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Resonance phenomena in the human auditory cortex: individual resonance frequencies of the cerebral cortex determine electrophysiological responses.

机译:人类听觉皮层的共振现象:大脑皮层的各个共振频率决定了电生理反应。

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摘要

The brain can be considered a dynamical system which is able to oscillate at multiple frequencies. To study the brain's preferred oscillation frequencies, the resonance frequencies in the frequency response of the system can be assessed by stimulating the brain at various stimulation frequencies. Furthermore, the event-related potential (ERP) can be considered as the brain's impulse response. For linear dynamical systems, the frequency response should be equivalent to the frequency transform of the impulse response. The present study test whether this fundamental relation is also true for the frequency transform of the ERP and the frequency response of the brain. Results show that the spectral characteristics of both impulse and frequency response in the gamma frequency range are significantly correlated. Thus, we speculate that the resonance frequencies determine the frequency spectrum of the impulse response. This, in turn, implies that both measures are determined by the same, individually specific, neuronal generator mechanisms.
机译:可以认为大脑是一个能够以多种频率振动的动力系统。为了研究大脑的首选振荡频率,可以通过以各种刺激频率刺激大脑来评估系统频率响应中的共振频率。此外,事件相关电位(ERP)可以被认为是大脑的冲动反应。对于线性动力系统,频率响应应等效于脉冲响应的频率变换。本研究测试该基本关系是否也适用于ERP的频率转换和大脑的频率响应。结果表明,在伽马频率范围内,脉冲和频率响应的频谱特性均显着相关。因此,我们推测共振频率决定了脉冲响应的频谱。反过来,这意味着这两种措施均由相同的,特定于个体的神经元生成器机制确定。

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