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Spatiotemporal dynamics of synaptic drive in urinary bladder syncytium: A computational investigation

机译:膀胱合胞中突触驱动的时空动力学:计算研究

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The urinary bladder wall is composed of the detrusor smooth muscle (DSM) in which adjacent cells are electrically coupled to form a three dimensional syncytium. The structural complexity of the tissue is further enhanced by a distributed innervation pattern. Experimental techniques employed in order to analyze detrusor excitability have been unable as yet to provide a satisfactory understanding of either the normal electrical functioning of the tissue, or of the changes that come about in pathological conditions. Our work aims at exploring the interplay between factors that determines the spread of junction potentials in the tissue which is critical for generation of action potential and subsequent contraction of the bladder wall. Results from our model suggest that in the detrusor syncytium, the mean interval between subsequent spontaneous neurotransmitter releases at a single varicosity is about 91.5 seconds such that in the normally functioning tissue, spontaneous transient depolarizations (STDs) occur with a mean interval of 2-7 seconds. Increase in neurotransmitter release frequency might result in higher excitability of the tissue, leading to bladder instability. Results also indicate that increase in intercellular coupling is another probable cause for such a pathophysiological scenario.
机译:膀胱壁由逼尿肌平滑肌(DSM)组成,相邻细胞之间电耦合以形成三维合胞体。组织的结构复杂性通过分布的神经支配模式进一步增强。为了分析逼尿肌的兴奋性而采用的实验技术尚不能提供对组织的正常电功能或病理状况中发生的变化的令人满意的理解。我们的工作旨在探讨决定连接电位在组织中扩散的因素之间的相互作用,这对于产生动作电位和随后的膀胱壁收缩至关重要。我们模型的结果表明,在逼尿肌合胞中,单个静脉曲张后继发自发性神经递质释放之间的平均间隔约为91.5秒,因此在正常运行的组织中,发生自发性瞬时去极化(STD)的平均间隔为2-7秒。神经递质释放频率的增加可能导致组织更高的兴奋性,从而导致膀胱不稳定。结果还表明,细胞间偶联的增加是这种病理生理情况的另一个可能原因。

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