VeriMask: Facilitating Decontamination of N95 Masks in the COVID-19 Pandemic: Challenges, Lessons Learned, and Safeguarding the Future
Yan Long, Alexander Curtiss, Sara Rampazzi, Josiah D. Hester, Kevin Fu
摘要
The US CDC has recognized moist-heat as one of the most effective and accessible methods of decontaminating N95 masks for reuse in response to the persistent N95 mask shortages caused by the COVID-19 pandemic. However, it is challenging to reliably deploy this technique in healthcare settings due to a lack of smart technologies capable of ensuring proper decontamination conditions of hundreds of masks simultaneously. To tackle these challenges, we developed an open-source wireless sensor platform---VeriMask1 ---that facilitates per-mask verification of the moist-heat decontamination process. VeriMask is capable of monitoring hundreds of masks simultaneously in commercially available heating systems and provides a novel throughput-maximization functionality to help operators optimize the decontamination settings. We evaluate VeriMask in laboratory and real-scenario clinical settings and find that it effectively detects decontamination failures and operator errors in multiple settings and increases the mask decontamination throughput. Our easy-to-use, low-power, low-cost, scalable platform integrates with existing hospital protocols and equipment, and can be broadly deployed in under-resourced facilities to protect front-line healthcare workers by lowering their risk of infection from reused N95 masks. We also memorialize the design challenges, guidelines, and lessons learned from developing and deploying VeriMask during the COVID-19 Pandemic. Our hope is that by reflecting and reporting on this design experience, technologists and front-line health workers will be better prepared to collaborate for future pandemics, regarding mask decontamination, but also other forms of crisis tech.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了每一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。
它引用的顶会 Paper4
- Predicting Subjective Measures of Social Anxiety from Sparsely Collected Mobile Sensor DataHaroon Rashid, Sanjana Mendu, Katharine E. Daniel, Miranda L. Beltzer 等UbiComp 2020 · 被引用 47 次
- Soil-Monitoring Sensor Powered by Temperature Difference between Air and Shallow Underground SoilNatsuki Ikeda, Ryo Shigeta, Junichiro Shiomi, Yoshihiro KawaharaUbiComp 2020 · 被引用 39 次
- Towards the Design of a Ring Sensor-based mHealth System to Achieve Optimal Motor Function in Stroke SurvivorsYoojung Kim, Hee-Tae Jung, Joonwoo Park, Yangsoo Kim 等UbiComp 2020 · 被引用 32 次
- A Multi-Sensor Approach to Automatically Recognize Breaks and Work Activities of Knowledge Workers in AcademiaElena Di Lascio, Shkurta Gashi, Juan Sebastian Hidalgo, Beatrice Nale 等UbiComp 2020 · 被引用 25 次
相关 Paper
- FaceBit: Smart Face Masks PlatformAlexander Curtiss, Blaine Rothrock, Abu Bakar, Nivedita Arora 等UbiComp 2022 · 被引用 51 次
- Keep It Clean: The Current State of Hygiene and Disinfection Research and Practices for Immersive Virtual Reality ExperiencesEmil Rosenlund Høeg, Stefania Serafin, Belinda LangeIEEE VR 2025 · 被引用 4 次
- Reshaping the Smart Home Research and Development in the Pandemic Era: Considerations around Scalable and Easy-to-Install DesignHeesuk Son, Chaiwoo Lee, Shabnam FakhrHosseini, Sheng-Hung Lee 等CSCW 2022 · 被引用 4 次
- Feeling the Facts: Real-time wearable fact-checkers can use nudges to reduce user belief in false informationChitralekha Gupta, Nadia Victoria Aritonang, Dixon Prem Daniel Rajendran, Valdemar Danry 等CHI 2026 · 被引用 1 次
- VeriSMS: A Message Verification System for Inclusive Patient Outreach against Phishing AttacksChenkai Wang, Zhuofan Jia, Hadjer Benkraouda, Cody Zevnik 等CHI 2024 · 被引用 5 次
