Wright J J, Kydd R R, Lees G J
Biol Cybern. 1985;52(6):351-6. doi: 10.1007/BF00449591.
The preceeding paper (Wright et al. 1985a) gives evidence that mesotelencephalic dopaminergic neurones regulate gross electrocortical waves with linear properties, by influencing the strength of their driving signals and temporal damping. The present study further generalises the findings to ascending noradrenergic neurones, which have different fields of termination to dopaminergic fibres. It is shown that: Estimates of the major groups of natural frequencies for the telencephalic system obtained from curve-fitting the ratio changes in the power spectrum attributable to unilateral noradrenergic neurone lesion, are again centered about the frequencies of the major cerebral rhythms. Estimates of electrode transfer characteristics, using parameters obtained from curve fitting ratio changes in power, in conjunction with the raw left and right power spectra, are again found to be equal left and right, as required by the theoretical derivation. Changes in relative amplitude of electrocortical waves and their relative phase are significantly in accord with the relationship expected from theory.
前文(赖特等人,1985a)提供了证据表明中脑多巴胺能神经元通过影响驱动信号的强度和时间阻尼来调节具有线性特性的总体皮层电图波。本研究进一步将这些发现推广到上行去甲肾上腺素能神经元,它们的终末区域与多巴胺能纤维不同。结果表明:通过对单侧去甲肾上腺素能神经元损伤所致功率谱比值变化进行曲线拟合得到的端脑系统主要自然频率组的估计值,再次集中在主要脑节律的频率附近。利用从功率比值变化曲线拟合中获得的参数,并结合原始的左右功率谱来估计电极传递特性,结果再次发现左右相等,这与理论推导的要求一致。皮层电图波相对振幅及其相对相位的变化与理论预期的关系显著相符。