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首页> 外文期刊>Journal of applied physiology >A computational study of the role of the aortic arch in idiopathic unilateral vocal-fold paralysis
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A computational study of the role of the aortic arch in idiopathic unilateral vocal-fold paralysis

机译:对特发性单侧声带瘫痪的主动脉弓的作用的计算研究

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Unilateral vocal-fold paralysis (UVP) occurs when one of the vocal folds becomes paralyzed due to damage to the recurrent laryngeal nerve (RLN). Individuals with UVP experience problems with speaking, swallowing, and breathing. Nearly two-thirds of all cases of UVP is associated with impaired function of the left RLN, which branches from the vagus nerve within the thoracic cavity and loops around the aorta before ascending to the larynx within the neck. We hypothesize that this path predisposes the left RLN to a supraphysiological, biome-chanical environment, contributing to onset of UVP. Specifically, this research focuses on the identification of the contribution of the aorta to onset of left-sided UVP. Important to this goal is determining the relative influence of the material properties of the RLN and the aorta in controlling the biomechanical environment of the RLN. Finite element analysis was used to estimate the stress and strain imposed on the left RLN as a function of the material properties and loading conditions. The peak stress and strain in the RLN were quantified as a function of RLN and aortic material properties and aortic blood pressure using Spearman rank correlation coefficients. The material properties of the aortic arch showed the strongest correlation with peak stress [p = -0.63, 95% confidence interval (CI), -1.00 to -0.25] and strain (p = -0.62, 95% CI, -0.99 to -0.24) in the RLN. Our results suggest an important role for the aorta in controlling the biomechanical environment of the RLN and potentially in the onset of left-sided UVP that is idiopathic.
机译:当由于对复发性喉神经(RLN)的损害而瘫痪的声带瘫痪时,发生单侧声带瘫痪(UVP)。具有UVP的个人在讲话,吞咽和呼吸遇到问题。近三分之二的UVP患者与左RLN的损伤有关,该左RLN的功能有关,该功能从晶体神经内部分支在胸腔内,然后在主动脉围绕颈部内的喉部循环。我们假设这条路径易于左RLN到一个超级学,生物血液组合环境,有助于UVP发作。具体而言,该研究侧重于鉴定主动脉对左侧UVP发作的贡献。重要对此目标是确定RLN的材料特性和主动脉控制RLN的生物力学环境的相对影响。有限元分析用于估计作为材料性质和负载条件的函数的左RLN上施加的应力和应变。使用Spearman等级相关系数定量RLN中RLN中的峰值应力和菌株和主动脉血压的函数。主动脉弓的材料特性表现出与峰值应力的最强相关性[P = -0.63,95%置信区间(CI),-1.00至-0.25]和菌株(P = -0.62,95%CI,-0.99至 - 0.24)在RLN中。我们的结果表明主动脉在控制RLN的生物力学环境中的主动脉和可能在特发性的左侧UVP发作中的重要作用。

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