Sevcencu Cristian, Rijkhoff Nico J M, Sinkjaer Thomas
Center for Sensory-Motor Interaction, Department of Health Science and Technology, Aalborg University, Denmark.
IEEE Trans Neural Syst Rehabil Eng. 2005 Dec;13(4):516-23. doi: 10.1109/TNSRE.2005.859358.
Electrical stimulation could be used to induce colon emptying. The present experiments were performed to establish a stimulation pattern to optimize the stimulation parameters and to test neural involvement in propulsion induced by electrical stimulation. Colon segments were sequentially stimulated using rectangular pulses. The resulting propulsive activity displaced intraluminal content in consecutive propulsion steps. The propulsion steps differed in displacement latency, distance, and velocity along the stimulated colon. Increasing the pulse duration or amplitude resulted in a decrease of the latency. Increasing the stimulation amplitude doubled the displacement distance. The frequencies tested in the present study did not affect propulsion. Inhibition of cholinergic and nitrergic pathways inhibited propulsion. Electrical stimulation can induce colonic propulsion. Motor differences are present along the descending colon. The most suitable combination of pulse parameters regarding colon stimulation is 0.3 ms, 5 mA, 10 Hz. Neural circuits are involved in propulsion when using these values.
电刺激可用于诱导结肠排空。进行本实验以建立一种刺激模式,优化刺激参数,并测试神经在电刺激诱导的推进过程中的作用。使用矩形脉冲对结肠段进行顺序刺激。由此产生的推进活动在连续的推进步骤中推动管腔内的内容物。推进步骤在沿受刺激结肠的位移潜伏期、距离和速度方面有所不同。增加脉冲持续时间或幅度会导致潜伏期缩短。增加刺激幅度会使位移距离加倍。本研究中测试的频率不影响推进。胆碱能和一氧化氮能途径的抑制会抑制推进。电刺激可诱导结肠推进。降结肠存在运动差异。关于结肠刺激的最合适脉冲参数组合是0.3毫秒、5毫安、10赫兹。使用这些值时,神经回路参与推进过程。