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Problems with extracellular recording of electrical activity in gastrointestinal muscle

机译:胃肠道肌肉电活动的细胞外记录问题

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Motility patterns of the gastrointestinal tract are important for efficient processing of nutrients and waste. Peristalsis and segmentation are based on rhythmic electrical slow waves that generate the phasic contractions fundamental to gastrointestinal motility. Slow waves are generated and propagated actively by interstitial cells of Cajal (ICC), and these events conduct to smooth muscle cells to elicit excitation-contraction coupling. Extracellular electrical recording has been utilized to characterize slow-wave generation and propagation and abnormalities that might be responsible for gastrointestinal motility disorders. Electrode array recording and digital processing are being used to generate data for models of electrical propagation in normal and pathophysiological conditions. Here, we discuss techniques of extracellular recording as applied to gastrointestinal organs and how mechanical artefacts might contaminate these recordings and confound their interpretation. Without rigorous controls for movement, current interpretations of extracellular recordings might ascribe inaccurate behaviours and electrical anomalies to ICC networks and gastrointestinal muscles, bringing into question the findings and validity of models of gastrointestinal electrophysiology developed from these recordings.
机译:胃肠道的运动方式对于有效处理养分和废物很重要。蠕动和节段是基于有节奏的电慢波,该电波产生胃肠道运动基本的阶段性收缩。慢波由Cajal的间质细胞(ICC)生成并主动传播,这些事件传导至平滑肌细胞以引发激发-收缩耦合。细胞外电记录已被用来表征慢波的产生和传播以及可能导致胃肠蠕动障碍的异常。电极阵列记录和数字处理已用于为正常和病理生理条件下的电传播模型生成数据。在这里,我们讨论了应用于胃肠器官的细胞外记录技术,以及机械伪像如何污染这些记录并混淆了它们的解释。如果没有严格的运动控制,当前对细胞外记录的解释可能将不准确的行为和电异常归因于ICC网络和胃肠道肌肉,从而使从这些记录中开发的胃肠电生理模型的发现和有效性受到质疑。

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