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应用于模拟面部的口罩死腔容积的计算机化测量

Computerized Dead-Space Volume Measurement of Face Masks Applied to Simulated Faces.

作者信息

Amirav Israel, Luder Anthony S, Halamish Asaf, Marzuk Chatib, Daitzchman Marcelo, Newhouse Michael T

机构信息

Ziv Medical Center, Faculty of Medicine, Bar-Ilan University, Safed, Israel.

Technosaf, Karkur, Israel.

出版信息

Respir Care. 2015 Sep;60(9):1247-51. doi: 10.4187/respcare.03813. Epub 2015 May 5.

Abstract

BACKGROUND

The dead-space volume (VD) of face masks for metered-dose inhaler treatments is particularly important in infants and young children with asthma, who have relatively low tidal volumes. Data about VD have been traditionally obtained from water displacement measurements, in which masks are held against a flat surface. Because, in real life, masks are placed against the face, VD is likely to differ considerably between masks depending upon their contour and fit. The aim of this study was to develop an accurate and reliable way to measure VD electronically and to apply this technique by comparing the electronic VD of commonly available face masks.

METHODS

Average digital faces were obtained from 3-dimensional images of 270 infants and children. Commonly used face masks (small and medium) from various manufacturers (Monaghan Medical, Pari Respiratory Equipment, Philips Respironics, and InspiRx) were scanned and digitized by means of computed tomography. Each mask was electronically applied to its respective digital face, and the VD enclosed (mL) was computerized and precisely measured.

RESULTS

VD varied between 22.6 mL (SootherMask, InspiRx) and 43.1 mL (Vortex, Pari) for small masks and between 41.7 mL (SootherMask) and 71.5 mL (AeroChamber, Monaghan Medical) for medium masks. These values were significantly lower and less variable than measurements obtained by water displacement.

CONCLUSIONS

Computerized techniques provide an innovative and relatively simple way of accurately measuring the VD of face masks applied to digital faces. As determined by computerized measurement using average-size virtual faces, the InspiRx masks had a significantly smaller VD for both small and medium masks compared with the other masks. This is of considerable importance with respect to aerosol dose and delivery time, particularly in young children. (ClinicalTrials.gov registration NCT01274299.).

摘要

背景

在潮气量相对较低的哮喘婴幼儿中,用于定量吸入器治疗的面罩死腔容积(VD)尤为重要。传统上,VD数据是通过水置换测量获得的,即将面罩紧贴在平坦表面上进行测量。然而,在实际生活中,面罩是贴在脸上的,因此不同面罩的VD可能会因其轮廓和贴合度而有很大差异。本研究的目的是开发一种准确可靠的电子测量VD的方法,并通过比较常用面罩的电子VD来应用该技术。

方法

从270名婴幼儿的三维图像中获取平均数字面部模型。对不同制造商(莫纳根医疗、帕里呼吸设备、飞利浦伟康和英斯皮瑞克斯)常用的面罩(小号和中号)进行计算机断层扫描并数字化。将每个面罩电子应用于其相应的数字面部模型,计算并精确测量所包围的VD(毫升)。

结果

小号面罩的VD在22.6毫升(英斯皮瑞克斯的安抚面罩)至43.1毫升(帕里的涡旋面罩)之间,中号面罩的VD在41.7毫升(安抚面罩)至71.5毫升(莫纳根医疗的储物罐)之间。这些值明显低于水置换测量值,且变异性更小。

结论

计算机技术提供了一种创新且相对简单的方法,可准确测量应用于数字面部的面罩的VD。通过使用平均尺寸虚拟面部的计算机测量确定,与其他面罩相比,英斯皮瑞克斯的面罩在小号和中号面罩中VD均显著更小。这在气雾剂剂量和给药时间方面具有相当重要的意义,尤其是对于幼儿。(ClinicalTrials.gov注册号NCT01274299。)

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