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首页> 外文期刊>Autonomic neuroscience: basic & clinical >Autonomic response and Fos expression in the NTS following intermittent vagal stimulation: importance of pulse frequency.
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Autonomic response and Fos expression in the NTS following intermittent vagal stimulation: importance of pulse frequency.

机译:间歇性迷走神经刺激后NTS中的自主神经反应和Fos表达:脉冲频率的重要性。

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Chronic intermittent stimulation of the vagus nerve (VNS) is an approved adjunctive therapy of refractory epilepsy. Nevertheless, the circuits triggered by VNS under the variable conditions used in patients are not well understood. We analyzed the effect of increasing pulse frequency on physiological variables (intragastric pressure, cardiac and respiratory frequencies) and neuronal activation in the solitary tract nucleus (NTS), the entry level of peripheral vagal afferents, in the rat. For this purpose, we compared the subnuclear distribution of Fos-like immunoreactivity within the NTS following VNS at frequencies selected for their low (1 Hz) or high (10 Hz) therapeutic efficacy. In addition, NADPH diaphorase histochemistry was conducted in double-labeling experiments to check whether activated neurons may express nitric oxide (NO). We demonstrated that increasing pulse frequency had a major influence on the cardiorespiratory response to VNS and on the amount of activated neurons within NTS subdivisions engaged in cardiorespiratory control. These data, in line with clinical observations, suggested that within the range of therapeutic frequency, VNS may favor the regulation by vagal inputs of cortical activities within limbic areas involved in both epileptogenesis and cardiorespiratory afferent control. Furthermore, we did not find any evidence that anticonvulsant VNS might trigger NOergic neurons in the NTS.
机译:迷走神经(VNS)的慢性间歇性刺激是一种批准的难治性癫痫辅助疗法。然而,对于患者使用的可变条件下的VNS触发的电路还没有很好的了解。我们分析了增加脉冲频率对大鼠生理变量(胃内压力,心脏和呼吸频率)和孤立道核(NTS)中神经元激活,周围迷走神经传入的进入水平的影响。为此,我们比较了在选择VNS的低(1 Hz)或高(10 Hz)治疗功效的频率下,VNS后NTS内Fos样免疫反应性的亚核分布。此外,在双标记实验中进行了NADPH心肌黄递酶组织化学检查,以检查活化的神经元是否可以表达一氧化氮(NO)。我们证明增加的脉冲频率对VNS的心肺反应以及参与心肺控制的NTS分区内激活神经元的数量有重大影响。这些数据与临床观察结果一致,表明在治疗频率范围内,VNS可能有利于通过迷走神经输入参与癫痫发生和心肺传入控制的边缘区域内皮质活动的调节。此外,我们没有发现任何证据表明抗惊厥性VNS可能会触发NTS中的Noergic神经元。

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