[1] |
NAN Hai, ZHANG Yun, YANG Xin-ting, DUAN Hong-fei.
Meta-analysis on the diagnostic value of GeneXpert MTB/RIF for bone and joint tuberculosis
[J]. Chinese Journal of Antituberculosis, 2020, 42(9): 973-980.
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[2] |
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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[3] |
GAO Shu-hui,ZHAO Jun-wei.
Research progress of exosomal non-coding RNA as potential biomarkers of tuberculosis
[J]. Chinese Journal of Antituberculosis, 2020, 42(3): 282-285.
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[4] |
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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[5] |
YANG Ying-hui, WU Ding-hui, SU Wei-ming, DONG Chun-ping, YAO Xiang-yang.
Evaluation of gene chips for the rapid diagnosis of drug-resistance genes in Mycobacterium tuberculosis
[J]. Chinese Journal of Antituberculosis, 2020, 42(11): 1191-1195.
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[6] |
Jia-wen LIU,Hong-yan LYU,Bei-chuan DING,Zhi-guo ZHANG.
Analysis on identification of 129 non-tuberculosis mycobacteria strains using two molecular biology techniques
[J]. Chinese Journal of Antituberculosis, 2019, 41(9): 999-1003.
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[7] |
Yuan LIU,Jun ZHOU,Xiao-li CUI,Jia-yuan LEI,Li-yun DANG.
Evaluation on the performance of gene chip and linear probe technique in detecting MTB drug resistance in sputum samples from smear-positive pulmonary tuberculosis patients
[J]. Chinese Journal of Antituberculosis, 2019, 41(7): 738-742.
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[8] |
Xiao-li CUI,Han YANG,Xia WU,Dan ZHENG,Zhen-yu YOU,Li-yun. DANG.
Analysis of drug susceptibility and drug resistance gene locus mutation in 958 tuberculosis patients
[J]. Chinese Journal of Antituberculosis, 2019, 41(5): 541-545.
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[9] |
Jie SHENG,Fu-ding GU,Gulibike· Mulati,Wei TANG,Liang MA,Mierzhati· Aisha,Dilixiati· Abulizi.
The application value of GeneXpert MTB/RIF and line probe assay for rapid diagnosis of osteoarticular tuberculosis and detection of rifampicin resistance
[J]. Chinese Journal of Antituberculosis, 2019, 41(4): 394-398.
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[10] |
Jin-bao MA,Han YANG,Fei REN,Li-yun DANG.
Evaluation of three molecular methods for the detection of drug resistance of Mycobacterium tuberculosis
[J]. Chinese Journal of Antituberculosis, 2019, 41(4): 440-446.
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[11] |
Xue-juan BAI,Yin-ping LIU,Jun-xian ZHANG,Jie WANG,Xue-qiong WU.
Direct detection of rifampicin and isoniazid resistance-associated genes in clinical specimens from the patients with tuberculosis using gene chip
[J]. Chinese Journal of Antituberculosis, 2019, 41(2): 138-144.
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[12] |
Ying PENG,Xin SU,Qi JIANG,Chang-ming CHEN,Ran BIAN,Sheng ZHONG,Qian GAO,Fa-bin LI.
Effectiveness analysis of new molecular detection techniques for diagnosing pulmonary tuberculosis in primary laboratory
[J]. Chinese Journal of Antituberculosis, 2019, 41(2): 145-148.
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[13] |
Guo-lian ZHAO,Xiao-li CUI,Lei KANG,Yuan LIU,Li-yun DANG.
The value of fluorescent PCR probe melting curve technique in detecting anti-tuberculosis drug resistance of Mycobacterium tuberculosis using sputum samples from smear-positive patients
[J]. Chinese Journal of Antituberculosis, 2019, 41(2): 149-155.
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[14] |
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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[15] |
Yuan LIU,Jun ZHOU,Xiao-li CUI,Fang HUANG,Jia-yuan LEI,Li-yun DANG.
Value of GenoType MTBDRplus VER 2.0 in diagnosis of suspected tuberculosis patients and multidrug-resistant patients
[J]. Chinese Journal of Antituberculosis, 2019, 41(12): 1277-1282.
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