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脑干损伤的麻醉猫的咳嗽和喉肌放电

Cough and laryngeal muscle discharges in brainstem lesioned anaesthetized cats.

作者信息

Poliacek I, Stránsky A, Szereda-Przestaszewska M, Jakus J, Baráni H, Tomori Z, Halasová E

机构信息

Department of Medical Biophysics, Jessenius Faculty of Medicine, Comenius University, Martin, Slovak Republic, Malá Hora 4, 03754 Martin, Slovak Republic.

出版信息

Physiol Res. 2005;54(6):645-54.

Abstract

Experiments were carried out to determine whether there are separate drives from the selected neuronal networks of the brainstem affecting the discharge patterns of laryngeal and respiratory pump muscles during cough. Twenty-four non-decerebrate spontaneously breathing cats anesthetized with sodium pentobarbitone were used. Microinjections of kainic acid into the lateral tegmental field of the medulla, medullary midline or pontine respiratory group eliminated the cough evoked by mechanical stimulation of the tracheobronchial and laryngopharyngeal mucosa. These stimuli, in most cases, provoked irregular bursts of discharges in the posterior cricoarytenoid and thyroarytenoid laryngeal muscles (or they had no effect on them). No pattern of laryngeal muscle activities following lesions resembled the laryngeal cough response. Lesions of the target regions did not result in any apparent changes in the eupnoeic pattern of laryngeal activity. Neurons of the medullary lateral tegmental field, raphe nuclei and the pontine respiratory group seem to be indispensable for the configuration of the central cough motor pattern. However, these neurons do not appear to be essential for the discharge patterns of laryngeal motoneurons during eupnoea. The residual laryngeal "cough" responses are probably mediated by an additional motor drive.

摘要

进行了实验,以确定脑干中选定的神经网络是否存在独立的驱动,影响咳嗽期间喉肌和呼吸泵肌的放电模式。使用了24只戊巴比妥钠麻醉的非去脑自主呼吸猫。向延髓外侧被盖区、延髓中线或脑桥呼吸组微量注射海藻酸,消除了气管支气管和喉咽粘膜机械刺激诱发的咳嗽。在大多数情况下,这些刺激在后环杓肌和甲杓喉肌中引发不规则的放电爆发(或对它们没有影响)。损伤后喉肌活动模式与喉咳嗽反应均不相似。靶区域损伤未导致喉活动的平静呼吸模式出现任何明显变化。延髓外侧被盖区、中缝核和脑桥呼吸组的神经元似乎是中枢咳嗽运动模式形成所必需的。然而,这些神经元似乎不是平静呼吸期间喉运动神经元放电模式所必需的。残余的喉部“咳嗽”反应可能由额外的运动驱动介导。

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