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Effect of positional changes of anatomic structures on upper airway dilating muscle shortening during electro- and chemostimulation

机译:解剖结构的位置变化对电刺激和化学刺激过程中上呼吸道扩张肌缩短的影响

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Positional changes of anatomic structures surrounding the upper airway are known to affect pharyngeal mechanics and collapsibility. We hypothesized that these alterations also affect the ability of the upper airway dilator muscles to enlarge the pharynx by altering their ability to shorten when activated. Using sonomicrometry, we evaluated in seven anesthetized dogs the effects of changes in tracheal and head position on the length of the genioglossus (GG) and the geniohyoid (GH) and the effects of these positional changes on the magnitude of shortening of the two muscles in response to electro- (ES) and chemostimulation ( CS). Caudal traction of the trachea lengthened the GG and GH in all dogs, whereas cranial displacement of the trachea and flexion of the head to a vertical position shortened the muscles. Compared with the magnitude of ES-induced shortening in the neutral position, ES-induced shortening of the GG was 144.7 +/- 14.6, 49.3 +/- 4.3, and 33.5 +/- 11.6% during caudal and cranial displacement of the trachea and during head flexion, respectively. Similar effects of the positional changes were found for the GH, as well as for both muscles during respiratory stimulation with PCO2 of 90 Torr at the end of CO2 rebreathing, although inspiratory muscle shortening during CS reached only one-quarter to one-third of the magnitude observed during ES. We conclude that positional alterations of anatomic structures in the neck have a dramatic effect on the magnitude of shortening of the activated GG and GH, which may reduce substantially their ability to protect pharyngeal patency.
机译:已知上呼吸道周围的解剖结构的位置变化会影响咽部力学和可折叠性。我们假设这些改变还通过改变其激活时的缩短能力来影响上呼吸道扩张肌扩大咽部的能力。我们使用体测法,在七只麻醉的狗中评估了气管和头部位置变化对gen舌肌(GG)和舌骨舌骨(GH)长度的影响,以及这些位置变化对两只肌肉缩短的程度的影响。对电(ES)和化学刺激(CS)的响应。气管的尾部牵拉延长了所有犬的GG和GH,而气管的颅骨移位和头部向垂直位置的弯曲缩短了肌肉。与ES引起的中性位置缩短的幅度相比,ES引起的GG在气管和尾部和颅骨移位时的缩短分别为144.7 +/- 14.6、49.3 +/- 4.3和33.5 +/- 11.6%。头部弯曲时在二氧化碳再呼吸结束时,GH以及在呼吸刺激过程中用90 Torr的PCO2对两条肌肉的位置变化也产生了类似的影响,尽管CS期间的吸气肌肉缩短仅达到了二氧化碳的四分之一到三分之一。 ES期间观察到的震级。我们得出的结论是,颈部解剖结构的位置改变对激活的GG和GH缩短的幅度有显着影响,这可能会大大降低它们保护咽部通畅的能力。

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