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首页> 外文期刊>American Journal of Physiology >Cellular effects of gastric electrical stimulation on antral smooth muscle cells in rats.
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Cellular effects of gastric electrical stimulation on antral smooth muscle cells in rats.

机译:胃电刺激对大鼠肛门平滑肌细胞的细胞作用。

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The cellular effects of gastric electrical stimulation (GES), which has recently been introduced as a potential therapy for the treatment of gastroparesis and obesity, were investigated in rat antrum smooth muscle cells (SMCs). Effects on cell membrane potentials of single electrical current pulses (pulse width from 0.1 ms to 200 ms) and 2-s pulse train stimuli with different pulse widths (0.1-4 ms), different frequencies (20-200 Hz), and different intensities were studied: 1) the stimulus amplitude had an exponential relationship to the pulse width from 2 ms to 200 ms, along with a rapidly rising strength-duration curve at pulse widths less than 5 ms, and a relatively flat curve at pulse widths greater than 50 ms; 2) when the pulse frequency was at 80 Hz or above, pulse train electrical stimulation, with a pulse width of 2 ms or above but not < or = 1 ms, was able to depolarize cell membrane potentials to above -30 mV and/or generate action potentials. Electrical stimulation with a single long pulse and a width of 50 ms or greater is effective in depolarizing cell membrane potentials of SMCs with low amplitude. Pulse train electrical stimulation with a pulse width of < or = 1 ms fails to generate action potentials in SMCs, whereas pulse train electrical stimulation with a pulse width of 2-4 ms and a sufficiently high pulse frequency is able to generate action potentials. These cellular findings may be useful in optimizing stimulation parameters of GES.
机译:在大鼠胃窦平滑肌细胞(SMCs)中研究了胃电刺激(GES)的细胞效应,最近已将其作为治疗胃轻瘫和肥胖症的一种潜在疗法。不同电流宽度(0.1-4 ms),不同频率(20-200 Hz)和不同强度的单个电流脉冲(脉冲宽度从0.1 ms到200 ms)和2-s脉冲序列刺激对细胞膜电位的影响研究了:1)刺激幅度与脉冲宽度在2毫秒至200毫秒之间呈指数关系,并且在脉冲宽度小于5毫秒时强度-持续时间曲线迅速上升,而在脉冲宽度大于5毫秒时则曲线相对平坦。 50毫秒; 2)当脉冲频率为80 Hz或更高时,脉冲宽度为2 ms或更高但不小于或等于1 ms的脉冲序列电刺激能够使细胞膜电位去极化至-30 mV和/或以上产生动作电位。具有单个长脉冲且宽度为50 ms或更大的电刺激可有效去极化低振幅的SMCs的细胞膜电位。脉冲宽度<或= 1 ms的脉冲序列电刺激无法在SMC中生成动作电位,而脉冲宽度为2-4 ms且脉冲频率足够高的脉冲序列电刺激则可以生成动作电位。这些细胞发现可能对优化GES的刺激参数有用。

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