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Evidence from bilateral recordings of sympathetic nerve activity for lateralisation of vestibular contributions to cardiovascular control

机译:来自交感神经活动的双侧记录的证据,显示前庭侧支化对心血管控制的贡献

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Using low-frequency (0.08-0.18 Hz) sinusoidal galvanic vestibular stimulation (sGVS), we recently showed that two peaks of modulation of muscle sympathetic nerve activity (MSNA) and skin sympathetic nerve activity (SSNA) occurred for each cycle of stimulation: a large peak associated with the positive peak of the sinusoid (defined as the primary peak) and a smaller peak (defined as the secondary peak) related to the negative peak of the sinusoid. However, these recordings were only made from the left common peroneal nerve, so to investigate lateralisation of vestibulosympathetic reflexes, concurrent recordings were made from both sides of the body. Tungsten microelectrodes were inserted into muscle or cutaneous fascicles of the left and right common peroneal nerves in 17 healthy individuals. Bipolar binaural sinusoidal GVS (±2 mA, 100 cycles) was applied to the mastoid processes at 0.08 Hz. Cross-correlation analysis revealed that vestibular modulation of MSNA (10 bilateral recordings) and SSNA (6 bilateral recordings) on the left side was expressed as a primary peak related to the positive phase of the sinusoid and a secondary peak related to the negative phase of the sinusoid. Conversely, on the right side, the primary and secondary peaks were reversed: the secondary peak on the right coincided with the primary peak on the left and vice versa. Moreover, differences in pattern of outflow were apparent across sides. We believe the results support the conclusion that the left and right vestibular nuclei send both an ipsilateral and contralateral projection to the left and right medullary output nuclei from which MSNA and SSNA originate. This causes a ''flip-flop'' patterning between the two sympathetic outflows: when vestibular modulation of a burst is high on the left, it is low on the right, and when modulation is low on the left, it is high on the right.
机译:最近,使用低频(0.08-0.18 Hz)正弦电流前庭刺激(sGVS),我们发现在每个刺激周期中,肌肉交感神经活动(MSNA)和皮肤交感神经活动(SSNA)的调制出现两个峰值:与正弦曲线的正峰(定义为主峰)相关的大峰和与正弦曲线的负峰相关的较小峰(定义为次峰)。但是,这些记录仅来自左腓总神经,因此为了研究前庭交感神经反射的侧向化,同时从身体的两侧进行了记录。将钨微电极插入17位健康个体的左右腓总神经的肌肉或皮肤束中。将双极双耳正弦曲线GVS(±2 mA,100个周期)以0.08 Hz的频率应用于乳突。互相关分析显示,左侧的MSNA(10个双边记录)和SSNA(6个双边记录)的前庭调制表示为与正弦波正相相关的主峰,而与正弦波负相相关的次峰。正弦波。相反,在右侧,主峰和次峰颠倒了:右侧的次峰与左侧的主峰重合,反之亦然。而且,流出模式的差异在两边都很明显。我们相信结果支持这样的结论,即左,右前庭核向MSNA和SSNA起源的左右髓质输出核发送同侧和对侧投影。这会在两个有同感的流出之间引起“触发器”模式:当突发的前庭调制在左侧较高时,在右侧是低;当突发的左侧调制较低时,在左侧是高。对。

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