Suzuki H, Kuriyama H
Jpn J Physiol. 1975;25(6):759-73. doi: 10.2170/jjphysiol.25.759.
The membrane potential of the electrically quiescent circular muscle fibre is higher than that of the spontaneously active longitudinal muscle fibre. The length constant of circular muscle fibres is longer than that of the longitudinal muscle. The electrical activity of the longitudinal muscle membrane is enhanced by caffeine and PGE1 is suppressed for the circular muscle. Isotonic K Krebssolution generates a large tonic response of the contracture of longitudinal muscle tissue, but in circular muscle it is small. Following an inward current pulse, a large rebound contraction of the circular muscle was generated during K-INDUCED CONTRACTURE BUT IT WAS SMALL IN THE LONGITUDINAL MUSCLE TISSUE. Caffeine suppressed the K-induced contracture of both tissues but enhanced the rebound contraction of the circular muscel. Verapamil and lanthanum suppressed the mechanical responses of both muscle tissues but rebound contraction evoked in isotonic K Krebs solution was of longer duration in circular muscle tissue than in longitudinal muscle tissues. It is postulated that both muscle tissues possess different electrical and mechanical properties, and that these differences are not caused by nervous activity.
电静息的环形肌纤维的膜电位高于自发活动的纵行肌纤维。环形肌纤维的长度常数比纵行肌的长。咖啡因可增强纵行肌膜的电活动,而PGE1则抑制环形肌的电活动。等渗钾克氏溶液可引起纵行肌组织较大的强直性挛缩反应,但对环形肌则较小。在向内电流脉冲后,钾诱导挛缩期间环形肌产生较大的反弹收缩,但在纵行肌组织中则较小。咖啡因抑制了两种组织的钾诱导挛缩,但增强了环形肌的反弹收缩。维拉帕米和镧抑制了两种肌肉组织的机械反应,但在等渗钾克氏溶液中诱发的环形肌组织的反弹收缩持续时间比纵行肌组织更长。据推测,两种肌肉组织具有不同的电和机械特性,且这些差异并非由神经活动引起。