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用于辅助高分辨率肠道慢波记录的充气袖带的设计与应用

Design and Application of an Inflatable Cuff to Aid High-Resolution Intestinal Slow Wave Recordings.

作者信息

Miller Kiara J W, Cheng Leo K, Angeli Timothy R, Avci Recep, Paskaranandavadivel Niranchan

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2020 Jul;2020:3953-3956. doi: 10.1109/EMBC44109.2020.9175219.

Abstract

Intestinal motility is coordinated by myogenic, neuronal and hormonal factors. Myogenic control of motility via bioelectric slow waves (SW) has been investigated using low-resolution and high-resolution (HR) electrical mapping techniques. Due to the highly conformable and irregular surface of the gut, suboptimal coverage of HR recordings may occur. In this study we designed and developed an inflatable cuff as a platform to apply even pressure across the intestinal surface to achieve consistent and reliable recordings. The inflatable cuff and a HR electrode array were applied in vivo to demonstrate the reliability of SW signal acquisition over a range of inflatable pressures (0 - 5 mm Hg). The frequency, amplitude, percentage of viable signals and signal to noise ratio metrics of the SW signals were computed and compared. Overall, with an increase in inflatable pressure from 0 to 5 mm Hg, the frequency did not change, but the amplitude of the SWs decreased from 0.10 to 0.07 mV. The noise levels were consistent across the range of inflatable pressure levels and the percentage of viable SW recordings improved significantly from 57% to 74% after application of 1 mm Hg of pressure. The inflatable and conformable cuff presented in this study provides a reliable platform for HR mapping of bioelectrical events in the intestines and other conformable organs.Clinical Relevance- This framework improves the quality and reliability of bioelectrical high-resolution recordings obtained from the small intestine. In the future, these recordings will improve our understanding of the pathophysiological mechanisms governing intestinal motility disorders and may provide clinicians with new strategies for diagnosis and treatment.

摘要

肠道蠕动由肌源性、神经源性和激素因素协调。通过生物电慢波(SW)对蠕动的肌源性控制已使用低分辨率和高分辨率(HR)电标测技术进行了研究。由于肠道表面高度顺应且不规则,可能会出现HR记录覆盖不佳的情况。在本研究中,我们设计并开发了一种可充气袖带作为平台,以在肠道表面施加均匀压力,从而实现一致且可靠的记录。将可充气袖带和HR电极阵列应用于体内,以证明在一系列充气压力(0 - 5毫米汞柱)下SW信号采集的可靠性。计算并比较了SW信号的频率、幅度、存活信号百分比和信噪比指标。总体而言,随着充气压力从0增加到5毫米汞柱,频率没有变化,但SW的幅度从0.10毫伏降至0.07毫伏。在整个充气压力范围内,噪声水平是一致的,并且在施加1毫米汞柱压力后,存活SW记录的百分比从57%显著提高到74%。本研究中提出的可充气且顺应性良好的袖带为肠道和其他顺应性器官生物电事件的HR标测提供了一个可靠的平台。临床意义——该框架提高了从小肠获得的生物电高分辨率记录的质量和可靠性。未来,这些记录将增进我们对肠道蠕动障碍病理生理机制的理解,并可能为临床医生提供新的诊断和治疗策略。

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