Jalilian Ehsan, Onen Denis, Neshev Emil, Mintchev Martin P
Department of Electrical and Computer Engineering, University of Calgary, Alta., Canada.
Med Eng Phys. 2007 Mar;29(2):238-52. doi: 10.1016/j.medengphy.2006.03.009. Epub 2006 May 3.
Functional electrical stimulation has been suggested as a possible avenue for treating a variety of gastrointestinal motility-related disorders such as gastroparesis, chronic constipation and morbid obesity. The aims of the present study were to design a radio-frequency controlled multi-channel implantable neural gastrointestinal electrical stimulator and test it in an acute canine model. The stimulation parameters can be reprogrammed after implantation, allowing the execution of parametric studies and the investigation of their efficacy in producing controlled gastrointestinal contractions. Bipolar pulse trains of 50Hz frequency, 8-16V(pp) amplitude, 10-100% duty cycle, 1-120s duration, and 2s to 1h pause between successive stimulation sessions were delivered to the stomachs of nine dogs. The resulting contractions were measured by force transducers and digitally recorded on a personal computer. The acute studies confirmed the effectiveness of electrical stimulation in producing invoked gastric contractile activity under the control of the implantable neurostimulator.
功能性电刺激已被认为是治疗多种胃肠动力相关疾病(如胃轻瘫、慢性便秘和病态肥胖)的一种可能途径。本研究的目的是设计一种射频控制的多通道植入式神经胃肠电刺激器,并在急性犬模型中对其进行测试。刺激参数在植入后可重新编程,从而能够进行参数研究,并调查其在产生可控胃肠收缩方面的功效。向9只犬的胃部输送频率为50Hz、幅度为8 - 16V(峰-峰值)、占空比为10 - 100%、持续时间为1 - 120秒且连续刺激之间的间隔为2秒至1小时的双相脉冲序列。通过力传感器测量产生的收缩,并在个人计算机上进行数字记录。急性研究证实了电刺激在植入式神经刺激器控制下产生诱发胃收缩活动的有效性。