Hz tone-burst at 500 Hz spectral frequency was presented monaurally to record SSRs in 10 normal subjects. The recording electrodes were placed over C1, C2, C3, C4, C5, C6, T3, T4, Fz, Cz and Pz, referring to an electrode at the 7th cervical spinous process. For comparison, unstimulated SSRs were recorded. A total of 200 responses of 1s epoch were averaged and subjected to discrete fast Fourier transforms to yield the amplitude and phase of the 40 Hz component. The coherence (Coh) values of the 40 Hz component between homologous electrodes were also calculated.
At the temporal electrodes contralateral to the stimulated ear, the amplitude was significantly larger and its phase was significantly smaller than those of the ipsilateral side. The interhemispheric Coh between T3 and T4 in response to right ear stimulation was significantly greater than those of left ear stimulation or the unstimulated condition.
Our results suggest that 40 Hz auditory information is predominantly processed in the left auditory cortex, interacting with the right hemisphere. This finding is consistent with the fact that the left auditory cortex plays an important role in rapid temporal processing.
Auditory 40 Hz SSRs with Coh analysis are useful for investigating the left hemisphere specialization for rapid temporal processing.
通过使用听觉40赫兹稳态反应(SSRs)来研究听觉皮层中的快速时间处理。
以500赫兹频谱频率的40赫兹短音对10名正常受试者单耳进行刺激以记录SSRs。记录电极置于C1、C2、C3、C4、C5、C6、T3、T4、Fz、Cz和Pz上方,参考第7颈椎棘突处的电极。作为对照,记录未受刺激时的SSRs。总共对1秒时段的200次反应进行平均,并进行离散快速傅里叶变换以得出40赫兹成分的幅度和相位。还计算了同源电极之间40赫兹成分的相干性(Coh)值。
在受刺激耳对侧的颞电极处,其幅度明显大于同侧,且相位明显小于同侧。右耳刺激时T3和T4之间的半球间相干性明显大于左耳刺激或未受刺激状态。
我们的结果表明,40赫兹听觉信息主要在左侧听觉皮层进行处理,并与右半球相互作用。这一发现与左侧听觉皮层在快速时间处理中起重要作用这一事实相一致。
具有相干性分析的听觉40赫兹SSRs有助于研究左半球在快速时间处理方面的特化。