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蝶窦冲洗时鼻顶头位的计算流体动力学建模

Computational fluid dynamic modeling of nose-to-ceiling head positioning for sphenoid sinus irrigation.

作者信息

Craig John R, Palmer James N, Zhao Kai

机构信息

Department of Otolaryngology, Henry Ford Hospital, Detroit, MI.

Department of Otolaryngology, University of Pennsylvania, Philadelphia, PA.

出版信息

Int Forum Allergy Rhinol. 2017 May;7(5):474-479. doi: 10.1002/alr.21908. Epub 2017 Jan 16.

Abstract

BACKGROUND

After sinus surgery, patients are commonly instructed to irrigate with saline irrigations with their heads over a sink and noses directed inferiorly (nose-to-floor). Although irrigations can penetrate the sinuses in this head position, no study has assessed whether sphenoid sinus penetration can be improved by irrigating with the nose directed superiorly (nose-to-ceiling). The purpose of this study was to use a validated computational fluid dynamics (CFD) model of sinus irrigations to assess the difference in sphenoid sinus delivery of irrigations after irrigating in a nose-to-floor vs nose-to-ceiling head position.

METHODS

Bilateral maxillary antrostomies, total ethmoidectomies, wide sphenoidotomies, and a Draf III frontal sinusotomy were performed on a single fresh cadaver head. CFD models were created from postoperative computed tomography maxillofacial scans. CFD modeling software was used to simulate a 120-mL irrigation to the left nasal cavity with the following parameters: flow rate 30 mL/second, angle of irrigation 20 degrees to the nasal floor, and either nose-to-floor or nose-to-ceiling head positioning.

RESULTS

In the postoperative CFD models, the sphenoid sinuses were completely penetrated by the irrigation while in a nose-to-ceiling head position. However, no sphenoid sinus penetration occurred in the nose-to-floor position. Other sinuses were similarly penetrated in both head positions, although the ipsilateral maxillary sinus was less penetrated in the nose-to-ceiling position.

CONCLUSION

CFD modeling demonstrated that the nose-to-ceiling head position was superior to the nose-to-floor position in delivering a 120-mL irrigation to the sphenoid sinuses.

摘要

背景

鼻窦手术后,患者通常被指导在水槽上方低头且鼻子朝下(鼻子对着地面)用盐水冲洗。尽管在这种头部位置冲洗液可以进入鼻窦,但尚无研究评估将鼻子朝上(鼻子对着天花板)冲洗是否能改善蝶窦的冲洗效果。本研究的目的是使用经过验证的鼻窦冲洗计算流体动力学(CFD)模型,评估在鼻子对着地面与鼻子对着天花板的头部位置冲洗后,蝶窦冲洗液输送的差异。

方法

在一个新鲜尸体头部进行双侧上颌窦造口术、全筛窦切除术、广泛的蝶窦切开术和Draf III型额窦切开术。从术后颌面计算机断层扫描创建CFD模型。使用CFD建模软件模拟向左侧鼻腔进行120毫升冲洗,参数如下:流速30毫升/秒,冲洗角度与鼻底成20度,头部位置为鼻子对着地面或鼻子对着天花板。

结果

在术后CFD模型中,当头部处于鼻子对着天花板的位置时,冲洗液完全进入蝶窦。然而,在鼻子对着地面的位置时,冲洗液未进入蝶窦。在两种头部位置下,其他鼻窦的冲洗情况类似,尽管在鼻子对着天花板的位置时同侧上颌窦的冲洗程度较低。

结论

CFD建模表明,在向蝶窦输送120毫升冲洗液时,鼻子对着天花板的头部位置优于鼻子对着地面的位置。

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