[an error occurred while processing this directive] ����Ƥ���Բ�ѧ��־ 2005, 31(1) 27-29 DOI:     ISSN: 2096-5540 CN: 32-1880/R

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[2] Olive DM, Bean P. Principles and applications of methods for DNAbased typing of microbial organisms. J Clin Microbiol, 1999, 37:1661-1669.
[3] Hamels S, Gala JL, Dufour S,et al. Consensus PCR and microarray for diagnosis of the genus Staphylococcus, species, and methicillin resistance. Biotechniques, 2001, 31:1364-1372.
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[11] 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.
[12] Anthony RM, Brown TJ, French GL. Rapid diagnosis of bacteremia by universal amplification of 23S ribosomal DNA followed by hybridization to an oligonucleotide array. J Clin Microbiol, 2000, 38:781-788.
[13] Ferrero DV, Meyers HN, Schultz DE, et al. Performance of the GenProbe AMPLIFIED Chlamydia Trachomatis Assay in detecting Chlamydia trachomatis in endocervical and urine specimens from women and urethral and urine specimens from men attending sexually transmitted disease and family planning clinics. J Clin Microbiol,1998, 36:3230-3233.
[14] Jordan JA, Lowery D, Trucco M. TaqMan-based detection of Trichomonas vaginalis DNA from female genital specimens. J Clin Microbiol, 2001, 39:3819-3822.
[15] Troesch A, Nguyen H, Miyada CG, et al. Mycobacterium species identification and rifampin resistance testing with high-density DNA probe arrays. J Clin Microbiol, 1999, 37:49-55.
[16] Kappe R, Okeke CN, Fauser C, et al. Molecular probes for the detection of pathogenic fungi in the presence of human tissue. J Med Microbiol, 1998, 47:811-820.
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