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Effects of light reversal on the circadian pattern of motor activity and voltammetric signals recorded in rat forebrain.

机译:逆光对大鼠前脑中记录的运动活动和伏安信号的昼夜节律模式的影响。

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摘要

To investigate the functional relationships between the circadian changes in rat motor activity and changes in the extracellular concentration of ascorbic acid and homovanillic acid (HVA) monitored in the striatum and nucleus accumbens, reversal of the light/dark cycle was used to disturb the pattern of motor activity. Microcomputer-controlled linear sweep voltammetry with carbon-paste electrodes was used to continuously monitor circadian changes in the ascorbate signal and the HVA signal simultaneously in nucleus accumbens and striatum over a 13 day period in unrestrained rats; total motor activity for each animal was also recorded. Regression analyses were carried out on each day's data to investigate the relationships between motor activity and the two voltammetric signals. During days 1-5, the lighting was on normal 12/12 light/dark cycle and high correlations were observed. Reversal of the light/dark cycle on day 6 caused an immediate change in the pattern of motor activity and electrochemical signals; by days 7-8 after light reversal the relationships between lighting, ascorbate, HVA and motor activity were reestablished under the new lighting conditions. During the intervening period, however, there was a complete breakdown in some of the correlations. The findings are discussed in the light of the hypothesis that changes in brain extracellular ascorbate reflect changes in the release of excitatory amino acids, and in terms of a recent model of the role, in the control of motor activity, for cortical and mesencephalic inputs to forebrain subcortical regions.
机译:为了研究大鼠运动活动中昼夜节律变化与纹状体和伏隔核中监测的抗坏血酸和高香草酸(HVA)的细胞外浓度变化之间的功能关系,使用了明/暗循环的反转来干扰运动活动。用微机控制的带有碳糊电极的线性扫描伏安法连续监测未受束缚的大鼠在13天的时间内,伏隔核和纹状体中抗坏血酸信号和HVA信号的昼夜节律变化;还记录了每只动物的总运动活动。对每天的数据进行回归分析,以研究运动活动与两个伏安信号之间的关系。在1-5天期间,照明处于正常的12/12光/暗周期,并观察到高度相关性。第6天的明/暗循环反转导致了电机活动和电化学信号模式的立即变化。逆光后第7-8天,在新的光照条件下,重新建立了照明,抗坏血酸,HVA和运动活动之间的关系。然而,在此期间,某些相关性完全崩溃了。根据以下假说讨论了这些发现:大脑胞外抗坏血酸的变化反映了兴奋性氨基酸释放的变化,并根据最近的模型来控制运动活动,皮层和中脑输入神经元。前脑皮层下区域。

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