Early Introduction and Community Transmission of SARS-CoV-2 Omicron Variant, New York, New York, USA
Dakai Liu
1, Yexiao Cheng
1, Hangyu Zhou, Lulan Wang, Roberto Hurtado Fiel, Yehudah Gruenstein, Jean Jingzi Luo, Vishnu Singh, Eric Konadu, Keither James, Calvin Lui, Pengcheng Gao, Carl Urban, Nishant Prasad, Sorana Segal-Maurer, Esther Wurzberger, Genhong Cheng
, Aiping Wu
, and William Harry Rodgers
Author affiliations: NewYork-Presbyterian Queens Hospital, Flushing, New York, USA (D. Liu, J.J. Luo, V. Singh, E. Konadu, K. James, C. Lui, P. Gao, C. Urban, N. Prasad, S. Segal-Maurer, W.H. Rodgers);; Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing, China (Y. Cheng, H. Zhou, A. Wu); Suzhou Institute of Systems Medicine, Suzhou, China (Y. Cheng, H. Zhou, A. Wu);; University of California, Los Angeles, California, USA (L. Wang, G. Cheng); Kaiser Permanente Health, North Valley, California, USA (R.H. Fiel);; LabQ Diagnostics, Brooklyn, New York, USA (Y. Gruenstein, E. Wurzberger); Weill Cornell Medical College, New York (J.J. Luo, C. Urban, N. Prasad, S. Segal-Maurer, W.H. Rodgers)
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Figure 2
Figure 2. Genotype network of 392 Omicron viruses from New York, New York, USA, November 25–December 11, 2021. In this network, nodes represent nucleotide genotypes by clade, and lines between nodes represent pairs of nucleotide genotypes with the highest genetic similarity. Node size is scaled to log2 of the number of viruses with the corresponding genotype. Dashed lines indicate pairs of similar genotypes of different clades.
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Page created: January 11, 2023
Page updated: January 21, 2023
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