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Methods in Molecular Biology (Clifton, N.J.)|July 10, 2023
Microfluidics-Enabled Isolation and Single-Cell Analysis of Circulating Tumor CellsMinh-Chau N Le, Kierstin A Smith, Morteza Alipanah, et al.
Analytical and Bioanalytical Chemistry|July 20, 2023
Mayaro virus detection by integrating sample preparation with isothermal amplification in portable devicesMorteza Alipanah, Carlos Manzanas, Xin Hai, et al.
Journal of Aerosol Science|July 1, 2022
Viable SARS-CoV-2 Delta variant detected in aerosols in a residential setting with a self-isolating college student with COVID-19William B Vass, John A Lednicky, Sripriya Nannu Shankar, et al.
Aerosol Science and Technology : the Journal of the American Association for Aerosol Research|July 31, 2019
Determination of the distribution of infectious viruses in aerosol particles using water-based condensational growth technology and a bacteriophage MS2 modelMaohua Pan, Leah Carol, John A Lednicky, et al.
Scientific Reports|March 15, 2023
Molecular testing devices for on-site detection of E. coli in water samplesCarlos Manzanas, Elise Morrison, Young S Kim, et al.
ACS Synthetic Biology|March 24, 2017
Cogenerating Synthetic Parts toward a Self-Replicating SystemJun Li, Wilhelm Haas, Kirsten Jackson, et al.
Biosensors|April 21, 2022
Longitudinal Study of Circulating Biomarkers in Patients with Resectable Pancreatic Ductal AdenocarcinomaPablo J Dopico, Minh-Chau N Le, Benjamin Burgess, et al.
Aerosol Science and Technology : the Journal of the American Association for Aerosol Research|November 4, 2024
Concentrating viable airborne pathogens using a virtual impactor with a compact water-based condensation air samplerWilliam B Vass, Sripriya Nannu Shankar, John A Lednicky, et al.
Journal of Applied Microbiology|January 12, 2016
Efficient collection of viable virus aerosol through laminar-flow, water-based condensational particle growthM Pan, A Eiguren-Fernandez, H Hsieh, et al.
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