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ACB 技术:一种从犬平滑肌直接监测胃肠道收缩的生物磁性工具。

The ACB technique: a biomagentic tool for monitoring gastrointestinal contraction directly from smooth muscle in dogs.

机构信息

Departamento de Física e Biofísica, Instituto de Biofísica, Laboratório de Biomagnetismo, São Paulo State University, CXP 510, CEP 18618-000, Botucatu, São Paulo, Brazil.

出版信息

Physiol Meas. 2010 Feb;31(2):159-69. doi: 10.1088/0967-3334/31/2/003. Epub 2009 Dec 11.

Abstract

The aim of this paper was to verify whether AC biosusceptometry (ACB) is suitable for monitoring gastrointestinal (GI) contraction directly from smooth muscle in dogs, comparing with electrical recordings simultaneously. All experiments were performed in dogs with magnetic markers implanted under the serosa of the right colon and distal stomach, and their movements were recorded by ACB. Monopolar electrodes were implanted close to the magnetic markers and their electric potentials were recorded by electromyography (EMG). The effects of neostigmine, hyoscine butylbromide and meal on gastric and colonic parameters were studied. The ACB signal from the distal stomach was very similar to EMG; in the colonic recordings, however, within the same low-frequency band, ACB and EMG signals were characterized by simultaneity or a widely changeable frequency profile with time. ACB recordings were capable of demonstrating the changes in gastric and colonic motility determined by pharmacological interventions as well as by feeding. Our results reinforce the importance of evaluating the mechanical and electrical components of motility and show a temporal association between them. ACB and EMG are complementary for studying motility, with special emphasis on the colon. ACB offers an accurate method for monitoring in vivo GI motility.

摘要

本文旨在验证 AC 生物电阻抗(ACB)是否适合直接从狗的平滑肌监测胃肠道(GI)收缩,并与同时进行的电记录进行比较。所有实验均在狗身上进行,在右侧结肠和远端胃的浆膜下植入磁性标记物,并通过 ACB 记录其运动。单极电极植入靠近磁性标记物,并通过肌电图(EMG)记录其电潜能。研究了新斯的明、氢溴酸东莨菪碱和餐对胃和结肠参数的影响。来自远端胃的 ACB 信号与 EMG 非常相似;然而,在结肠记录中,在相同的低频带内,ACB 和 EMG 信号的特征是同时或随时间广泛变化的频率分布。ACB 记录能够证明药物干预以及进食引起的胃和结肠运动的变化。我们的结果强调了评估运动的机械和电气组件的重要性,并显示它们之间存在时间关联。ACB 和 EMG 是研究运动的互补方法,特别强调结肠。ACB 为监测体内胃肠道运动提供了一种准确的方法。

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