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Prevention of submicron aerosolized particle dispersion: evaluation of an aerosol box using a pediatric simulation model

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Taylor & Francis Group2023-02-21 更新2026-04-16 收录
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https://tandf.figshare.com/articles/dataset/Prevention_of_submicron_aerosolized_particle_dispersion_evaluation_of_an_aerosol_box_using_a_pediatric_simulation_model/21379066/1
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<b>Background and Aim:</b> The SplashGuard CG (SG) is a barrier enclosure developed to protect healthcare workers from SARS-CoV-2 transmission during aerosol-generating procedures. Our objective was to evaluate the protection provided by the SG against aerosolized particles (AP), using a pediatric simulation model of spontaneous ventilation (SV) and noninvasive ventilation (NIV). <b>Methods:</b> An aerosol generator was connected to the airways of a pediatric high-fidelity manikin with a breathing simulator. AP concentrations were measured both in SV and NIV in the following conditions: with and without SG, inside and outside the SG, with and without suction applied to the device. <b>Results:</b> In the SV simulated setting, AP peaks were lower with SG: 0.1 × 10<sup>5</sup> particles/L compared to without: 1.6 × 10<sup>5</sup>, only when the ports were closed and suction applied. In the NIV simulated setting, AP peaks outside the SG were lower than without SG (20.5 × 10<sup>5</sup> particles/L), whatever the situation, without suction (14.4 × 10<sup>5</sup>particles/L), with suction and ports open or closed: 10.3 and 0.7 × 10<sup>5</sup> particles/L. In SV and NIV simulated settings, the AP peaks measured within the SG were much higher than the AP peaks measured without SG, even when suction was applied to the device. <b>Conclusions:</b> The SG seems to decrease peak AP exposure in the 2 ventilation contexts, but only with closed port and suction in SV. However, high concentrations of AP remain inside even with suction and SG should be used cautiously.
提供机构:
Baudin, Florent; Tabone, Laurence; Buyck, Michael; Rivest, Dominic; François, Tine; Aubin, Carl-Eric; Levy, Arielle; Jouvet, Philippe; Robert, Etienne
创建时间:
2022-10-21
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