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首页> 外文期刊>Neurophysiology >Biophysical Processes in a Urinary Bladder Detrusor Smooth Muscle Cell during Rehabilitation Stimulation of Parasympathetic Efferents: a Simulation Study
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Biophysical Processes in a Urinary Bladder Detrusor Smooth Muscle Cell during Rehabilitation Stimulation of Parasympathetic Efferents: a Simulation Study

机译:副交感神经的康复刺激过程中膀胱膀胱逼尿肌平滑肌细胞的生物物理过程:模拟研究。

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In a computer model of an urinary bladder detrusor (UBD) smooth muscle cell (SMC), we investigated coupled changes in the membrane potential (MP), partial transmembrane currents, and intracellular calcium concentration ([Ca2 +](i)), caused by parasympathetic stimulation. The respective data should help to determine the biophysical basis for the choice of parameters of medical rehabilitation electrical stimulation of the UBD. Ionotropic and metabotropic effects of such stimulation having different latency periods (LPs) were simulated by, respectively, an increase in the conductivity of purinoreceptor channels of the sarcolemma and a delayed (by 70 msec) increase in the permeability of calcium channels of the sarcoplasmic reticulum (store) sensitive to inositol triphosphate (IP3), the end-product of a chain of reactions triggered by activation of muscarinic cholinergic receptors. The modeled SMC responded to single stimulation by generation of action potential (AP) close in its parameters to those in the prototype. Application of long series of identical stimuli caused, after a transient interval, forced stationary oscillations of the MP and [Ca2 +](i). The magnitudes of the latter decreased, and the mean level increased with shortening of the interstimulus intervals (ISIs). It was found that the stimulation outcome needing prior experimental refining was determined by such parameters of the parasympathetic action as the durations of the purine and muscarinic components and the delay between these components. It has been shown that, during stimulation with ISIs shorter than the above-mentioned delay, the subsiquent stimulus activates P2X channels before expiration of the delay of the IP3-channel activation evoked by the preceding stimulus. This is actually equivalent to shortening of the interval between successive activations of P2X- and IP3-channels. Simple quantitative expressions were obtained for the parameters of stimulation; a given difference in the LPs of purine and muscarinic effects of parasympathetic stimulation allowed us to calculate the ISIs providing more efficient rehabilitation stimulation of the UBD parasympathetic nerves.
机译:在膀胱逼尿肌(UBD)平滑肌细胞(SMC)的计算机模型中,我们调查了引起的膜电位(MP),部分跨膜电流和细胞内钙浓度([Ca2 +](i))的耦合变化。通过副交感神经刺激。各个数据应有助于确定选择UBD的医疗康复电刺激参数的生物物理基础。这种刺激具有不同的潜伏期(LPs)的离子变质作用和代谢变质作用分别通过肌膜嘌呤受体通道的电导率增加和肌浆网钙通道钙离子通透性的延迟增加(70毫秒)来模拟(储存)对肌醇三磷酸酯(IP3)敏感,三磷酸肌醇是毒蕈碱胆碱能受体激活而触发的一系列反应的最终产物。建模的SMC通过产生动作电位(AP)来响应单一刺激,动作电位的参数与原型中的参数接近。在短暂的间隔后,施加长系列相同的刺激会导致MP和[Ca2 +](i)的强制平稳振荡。后者的幅度降低,而平均水平随着刺激间隔(ISIs)的缩短而增加。已经发现,需要先进行实验精制的刺激结果是由副交感作用的参数确定的,例如嘌呤和毒蕈碱成分的持续时间以及这些成分之间的延迟。已经显示,在以比上述延迟短的ISI进行刺激的过程中,随后的刺激在之前的刺激引起的IP3通道激活的延迟期满之前激活了P2X通道。这实际上等效于缩短P2X和IP3通道连续激活之间的间隔。对于刺激参数,获得了简单的定量表达式。嘌呤和副交感神经的毒蕈碱作用的LPs的给定差异允许我们计算ISI,从而提供更有效的UBD副交感神经康复刺激。

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