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Estimating the Dead Space Volume Between a Headform and N95 Filtering Facepiece Respirator Using Microsoft Kinect

机译:使用Microsoft Kinect估计头模和N95过滤式面罩呼吸器之间的死空间体积

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N95 filtering facepiece respirator (FFR) dead space is an important factor for respirator design. The dead space refers to the cavity between the internal surface of the FFR and the wearer's facial surface. This article presents a novel method to estimate the dead space volume of FFRs and experimental validation. In this study, six FFRs and five headforms (small, medium, large, longarrow, and short/wide) are used for various FFR and headform combinations. Microsoft Kinect Sensors (Microsoft Corporation, Redmond, WA) are used to scan the headforms without respirators and then scan the headforms with the FFRs donned. The FFR dead space is formed through geometric modeling software, and finally the volume is obtained through LS-DYNA (Livermore Software Technology Corporation, Livermore, CA). In the experimental validation, water is used to measure the dead space. The simulation and experimental dead space volumes are 107.5-167.5mL and 98.4-165.7mL, respectively. Linear regression analysis is conducted to correlate the results from Kinect and water, and R-2 = 0.85.
机译:N95过滤式面罩呼吸器(FFR)死区是呼吸器设计的重要因素。死区是指FFR的内表面和佩戴者面部之间的空腔。本文提出了一种新颖的方法来估计FFR的死空间体积并进行实验验证。在这项研究中,六个FFR和五个头模(小,中,大,长/窄和短/宽)用于各种FFR和头模组合。使用Microsoft Kinect传感器(Microsoft Corporation,华盛顿州雷德蒙德)在没有呼吸器的情况下扫描头罩,然后在戴有FFR的情况下扫描头罩。 FFR死区是通过几何建模软件形成的,最后通过LS-DYNA(Livermore Software Technology Corporation,Livermore,CA)获得体积。在实验验证中,水用于测量死角。模拟和实验死空间体积分别为107.5-167.5mL和98.4-165.7mL。进行线性回归分析以关联Kinect和水的结果,R-2 = 0.85。

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