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首页> 外文期刊>Neural regeneration research >Quantitative evaluation of extrinsic factors influencing electrical excitability in neuronal networks: Voltage Threshold Measurement Method (VTMM)
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Quantitative evaluation of extrinsic factors influencing electrical excitability in neuronal networks: Voltage Threshold Measurement Method (VTMM)

机译:外部评估影响神经网络电兴奋性的外在因素的定量评估:电压阈值测量方法(VTMM)

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摘要

The electrical excitability of neural networks is influenced by different environmental factors. Effective and simple methods are required to objectively and quantitatively evaluate the influence of such factors, including variations in temperature and pharmaceutical dosage. The aim of this paper was to introduce ‘the voltage threshold measurement method', which is a new method using microelectrode arrays that can quantitatively evaluate the influence of different factors on the electrical excitability of neural networks. We sought to verify the feasibility and efficacy of the method by studying the effects of acetylcholine, ethanol, and temperature on hippocampal neuronal networks and hippocampal brain slices. First, we determined the voltage of the stimulation pulse signal that elicited action potentials in the two types of neural networks under normal conditions. Second, we obtained the voltage thresholds for the two types of neural networks under different concentrations of acetylcholine, ethanol, and different temperatures. Finally, we obtained the relationship between voltage threshold and the three influential factors. Our results indicated that the normal voltage thresholds of the hippocampal neuronal network and hippocampal slice preparation were 56 and 31 mV, respectively. The voltage thresholds of the two types of neural networks were inversely proportional to acetylcholine concentration, and had an exponential dependency on ethanol concentration. The curves of the voltage threshold and the temperature of the medium for the two types of neural networks were U-shaped. The hippocampal neuronal network and hippocampal slice preparations lost their excitability when the temperature of the medium decreased below 34 and 33°C or increased above 42 and 43°C, respectively. These results demonstrate that the voltage threshold measurement method is effective and simple for examining the performance/excitability of neuronal networks.
机译:神经网络的电兴奋性受不同环境因素的影响。需要有效而简单的方法来客观和定量地评估这些因素的影响,包括温度和药物剂量的变化。本文的目的是介绍“电压阈值测量方法”,这是一种使用微电极阵列的新方法,可以定量评估不同因素对神经网络电兴奋性的影响。我们试图通过研究乙酰胆碱,乙醇和温度对海马神经元网络和海马脑片的影响来验证该方法的可行性和有效性。首先,我们确定了在正常条件下在两种类型的神经网络中引起动作电位的刺激脉冲信号的电压。其次,我们获得了在不同浓度的乙酰胆碱,乙醇和不同温度下两种神经网络的电压阈值。最后,我们获得了电压阈值与三个影响因素之间的关系。我们的结果表明,海马神经元网络和海马切片制备的正常电压阈值分别为56和31 mV。两种神经网络的电压阈值与乙酰胆碱浓度成反比,并且对乙醇浓度呈指数依赖性。两种神经网络的电压阈值和介质温度的曲线呈U形。当培养基的温度分别降至34和33°C以下或升高至42和43°C以上时,海马神经元网络和海马切片制剂失去了兴奋性。这些结果表明,电压阈值测量方法对于检查神经元网络的性能/兴奋性是有效且简单的。

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