Chi-Fishman G, Capra N F, McCall G N
Department of Hearing and Speech Sciences, University of Maryland at College Park.
Dysphagia. 1994 Summer;9(3):149-55. doi: 10.1007/BF00341258.
Application of a cold metal probe to the anterior faucial pillar has been reported to improve swallowing in some patients with dysphagia. Although a variety of stimuli contribute to the initiation of swallowing, the effects of a controlled, cold-thermal stimulus combined with mechanical stimulation have not been examined. It is known that simultaneous stimulation of the glossopharyngeal nerve (IX) and the superior laryngeal nerve may summate to facilitate swallowing in the cat. The goal of this study was to determine whether thermomechanical stimulation of the mucosa innervated by IX would interact with threshold electrical stimulation of the internal laryngeal nerve (ILN) to augment the swallowing response in cats. Four experimental conditions were tested over 24 trials in 4 pentobarbital-anesthetized cats. These included electrical stimulation of ILN, mechanical stimulation of the anterior faucial pillar with a thermode at ambient (room) temperature, concurrent ambient-mechanical and electrical stimulation, and concurrent cold-mechanical and electrical stimulation. Tissue was cooled to 8.9 degrees C during cold-mechanical-electrical stimulation and 25.3 degrees C during ambient-mechanical-electrical and ambient-mechanical alone stimulation. Ambient-mechanical stimulation alone did not produce swallowing. However, both forms of thermomechanical-electrical stimulation elicited a significantly greater number of swallows than did electrical stimulation alone. Therefore, mechanical stimulation with a thermode was capable of modifying the swallowing response in neurologically intact cats.(ABSTRACT TRUNCATED AT 250 WORDS)
据报道,将冷金属探头应用于咽前柱可改善一些吞咽困难患者的吞咽功能。尽管多种刺激有助于引发吞咽,但受控的冷热刺激与机械刺激相结合的效果尚未得到研究。已知同时刺激舌咽神经(IX)和喉上神经可能会产生叠加效应,促进猫的吞咽。本研究的目的是确定由IX支配的黏膜的热机械刺激是否会与喉内神经(ILN)的阈下电刺激相互作用,以增强猫的吞咽反应。在4只戊巴比妥麻醉的猫身上进行了24次试验,测试了四种实验条件。这些条件包括ILN的电刺激、在环境(室温)温度下用热电极对咽前柱进行机械刺激、同时进行环境温度下的机械和电刺激以及同时进行冷机械和电刺激。在冷机械电刺激期间组织冷却至8.9摄氏度,在环境机械电刺激和仅环境机械刺激期间组织冷却至25.3摄氏度。仅环境机械刺激不会引发吞咽。然而,两种形式的热机械电刺激引发的吞咽次数均明显多于单独的电刺激。因此,用热电极进行机械刺激能够改变神经功能正常的猫的吞咽反应。(摘要截短至250字)