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视觉系统中的振荡放电:它具有功能作用吗?

Oscillatory discharge in the visual system: does it have a functional role?

作者信息

Ghose G M, Freeman R D

机构信息

Group in Biophysics, School of Optometry, University of California, Berkeley 94720.

出版信息

J Neurophysiol. 1992 Nov;68(5):1558-74. doi: 10.1152/jn.1992.68.5.1558.

DOI:10.1152/jn.1992.68.5.1558
PMID:1479430
Abstract
  1. The discharge of individual neurons in the visual cortex and lateral geniculate nucleus (LGN) of anesthetized and paralyzed cats and kittens was examined for the presence of oscillatory activity. Neural firing was evoked through the monoptic or dichoptic presentation of drifting gratings and random sequences of flashed bars. The degree to which different oscillatory frequencies were present in neural discharge was quantified by computation of the power spectra of impulse train responses. 2. Action potentials from single cells were recorded extracellularly and isolated on the basis of amplitude. Receptive-field properties of the neurons under study were characterized initially by their discharge in response to gratings of sinusoidal luminance. By varying orientation and spatial frequency, optimal stimulus characteristics were determined. Oscillation analysis was performed on spike trains acquired during repeated presentations of the optimal stimulus by identification of power spectra peaks in the frequency range of rhythmic potentials observed in electroencephalograph studies (30-80 Hz). The amplitude and frequency of the largest peak in this range was used to characterize oscillatory strength and frequency. All discharge in which the peak amplitude exceeded the high-frequency noise by a factor > 1.5 was classified as oscillatory. 3. Of the 342 cortical cells examined, 147 cells displayed oscillatory activity in the 30 to 80-Hz range during portions of their visual response. Sixty out of 169 simple cells, 82 out of 166 complex cells, and 5 out of 7 special complex cells exhibited oscillations. There was no laminar bias in the distribution of oscillatory cells; the proportions of oscillatory cells were similar in all layers. All oscillatory discharge was variable with respect to frequency and strength between successive presentations of the same optimal stimulus. In as little as 10 s, for example, peak frequencies shifted by a factor of two. For many cells, these trial-to-trial variations obscured detectable oscillations when all trials were averaged together. 4. The potential role of neuronal maturation in the generation of oscillatory activity was investigated by studying neuronal responses from kittens at 4 wk postnatal. Of the 80 kitten cells studied, 27 exhibited oscillatory discharge. Although oscillations in the kitten visual cortex spanned the same frequency range as that seen in the adult, oscillations in the midfrequency range (36-44 Hz) are more common in the adult cortex. 5. To explore the possibility that oscillations might play a functional role in vision, we investigated the dependence of oscillations on different stimulus parameters.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 对麻醉并瘫痪的猫和小猫的视觉皮层及外侧膝状体核(LGN)中单个神经元的放电情况进行检查,以确定是否存在振荡活动。通过单眼或双眼呈现漂移光栅和闪烁光条的随机序列来诱发神经放电。通过计算脉冲序列响应的功率谱,对神经放电中不同振荡频率的存在程度进行量化。2. 细胞外记录单个细胞的动作电位,并根据幅度进行分离。最初通过研究神经元对正弦亮度光栅的放电来表征所研究神经元的感受野特性。通过改变方向和空间频率,确定最佳刺激特征。通过识别脑电图研究中观察到的节律性电位频率范围内的功率谱峰值,对在重复呈现最佳刺激期间获取的尖峰序列进行振荡分析。该范围内最大峰值的幅度和频率用于表征振荡强度和频率。所有峰值幅度超过高频噪声1.5倍的放电都被归类为振荡放电。3. 在检查的342个皮层细胞中,有147个细胞在其视觉反应的部分时间内,在30至80赫兹范围内表现出振荡活动。169个简单细胞中的60个、166个复杂细胞中的82个以及7个特殊复杂细胞中的5个表现出振荡。振荡细胞的分布没有层间偏向;所有层中振荡细胞的比例相似。在相同最佳刺激的连续呈现之间,所有振荡放电在频率和强度方面都是可变的。例如,在短短10秒内,峰值频率就会变化两倍。对于许多细胞来说,当将所有试验平均在一起时,这些逐次试验的变化会掩盖可检测到的振荡。4. 通过研究出生后4周小猫的神经元反应,探讨了神经元成熟在振荡活动产生中的潜在作用。在所研究的80个小猫细胞中,有27个表现出振荡放电。虽然小猫视觉皮层中的振荡频率范围与成年猫相同,但成年皮层中中频范围(36 - 44赫兹)的振荡更为常见。5. 为了探索振荡可能在视觉中发挥功能作用的可能性,我们研究了振荡对不同刺激参数的依赖性。(摘要截断于400字)

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