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Cortical regions associated with autonomic cardiovascular regulation during lower body negative pressure in humans

机译:人体下体负压期间与自主心血管调节相关的皮质区域

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摘要

The purpose of the present study was to determine the cortical structures involved with integrated baroreceptor-mediated modulation of autonomic cardiovascular function in conscious humans independent of changes in arterial blood pressure. We assessed the brain regions associated with lower body negative pressure (LBNP)-induced baroreflex control using functional magnetic resonance imaging with blood oxygen level-dependent (BOLD) contrast in eight healthy male volunteer subjects. The levels of LBNP administered were 5, 15 and 35 mmHg. Heart rate (HR; representing the cardiovascular response) and LBNP (representing the baroreceptor activation level) were simultaneously monitored during the scanning period. In addition, estimated central venous pressure (CVP), arterial blood pressure (ABP) and muscle sympathetic nerve activity were recorded on a separate session. Random effects analyses (SPM2) were used to evaluate significant (P < 0.05) BOLD signal changes that correlated separately with both LBNP and HR (15- and 35-mmHg versus 5-mmHg LBNP). Compared to baseline, steady-state LBNP at 15 and 35 mmHg decreased CVP (from 7 ± 1 to 5 ± 1 and 4 ± 1 mmHg, respectively) and increased MSNA (from 12 ± 1 to 23 ± 3 and 36 ± 4 bursts min−1, respectively, both P < 0.05 versus baseline). Furthermore, steady-state LBNP elevated HR from 54 ± 2 beats min−1 at baseline to 64 ± 2 beats min−1 at 35-mmHg suction. Both mean arterial and pulse pressure were not different between rest and any level of LBNP. Cortical regions demonstrating increased activity that correlated with higher HR and greater LBNP included the right superior posterior insula, frontoparietal cortex and the left cerebellum. Conversely, using the identical statistical paradigm, bilateral anterior insular cortices, the right anterior cingulate, orbitofrontal cortex, amygdala, midbrain and mediodorsal nucleus of the thalamus showed decreased neural activation. These data corroborate previous investigations highlighting the involved roles of the insula, anterior cingulate cortex and amygdala in central autonomic cardiovascular control. In addition, we have provided the first evidence for the identification of the cortical network involved specifically with baroreflex-mediated autonomic cardiovascular function in conscious humans.
机译:本研究的目的是确定独立于动脉血压变化的有意识的人类中自主神经系统功能的综合压力感受器介导的调节所涉及的皮质结构。我们使用功能性磁共振成像与血氧水平依赖性(BOLD)对比,评估了八名健康男性志愿者受试者与下身负压(LBNP)诱导的压力反射控制相关的大脑区域。施用的LBNP水平为5、15和35mmHg。在扫描期间同时监测心率(HR;代表心血管反应)和LBNP(代表压力感受器激活水平)。此外,在单独的会议上记录了估计的中心静脉压(CVP),动脉血压(ABP)和肌肉交感神经活动。随机效应分析(SPM2)用于评估与LBNP和HR分别相关的显着(P <0.05)BOLD信号变化(15mmHg和35mmHg对5mmHg LBNP)。与基线相比,稳态LBNP在15和35 mmHg时CVP降低(分别从7±1到5±1和4±1 mmHg)和MSNA增加(从12±1到23±3和36±4 min突发) -1 分别为P <0.05与基线)。此外,稳态LBNP将心率从基线时的54±2次min -1 升高至35 mmHg吸力时的64±2次min -1 。在静止和任何水平的LBNP之间,平均动脉压和脉压均无差异。皮质区显示活动增加,与较高的心率和较高的LBNP相关,包括右上后岛,前额叶皮层和左小脑。相反,使用相同的统计范式,丘脑的双侧前岛突皮质,右前扣带回,眶额皮质,杏仁核,中脑和中枢神经核显示神经激活降低。这些数据证实了先前的研究结果,这些研究强调了岛突,前扣带回皮层和杏仁核在中枢自主神经控制中的作用。此外,我们为有意识的人类中与压力反射介导的自主性心血管功能有关的皮层网络的识别提供了第一个证据。

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