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Integration of the reflex pharyngeal swallow into rhythmic oral activity in a neurologically intact pig model.

机译:在神经完整的猪模型中,将反射性咽咽吞咽整合到有节奏的口腔活动中。

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Mammalian swallowing involves the coordinated and sequential activity of many oropharyngeal muscles. Using synchronous electromyography (EMG) and videofluorography, we recorded the pattern of EMG activity for 12 muscles during swallowing in neurologically intact suckling pigs. We tested the hypothesis that this EMG pattern corresponded to the established pattern of activity for the isolated, reflexive pharyngeal swallow of the decerebrate infant pig. The EMG activity associated with the normal swallow of the intact animal had two components: a staggered pattern of single EMG bursts that were prominent in the stylohyoid, thyrohyoid, cricothyroid, and omohyoid muscles and double bursts of activity in some muscles, including geniohyoid and genioglossus, with the same underlying periodicity as suckling. Most of the staggered activity pattern, a linear sequence of progressively delayed activities in different muscles, was not statistically different from that previously found in the reflexive pharyngeal swallow of the decerebrate. However, not all components of the linear sequence of the reflexive swallow were inserted unchanged into the intact swallow. Some components appeared to be delayed or advanced, bringing them into phase with the underlying rhythmic activity. The difference between swallows of intact and of decerebrate animals was not solely due to the presence of rhythmic activity in the former. The timing of some EMG activities in intact animals also differed from the same activities in the few decerebrates that exhibited rhythmic tongue and jaw activity. These results suggest cerebral function influences the EMG pattern of the pharyngeal swallow, which has traditionally been considered a purely reflex pattern.
机译:哺乳动物吞咽涉及许多口咽肌肉的协调和顺序活动。使用同步肌电图(EMG)和视频透视图,我们记录了吞咽过程中神经学完好的乳猪的12条肌肉的肌电活动模式。我们检验了这种EMG模式与去脑小猪的分离性,自反咽吞咽的活动模式相对应的假设。与完整动物的正常吞咽有关的EMG活动有两个组成部分:交错的单个EMG爆发模式,在突触舌骨,甲状腺舌骨,环甲甲状腺和舌骨舌骨肌中突出,在某些肌肉(包括舌骨舌骨和舌骨舌肌)中出现双重爆发,其基本周期与哺乳相同。大多数交错活动模式(在不同肌肉中逐渐延迟的活动的线性序列)与先​​前在小脑反射性咽咽中发现的序列没有统计学差异。但是,并非反射性燕子的线性序列的所有成分都原样插入完整的燕子中。一些成分似乎被延迟或提前,使它们与潜在的节奏活动同相。完整和无脑动物的吞咽差异不仅是由于前者存在节律性活动所致。完整动物中某些EMG活动的时间安排也与少数表现出有规律的舌头和下巴活动的小动物的相同活动不同。这些结果表明,脑功能影响咽咽的肌电图模式,传统上认为这是纯粹的反射模式。

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