Bringuier V, Fregnac Y, Debanne D, Shulz D, Baranyi A
Institut Alfred Fessard, CNRS, Gif sur Yvette, France.
Neuroreport. 1992 Dec;3(12):1065-8. doi: 10.1097/00001756-199212000-00008.
Rhythmic patterns in neuronal activity in response to moving stimuli were observed in 28% of cells recorded extracellularly or intracellularly in area 17 of 4-16 week old anaesthetized and paralysed kittens. In both recording modes, oscillation frequencies ranged between 7 and 71 Hz, and were confined for 88% of cells in the 7-20 Hz band of the spectrum. A comparative study of firing autocorrelograms) and subthreshold activity (autocorrelation functions) indicates that the regularity of discharge stemmed from visually evoked oscillations of membrane potential at the same frequency. These oscillations are shown to result from extrinsic excitatory activity, since their amplitude, but not their frequency, depends on the resting membrane potential. The dependency on stimulus configuration supports the hypothesis that oscillations in neuronal output are dictated by periodic activity in afferent circuits selectively recruited by different attributes of the visual input which are not exclusively processed at the cortical level.
在4至16周龄麻醉并瘫痪的小猫的17区,对细胞进行细胞外或细胞内记录时,发现28%的细胞对移动刺激有神经元活动的节律模式。在两种记录模式下,振荡频率在7至71赫兹之间,88%的细胞的振荡频率局限于频谱的7至20赫兹频段。对放电自相关图和阈下活动(自相关函数)的比较研究表明,放电的规律性源于相同频率的膜电位视觉诱发振荡。这些振荡被证明是由外在兴奋性活动引起的,因为它们的振幅而非频率取决于静息膜电位。对刺激配置的依赖性支持了这样一种假设,即神经元输出的振荡是由传入回路中的周期性活动决定的,这些传入回路是由视觉输入的不同属性选择性招募的,而这些属性并非仅在皮质水平进行处理。