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Vestibular modulation of muscle sympathetic nerve activity during sinusoidal linear acceleration in supine humans

机译:仰卧人正弦直线加速过程中肌肉交感神经活动的前庭调节

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摘要

The utricle and saccular components of the vestibular apparatus preferentially detect linear displacements of the head in the horizontal and vertical planes, respectively. We previously showed that sinusoidal linear acceleration in the horizontal plane of seated humans causes a pronounced modulation of muscle sympathetic nerve activity (MSNA), supporting a significant role for the utricular component of the otolithic organs in the control of blood pressure. Here we tested the hypothesis that the saccule can also play a role in blood pressure regulation by modulating lower limb MSNA. Oligounitary MSNA was recorded via tungsten microelectrodes inserted into the common peroneal nerve in 12 subjects, laying supine on a motorized platform with the head aligned with the longitudinal axis of the body. Slow sinusoidal linear accelerations-decelerations (peak acceleration ±4 mG) were applied in the rostrocaudal axis (which predominantly stimulates the saccule) and in the mediolateral axis (which also engages the utricle) at 0.08 Hz. The modulation of MSNA in the rostrocaudal axis (29.4 ± 3.4%) was similar to that in the mediolateral axis (32.0 ± 3.9%), and comparable to that obtained by stimulation of the utricle alone in seated subjects with the head vertical. We conclude that both the saccular and utricular components of the otolithic organs play a role in the control of arterial pressure during postural challenges.
机译:前庭装置的尿囊和囊状部件分别优先检测头部在水平和垂直平面上的线性位移。我们以前表明就座的人在水平面内的正弦线性加速度会引起明显的肌肉交感神经活动(MSNA)调节,从而支持耳石器器官的尿道成分在控制血压中发挥重要作用。在这里,我们测试了假囊也可以通过调节下肢MSNA在血压调节中发挥作用的假设。通过将钨微电极插入12位受试者的腓总神经中来记录寡单位MSNA,将其仰卧在机动平台上,头部与身体的纵轴对齐。缓慢的正弦线性加速度-减速度(峰值加速度±4 mG)以0.08 Hz的频率施加在尾脑尾轴(主要刺激球囊)和中外侧轴(也与尿囊接合)上。 MSNA在尾脑轴上的调制(29.4±3.4%)与在中外侧轴上的调制(32.0±3.9%)相似,并且与在头部垂直的就座受试者中单独刺激子宫获得的调制相似。我们得出的结论是,耳石器质器官的囊状和囊状成分在姿势挑战期间均在控制动脉压中发挥作用。

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