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Effects of intestinal secretagogues and distension on small bowel myoelectric activity in fasted and fed conscious dogs

机译:肠促泌剂和扩张对禁食和进食清醒犬小肠肌电活动的影响

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摘要

1. Defined jejunal segments were perfused with solutions of bile salts and of ricinoleic acid during fasting and after feeding in two groups of conscious dogs, one with the segment in continuity, and the other with a Thirty-Vella loop. Myoelectric activity was recorded from chronically implanted electrodes on the jejunal segment and also from the proximal and distal in situ bowel.2. The results in both groups were identical. During fasting, migrating complexes were present in the segment, but were replaced by intermittent spike activity during chenodeoxycholate without and with ricinoleic acid perfusion. After food, when migrating complexes were replaced by intermittent spike activity, none of the solutions produced any consistent effect.3. In fasted animals, low levels of distension (15 mmHg) interrupted the migrating complexes in the segment and induced intermittent spike activity which was similar to that seen with the secretagogues. The migrating complexes in the main bowel continued during distension. In fed animals, spike activity increased in the segment during distension at 25 mmHg and decreased in the main bowel. In both groups, distension of the segment to pressures between 37.5 and 50 mmHg abolished spike activity both in the distended segment and the main bowel in fasted and fed states, and, in fasted dogs, migrating complexes were also abolished.4. These results demonstrate that the inhibitory intestino-intestinal reflex is mediated through extrinsic nerves and does not require an intact myenteric plexus, whereas the altered myoelectric activity induced by secretagogues is a local effect and does not spread to adjacent bowel through either intrinsic or extrinsic neural pathways. It seems likely that the local motor effect of secretagogues is a result of net secretion, producing distension to pressures below the threshold required to activate the intestino-intestinal reflex.
机译:1.在禁食期间和喂食两组有意识的狗后,在胆汁盐和蓖麻油酸溶液中灌输确定的空肠节段,一组是连续的,另一组是三十-维拉环。空肠段的慢性植入电极以及近端和远端原位肠记录了肌电活动。2。两组的结果相同。禁食期间,节段中存在迁移复合物,但在鹅去氧胆酸盐未加蓖麻油酸灌注的情况下,其间断性刺突活性被其取代。食物进食后,当迁移复合物被间歇性峰值活性所取代时,没有一种溶液产生一致的效果。3。在禁食的动物中,低水平的扩张(15 mmHg)中断了该节段中的迁移复合物,并诱导了间歇性刺突活动,这与促分泌素相似。膨胀期间,主肠中的迁移复合物继续存在。在喂食的动物中,在25 mmHg的扩张过程中,节段的刺突活性增加,而主肠则降低。在两组中,节段均扩张至37.5至50 mmHg的压力,在禁食和进食状态下,在扩张段和主肠中都消除了刺突活动,在禁食的狗中,也消除了迁移复合物。4。这些结果表明,抑制性肠-肠反射是通过外在神经介导的,不需要完整的肠神经丛,而促分泌素引起的改变的肌电活动是局部作用,不会通过内在或外在神经途径扩散到邻近的肠。促分泌素的局部运动作用似乎是净分泌的结果,导致压力低于激活肠-肠反射所需的阈值而产生扩张。

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