Mukhopadhyay A K, Johnson L R, Copeland E M, Weisbrodt N W
Am J Physiol. 1975 Aug;229(2):484-8. doi: 10.1152/ajplegacy.1975.229.2.484.
The effect of intravenously administered secretin (0.5, 2.0, 6.0 U/kg-h) and intraduodenal acidification (13.2 meq/h HCl) on the electrical activity of the small bowel of three conscious dogs with gastric and duodenal cannulas was observed. Electrical activity was recorded in fasted as well as fed conditions through silver wire electrodes implanted along the entire length of the small bowel. Intravenous infusion of secretin in all dosages and in all dogs delayed the onset of the interdigestive myoelectric complex and reduced the total percentage of slow waves with superimposed spike potentials. Intraduodenal acidification also inhibited the interdigestive myoelectric complex, which developed incompletely with fewer action potentials on slow waves. Secretin did not produce any alteration in the fed pattern of activity, slow-wave frequency, or the caudal migration of the interdigestive myoelectric complex. The present study indicates that the nuerohumoral mechanisms responsible for initiation of the interdigestive myoelectric complex may be different from those responsible for its caudal migration.
观察了静脉注射促胰液素(0.5、2.0、6.0 U/kg-h)和十二指肠酸化(13.2 meq/h盐酸)对三只装有胃和十二指肠插管的清醒犬小肠电活动的影响。通过沿小肠全长植入的银丝电极,在禁食和进食条件下记录电活动。对所有犬静脉输注各种剂量的促胰液素均延迟了消化间期肌电复合波的起始,并降低了叠加有锋电位的慢波的总百分比。十二指肠酸化也抑制了消化间期肌电复合波,其发展不完全,慢波上的动作电位较少。促胰液素对进食时的活动模式、慢波频率或消化间期肌电复合波的尾向迁移没有产生任何改变。本研究表明,负责启动消化间期肌电复合波的神经体液机制可能与负责其尾向迁移的机制不同。