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多频听觉刺激会扰乱麻醉动物的纺锤波活动。

Multi-frequency auditory stimulation disrupts spindling activity in anesthetized animals.

作者信息

Britvina T, Eggermont J J

机构信息

Department of Physiology and Biophysics, University of Calgary, Calgary, Alberta, Canada.

出版信息

Neuroscience. 2008 Feb 6;151(3):888-900. doi: 10.1016/j.neuroscience.2007.11.028. Epub 2007 Nov 29.

Abstract

It is often implied that during the occurrence of spindle oscillations, thalamocortical neurons do not respond to signals from the outside world. Since recording of sound-evoked activity from cat auditory cortex is common during spindling this implies that sound stimulation changes the spindle-related brain state. Local field potentials and multi-unit activity recorded from cat primary auditory cortex under ketamine anesthesia during successive silence-stimulus-silence conditions were used to investigate the effect of sound on cortical spindle oscillations. Multi-frequency stimulation suppresses spindle waves, as shown by the decrease of spectral power within the spindle frequency range during stimulation as compared with the previous silent period. We show that the percentage suppression is independent of the power of the spindle waves during silence, and that the suppression of spindle power occurs very fast after stimulus onset. The global inter-spindle rhythm was not disturbed during stimulation. Spectrotemporal and correlation analysis revealed that beta waves (15-26 Hz), and to a lesser extent delta waves, were modulated by the same inter-spindle rhythm as spindle oscillations. The suppression of spindle power during stimulation had no effect on the spatial correlation of spindle waves. Firing rates increased under stimulation and spectro-temporal receptive fields could reliably be obtained. The possible mechanism of suppression of spindle waves is discussed and it is suggested that suppression likely occurs through activity of the specific auditory pathway.

摘要

人们常常认为,在纺锤波振荡发生期间,丘脑皮质神经元不会对外界信号做出反应。由于在纺锤波活动期间,记录猫听觉皮层的声音诱发活动很常见,这意味着声音刺激会改变与纺锤波相关的脑状态。在氯胺酮麻醉下,在连续的静息-刺激-静息条件下,从猫初级听觉皮层记录的局部场电位和多单位活动被用于研究声音对皮层纺锤波振荡的影响。多频刺激会抑制纺锤波,与之前的静息期相比,刺激期间纺锤波频率范围内的频谱功率下降就表明了这一点。我们发现,抑制百分比与静息期纺锤波的功率无关,并且在刺激开始后,纺锤波功率的抑制很快就会发生。刺激期间,整体纺锤波间节律并未受到干扰。频谱时间和相关性分析表明,β波(15-26赫兹)以及程度较轻的δ波,与纺锤波振荡受相同的纺锤波间节律调制。刺激期间纺锤波功率的抑制对纺锤波的空间相关性没有影响。刺激下放电率增加,并且可以可靠地获得频谱时间感受野。文中讨论了纺锤波抑制的可能机制,并提出抑制可能是通过特定听觉通路的活动发生的。

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