Lammers Wim J E P, Stephen Betty, Slack John R
Department of Physiology, Faculty of Medcine and Health Sciences, United Arab Emirates University, Al Ain, United Arab Emirates.
Am J Physiol Gastrointest Liver Physiol. 2002 Sep;283(3):G778-86. doi: 10.1152/ajpgi.00390.2001.
The relationship between slow waves and peristaltic reflexes has not been well analyzed. In this study, we have recorded the electrical activity of slow waves together with that generated by spontaneous peristaltic contractions at 240 extracellular sites simultaneously. Recordings were made from five isolated tubular and six sheet segments of feline duodenum superfused in vitro. In all preparations, slow waves propagated as broad wave fronts along the longitudinal axis of the preparation in either the aborad or the orad direction. Electrical potentials recorded during peristalsis (peristaltic waves) also propagated as broad wave fronts in either directions. Peristaltic waves often spontaneously stopped conducting (46%), in contrast to slow waves that never did. Peristaltic waves propagated at a lower velocity than the slow waves (0.98 +/- 0.25 and 1.29 +/- 0.28 cm/s, respectively; P < 0.001; n = 24) and in a direction independent of the preceding slow wave direction (64% in the same direction, 46% in the opposite direction). In conclusion, slow waves and peristaltic waves in the isolated feline duodenum seem to constitute two separate electrical events that may drive two different mechanisms of contraction in the small intestine.
慢波与蠕动反射之间的关系尚未得到充分分析。在本研究中,我们同时在240个细胞外位点记录了慢波的电活动以及由自发性蠕动收缩产生的电活动。记录取自体外灌注的猫十二指肠的五个分离管状段和六个片状段。在所有标本中,慢波以宽波阵面沿标本的纵轴在向肛或向口方向传播。蠕动期间记录的电位(蠕动波)也以宽波阵面在两个方向传播。与慢波从不停止传导不同,蠕动波常常自发停止传导(46%)。蠕动波的传播速度低于慢波(分别为0.98±0.25和1.29±0.28 cm/s;P<0.001;n=24),且其传播方向与先前慢波的方向无关(64%同向,46%反向)。总之,分离的猫十二指肠中的慢波和蠕动波似乎构成两个独立的电活动事件,可能驱动小肠中两种不同的收缩机制。