...
首页> 外文期刊>Physiological measurement >Design, implementation and testing of an implantable impedance-based feedback-controlled neural gastric stimulator
【24h】

Design, implementation and testing of an implantable impedance-based feedback-controlled neural gastric stimulator

机译:基于植入式阻抗的反馈控制神经胃刺激器的设计,实现和测试

获取原文
获取原文并翻译 | 示例
           

摘要

Functional neural gastrointestinal electrical stimulation (NGES) is a methodology of gastric electrical stimulation that can be applied as a possible treatment for disorders such as obesity and gastroparesis. NGES is capable of generating strong lumen-occluding local contractions that can produce retrograde or antegrade movement of gastric content. A feedback-controlled implantable NGES system has been designed, implemented and tested both in laboratory conditions and in an acute animal setting. The feedback system, based on gastric tissue impedance change, is aimed at reducing battery energy requirements and managing the phenomenon of gastric tissue accommodation. Acute animal testing was undertaken in four mongrel dogs (2 M, 2 F, weight 25.53 ± 7.3 kg) that underwent subserosal two-channel electrode implantation. Three force transducers sutured serosally along the gastric axis and a wireless signal acquisition system were utilized to record stimulation-generated contractions and tissue impedance variations respectively. Mechanically induced contractions in the stomach were utilized to indirectly generate a tissue impedance change that was detected by the feedback system. Results showed that increasing or decreasing impedance changes were detected by the implantable stimulator and that therapy can be triggered as a result. The implantable feedback system brings NGES one step closer to long term treatment of burdening gastric motility disorders in humans.
机译:功能性神经胃肠电刺激(NGES)是一种胃电刺激的方法,可以用作肥胖症和胃轻瘫等疾病的可能治疗方法。 NGES能够产生强的内腔闭塞局部收缩,从而引起胃内容物逆行或顺行运动。反馈控制的植入式NGES系统已经在实验室条件和急性动物环境中进行了设计,实施和测试。基于胃组织阻抗变化的反馈系统旨在降低电池能量需求并管理胃组织适应现象。对四只杂种犬(2 M,2 F,体​​重25.53±7.3公斤)进行了浆膜下两通道电极植入,进行了急性动物试验。沿胃轴缝线缝合的三个力传感器和无线信号采集系统分别用于记录刺激产生的收缩和组织阻抗变化。胃中机械诱发的收缩被用来间接产生由反馈系统检测到的组织阻抗变化。结果表明,植入式刺激器可检测到阻抗变化的增大或减小,从而可以触发治疗方法。植入式反馈系统使NGES距长期治疗负担人类胃动力疾病的长期治疗更近了一步。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号