[1] |
LI Ai-fang, CUI Xiao-li, KANG Lei, LEI Jing, DANG Li-yun, YANG Han.
Value of fluorescence PCR probe melting curve method in detecting resistance of Mycobacterium tuberculosis
[J]. Chinese Journal of Antituberculosis, 2020, 42(9): 998-1001.
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[2] |
ZHANG Jing, CHEN Xi, WANG Bin, FU Lei, LU Yu, CHEN Xiao-you.
Establishment of modified propidium monoazide (PMAxx)-quantitative PCR assay and its application for identification of antituberculosis drug activity
[J]. Chinese Journal of Antituberculosis, 2020, 42(5): 472-480.
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[3] |
YU Jia-jia, ZHANG Xu-xia, ZHANG Yu-qing, REN Wei-cong, YAO Cong, LI Chuan-you, LIU Yi, TANG Shen-jie.
Preliminary study on detection method of MTB DNA by PCR amplification combined with CRISPR-Cas13a system
[J]. Chinese Journal of Antituberculosis, 2020, 42(12): 1280-1288.
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[4] |
LYU Chun-fang,WU Jian-hong,LU Liu-zhu,XU Yang-feng,LIU Sheng-yuan.
Comparative analysis of domestic real-time fluorescence quantitative PCR reagent and GeneXpert MTB/RIF for detecting Mycobacterium tuberculosis
[J]. Chinese Journal of Antituberculosis, 2020, 42(1): 60-65.
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[5] |
Zhi-hua CAO,Yue-zhu ZHAO,Shuang-shuang HU.
Detection of drug resistance mutations in Mycobacterium tuberculosis to five antitubercular drugs using the fluorescent PCR probe melting curve method
[J]. Chinese Journal of Antituberculosis, 2019, 41(2): 156-161.
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[6] |
SHI Lian,REN Yi-jie,XI Ying,SHI Lei,GUO Chen,GUAN Jian.
Detection value analysis of three laboratory techniques for diagnosing tuberculosis and drug resistance in smear-positive patients
[J]. Chinese Journal of Antituberculosis, 2019, 41(11): 1173-1178.
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[7] |
Hui-na WU,Fu-sheng SUN,Qing-wen LIU,Zhong-lu RONG,Ji-dong ZHANG,Yang GAO,Yong-fu LI,Fei CHANG.
The value of fluorescent PCR probe melting curve analysis in detection of Mycobacterium tuberculosis complex for rifa-mpicin and isoniazid resistance
[J]. Chinese Journal of Antituberculosis, 2019, 41(1): 74-79.
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[8] |
Li-ping CHENG,Xiao-yan ZHANG,Wei SHA.
The diagnostic value of sputum PCR-reverse dot blot hybridization in the diagnosis of suspected NTM pulmonary disease
[J]. Chinese Journal of Antituberculosis, 2018, 40(8): 834-839.
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[9] |
Yu-jie DONG,Li ZHANG,Yu-xuan WANG,Li-juan ZHOU,Yang QU,Chen ZHANG,Hai-qing ZHANG,Nan-Ying CHE.
Clinical application of immunohistochemistry and PCR technique in pathological diagnosis of tuberculous lymphadenitis
[J]. Chinese Journal of Antituberculosis, 2018, 40(4): 348-352.
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[10] |
GUO Jun-hong,WU Chun-yan,DONG Zheng-wei,WU Wei,ZHANG Li-ping,LI Hui,HUANG Yan.
Clinical value of PCR test in diagnosis of pulmonary tuberculosis by using CT-guided lung biopsy specimens
[J]. Chinese Journal of Antituberculosis, 2018, 40(11): 1159-1163.
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[11] |
ZHANG Jie*, XING Qing, WANG Su-min, YI Jun-li, YANG Xin-yu, DING Bei-chuan, SU Jian-rong.
Comparative study between the traditional culture method and PCR-fluorescent probe method in the identification of mycobacterium species
[J]. Chinese Journal of Antituberculosis, 2015, 37(3): 291-294.
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[12] |
ZHOU Wei-dong, WEI Guang-xi, WANG Jun, ZHAO Ming-wei.
The diagnosis analysis of 96 cases of cervical tuberculous lymphadenitis
[J]. Chinese Journal of Antituberculosis, 2014, 36(10): 888-892.
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[13] |
DONG Wei-jie, QIN Shi-bing, ZHAO Li-ping, FU Yu-hong, HUANG Hai-rong.
Analysis of various osteoarticular tuberculosis specimen types with positive mycobacterial culture and positive TB-PCR results
[J]. Chinese Journal of Antituberculosis, 2014, 36(1): 46-48.
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[14] |
YUAN Xiao-liang, ZHANG Tian-tuo, ZHU Jia-xin, ZHENG Wen-zheng, LEI Jian-ping, TU Shao-hua, LUO Yi-jun, LIU Wei-you.
Molecular characteristics of the second-line antituberculosis drug-resistant Mycobacterium tuberculosis strains from Jiangxi province
[J]. Chinese Journal of Antituberculosis, 2013, 35(9): 649-654.
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[15] |
WANG Gui-rong, FU Yu-hong, LIANG Qian, SHANG Yuan-yuan, JIANG Guang-lu, ZHAO Li-ping, YU Xia, CHEN Su-ting, HUANG Hai-rong.
Study on rapid differentiation of Mycobacterium tuberculosis complex from non-tuberculous mycobacteria by a multiplex PCR
[J]. Chinese Journal of Antituberculosis, 2013, 35(9): 686-689.
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