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大鼠听觉皮层诱发电位与高频(γ波段)振荡电位的比较。

Comparison of evoked potentials and high-frequency (gamma-band) oscillating potentials in rat auditory cortex.

作者信息

Franowicz M N, Barth D S

机构信息

Department of Psychology, University of Colorado, Boulder 80309-0345, USA.

出版信息

J Neurophysiol. 1995 Jul;74(1):96-112. doi: 10.1152/jn.1995.74.1.96.

Abstract
  1. Transient and steady-state (40 Hz) evoked potentials, as well as spontaneous and click-evoked gamma-band oscillations, were recorded from 15 lightly anesthetized rats using an 8 x 8 electrode epipial array covering auditory cortex and adjacent areas to determine and compare the spatiotemporal distributions of these four phenomena. 2. The transient evoked response replicated earlier findings in our laboratory, consisting of an initial biphasic sharp wave in area 41, a similar but delayed biphasic sharp wave in area 36, and more widely distributed slow-wave components. Spatiotemporal analysis supported a model of parallel and asynchronous activation of distinct groups of thalamocortical projections underlying the neurogenesis of these temporal components of the middle-latency auditory evoked potential (MAEP) complex. 3. The 40-Hz response to click trains was superimposed on a steady potential shift (SP), both of which were localized within primary auditory cortex. Epipial distributions of the SP were similar to those of the shortest-latency negative peak in area 41 recorded in the same animals, suggesting similar neural generators. The 40-Hz response was more focal and dissimilar from the SP and any other temporal components of the MAEP complex, suggesting that a unique subpopulation of cells underlies its neurogenesis. 4. Spontaneous gamma-band activity, as assessed by power spectrum analysis, was localized to primary and secondary auditory cortex but had a variable distribution between rats that did not conform to the cytoarchitectonic boundaries within subdivisions of this region. Digital movies computed for individual bursts of gamma-activity indicated a high degree of spatiotemporal variability within and between bursts. 5. Single-trial spectral analysis of click responses indicated an inhibition of gamma-band oscillations during most of the MAEP complex, with subsequent enhanced gamma-activity during the 300- to 350-ms slow-wave component that outlasted the MAEP by approximately 500 ms. The epipial distributions of prestimulus and enhanced poststimulus gamma-oscillations were the same. In contrast to the 40-Hz response to click trains, phase-locking of gamma-oscillations by the single click stimulus was not observed. 6. These results suggest that both the MAEP complex and the steady-state 40-Hz response with its associated SP are highly stereotyped in lightly anesthetized rodent cortex. Their spatiotemporal distributions are probably determined in large part by asynchronous activation of parallel thalamocortical projection systems. Our data suggest no direct link between either the MAEP or the steady-state 40-Hz response to spontaneous or evoked gamma-band oscillations in auditory cortex.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 使用覆盖听觉皮层及相邻区域的8×8电极软脑膜阵列,从15只轻度麻醉的大鼠记录瞬态和稳态(40赫兹)诱发电位,以及自发和点击诱发的伽马波段振荡,以确定和比较这四种现象的时空分布。2. 瞬态诱发反应重复了我们实验室早期的发现,包括41区的初始双相尖波、36区类似但延迟的双相尖波,以及分布更广泛的慢波成分。时空分析支持了一种模型,即中潜伏期听觉诱发电位(MAEP)复合体这些时间成分的神经发生背后,丘脑皮质投射的不同组群是平行且异步激活的。3. 对点击序列的40赫兹反应叠加在一个稳定电位偏移(SP)上,二者均局限于初级听觉皮层内。SP的软脑膜分布与同一动物记录的41区最短潜伏期负峰的分布相似,表明神经发生器相似。40赫兹反应更具局灶性,与SP及MAEP复合体的任何其他时间成分不同,表明其神经发生有独特的细胞亚群作为基础。4. 通过功率谱分析评估的自发伽马波段活动局限于初级和次级听觉皮层,但在大鼠之间分布可变,不符合该区域细分内的细胞构筑边界。针对单个伽马活动爆发计算的数字电影显示,爆发内和爆发间存在高度的时空变异性。5. 点击反应的单试次频谱分析表明,在大部分MAEP复合体期间伽马波段振荡受到抑制,随后在300至350毫秒的慢波成分期间伽马活动增强,且持续时间比MAEP长约500毫秒。刺激前和刺激后增强的伽马振荡的软脑膜分布相同。与对点击序列的40赫兹反应不同,未观察到单次点击刺激对伽马振荡的锁相。6. 这些结果表明,在轻度麻醉的啮齿动物皮层中,MAEP复合体和与其相关的SP的稳态40赫兹反应都是高度刻板的。它们的时空分布可能在很大程度上由平行丘脑皮质投射系统的异步激活决定。我们的数据表明,听觉皮层中自发或诱发的伽马波段振荡与MAEP或稳态40赫兹反应之间没有直接联系。(摘要截选至400字)

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