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新生大鼠离体脑干脑片制备中体外诱发的吞咽样活动。

Swallowing-like activity elicited in vitro in neonatal rat organ attached brainstem block preparation.

作者信息

Kogo Mikihiko, Yamanishi Tadashi, Koizumi Hidehiko, Matsuya Tokuzo

机构信息

First Department of Oral and Maxillofacial Surgery, Osaka University, Graduate School of Dentistry, 1-8 Yamadaoka, Suita City, Osaka 565-0871, Japan.

出版信息

Brain Res. 2002 Nov 15;955(1-2):24-33. doi: 10.1016/s0006-8993(02)03339-5.

Abstract

The purpose of this study was to induce swallowing in an in vitro neonatal rat brainstem preparation and to analyze the circuit. When we applied GABA(A) receptor antagonist (bicuculine methiodide, BIC) into the the nucleus tractus solitarius (NTS) in the organ attached brainstem preparation of neonatal (0-3 days after birth) rats, jaw closing movement, palatal lifting, and tongue peristalsis-like movement were seen, subsequent to elevation of the tip of the tongue and anterior movement of the larynx (closure of the trachea). The NTS has been proposed to be a critical locus for swallowing pattern generation in mammals. Electrical stimulation into the NTS or the vagal afferent nerve (X) following an application of BIC (10 microM) to the recording chamber initiated the same organ movement. This movement caused temporary inhibition of respiratory activity that was simultaneously recorded from the fourth cervical ventral nerve (C4). We were also able to elicit this activity in a whole organ (from lip to stomach, midline intact) preparation, whose oral cavity was filled with dye (pontamine sky-blue 3 mM, 50 microl), using each of the three types of stimulation. The esophagus, which was never stained by spontaneous respiratory movements, was stained only after the experimental stimulation. We concluded that the activity elicited was swallowing-like activity and the smallest circuit for swallowing pattern generation exists in this preparation.

摘要

本研究的目的是在新生大鼠脑干的体外制备物中诱导吞咽并分析其神经回路。当我们将GABA(A)受体拮抗剂(甲磺酸荷包牡丹碱,BIC)应用于新生(出生后0 - 3天)大鼠的附器官脑干制备物中的孤束核(NTS)时,在舌尖抬高和喉向前移动(气管关闭)之后,观察到下颌闭合运动、腭部上抬以及类似舌蠕动的运动。NTS被认为是哺乳动物吞咽模式产生的关键部位。在向记录室施加BIC(10微摩尔)后,对NTS或迷走传入神经(X)进行电刺激引发了相同的器官运动。这种运动导致同时从第四颈腹侧神经(C4)记录到的呼吸活动暂时受到抑制。我们还能够在整个器官(从嘴唇到胃部,中线完整)的制备物中引发这种活动,该制备物的口腔中填充了染料(3 mM的丽春红天蓝,50微升),使用三种刺激方式中的每一种均可。食管在自发呼吸运动中从未被染色,仅在实验刺激后被染色。我们得出结论,引发的活动是类似吞咽的活动,并且在该制备物中存在产生吞咽模式的最小神经回路。

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