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光对生物钟的影响与其情感价值有关。

The effectiveness of light on the circadian clock is linked to its emotional value.

作者信息

Amir S, Stewart J

机构信息

Center for Studies in Behavioral Neurobiology, Department of Psychology, Concordia University, Montreal, Quebec, Canada.

出版信息

Neuroscience. 1999 Jan;88(2):339-45. doi: 10.1016/s0306-4522(98)00477-1.

Abstract

Studies carried out within the primary visual system have shown that neural responses to light stimuli transmitted via the retinogeniculate pathway are significantly altered when these stimuli are made aversive through conditioning. The effect of such aversive conditioning on neural responses to light transmitted within the circadian visual system has not been investigated. In mammals, the principal projection of the circadian visual system, the retinohypothalamic tract, is functionally and anatomically distinct from the primary visual pathway allowing for direct transmission of light from the retina to the suprachiasmatic nucleus of the hypothalamus, the circadian clock. Light transmitted within this pathway is essential for entrainment of circadian rhythms providing the critical stimulus for resetting the circadian clock. We asked whether the response of neural elements within the suprachiasmatic nucleus to a resetting light stimulus would be altered if that stimulus had acquired aversive properties through conditioning. To study this we assessed the effect of a light stimulus made aversive through pairings with footshock on a cellular correlate of clock resetting, the expression of the transcription factor Fos in neurons of the suprachiasmatic nucleus. We show that Fos expression in the suprachiasmatic nucleus in response to light previously paired with footshock is significantly suppressed. This finding provides the first evidence that the effectiveness of a light as a resetting stimulus can be modulated by its conditioned aversive properties.

摘要

在初级视觉系统中开展的研究表明,当通过条件作用使光刺激具有厌恶性时,经视网膜 - 膝状体通路传输的对光刺激的神经反应会发生显著改变。然而,这种厌恶性条件作用对昼夜节律视觉系统中传输的光的神经反应的影响尚未得到研究。在哺乳动物中,昼夜节律视觉系统的主要投射,即视网膜 - 下丘脑束,在功能和解剖学上与初级视觉通路不同,它允许光从视网膜直接传输到下丘脑的视交叉上核,即昼夜节律时钟。在这条通路中传输的光对于昼夜节律的同步至关重要,为重置昼夜节律时钟提供关键刺激。我们询问,如果通过条件作用使光刺激具有厌恶性,那么视交叉上核内的神经元件对重置光刺激的反应是否会改变。为了研究这一点,我们评估了通过与足部电击配对而变得具有厌恶性的光刺激对时钟重置的细胞相关物,即视交叉上核神经元中转录因子Fos表达的影响。我们发现,视交叉上核中对先前与足部电击配对的光的Fos表达受到显著抑制。这一发现首次证明,光作为重置刺激的有效性可以通过其条件性厌恶性特性进行调节。

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