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时间分辨率和时间传递特性:γ-氨基丁酸能和胆碱能机制。

Temporal resolution and temporal transfer properties: gabaergic and cholinergic mechanisms.

作者信息

Behrend Konstantin, Benkner Boris, Mora-Ferrer Carlos

机构信息

Institute of Zoology III, Johannes Gutenberg University, Mainz, Germany.

出版信息

Vis Neurosci. 2007 Nov-Dec;24(6):787-97. doi: 10.1017/S0952523807070691.

Abstract

Temporal resolution is a basic property of the visual system and critically depends upon retinal temporal coding properties which are also of importance for directional coding. Whether the temporal coding properties for directional coding derive form inherent properties or critically depend upon the temporal coding mechanisms is unclear. Here, the influence of acetylcholine and GABA upon photopic temporal coding was investigated in goldfish, using flicker stimuli, in a behavioral and an electrophysiological (ERG) approach. The goldfish temporal resolution ability decreased from more than 90% correct choices at 20 Hz flicker frequency to about 65% at 45 Hz flicker frequency with a flicker fusion frequency of approximately 39 Hz. Blockade of GABAa-receptors reduced the flicker fusion frequency to about 23 Hz, not affecting temporal resolution below 20 Hz flicker frequency. Partial blockade of nicotinic acetylcholine receptors reduced the flicker fusion frequency slightly and lowered the temporal resolution ability in the 25-30 Hz range. Blockade of muscarinic acetylcholine receptors had a smaller effect than the partial blockade of nicotinic acetylcholine receptors. In ERG-recordings, blocking GABAa-receptors increased the a- and b-wave amplitude, induced a delay, an increase and a slow fall-off of the d-wave. Blocking GABAc-receptors had little effect. Blocking GABAa- or GABAa/c-receptors changed the temporal resolution, when expressed as a linear filter, from a 3rd degree filter with resonance to a low order low-pass filter with a low upper limit frequency. The temporal transfer properties were barely changed by blocking either nicotinic or muscarinic acetylcholine receptors, although ERG-components increased in amplitude to varying degrees. The behavioral and electrophysiological data indicate the important role of GABA for temporal processing but little involvement of the cholinergic system. It is proposed that the interaction of the GABAergic amacrine cell network and bipolar cells determines the gain of the retinal temporal coding in the upper frequency range.

摘要

时间分辨率是视觉系统的一项基本特性,并且严重依赖于视网膜时间编码特性,而视网膜时间编码特性对于方向编码也很重要。方向编码的时间编码特性是源于固有特性还是严重依赖于时间编码机制尚不清楚。在此,利用闪烁刺激,采用行为学和电生理学(视网膜电图,ERG)方法,研究了乙酰胆碱和γ-氨基丁酸(GABA)对金鱼明视觉时间编码的影响。金鱼的时间分辨率能力在闪烁频率为20Hz时正确选择率超过90%,在闪烁频率为45Hz时降至约65%,闪烁融合频率约为39Hz。γ-氨基丁酸A型受体(GABAa-receptors)的阻断将闪烁融合频率降低至约23Hz,而不影响闪烁频率低于20Hz时的时间分辨率。烟碱型乙酰胆碱受体的部分阻断略微降低了闪烁融合频率,并降低了25 - 30Hz范围内的时间分辨率能力。毒蕈碱型乙酰胆碱受体的阻断作用比烟碱型乙酰胆碱受体的部分阻断作用小。在视网膜电图记录中,阻断GABAa受体增加了a波和b波振幅,导致d波延迟、增大和缓慢下降。阻断GABAc受体几乎没有影响。当以线性滤波器表示时,阻断GABAa或GABAa/c受体改变了时间分辨率,从具有共振的三阶滤波器变为上限频率较低的低阶低通滤波器。尽管视网膜电图成分的振幅有不同程度增加,但阻断烟碱型或毒蕈碱型乙酰胆碱受体对时间传递特性几乎没有改变。行为学和电生理学数据表明GABA在时间处理中起重要作用,而胆碱能系统参与较少。有人提出,GABA能无长突细胞网络与双极细胞的相互作用决定了高频范围内视网膜时间编码的增益。

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