Published on in Vol 6, No 4 (2020): Oct-Dec

Preprints (earlier versions) of this paper are available at https://preprints.jmir.org/preprint/25546, first published .
SARS-CoV-2 Testing Service Preferences of Adults in the United States: Discrete Choice Experiment

SARS-CoV-2 Testing Service Preferences of Adults in the United States: Discrete Choice Experiment

SARS-CoV-2 Testing Service Preferences of Adults in the United States: Discrete Choice Experiment

Journals

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  2. Bevan I, Stage Baxter M, Stagg H, Street A. Knowledge, Attitudes, and Behavior Related to COVID-19 Testing: A Rapid Scoping Review. Diagnostics 2021;11(9):1685 View
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  4. Gagnon F, Bhatt M, Zemek R, Webster R, Johnson-Obaseki S, Harman S, Abd El-Aty A. Nasopharyngeal swabs vs. saliva sampling for SARS-CoV-2 detection: A cross-sectional survey of acceptability for caregivers and children after experiencing both methods. PLOS ONE 2022;17(7):e0270929 View
  5. McLaughlin H, Worrell M, Malone S, Dawson P, Maricque B, Halpin J, Lee S, Fritz S, Tinker S, Neidich J, Towns K, Lee J, Barrios L, Neatherlin J, Newland J, Salzer J. Acceptance of Saliva-Based Specimen Collection for SARS-CoV-2 Testing Among K-12 Students, Teachers, and Staff. Public Health Reports® 2022;137(3):557 View
  6. Blake H, Carlisle S, Fothergill L, Hassard J, Favier A, Corner J, Ball J, Denning C. Mixed-methods process evaluation of a residence-based SARS-CoV-2 testing participation pilot on a UK university campus during the COVID-19 pandemic. BMC Public Health 2022;22(1) View
  7. Tobik E, Kitfield-Vernon L, Thomas R, Steel S, Tan S, Allicock O, Choate B, Akbarzada S, Wyllie A. Saliva as a sample type for SARS-CoV-2 detection: implementation successes and opportunities around the globe. Expert Review of Molecular Diagnostics 2022;22(5):519 View
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  9. Rane M, Profeta A, Poehlein E, Kulkarni S, Robertson M, Gainus C, Parikh A, LeBenger K, Frogel D, Nash D. SARS-CoV-2 pandemic in New York metropolitan area: the view from a major urgent care provider. Annals of Epidemiology 2022;74:31 View
  10. Lippi G, Henry B, Plebani M. An overview of the most important preanalytical factors influencing the clinical performance of SARS-CoV-2 antigen rapid diagnostic tests (Ag-RDTs). Clinical Chemistry and Laboratory Medicine (CCLM) 2023;61(2):196 View
  11. Zimba R, Romo M, Kulkarni S, Berry A, You W, Mirzayi C, Westmoreland D, Parcesepe A, Waldron L, Rane M, Kochhar S, Robertson M, Maroko A, Grov C, Nash D. Patterns of SARS-CoV-2 Testing Preferences in a National Cohort in the United States: Latent Class Analysis of a Discrete Choice Experiment. JMIR Public Health and Surveillance 2021;7(12):e32846 View
  12. Patriquin G, LeBlanc J, Williams C, Hatchette T, Ross J, Barrett L, Davidson R, Bard J. Comparison between Nasal and Nasopharyngeal Swabs for SARS-CoV-2 Rapid Antigen Detection in an Asymptomatic Population, and Direct Confirmation by RT-PCR from the Residual Buffer. Microbiology Spectrum 2022;10(1) View
  13. Bauld L, Street A, Connelly R, Bevan I, Morlet Corti Y, Baxter M, Stagg H, Christison S, Mulherin T, Sinclair L, Aitman T. Students’ and staffs’ views and experiences of asymptomatic testing on a university campus during the COVID-19 pandemic in Scotland: a mixed methods study. BMJ Open 2023;13(3):e065021 View
  14. Rossetti T, Daziano R. The effect of perceived risk of false diagnosis on preferences for COVID-19 testing: Evidence from the United States. Journal of Choice Modelling 2024;50:100455 View
  15. Yao H, Shen Y, Liang Z, Xue X, Zhao C, Xu X, Cai Y, Liu Y, Zhang W, Pan Y, Wang X. Superior effectiveness and acceptability of saliva samples for the detection of SARS-CoV-2 in China. Biosafety and Health 2024;6(2):88 View
  16. Wei C, Lei X, Yu S. Multiplexed Detection Strategies for Biosensors Based on the CRISPR-Cas System. ACS Synthetic Biology 2024;13(6):1633 View