Amaris M A, Rashev P Z, Mintchev M P, Bowes K L
Department of Surgery, University of Alberta, Edmonton, Alberta, Canada.
Gut. 2002 Apr;50(4):475-9. doi: 10.1136/gut.50.4.475.
Invoked peristaltic contractions and movement of solid content have not been attempted in normal canine colon. The purpose of this study was to determine if movement of solid content through the colon could be produced by microprocessor controlled sequential stimulation.
The study was performed on six anaesthetised dogs. At laparotomy, a 15 cm segment of descending colon was selected, the proximal end closed with a purse string suture, and the distal end opened into a collecting container. Four sets of subserosal stimulating electrodes were implanted at 3 cm intervals. The segment of bowel was filled with a mixture of dog food and 50 plastic pellets before each of 2-5 random sessions of non-stimulated or stimulated emptying. Propagated contractions were generated using microprocessor controlled bipolar trains of 50 Hz rectangular voltage having 20 V (peak to peak) amplitude, 18 second stimulus duration, and a nine second phase lag between stimulation trains in sequential electrode sets.
Electrical stimulation using the above mentioned parameters resulted in powerful phasic contractions that closed the lumen. By phase locking the stimulation voltage between adjacent sets of electrodes, propagated contractions could be produced in an aboral or orad direction. The number of evacuated pellets during the stimulation sessions was significantly higher than during the non-stimulated sessions (p<0.01).
Microprocessor controlled electrical stimulation accelerated movement of colonic content suggesting the possibility of future implantable colonic stimulators.
正常犬结肠中尚未尝试诱发蠕动收缩及固体内容物的移动。本研究的目的是确定通过微处理器控制的顺序刺激是否能使固体内容物在结肠中移动。
对6只麻醉犬进行研究。在剖腹手术时,选择一段15厘米长的降结肠,近端用荷包缝合关闭,远端开口接入一个收集容器。以3厘米的间隔植入四组浆膜下刺激电极。在2至5次随机的非刺激或刺激排空实验前,向肠段内填充狗粮和50颗塑料小球的混合物。使用微处理器控制的双相50赫兹矩形电压序列产生传播性收缩,该电压具有20伏(峰峰值)幅度、18秒刺激持续时间,且连续电极组之间的刺激序列有9秒的相位滞后。
使用上述参数进行电刺激会产生强烈的阶段性收缩,使肠腔闭合。通过锁定相邻电极组之间的刺激电压相位,可以向口侧或肛侧产生传播性收缩。刺激实验期间排出的小球数量显著高于非刺激实验期间(p<0.01)。
微处理器控制的电刺激加速了结肠内容物的移动,提示未来可植入结肠刺激器的可能性。