Arshian M, Holtje R J, Cotter L A, Rice C D, Cass S P, Yates B J
Department of Otolaryngology, University of Pittsburgh, Eye and Ear Institute, Pittsburgh, PA 15213, USA.
J Appl Physiol (1985). 2007 Jul;103(1):347-52. doi: 10.1152/japplphysiol.00211.2007. Epub 2007 Apr 12.
A variety of experimental approaches in human subjects and animal models established that the vestibular system contributes to regulation of respiration. In cats, the surgical elimination of labyrinthine signals produced changes in the spontaneous activity and posturally related responses of a number of respiratory muscles. However, these effects were complex and sometimes varied between muscle compartments, such that the physiological role of vestibulo-respiratory responses is unclear. The present study determined the functional significance of vestibulo-respiratory influences by examining the consequences of a bilateral labyrinthectomy on breathing rate and the pressure, volume, and flow rate of air exchanged during inspiration and expiration as body orientation with respect to gravity was altered. Data were collected from conscious adult cats acclimated to breathing through a facemask connected to a pneuomotach during 60 degrees head-up pitch and ear-down roll body rotations. Removal of vestibular inputs resulted in a 15% reduction in breathing rate, a 13% decrease in minute ventilation, a 16% decrease in maximal inspiratory airflow rate, and a 14% decrease in the maximal expiratory airflow rate measured when the animals were in the prone position. However, the lesions did not appreciably affect phasic changes in airflow parameters related to alterations in posture. These results suggest that the role of the vestibular system in the control of breathing is to modify baseline respiratory parameters in proportion to the general intensity of ongoing movements, and not to rapidly alter ventilation in accordance with body position.
在人体受试者和动物模型中采用的多种实验方法证实,前庭系统有助于调节呼吸。在猫身上,手术消除迷路信号会使一些呼吸肌的自发活动和与姿势相关的反应发生变化。然而,这些影响很复杂,有时在肌肉隔室之间也有所不同,因此前庭 - 呼吸反应的生理作用尚不清楚。本研究通过检查双侧迷路切除对呼吸频率以及随着身体相对于重力的方向改变,吸气和呼气过程中交换的空气压力、容积和流速的影响,来确定前庭 - 呼吸影响的功能意义。数据收集自适应通过连接到气动换能器的面罩呼吸的成年清醒猫,在头部向上倾斜60度和耳部向下滚动的身体旋转过程中进行。去除前庭输入导致动物处于俯卧位时呼吸频率降低15%,分钟通气量降低13%,最大吸气气流速率降低16%,最大呼气气流速率降低14%。然而,这些损伤并未明显影响与姿势改变相关的气流参数的相位变化。这些结果表明,前庭系统在呼吸控制中的作用是根据正在进行的运动的总体强度来改变基线呼吸参数,而不是根据身体位置快速改变通气。