
Jessica Rothman
PhD Student
Emory University Continue Reading Jessica Rothman
Combining genomic and epidemiological data to compare the transmissibility of SARS-CoV-2 lineages.
of B.1.1.7 was 6-10% larger than that of B.1.526 in Connecticut in the midst of a COVID-19 vaccination campaign. To assess the generalizability of this framework, we apply it to genomic surveillance data from New York City and observe the same trend. Finally, we use discrete phylogeography to demonstrate that while both variants were introduced into Connecticut at comparable frequencies, clades that resulted from introductions of B.1.1.7 were larger than those resulting from B.1.526 introductions. Our framework, which uses open-source methods requiring minimal computational resources, may be used to monitor near real-time variant dynamics in a myriad of settings.
medRxiv : the preprint server for health sciences
Petrone ME, Rothman JE, Breban MI, Ott IM, Russell A, Lasek-Nesselquist E, Kelly K, Omerza G, Renzette N, Watkins AE, Kalinich CC, Alpert T, Brito AF, Earnest R, Tikhonova IR, Castaldi C, Kelly JP, Shudt M, Plitnick J, Schneider E, Murphy S, Neal C, Laszlo E, Altajar A, Pearson C, Muyombwe A, Downing R, Razeq J, Niccolai L, Wilson MS, Anderson ML, Wang J, Liu C, Hui P, Mane S, Taylor BP, Hanage WP, Landry ML, Peaper DR, Bilguvar K, Fauver JR, Vogels CBF, Gardner LM, Pitzer VE, St George K, Adams MD, Grubaugh ND. (2021). Combining genomic and epidemiological data to compare the transmissibility of SARS-CoV-2 lineages. medRxiv : the preprint server for health sciences

PhD Student
Emory University Continue Reading Jessica Rothman

Associate Professor of Civil and Systems Engineering
Johns Hopkins University Continue Reading Lauren Gardner

Associate Professor
Yale University Continue Reading Virginia Pitzer

Associate Professor
Harvard University Continue Reading William Hanage