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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >High-resolution mapping of in vivo gastrointestinal slow wave activity using flexible printed circuit board electrodes: methodology and validation.
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High-resolution mapping of in vivo gastrointestinal slow wave activity using flexible printed circuit board electrodes: methodology and validation.

机译:使用柔性印刷电路板电极的体内胃肠道慢波活动的高分辨率图:方法学和验证。

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摘要

High-resolution, multi-electrode mapping is providing valuable new insights into the origin, propagation, and abnormalities of gastrointestinal (GI) slow wave activity. Construction of high-resolution mapping arrays has previously been a costly and time-consuming endeavor, and existing arrays are not well suited for human research as they cannot be reliably and repeatedly sterilized. The design and fabrication of a new flexible printed circuit board (PCB) multi-electrode array that is suitable for GI mapping is presented, together with its in vivo validation in a porcine model. A modified methodology for characterizing slow waves and forming spatiotemporal activation maps showing slow waves propagation is also demonstrated. The validation study found that flexible PCB electrode arrays are able to reliably record gastric slow wave activity with signal quality near that achieved by traditional epoxy resin-embedded silver electrode arrays. Flexible PCB electrode arrays provide a clinically viable alternative to previously published devices for the high-resolution mapping of GI slow wave activity. PCBs may be mass-produced at low cost, and are easily sterilized and potentially disposable, making them ideally suited to intra-operative human use.
机译:高分辨率,多电极映射为胃肠道(GI)慢波活动的起源,传播和异常现象提供了有价值的新见解。高分辨率映射阵列的构建以前是一项昂贵且费时的工作,并且现有阵列由于无法可靠且反复地灭菌而不适用于人类研究。介绍了适用于GI映射的新型柔性印刷电路板(PCB)多电极阵列的设计和制造,以及在猪模型中的体内验证。还展示了用于表征慢波并形成时空激活图以显示慢波传播的改进方法。验证研究发现,柔性PCB电极阵列能够可靠地记录胃慢波活动,其信号质量接近于传统的嵌入环氧树脂的银电极阵列。柔性PCB电极阵列为GI慢波活动的高分辨率映射提供了临床上可行的替代方法,可替代以前发布的设备。 PCB可以低成本大量生产,并且易于消毒,并且可能是一次性的,因此非常适合于术中人使用。

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