Kadlec O, Seferna I, Bauer V
Institute of Pharmacology, Czechoslovak Academy of Sciences, Prague.
Gen Physiol Biophys. 1989 Aug;8(4):351-69.
The relationship between neurogenic responses of longitudinal and circular muscle was studied by measuring contractions and EMG or nonadrenergic, non-cholinergic (NANC) relaxations and NANC inhibitory junction potentials in different preparations of the guinea-pig ileum. NANC relaxation of longitudinal muscle was observed also without any preceding or concomitant circular muscle contraction ruling out the possibility that the latter might be the cause of the NANC relaxation. Circular muscle twitches or powerful contractions were absent if there was no preceding neurogenic or myogenic excitation of longitudinal muscle; in preparations with myenteric plexus-longitudinal muscle layers removed only small residual responses were seen although still under neurogenic influences. Thus excitation of longitudinal muscle seemed a prerequisite for synchronized and powerful contractions of circular muscle to occur. Cholinergic contraction and NANC relaxation of longitudinal muscle evoked by field stimulation were partly inhibited if the submucous plexus was also present suggesting the involvement of a more complex neuronal circuitry in these responses.
通过测量豚鼠回肠不同制剂中的收缩和肌电图或非肾上腺素能、非胆碱能(NANC)舒张以及NANC抑制性接头电位,研究了纵肌和环肌的神经源性反应之间的关系。在没有任何先前或伴随的环肌收缩的情况下,也观察到了纵肌的NANC舒张,排除了后者可能是NANC舒张原因的可能性。如果没有先前的纵肌神经源性或肌源性兴奋,则不存在环肌抽搐或强力收缩;在去除了肌间神经丛-纵肌层的制剂中,尽管仍受神经源性影响,但仅观察到小的残余反应。因此,纵肌的兴奋似乎是环肌同步强力收缩发生的先决条件。如果也存在黏膜下神经丛,电场刺激诱发的纵肌胆碱能收缩和NANC舒张会受到部分抑制,这表明在这些反应中涉及更复杂的神经元回路。