书城保健养生结核病诊断与防治技术
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第41章 参考文献:(4)

88.Isola D,Pardini M,Varaine F,Niemann S,Rsch-Gerdes S,et al.A Pyrosequencing assay for rapid recognition of SNPs in Mycobacterium tuberculosis embB306region.J Microbiol Methods,2005,62:113-120

89.Gingeras TR ,Ghandour G,Wang E,et al.Simultaneous genotyping and species identification using hybridization pattern recognition analysis of generic mycobacterium DNA arrays.Genome Res,1998,8:435-448

90.Troesch A,Nguyen H,Miyada CG,et al.Mycobacterium species identification and rifampin resistance testing with high density DNA Probe assay.J Clin Microbiol,1999,37:492-501

91.Saiki RK,Walsh PS,Levenson CH,et al.Genetic amalysis of amplified DNA with immobilized sequence specific oligonucleotide probes.Proc Natl Acad Sci USA,1989,86:6230.

92.Zhang SL,Shen JG,Xu PH,et al.A novel genotypic test for rapid detection of multidrug-resistant Mycobacterium tuberculosis isolates by a multiplex probe array.J Appl Microbiol,(revised)

93.De Beenhouwer H,Lhiang Z,Jannes G,Mijs W,Machtelinckx L,Rossau R,Traore H,Portaels F.Rapid detection of rifampicin resistance in sputum and biopsy specimens from tuberculosis patients by PCR and line probe assay.Tuber Lung Dis,1995,76:425-430.

94.Rossau R,Traore H,Beenhouwer HD,et al.Evaluation of the INNO-LiPA Rif.TB assay,a reverse hybridization assay for the simultaneous detection of Mycobacterium tuberculosis complex and its resistance to rifampin.Antimicrob Agents Chemother,1997,41(10):2093-2098.

95.Watterson SA,Wilson SM,Yates MD,Drobniewski FA.Comparison of three molecular assays for rapid detection of rifampin resistance in Mycobacterium tuberculosis.J Clin Microbiol,1998,36(7):1969-1973.

96.Gamboa F,Cardona PJ,Manterola JM,Lonca J,Matas L,Padilla E,Manzano JR,Ausina V.Evaluation of a commercial probe assay for detection of rifampin resistance in Mycobacterium tuberculosis directly from respiratory and nonrespiratory clinical samples.Eur J Clin Microbiol Infect Dis,1998,17:189-192.

97.Hillemann D,Weizenegger M,Kubica T,Richter E,Niemann S.Use of the genotype MTBDR assay for rapid detection of rifampin and isoniazid resistance in Mycobacterium tuberculosis complex isolates.J Clin Microbiol,2005,43:3699-3703.

98.Marras TK,Daley CL.Epidemiology of human pulmonary infection with nontuberculous mycobacteria.Clin Chest Med,2002,23:553-67.

99.全国结核病流行病学抽样调查技术指导组.第四次全国结核病流行病学抽样调查报告.中华结核和呼吸杂志,2002,25:3-7.

100.庄玉辉等.抗酸分枝杆菌及相关菌全细胞枝菌酸、甲基酯的薄层分析.微生物学报,1989,29:15.

101.Glickman SE,Kilbm JO,Bufer WB,et a1.Rapid identification of mycolic acid patterns of mycobacteria by high-performance liquid chromatography using pattern recognition software and a Mycobacterium library.J Clin Mierobio1,1994,32:740-745.

102.张寅,庄玉辉,刘志恒,等.毛细管气相色谱细胞脂肪酸测定法鉴定28种分枝杆菌的研究,微生物学报,1991,31:187-197.

103.Torkko P,Katila ML,Kontro M.Gas-chroma tographic lipid profiles in identification of currenfy known slowly growing environmental mycobacteria.J Med Microbiol,2003,52(Pt4):315-323.

104.张滢蓉,吴小珍,景玲杰.用Bactec TB460快速培养阳性的菌液直接进行分枝杆菌菌种鉴定.临床检验杂志,2002,20:376.

105.Roth A,Fischer M,Hamid ME,et al.Differentiation of phylogenetical related slowly growing mycobacteria based on 16S rRNA gene internal transcribed spacer sequences.J.Clin.Microbiol,1998,36:139-147.

106.Abed Y,Davin-Regli A,Bollet C,Micco PD.Efficient discrimination of Mycobacterium tuberculosis strains by 16S-23S spacer region-based random amplified polymorphic DNA analysis.J Clin Microbiol,1995,33:1418-1420.

107.Lappayawichit P,Rienthong D,Rienthong S,et al.Differentiation of mycobacterium species by restriction enzyme analysis of amplified 16s-23s ribosomal DNA spacer sequences.Tuberc Lung Dis,1996,77:257-263.

108.Pai S,Esen N,Pan X,et al.Routine rapid mycobacterium species assignment based on species-specific allelic variation in 65-kilodalton heat shock protein gene (hsp65).Arch Pathol Lab Med,1997,121:859-864.

109.Derallois AK,Goh S,Rastogi N.Rapid identification of mycobacteria to species level by PCR-restriction fragment length polymorphism analysis of the hsp65gene and proposition of an algorithm to differentiate 34mycobcterial species.J Clin Microbiol,1997,35:2969-973.

110.Takewaki S,Okuzumi K,Manabe I,et al.Nucleotide sequence comparison of the mycobacterial dnaj gene and PCR-restriction fragment length polymorphism analysis for identification of mycobacterial species.Int J Syst Bacteriol,1994,44:159-166.

111.Yamamoto S,Harayama S.Phylogenetic analysis of Acinetobacter strains based on the nucleotide sequences of gyrB genes and on the amino acid sequences of their products.Int J Syst Bacteriol,1996,46(2):506-511.

112.Yamamoto S ,Harayama S.PCR amplification and direct sequencing of gyrB genes with universal primers and their application to the detection and taxonomic analysis of Pseudomonas putida strains.Appl Environ Microbiol,1995,61(3):1104-1109.

113.阎逊初编著.放线菌的分类和鉴定.北京:科学出版社,1992,P:191-222

114.Takahashi S.L phase growth of mycobacteria:1.Cell wall deficient form of mycobacteria.Kekaku,1979,54:63-69.

115.庄玉辉,李国利,韩元华.抗酸分支杆菌L 型诱导的研究.中华结核和呼吸杂志,1984,7:210-211.

116.Golyshevskaya VI,Zemskova ZS,Korolev M B.Characteristics of the filterable forms of Mycobacterium tuberculosis and their pathological significance.Zh Microbiol Epidemiol Immunobiol,1984,(6):23-27.

117.Herzog H.History of tuberculosis.Respiration 1998;65:5–15

118.Collin CH.The bovine tubercle bacillus.J Appl Barteriol,1983,55,13-29

119.Khomenko AG,Golyshevskaya VI.Filtrable forms of mycobacteria tuberculosis.Z Erkr Atmungsorgane,1984;162(2):147-54.

120.朱明利.结核分枝杆菌滤过型的初步研究.中国微生态学杂志,2007,19(6):215-216

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