Textbook of Diagnostic Microbiology, Volume 355Connie R. Mahon, George Manuselis Saunders, 2000 - 1230 pagine This text supplies the "bare necessities" of knowledge for clinical practice. The focus of the book is to provide students with the information they need in an easy-to-use, memorable format. The authors maintain the student focus and visual appeal of the last edition, but have added more features whilst paring down content for an even finer approach. The format of the text is a logical building-block approach to microbiology. This progressive approach from basic principles and concepts to systematic identification of etiologic agents of infectious diseases allows for greater understanding and development of problem solving skills. |
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Pagina 229
... Toxins Complex lethal edema - producing toxin Lethal , dermonecrotizing toxin 6 type - specific lethal neurotoxins 1. Alpha , lethal , dermonecrotizing 2. Beta , lethal , dermonecrotizing , hemolytic 3. Gamma , lethal , dermonecrotizing ...
... Toxins Complex lethal edema - producing toxin Lethal , dermonecrotizing toxin 6 type - specific lethal neurotoxins 1. Alpha , lethal , dermonecrotizing 2. Beta , lethal , dermonecrotizing , hemolytic 3. Gamma , lethal , dermonecrotizing ...
Pagina 375
... toxin produced is influenced by the growth con- ditions . The iron content of the medium must be growth rate - limiting for full toxin production . The addition of iron to iron - starved cultures inhibits toxin production very quickly ...
... toxin produced is influenced by the growth con- ditions . The iron content of the medium must be growth rate - limiting for full toxin production . The addition of iron to iron - starved cultures inhibits toxin production very quickly ...
Pagina 376
... toxin . Production of the toxin in vitro depends on a number of environmental conditions : an alkaline pH ( 7.8 to 8.0 ) , oxygen , and , most importantly , iron concentration in the medium . The amount of iron needed for optimal toxin ...
... toxin . Production of the toxin in vitro depends on a number of environmental conditions : an alkaline pH ( 7.8 to 8.0 ) , oxygen , and , most importantly , iron concentration in the medium . The amount of iron needed for optimal toxin ...
Sommario
Bacterial Morphology | 10 |
Bacterial Biochemistry and Metabolism | 16 |
Chemical Methods | 30 |
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acid activity addition agar agents anaerobic antibody antigen antimicrobial appear areas associated bacilli bacteria blood body broth cause cells characteristics Clin Microbiol clinical coli collection colonies color common commonly complex concentration containing culture described detection determine develop diagnosis differentiate direct disease disk drug enteric enzyme examination factors Fermentation Figure fluid genus glucose Gram stain gram-negative gram-positive grow growth human identification important incubation infections inoculated isolates laboratory light material medium methods microbiology microscopic morphology Mycobacterium negative Neisseria occur organisms pathogens patients performed pigment placed plate pneumoniae positive preparation present primary probe procedures produce protein rapid reaction referred reported require resistant respiratory samples seen selective sensitivity serum shows significant skin smear species specimens stain standard sterile stool streptococci susceptibility testing Table temperature tion tissue tract tube tuberculosis usually wound