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首页> 外文期刊>Journal of vascular research >Contribution of vascular and neural segments to baroreflex sensitivity in response to postural stress.
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Contribution of vascular and neural segments to baroreflex sensitivity in response to postural stress.

机译:响应姿势压力,血管和神经节段对压力反射敏感性的贡献。

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BACKGROUND/AIMS: The baroreflex pathway has a vascular and a neural segment, both being modulated by variations in peripheral blood pressure (BP). Besides overall baroreceptor sensitivity (BRS), defined as the spectral relationship between changes in peripheral BP and R-R interval within the frequency band of 0.05-0.15 Hz, vascular and neural segment contributions to the overall BRS can be distinguished. We test the hypothesis that changes in overall BRS following a postural maneuver mainly originate from the vascular (peripheral pressure to carotid artery diameter) rather than the neural segment (carotid artery diameter to R-R interval). METHODS: Peripheral pressure (Finapress), carotid artery diameter (ultrasound in B-/M-mode) and electrocardiogram values of 20 young subjects in supine and upright-seated postures were recorded simultaneously. Transfer gains were computed for the segmental and overall responses. RESULTS: Postural change significantly increases peripheral BP and carotid artery diameter. The vascular segment has a uniform spectral distribution. Statistical analyses revealed that postural change decreased overall (p < 0.004) and vascular (p < 0.0001) transfer gains, but did not modify neural gain. CONCLUSIONS: Unlike the neural segment, the vascular segment is frequency non-specific. The decrease in overall BRS due to a postural change is mainly explained by the reduced transfer gain of the vascular segment.
机译:背景/目的:压力感受反射通路具有血管和神经节段,两者均受周围血压(BP)的变化调节。除了总体压力感受器敏感性(BRS)(定义为0.05-0.15 Hz频带内外周BP和R-R间隔变化之间的频谱关系)外,还可区分出血管和神经节段对总体BRS的贡献。我们测试的假设是,姿势操作后总体BRS的变化主要来自血管(周围压力至颈动脉直径)而不是神经段(颈动脉直径至R-R间隔)。方法:同时记录20名仰卧和直立姿势的年轻受试者的外周压(Finapress),颈动脉直径(B- / M模式下的超声)和心电图值。计算分段和整体响应的转移收益。结果:姿势改变显着增加外周血压和颈动脉直径。血管段具有均匀的光谱分布。统计分析表明,姿势改变总体上降低了(p <0.004)和血管(p <0.0001)的转移增益,但并未改变神经增益。结论:与神经节段不同,血管节段是频率非特异性的。由于姿势改变而导致的总体BRS降低主要是由于血管段的转移增益降低所致。

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