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Vestibular modulation of muscle sympathetic nerve activity by the utricle during sub-perceptual sinusoidal linear acceleration in humans

机译:人的知觉下正弦线性加速过程中,尿囊对前臂肌肉交感神经活动的调节

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We assessed the capacity for the vestibular utricle to modulate muscle sympathetic nerve activity (MSNA) during sinusoidal linear acceleration at amplitudes extending from imperceptible to clearly perceptible. Subjects (n = 16) were seated in a sealed room, eliminating visual cues, mounted on a linear motor that could deliver peak sinusoidal accelerations of 30 mG in the antero-posterior direction. Subjects sat on a padded chair with their neck and head supported vertically, thereby minimizing somatosensory cues, facing the direction of motion in the anterior direction. Each block of sinusoidal motion was applied at a time unknown to subjects and in a random order of amplitudes (1.25, 2.5, 5, 10, 20 and 30 mG), at a constant frequency of 0.2 Hz. MSNA was recorded via tungsten microelectrodes inserted into muscle fascicles of the common peroneal nerve. Subjects used a linear potentiometer aligned to the axis of motion to indicate any perceived movement, which was compared with the accelerometer signal of actual room movement. On average, 67 % correct detection of movement did not occur until 6.5 mG, with correct knowledge of the direction of movement at ~10 mG. Cross-correlation analysis revealed potent sinusoidal modulation of MSNA even at accelerations subjects could not perceive (1.25-5 mG). The modulation index showed a positive linear increase with acceleration amplitude, such that the modulation was significantly higher (25.3 ± 3.7 %) at 30 mG than at 1.25 mG (15.5 ± 1.2 %). We conclude that selective activation of the vestibular utricle causes a pronounced modulation of MSNA, even at levels well below perceptual threshold, and provides further evidence in support of the importance of vestibulosympathetic reflexes in human cardiovascular control.
机译:我们评估了正弦线性加速期间前庭细胞在从不可感知到明显可感知的振幅范围内调节肌肉交感神经活动(MSNA)的能力。受试者(n = 16)坐在密封的房间中,消除了视觉提示,将其安装在可以在前后方向上提供30 mG峰值正弦加速度的线性电动机上。受试者坐在软垫椅子上,其颈部和头部垂直支撑,从而使体感提示最小化,面向前向的运动方向。正弦运动的每个块均在受试者不知道的时间以0.2 Hz的恒定频率以振幅的随机顺序(1.25、2.5、5、10、20和30 mG)施加。通过将钨微电极插入腓总神经的肌肉束中来记录MSNA。受试者使用与运动轴对齐的线性电位计来指示任何感知到的运动,并将其与实际房间运动的加速度计信号进行比较。平均而言,直到6.5 mG​​才进行67%的正确运动检测,正确的运动方向为〜10 mG。互相关分析显示,即使在加速状态下,受试者也无法感知到(1.25-5 mG)MSNA的有效正弦调制。调制指数显示出随加速度幅度线性增加的正值,因此在30 mG时,调制度显着更高(25.3±3.7%),而在1.25 mG时(15.5±1.2%)。我们得出结论,前庭细胞的选择性激活即使在远低于知觉阈值的水平下也能引起MSNA的明显调节,并提供进一步的证据来支持前庭交感神经反射在人类心血管控制中的重要性。

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