Wang L, Malik A, Roop P S, Cheng L K, Paskaranandavadivel N, Ai W
Annu Int Conf IEEE Eng Med Biol Soc. 2020 Jul;2020:2504-2507. doi: 10.1109/EMBC44109.2020.9175500.
A potential treatment option for chronic and severe motility disorders such as gastroparesis is the implantation of a Gastric Electrical Stimulator (GES), which is designed to modulate the bio-electric slow waves. However, the effectiveness of current GESs remains uncertain since they do not work in a closed-loop by sensing, processing, and modulating the dysrhythmic patterns. This work presents the design of a GES model working in closed-loop with the network of the Interstitial Cells of Cajal (ICC). A pre-existing two-dimensional ICC network is enhanced by proposing an extracellular potential generation model, which can precisely capture the timing behaviour of slow wave propagation pattern of the simulated ICC network. The GES senses the extracellular potential, detects bradygastric patterns and finally modulates the activity to ensure normal conduction. The GES is designed to be practical for ease of validation and implementation.
对于诸如胃轻瘫等慢性和严重的动力障碍,一种潜在的治疗选择是植入胃电刺激器(GES),其旨在调节生物电慢波。然而,目前的胃电刺激器的有效性仍不确定,因为它们不能通过感知、处理和调节心律失常模式来进行闭环工作。这项工作提出了一种与 Cajal 间质细胞(ICC)网络进行闭环工作的胃电刺激器模型的设计。通过提出一种细胞外电位生成模型,增强了现有的二维 ICC 网络,该模型可以精确捕捉模拟 ICC 网络慢波传播模式的时间行为。胃电刺激器感知细胞外电位,检测胃动过缓模式,并最终调节活动以确保正常传导。胃电刺激器的设计便于验证和实施。