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睡眠呼吸暂停患者下颌骨重置后的上气道解剖和功能变化:一项大规模研究。

Anatomical and functional changes in the upper airways of sleep apnea patients due to mandibular repositioning: a large scale study.

机构信息

BioMech, University College Ghent, Ghent, Belgium.

出版信息

J Biomech. 2011 Feb 3;44(3):442-9. doi: 10.1016/j.jbiomech.2010.09.026.

Abstract

The obstructive sleep apnea-hypopnea syndrome (OSAHS) is a sleep related breathing disorder. A popular treatment is the use of a mandibular repositioning appliance (MRA) which advances the mandibula during the sleep and decreases the collapsibility of the upper airway. The success rate of such a device is, however, limited and very variable within a population of patients. Previous studies using computational fluid dynamics have shown that there is a decrease in upper airway resistance in patients who improve clinically due to an MRA. In this article, correlations between patient-specific anatomical and functional parameters are studied to examine how MRA induced biomechanical changes will have an impact on the upper airway resistance. Low-dose computed tomography (CT) scans are made from 143 patients suffering from OSAHS. A baseline scan and a scan after mandibular repositioning (MR) are performed in order to study variations in parameters. It is found that MR using a simulation bite is able to induce resistance changes by changing the pharyngeal lumen. The change in minimal cross-sectional area is the best parameter to predict the change in upper airway resistance. Looking at baseline values, the ideal patients for MR induced resistance decrease seem to be women with short airways, high initial resistance and no baseline occlusion.

摘要

阻塞性睡眠呼吸暂停低通气综合征(OSAHS)是一种与睡眠相关的呼吸障碍。一种流行的治疗方法是使用下颌重置器具(MRA),它在睡眠时推进下颌,并降低上呼吸道的塌陷性。然而,这种设备的成功率是有限的,并且在患者群体中变化很大。以前使用计算流体动力学的研究表明,由于 MRA,临床改善的患者上气道阻力会降低。在本文中,研究了患者特定的解剖和功能参数之间的相关性,以检查 MRA 引起的生物力学变化如何对上气道阻力产生影响。对 143 名患有 OSAHS 的患者进行低剂量计算机断层扫描(CT)扫描。进行基线扫描和下颌重置(MR)后的扫描,以研究参数的变化。结果发现,使用模拟咬合的 MR 能够通过改变咽腔来诱导阻力变化。最小横截面积的变化是预测上气道阻力变化的最佳参数。从基线值来看,对于 MR 诱导的阻力降低,理想的患者似乎是女性,她们的气道较短,初始阻力较高,基线无咬合。

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