[1] Petrikkos G, Skiada A, Lortholary O, et al. Epidemiology and clinical manifestations of mucormycosis
[J]. Clin Infect Dis, 2012, 54(S1):23-34.
[2] Hibbett DS, Binder M, Bischoff JF, et al. A higher-level phylogenetic classification of the Fungi
[J]. Mycol Res, 2007, 111(Pt5):509-547.
[3] Kwon-Chung KJ. Taxonomy of fungi causing mucormycosis and entomophthoramycosis (zygomycosis) and nomenclature of the disease: molecular mycologic perspectives
[J]. Clin Infect Dis, 2012, 54(S1):8-15.
[4] Hoffmann K, Discher S, Voigt K. Revision of the genus Absidia (Mucorales, Zygomycetes) based on physiological, phylogenetic, and morphological characters; thermotolerant Absidia spp. form a coherent group, Mycocladiaceae fam. nov.
[J]. Mycol Res, 2007, 111(Pt 10): 1169-1183.
[5] Hoffmann K, Walther G, Voigt K. Mycocladus vs. Lichtheimia: a correction (Lichtheimiaceae fam. nov., Mucorales, Mucoromycotina)
[J]. Mycol Res, 2009, 113:277-278.
[6] Garcia-Hermoso D, Hoinard D, Gantier JC, et al. Molecular and phenotypic evaluation of Lichtheimia corymbifera (formerly Absidia corymbifera) complex isolates associated with human mucormycosis: rehabilitation of L. ramosa
[J].J Clin Microbiol, 2009, 47(12):3862-3870.
[7] Alastruey-Izquierdo A, Hoffmann K, de Hoog GS, et al. Species recognition and clinical relevance of the zygomycetous genus Lichtheimia (syn. Absidia pro parte, Mycocladus)
[J]. J Clin Microbiol, 2010, 48(6):2154-2170.
[8] Alvarez E, Stchigel AM, Cano J, et al. Molecular phylogenetic diversity of the emerging mucoralean fungus Apophysomyces: proposal of three new species
[J]. Rev Iberoam Micol, 2010, 27(2):80-89.
[9] Alvarez E, Garcia-Hermoso D, Sutton DA, et al. Molecular phylogeny and proposal of two new species of the emerging pathogenic fungus Saksenaea
[J]. J Clin Microbiol, 2010,48(12):4410- 4416.
[10] Lu XL, Liu ZH, Shen YN, et al. Primary cutaneous zygomycosis caused by Rhizomucor variabilis : a new endemic zygomycosis? A case report and review of 6 cases reported from China
[J]. Clin Infect Dis. 2009, 49(3): e39-43.
[11] Schwarz P, Bretagne S, Gantier JC, et al. Molecular identification of zygomycetes from culture and experimentally infected tissues
[J]. J Clin Microbiol, 2006, 44(2):340-349.
[12] Alvarez E, Sutton DA, Cano J, et al. Spectrum of zygomycete species identified in clinically significant specimens in the United States
[J]. J Clin Microbiol, 2009, 47(6):1650-1656.
[13] Alvarez E, Cano J, Stchigel AM, et al. Two new species of Mucor from clinical samples. Med Mycol, 2011, 49(1): 62-72.
[14] Gomes MZ, Lewis RE, Kontoyiannis DP. Mucormycosis caused by unusual mucormycetes, non-Rhizopus, -Mucor, and -Lichtheimia species
[J]. Clin Microbiol Rev, 2011, 24(2):411-445.
[15] Mahmud A, Lee R, Munfus-McCray D, et al. Actinomucor elegans as an emerging cause of Mucormycosis
[J]. J Clin Microbiol, 2012, 50(3):1092-1095.
[16] Sugui JA, Christensen JA, Bennett JE, et al. Hematogenously disseminated skin disease caused by Mucor velutinosus in a patient with acute myeloid leukemia
[J]. J Clin Microbiol, 2011, 49(7):2728-2732.
[17] Slavin MA, Chakrabarti A. Opportunistic fungal infections in the Asia-Pacific region
[J]. Med Mycol, 2012, 50(1):18-25.
[18] Hospenthal DR, Chung KK, Lairet K, et al. Saksenaea erythrospora infection following combat trauma
[J]. J Clin Microbiol, 2011, 49(10):3707-3709.
[19] Lemmer K, Losert H, Rickerts V, et al. Molecular biological identification of Cuninghamella spec.
[J]. 2002, Mycoses, 45(S1):31-36.
[20] Roden MM, Zaoutis TE, Buchanan WL, et al. Epidemiology and outcome of zygomycosis: a review of 929 reported cases
[J]. Clin Infect Dis, 2005, 41(5):634-653.
[21] Machouart M, Larché J, Burton K, et al. Genetic identification of the main opportunistic Mucorales by PCR-restriction fragment length polymorphism
[J]. J Clin Microbiol, 2006, 44(3): 805-810.
[22] Hammond SP, Bialek R, Milner DA, et al. Molecular methods to improve diagnosis and identification of mucormycosis
[J]. J Clin Microbiol, 2011, 49(6):2151-2153.
[23] Bernal-Martínez L, Buitrago MJ, Castelli MV, et al. Development of a single tube multiplex real-time PCR to detect the most clinically relevant Mucormycetes species
[J]. Clin Microbiol Infect, 2012, Aug 28. .
[24] De Carolis E, Posteraro B, Lass-Flörl C, et al. Species identification of Aspergillus, Fusarium and Mucorales with direct surface analysis by matrix-assisted laser desorption ionization time-of-flight mass spectrometry
[J]. Clin Microbiol Infect, 2012, 18(5):475-484.
[25] Schrödl W, Heydel T, Schwartze VU, et al. Direct analysis and identification of pathogenic Lichtheimia species by matrix-assisted laser desorption ionization-time of flight analyzer- mediated mass spectrometry
[J]. J Clin Microbiol, 2012, 50(2):419-427.
|