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首页> 外文期刊>The Journal of Experimental Biology >The effects of naris occlusion on mouse nasal turbinate development
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The effects of naris occlusion on mouse nasal turbinate development

机译:鼻孔阻塞对小鼠鼻甲发育的影响

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Unilateral naris occlusion, a standard method for causing odor deprivation, also alters airflow on both sides of the nasal cavity. We reasoned that manipulating airflow by occlusion could affect nasal turbinate development given the ubiquitous role of environmental stimuli in ontogenesis. To test this hypothesis, newborn mice received unilateral occlusion or sham surgery and were allowed to reach adulthood. Morphological measurements were then made of paraffin sections of the whole nasal cavity. Occlusion significantly affected the size, shape and position of turbinates. In particular, the nasoturbinate, the focus of our quantitative analysis, had a more delicate appearance on the occluded side relative to the open side. Occlusion also caused an increase in the width of the dorsal meatus within the non-occluded and occluded nasal fossae, compared with controls, and the position of most turbinates was altered. These results suggest that a mechanical stimulus from respiratory airflow is necessary for the normal morphological development of turbinates. To explore this idea, we estimated the mechanical forces on turbinates caused by airflow during normal respiration that would be absent as a result of occlusion. Magnetic resonance imaging scans were used to construct a three-dimensional model of the mouse nasal cavity that provided the input for a computational fluid dynamics simulation of nasal airflow. The simulation revealed maximum shear stress values for the walls of turbinates in the 1 Pa range, a magnitude that causes remodeling in other biological tissues. These observations raise the intriguing possibility that nasal turbinates develop partly under the control of respiratory mechanical forces
机译:单侧鼻孔阻塞,一种导致气味消除的标准方法,也会改变鼻腔两侧的气流。我们认为,鉴于环境刺激在本体发育中的普遍作用,通过阻塞来控制气流会影响鼻甲的发育。为了验证这一假设,新生小鼠接受了单侧闭塞或假手术,并被允许成年。然后对整个鼻腔的石蜡切片进行形态学测量。阻塞严重影响了鼻甲的大小,形状和位置。特别是,我们的定量分析的重点鼻甲鼻甲相对于开放侧在闭塞侧具有更精致的外观。与对照组相比,闭塞还导致未闭塞和闭塞的鼻窝内背窦宽度增加,并且大多数鼻甲的位置发生了改变。这些结果表明,来自呼吸气流的机械刺激对于鼻甲的正常形态发育是必要的。为了探索这个想法,我们估算了正常呼吸过程中气流造成的鼻甲上的机械力,这种机械力由于闭塞而消失了。磁共振成像扫描用于构建小鼠鼻腔的三维模型,该模型为鼻气流的计算流体动力学仿真提供了输入。模拟结果显示,鼻甲壁的最大剪切应力值在1 Pa范围内,该大小会引起其他生物组织的重塑。这些观察结果提出了有趣的可能性,即在呼吸机械力的控制下鼻甲的部分发育

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