Yates B J, Miller A D
Department of Otolaryngology, University of Pittsburgh, Pennsylvania, USA.
J Vestib Res. 1998 Jan-Feb;8(1):17-25.
Electrical or natural stimulation of the vestibular system results in changes in blood pressure and respiratory motor output. An increase in excitatory drive on the sympathetic nervous system occurs during nose-up vestibular stimulation in cats; this response is appropriate to offset orthostatic hypotension that could result from nose-up body rotations during movements such as vertical climbing. In addition, transection of the vestibular nerves in anesthetized or awake cats compromises the ability to correct decreases in blood pressure that result from nose-up body tilt. The vestibular system also has influences on respiratory muscles; these effects are appropriate to participate in making adjustments in the activity of respiratory muscles that are necessary to offset mechanical constraints on these muscles that occur during changes in body position. These data thus suggest that the influences of the vestibular system on the autonomic and respiratory systems serve to maintain homeostasis during movement.
对前庭系统进行电刺激或自然刺激会导致血压和呼吸运动输出发生变化。在猫进行抬头前庭刺激时,交感神经系统的兴奋性驱动会增加;这种反应有助于抵消诸如垂直攀爬等运动过程中抬头身体旋转可能导致的直立性低血压。此外,在麻醉或清醒的猫身上切断前庭神经会损害其纠正因抬头身体倾斜而导致的血压下降的能力。前庭系统对呼吸肌也有影响;这些影响有助于在身体位置变化期间对呼吸肌活动进行调整,以抵消对这些肌肉产生的机械限制。因此,这些数据表明,前庭系统对自主神经系统和呼吸系统的影响有助于在运动过程中维持体内平衡。