Bailey E Fiona, Huang Yu-Hsien, Fregosi Ralph F
Department of Physiology, College of Medicine, The University of Arizona, Tucson, AZ 85721-0093, USA.
J Appl Physiol (1985). 2006 Nov;101(5):1377-85. doi: 10.1152/japplphysiol.00379.2006. Epub 2006 Jul 6.
We recently showed respiratory-related coactivation of both extrinsic and intrinsic tongue muscles in the rat. Here, we test the hypothesis that intrinsic tongue muscles contribute importantly to changes in velopharyngeal airway volume. Spontaneously breathing anesthetized rats were placed in a MRI scanner. A catheter was placed in the hypopharynx and connected to a pressure source. Axial and sagittal images of the velopharyngeal airway were obtained, and the volume of each image was computed at airway pressures ranging from +5.0 to -5.0 cm H2O. We obtained images in the hypoglossal intact animal (i.e., coactivation of intrinsic and extrinsic tongue muscles) and after selective denervation of the intrinsic tongue muscles, with and without electrical stimulation. Denervation of the intrinsic tongue muscles reduced velopharyngeal airway volume at atmospheric and positive airway pressures. Electrical stimulation of the intact hypoglossal nerve increased velopharyngeal airway volume; however, when stimulation was repeated after selective denervation of the intrinsic tongue muscles, the increase in velopharyngeal airway volume was significantly attenuated. These findings support our working hypothesis that intrinsic tongue muscles play a critical role in modulating upper airway patency.
我们最近发现,在大鼠中,外在和内在舌肌存在与呼吸相关的共同激活。在此,我们检验以下假设:内在舌肌对腭咽气道容积的变化起重要作用。将自主呼吸的麻醉大鼠置于磁共振成像(MRI)扫描仪中。在下咽放置一根导管并连接到压力源。获取腭咽气道的轴向和矢状图像,并在气道压力范围为 +5.0 至 -5.0 cm H₂O 时计算每个图像的容积。我们在舌下神经完整的动物(即内在和外在舌肌共同激活)以及内在舌肌选择性去神经支配后,有无电刺激的情况下获取图像。内在舌肌去神经支配会降低大气压和气道正压时的腭咽气道容积。完整舌下神经的电刺激会增加腭咽气道容积;然而,在内在舌肌选择性去神经支配后重复刺激时,腭咽气道容积的增加会显著减弱。这些发现支持了我们的工作假设,即内在舌肌在调节上气道通畅性方面起关键作用。