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A discrete-event simulation approach to identify rules that govern arbor remodeling for branching cutaneous afferents in hairy skin

机译:一种离散事件模拟方法,用于识别控制毛状皮肤分支皮肤传入的心轴重塑的规则

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In mammals, touch is encoded by sensory receptors embedded in the skin. For one class of receptors in the mouse, the architecture of its Merkel cells, unmyelinated neurites, and heminodes follow particular renewal and remodeling trends over hair cycle stages from ages 4 to 10 weeks. As it is currently impossible to observe such trends across a single animal's hair cycle, this work employs discrete event simulation to identify and evaluate policies of Merkel cell and heminode dynamics. Well matching the observed data, the results show that the baseline model replicates dynamic remodeling behaviors between stages of the hair cycle - based on particular addition and removal polices and estimated probabilities tied to constituent parts of Merkel cells, terminal branch neurites and heminodes. The analysis shows further that certain policies hold greater influence than others. This use of computation is a novel approach to understanding neuronal development.
机译:在哺乳动物中,触摸由嵌入皮肤的感觉受体编码。对于小鼠中的一类受体,其默克尔细胞,未髓鞘的神经突和he骨的结构在从4到10周龄的整个毛发周期阶段遵循特定的更新和重塑趋势。由于目前不可能在单个动物的毛发周期内观察到这种趋势,因此这项工作采用离散事件模拟来识别和评估默克尔细胞和血吸虫动力学的策略。与观察到的数据很好地匹配,结果表明,基线模型在毛发周期的各个阶段之间复制了动态重塑行为-基于特定的添加和去除策略以及与默克尔细胞,末端分支神经突和亚精索的组成部分相关的估计概率。分析进一步表明,某些政策比其他政策具有更大的影响力。这种使用计算是理解神经元发育的新颖方法。

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