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首页> 外文期刊>The anatomical record: advances in integrative anatomy and evolutionary biology >Computational Fluid Dynamics Reveals a Unique Net Unidirectional Pattern of Pulmonary Airflow in the Savannah Monitor Lizard ( Varanus exanthematicus Varanus exanthematicus Varanus exanthematicus )
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Computational Fluid Dynamics Reveals a Unique Net Unidirectional Pattern of Pulmonary Airflow in the Savannah Monitor Lizard ( Varanus exanthematicus Varanus exanthematicus Varanus exanthematicus )

机译:计算流体动力学揭示了大草原监测蜥蜴(Varanus Existematicus Varannus alighematicus varanusianthematicus)的独特网络单向图案的肺气流

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This report models pulmonary airflow in the savannah monitor ( Varanus exanthematicus ) using computational fluid dynamics simulations, which are based on computed tomography data. Simulations were validated by visualizing the flow of aerosolized lipids in excised lungs with good but not perfect agreement. The lung of this lizard has numerous successive bronchi branching off a long intrapulmonary bronchus, which are interconnected by intercameral perforations. Unidirectional flow has been documented in the lateral secondary bronchi of the savannah monitor, but patterns of airflow in the rest of the lung remain unknown, hindering our understanding of the evolution of pulmonary patterns of airflow in tetrapods. These results indicate that the lung contains a unique net unidirectional flow, where the overall flow scheme is similar during expiration and late inspiration, but dissimilar during early inspiration. Air is transported net caudally through the intrapulmonary bronchus and net craniad through secondary bronchi, much like the pattern of flow in birds. The simulations show that many chambers feature flow in multiple directions during parts of the respiratory cycle, but some regions also show robust unidirectional airflow. Air moves craniad through secondary bronchi and between adjacent secondary bronchi through intercameral perforations. The first secondary bronchus, the hilar‐cranial bronchus, contains tidal flow that may improve ventilation of the central and dorsal lung parenchyma. These results expand our understanding of flow patterns in varanid lungs and suggest lungs with net unidirectional flow as an evolutionary pathway between tidal flow and complete unidirectional flow in multicameral lungs. Anat Rec, 2020. ? 2019 American Association for Anatomy Anat Rec, 303:1768–1791, 2020. ? 2019 American Association for Anatomy
机译:本报告使用基于计算的断层扫描数据的计算流体动力学模拟,模拟了大草原监测器(varanus Existematicus)的肺气流。通过用良好但不完美的协议,通过可视化肺泡的雾化脂质的流动来验证模拟。该蜥蜴的肺部有许多连续的支气管分支,长长的颅内支气管,其通过嵌合穿孔互连。在大草原监测器的横向次级支气管中有单向流动记录,但肺部其余部分的气流模式仍然是未知的,阻碍了我们对四面体中气流肺部模式的演变的理解。这些结果表明,肺含有独特的净单向流动,其中总流程方案在呼气和延迟启动期间类似,但在早期启发期间不相似。空气通过跨型支气管和净克朗尼亚通过次级支气管透明地将净净式净净式运输,就像鸟类流动的模式一样。模拟表明,许多腔室在呼吸周期的部分期间在多个方向上流动,但是一些区域也显示了鲁棒的单向气流。空气通过辅助支气管和邻近的次级支气管通过内耳穿孔移动。第一次级支气管,蚕龟颅骨支气管含有潮流,其可以改善中央和背侧肺实质的通风。这些结果扩大了我们对疣状肺的流动模式的理解,并提示肺部单向流动作为潮流之间的进化途径,并在多层肺中完全单向流动。 Anat Rec,2020年。 2019年美国解剖学Anat Rec,303:1768-1791,2020。? 2019年美国解剖学协会

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