首页> 外文期刊>American Journal of Physiology >Signal transduction of aortic and carotid sinus baroreceptors is not modified by central command during spontaneous motor activity in decerebrate cats
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Signal transduction of aortic and carotid sinus baroreceptors is not modified by central command during spontaneous motor activity in decerebrate cats

机译:在Deferebrate Cats的自发电机活性期间,不通过中央指令进行主动脉瘤和颈动脉鼻窦中央的信号转导

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Our laboratory has suggested that central command provides selective inhibition of the cardiomotor component of aortic baroreflex at the start of exercise, preserving carotid sinus baroreflex. It is postulated that central command may modify the signal transduction of aortic baroreceptors, so as to decrease aortic baroreceptor input to the cardiovascular centers, and, thereby, can cause the selective inhibition of aortic baroreflex. To test the hypothesis, we directly analyzed the responses in multifiber aortic nerve activity (AoNA) and carotid sinus nerve activity (CsNA) during spontaneous motor activity in decerebrate, paralyzed cats. The increases of 62-104% in mean AoNA and CsNA were found during spontaneous motor activity, in proportion to a rise of 35 ± 3 mmHg (means ± SE) in mean arterial blood pressure (MAP), and had an attenuating tendency by restraining heart rate (HR) at the lower intrinsic frequency of 154 ± 6 beats/min. Brief occlusion of the abdominal aorta was conducted before and during spontaneous motor activity to produce a mechanically evoked increase in MAP and, thereby, to examine the stimulus-response relationship of arterial baroreceptors. Although the sensitivity of the MAP-HR baroreflex curve was markedly blunted during spontaneous motor activity, the stimulus-response relationships of AoNA and CsNA were not influenced by spontaneous motor activity, irrespective of the absence or presence of the HR restraint. Thus, it is concluded that aortic and carotid sinus baroreceptors can code beat-by-beat blood pressure during spontaneous motor activity in decerebrate cats and that central command is unlikely to modulate the signal transduction of arterial baroreceptors.
机译:我们的实验室表明,中央指挥提供了在运动开始时对主动脉胚胎射精的心肌运动组分进行选择性抑制,保留了颈动脉窦巴罗郡。假设中央指令可以修改主动脉间隙的信号转导,从而减少对心血管中心的主动脉压缩体,从而可以引起主动脉胚胎射精的选择性抑制。为了测试假设,我们直接分析了在瘫痪的猫的自发电机活性期间分析了多纤维主动脉神经活动(AONA)和颈动脉窦神经活性(CSNA)的反应。在自发电机活性期间发现平均AONA和CSNA中的62-104%的增加,其平均动脉血压(MAP)的增加至35±3mmHg(平均值),并且通过约束具有衰减趋势心率(HR)在较低的内在频率为154±6次/分钟。在自发的电动机活性之前和期间进行腹主动脉的短暂闭塞,以产生地图的机械诱发增加,从而探讨动脉鼓兵群的刺激反应关系。尽管在自发电机活性期间MAP-HR Baroreflex曲线的敏感性显着钝化,但无论HR抑制的情况如何,AONA和CSNA的刺激关系都不会受到自发运动活性的影响。因此,得出结论,主动脉和颈动脉窦丧呼者可以在Decerebrate Cats中的自发运动活性期间对逐搏血压进行编码,并且中央指令不太可能调节动脉丧气的信号转导。

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