Morin D, Monteau R, Hilaire G
Equipe Biologie des Rythmes et du Développement, URA-CNRS 0205, Faculté des Sciences et Techniques St Jérôme, Marseille, France.
Exp Brain Res. 1991;84(1):229-32. doi: 10.1007/BF00231779.
Previous experiments performed in the in vitro newborn rat brainstem-spinal cord preparation reported that the addition of serotonin (5-HT, 30-50 microM) to the bathing medium induced increases in the respiratory frequency and a large tonic discharge on all the cervical ventral roots. The aim of the present work was to define whether the 5-HT-induced tonic discharge involved respiratory or non-respiratory motoneurones. Intracellular recordings demonstrated that cervical (C2) motoneurones (n = 27) were depolarized by 5-HT but that the 5-HT-induced tonic discharge was mainly due to recruitment of silent motoneurones (n = 18) which fired permanently (15/18; 17 +/- 3 Hz) under 5-HT. The respiratory motoneurones (n = 9) retained a phasic inspiratory discharge (5/9), even if some (4/9) occasionally exhibited a few spikes during expiration. Therefore, it is concluded that the 5-HT-induced tonic discharge is unlikely to have functional significance in respiration.
先前在新生大鼠脑干 - 脊髓体外制备实验中报告称,向浴液中添加血清素(5 - 羟色胺,5 - HT,30 - 50微摩尔)会导致呼吸频率增加,并使所有颈前根出现大量强直放电。本研究的目的是确定5 - HT诱导的强直放电涉及呼吸性还是非呼吸性运动神经元。细胞内记录显示,颈(C2)运动神经元(n = 27)被5 - HT去极化,但5 - HT诱导的强直放电主要是由于沉默运动神经元(n = 18)的募集,这些沉默运动神经元在5 - HT作用下持续放电(15/18;17 ± 3赫兹)。呼吸运动神经元(n = 9)保持相位性吸气放电(5/9),即使有些(4/9)在呼气时偶尔会出现一些动作电位。因此,得出结论,5 - HT诱导的强直放电在呼吸中不太可能具有功能意义。