首页> 美国卫生研究院文献>Journal of Applied Physiology >Central nervous system integration of sensorimotor signals in oral and pharyngeal structures: oropharyngeal kinematics response to recurrent laryngeal nerve lesion
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Central nervous system integration of sensorimotor signals in oral and pharyngeal structures: oropharyngeal kinematics response to recurrent laryngeal nerve lesion

机译:口腔和咽部结构中感觉运动信号的中枢神经系统整合:咽喉运动学对喉返神经病变的反应

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摘要

Safe, efficient liquid feeding in infant mammals requires the central coordination of oropharyngeal structures innervated by multiple cranial and spinal nerves. The importance of laryngeal sensation and central sensorimotor integration in this system is poorly understood. Recurrent laryngeal nerve lesion (RLN) results in increased aspiration, though the mechanism for this is unclear. This study aimed to determine the effect of unilateral RLN lesion on the motor coordination of infant liquid feeding. We hypothesized that 1) RLN lesion results in modified swallow kinematics, 2) postlesion oropharyngeal kinematics of unsafe swallows differ from those of safe swallows, and 3) nonswallowing phases of the feeding cycle show changed kinematics postlesion. We implanted radio opaque markers in infant pigs and filmed them pre- and postlesion with high-speed videofluoroscopy. Markers locations were digitized, and swallows were assessed for airway protection. RLN lesion resulted in modified kinematics of the tongue relative to the epiglottis in safe swallows. In lesioned animals, safe swallow kinematics differed from unsafe swallows. Unsafe swallow postlesion kinematics resembled prelesion safe swallows. The movement of the tongue was reduced in oral transport postlesion. Between different regions of the tongue, response to lesion was similar, and relative timing within the tongue was unchanged. RLN lesion has a pervasive effect on infant feeding kinematics, related to the efficiency of airway protection. The timing of tongue and hyolaryngeal kinematics in swallows is a crucial locus for swallow disruption. Laryngeal sensation is essential for the central coordination in feeding of oropharyngeal structures receiving motor inputs from different cranial nerves.
机译:要在婴儿哺乳动物中安全,高效地喂食液体,需要由多条颅神经和脊神经支配的口咽结构的中心协调。对该系统中喉部感觉和中央感觉运动整合的重要性了解甚少。喉返神经病变(RLN)导致抽吸增加,尽管其机制尚不清楚。这项研究旨在确定单侧RLN病变对婴儿液体喂养运动协调的影响。我们假设1)RLN病变导致吞咽运动学改变,2)不安全吞咽的病变后口咽运动与安全吞咽不同,并且3)吞咽周期的非吞咽阶段显示出运动学的改变。我们在婴儿猪中植入了不透射线的标记物,并通过高速荧光透视对其病变前后进行了拍摄。将标记位置数字化,并评估燕子对气道的保护作用。 RLN病变导致安全吞咽中舌相对于会厌的运动学改变。在病变动物中,安全吞咽运动学与不安全吞咽不同。不安全的吞咽后运动学类似于安全的吞咽前运动。在口腔运输后,舌头的运动减少了。在舌头的不同区域之间,对病变的反应相似,并且舌头内的相对时机不变。 RLN病变对婴儿喂养运动学有普遍影响,与气道保护效率有关。吞咽舌头和鼻咽运动的时机是吞咽中断的关键部位。咽部感觉对于从不同的颅神经接收运动输入的口咽结构的进食的中央协调至关重要。

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