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Respiratory activity in glossopharyngeal vagus and accessory nerves and pharyngeal constrictors in newborn rat in vitro

机译:新生大鼠舌咽迷走神经副神经和咽缩管的呼吸活动

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摘要

class="enumerated" style="list-style-type:decimal">Previously, in a brainstem-spinal cord-rib preparation from neonatal rats we demonstrated that a decrement in extracellular pH (from about 7.4 to 7.1) caused expiratory activity in an internal intercostal muscle (IIM) during the first half of the expiratory phase (Ea). As the initial step in finding nerves or muscles firing during the second half of the expiratory phase (Eb), the patterns of activity in the glossopharyngeal, vagus and accessory nerves were examined in the present study.Since the emerging motor rootlets of these three nerves (> 20; collected into about 10 bundles before the jugular foramen) are distributed in a continuous fashion from rostral to caudal levels of the brainstem, visual identification was impossible. Therefore, antidromic compound action potentials evoked by stimulation of the glossopharyngeal nerve (IX), the pharyngeal branch of the vagus nerve (PhX), the superior laryngeal nerve (SLN), the cervical vagus nerve (CX) and the accessory nerve (XI) were recorded from the peripheral stumps of the various rootlets. Nerve rootlets could be categorised into rostral, intermediate and caudal groups (rostIX-XI, intIX-XI, caudIX-XI). The rostIX-XI rootlets showed their largest potential on IX stimulation, while the intIX-XI and caudIX-XI rootlets showed their largest potentials on CX stimulation. The intIX-XI rootlets showed larger potentials on PhX and SLN stimulation than the caudIX-XI rootlets.Activity was recorded simultaneously from the central stumps of the rootlets in the above three groups. Most rootlets showed inspiratory bursts. Under low pH conditions, all representatives of group rostIX-XI, most of intIX-XI and about half of caudIX-XI showed additional bursts during the Ea phase. Groups intIX-XI and caudIX-XI but not rostIX-XI also showed discrete bursts during the Eb phase in some preparations. In general, expiratory activity was prominent in intIX-XI. The spinal branch of XI showed no consistent respiratory activity.Since the intIX-XI rootlets showed Eb bursts and large antidromic potentials on stimulation of PhX and SLN (which innervate the inferior pharyngeal constrictor muscle (IPC)), electromyograms were recorded from the rostral and caudal parts of IPC (rIPC and cIPC). Under low pH conditions, cIPC showed bursts during the Ea and Eb phases, while rIPC showed bursts predominantly during the Eb phase.These results indicate that recording from rIPC would be a useful way of examining the neuronal mechanisms responsible for Eb phase activity.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 以前,在新生大鼠的脑干-脊髓带状肋骨制剂中,我们证明了呼气阶段前半段(Ea)的细胞外pH值降低(从7.4至7.1)导致肋间内肌肉(IIM)的呼气活动。 )。作为发现呼气期后半段(Eb)的神经或肌肉放电的第一步,本研究对舌咽,迷走神经和副神经的活动模式进行了研究。 这三根神经的新兴运动性小根(> 20;在颈椎孔前被收集成约10束)以从脑干的头到尾的水平连续分布,因此无法进行视觉识别。因此,通过刺激舌咽神经(IX),迷走神经的咽分支(PhX),喉上神经(SLN),子宫颈迷走神经(CX)和副神经(XI)诱发了抗复合复合动作电位从各种小根的周围树桩上记录下来。神经小根可分为鼻状,中间状和尾状组(rostIX-XI,intIX-XI,caudIX-XI)。 rostIX-XI根系在IX刺激下显示出最大的潜力,而intIX-XI和caudIX-XI根系在CX刺激上显示出最大的潜力。 intIX-XI根在PhX和SLN刺激上比caudIX-XI根具有更大的潜力。 同时从上述三组根的中央树桩中记录到活性。大多数小根表现出吸气爆发。在低pH条件下,rostIX-XI组,intIX-XI的大部分和caudIX-XI的大约一半的所有代表在Ea阶段显示出额外的爆发。在某些准备工作中,intIX-XI和caudIX-XI组而不是rostIX-XI组在Eb阶段也显示出离散的爆发。通常,在intIX-XI中,呼气活动很突出。 XI的脊柱分支没有一致的呼吸活动。 由于intIX-XI的小根在刺激PhX和SLN(神经支配下咽缩窄肌(IPC))时表现出Eb爆发和较大的抗驱电位,从IPC的鼻尖和尾部(rIPC和cIPC)记录肌电图。在低pH条件下,cIPC在Ea和Eb阶段显示爆发,而rIPC主要在Eb阶段显示爆发。 这些结果表明,从rIPC进行记录将是检查负责的神经元机制的有用方法Eb相活性。

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