...
首页> 外文期刊>The Journal of Physiology >Correlated variations in EEG pattern and visual responsiveness of cat lateral geniculate relay cells.
【24h】

Correlated variations in EEG pattern and visual responsiveness of cat lateral geniculate relay cells.

机译:猫外侧膝状中继细胞的脑电图模式和视觉反应性的相关变化。

获取原文
获取原文并翻译 | 示例
           

摘要

1. Simultaneous recordings of the EEG and the visual activity of cat dorsal lateral geniculate nucleus (dLGN) relay cells were analysed for covariance. Sliding time-window analyses were performed in parallel for the EEG power spectrum and single unit visual activity. The EEG power ratio (EEG-PR) of low (1-8 Hz) to high (20-40 Hz) frequencies was chosen to achieve a quantitative measure of the EEG which could be compared with the spike rate of a dLGN unit at any time. A high EEG-PR value indicates a synchronized EEG dominated by low frequencies (delta waves and sleep spindles), a low value indicates a less synchronized EEG. 2. In the anaesthetized animal, two different underlying patterns of activity in the EEG-PR were found: slow gradual changes (slow gradations) and oscillatory changes. In many cases both were accompanied by correlated variations in dLGN spike rate, either for overall activity or for burst firing. 3. The slow gradations appear for long time periods of up to 200 s and, in most cases (76.3 %), show a negative correlation between EEG-PR and overall spike rate, but predominantly a positive correlation for burst firing (85.1 %). 4. The oscillatory changes, which have not previously been reported, appear as temporally well-coupled variations in EEG-PR and spike rate with a stable cycle length within the range 4-10 s. In about 77 % of correlated changes the temporal delay between the change in EEG-PR and that of the spike rate was less than +/- 1.0 s. 5. During simultaneous recordings from two dLGN cells the variations in spike rate tend to show the same sign of correlation with respect to the EEG pattern. This relationship is more pronounced with the slow gradations than with the oscillatory changes. 6. Slow gradations in the spectral composition of the EEG may indicate global transitions between different stages within the sleep-wake cycle, reflecting the well-known influences of the brainstem arousal system. The oscillations in the spectral composition of the EEG are accompanied by gradual variations in thalamic transmission mode and are more likely to be due to involvement of a local feedback system via the thalamo-cortico-thalamic loop. The difference between the effects on overall and burst firing activity supports the notion that phasic (burst firing) and tonic visual responses may play distinctive roles in information processing, which are functionally related to the animal's behavioural state.
机译:1.同时记录EEG和猫背外侧膝状核(dLGN)中继细胞的视觉活动的协方差。对EEG功率谱和单个单位的视觉活动并行执行滑动时间窗口分析。选择低(1-8 Hz)到高(20-40 Hz)频率的EEG功率比(EEG-PR)以实现对EEG的定量测量,该测量可与dLGN装置在任何情况下的尖峰率进行比较时间。高EEG-PR值表示以低频(三角波和睡眠纺锤)为主的同步EEG,低值表示EEG-PR的同步性较低。 2.在麻醉的动物中,发现了EEG-PR中两种不同的潜在活动模式:缓慢的逐渐变化(缓慢的梯度)和振荡的变化。在许多情况下,无论是总体活动还是爆发射击,两者都伴随着dLGN尖峰率的相关变化。 3.缓慢的渐变出现在长达200 s的长时间内,在大多数情况下(76.3%),显示出EEG-PR与总尖峰率之间呈负相关,但与突发放电呈正相关(85.1%) 。 4.以前未曾报道过的振荡变化表现为EEG-PR和尖峰频率在时间上具有良好的耦合变化,且周期长度在4-10 s范围内。在约77%的相关变化中,EEG-PR变化与尖峰率变化之间的时间延迟小于+/- 1.0 s。 5.在同时记录两个dLGN单元的过程中,尖峰频率的变化往往显示出与EEG模式相关的相同符号。与缓慢的变化相比,与缓慢的渐变相比,这种关系更为明显。 6.脑电图频谱组成中的缓慢渐变可能表明睡眠-觉醒周期内不同阶段之间的整体过渡,反映了脑干唤醒系统的众所周知的影响。脑电图的频谱组成中的振荡伴随着丘脑传输模式的逐渐变化,并且更可能是由于经由丘脑-皮质-丘脑环的局部反馈系统的参与。对整体和爆发射击活动的影响之间的差异支持以下观点:相变(爆发射击)和补品视觉反应可能在信息处理中发挥独特的作用,这在功能上与动物的行为状态有关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号