Selected article for: "detection kit and sensitive detection"

Author: Jianghong An; Xuejiao Liao; Tongyang Xiao; Shen Qian; Jing Yuan; Haocheng Ye; Furong Qi; Chengguang Shen; Yang Liu; Lifei Wang; Xiaoya Cheng; Na Li; Qingxian Cai; Fang Wang; Jun Chen; Yingxia Liu; Yunfang Wang; Feng Zhang; Yang Fu; Xiaohua Tan; Lei Liu; Zheng Zhang
Title: Clinical characteristics of the recovered COVID-19 patients with re-detectable positive RNA test
  • Document date: 2020_3_30
  • ID: 58sc6xgq_37
    Snippet: The copyright holder for this preprint (which was not peer-reviewed) is . https://doi.org/10.1101/2020.03. 26.20044222 doi: medRxiv preprint the onset of the re-admission, 75% of spike genes and 41.6% ORF genes could be detected to be positive using hyper-sensitive method, while only 12.5% N genes and 4.2% RF genes were detected to be positive using commercial detection kit. Eight of fifteen RP patients were confirmed to be RNA positive using the.....
    Document: The copyright holder for this preprint (which was not peer-reviewed) is . https://doi.org/10.1101/2020.03. 26.20044222 doi: medRxiv preprint the onset of the re-admission, 75% of spike genes and 41.6% ORF genes could be detected to be positive using hyper-sensitive method, while only 12.5% N genes and 4.2% RF genes were detected to be positive using commercial detection kit. Eight of fifteen RP patients were confirmed to be RNA positive using the hyper-sensitive kit, although only 1 person was confirmed using commercial kit. By contrasts, 8 samples from NRP patients were detected to be negative by both methods. These data showed hyper-sensitive methods potentially improve RNA positive detection in samples from RP patients with negative results.

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