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生物阻抗法监测麻醉猪直接刺激远端结肠时结肠运动反应。

Bio-impedance method to monitor colon motility response to direct distal colon stimulation in anesthetized pigs.

机构信息

Department of Bioengineering, University of California, Los Angeles, Los Angeles, CA, USA.

Vatche and Tamar Manoukian Division of Digestive Diseases, Department of Medicine, David Geffen School of Medicine, CURE: Digestive Diseases Research Core Center (DDRCC), Center for Neurobiology of Stress and Resilience (CNSR), University of California, Los Angeles, Los Angeles, CA, USA.

出版信息

Sci Rep. 2022 Aug 12;12(1):13761. doi: 10.1038/s41598-022-17549-6.

Abstract

Electrical stimulation has been demonstrated as an alternative approach to alleviate intractable colonic motor disorders, whose effectiveness can be evaluated through colonic motility assessment. Various methods have been proposed to monitor the colonic motility and while each has contributed towards better understanding of colon motility, a significant limitation has been the spatial and temporal low-resolution colon motility data acquisition and analysis. This paper presents the study of employing bio-impedance characterization to monitor colonic motor activity. Direct distal colon stimulation was undertaken in anesthetized pigs to validate the bio-impedance scheme simultaneous with luminal manometry monitoring. The results indicated that the significant decreases of bio-impedance corresponded to strong colonic contraction in response to the electrical stimulation in the distal colon. The magnitude/power of the dominant frequencies of phasic colonic contractions identified at baseline (in the range 2-3 cycles per minute (cpm)) were increased after the stimulation. In addition, positive correlations have been found between bio-impedance and manometry. The proposed bio-impedance-based method can be a viable candidate for monitoring colonic motor pattern with high spatial and temporal resolution. The presented technique can be integrated into a closed-loop therapeutic device in order to optimize its stimulation protocol in real-time.

摘要

电刺激已被证明是一种缓解难治性结肠运动障碍的替代方法,其有效性可以通过结肠运动评估来评估。已经提出了各种方法来监测结肠运动,虽然每种方法都有助于更好地理解结肠运动,但一个显著的局限性是结肠运动数据采集和分析的空间和时间低分辨率。本文研究了采用生物阻抗特性来监测结肠运动活动。在麻醉猪中进行直接远端结肠刺激,以与腔内测压监测同时验证生物阻抗方案。结果表明,生物阻抗的显著降低与对远端结肠的电刺激产生的强烈结肠收缩相对应。在刺激后,基线时(在 2-3 个每分钟周期(cpm)的范围内)确定的相位性结肠收缩的主要频率的幅度/功率增加。此外,生物阻抗和测压之间存在正相关。所提出的基于生物阻抗的方法可以成为一种可行的候选方法,用于以高空间和时间分辨率监测结肠运动模式。该技术可以集成到闭环治疗设备中,以便实时优化其刺激方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3306/9374686/9a66949d3de5/41598_2022_17549_Fig1_HTML.jpg

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