Results 131 to 140 of about 1,947 (180)
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The frequent isolation ofPhialophora verrucosaandPhialophora pedrosoifrom natural sources

Medical Mycology, 1972
Thirty-one strains of Phialophora verrucosa and 34 of P. pedrosoi were isolated from 328 samples of plant debris, soil and other materials via inoculated animals and by direct culture.From 32 of 64 samples of non-living materials from trees and rotten palm-tree trunks, 1 or both species have been isolated.
E, Gezuele   +2 more
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Pathogenicity of Phialophora pedrosoi

Mycoses, 2009
Zusammenfassung 30 Kaninchen wurden mit Phialophora pedrosoi intravenos (durch eine randstandige Ohrvene) infiziert. 15 der Tiere erhielten 2 Tage vor der Inokulation s. c. 100 mg Cortisonacetat und 4 weitere Injektionen alle 2 Tage. Die anderen Tiere erhielten kein Cortisonacetat. Inokuliert wurden 3 Stamme, pro Stamm 5 Kaninchen.
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Mycetoma of the Hand Caused by Phialophora Jeanselmei

Mycoses, 1982
Summary: A case of mycetoma of the hand caused by Phialophora jeanselmei is described. The causative agent was identified by histological structure of the grains and by cultural and physiological characteristics of the fungus. The case presented in this report appears to be the second case of mycetoma of the hand caused by this pathogen in Thailand ...
K, Pupaibul   +2 more
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Control of dimorphism inPhialophora verrucosa

Medical Mycology, 1974
The black mold P. verrucosa grew in a defined liquid medium in continuously agitated culture at 27°C with the formation of mycelia and production of phialospores. When Mn++ was omitted from the defined medium, phialospores were not formed, and the dispened growth, consisted of short hyphae with terminal chlamydospores resembling the tissue phase ...
E, Reiss, W J, Nickerson
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Lipases of Fonsecaea pedrosoi and Phialophora verrucosa

Antonie van Leeuwenhoek, 1989
Lipase activity was demonstrable titrimetrically in the culture filtrates of Fonsecaea pedrosoi and Phialophora verrucosa on the 6th day of incubation reaching a peak on the 15th and 12th days respectively for the two fungi. Purified lipases of F. pedrosoi and P.
C N, Okeke, H C, Gugnani
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Phialophora verrucosa: A new cause of mycetoma

Journal of the American Academy of Dermatology, 1995
A 29-year-old Thai woman had draining sinus tracts, tumefaction, and granules on the plantar aspect of the foot. Phialophora verrucosa was isolated from the lesion. P. verrucosa is a major agent of chromoblastomycosis, which is known to rarely cause subcutaneous phaeohyphomycosis.
G W, Turiansky   +6 more
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Phialophora parasitica, an emerging pathogen

Medical Mycology, 1984
Monoconidial cultures derived from 12 clinical and environmental isolates of Phialophora parasitica were compared with respect to morphologic and physiologic characteristics and response to antifungal agents. No yeast cells were seen in 1- and 3-week-old slide culture preparations.
I, Weitzman   +3 more
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Production of capsule and conidia by yeast-like cells ofPhialophora spiniferaandPhialophora jeanselmei

Medical Mycology, 1973
Five strains of Phialophora spinifera Nielsen & Conant 1968 isolated from natural sources as well as the original culture of Nielsen & Conant, produced on Czapek-Dox's sodium nitrate sucrose agar, single and multiple budding yeast-like cells mostly with a typical capsule. The yeast-like capsulated and non-capsulated cells produced on Czapek-Dox's agar,
J E, Mackinnon   +3 more
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Chromohyphomycosis of the hand due to Exophiala jeanselmei (Phialophora jeanselmei, Phialophora gougerotii)—Case report and review

The Journal of Hand Surgery, 1981
A case of an unusual cause of chromomycosis of the hand is described. Follow-up at 2 months revealed a complete recovery following removal of the mass, without treatment with antifungal therapy. A review of the different disease entities of the chromomycoses and a brief generic classification of the dematiacious fungi are presented.
P W, Monroe, W E, Floyd
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Sporulation of the Phialophora Type in Hormodendrum

Mycologia, 1937
Hormodendrum is an important genus of the Fungi Imperfecti. Its species have a wide geographical distribution and are commonly present in soil and decaying vegetation. Because of the ubiquity of its wind-blown spores it is a familiar " culture weed" of the laboratory.
C. W. Emmons, A. L. Carrión
openaire   +1 more source

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