BACKGROUND: Blood stream infections (BSIs) are a major cause of morbidity and mortality. The time from taking blood cultures to obtain results of antibiotic sensitivity can be up to five days which impacts patient care. The Alfred 60 AST™ can reduce laboratory time from positive culture bottle to susceptibility results from 16 to 25 h to 5-6 h, transforming patient care. To evaluate the diagnostic accuracy of a rapid antimicrobial susceptibility system, the Alfred 60 AST™, in clinical isolates from patients with BSIs and confirm time to results. 301 Gram-negative and 86 Gram-positive isolates were analysed directly from positive blood culture bottles following Gram staining. Antimicrobial susceptibility results and time-to-results obtained ...
Objectives To compare the performance and time-to-result (TTR) for antimicrobial susceptibility tes...
Background: Rapid identification (ID) and antimicrobial susceptibility testing (AST) of microorganis...
The Accelerate Pheno™ System (APS), a new platform that combines rapid identification (ID) of bacter...
BACKGROUND: A bacteremia diagnosis with speeded-up identification and antimicrobial susceptibility t...
Rapid pathogen identification (ID) and antimicrobial susceptibility testing (AST) of bacteria-causin...
BACKGROUND: Rapid antimicrobial susceptibility testing (rAST) has the potential to improve care of b...
Background: Rapid identification and antimicrobial susceptibility testing (AST) of the causative age...
The rapid administration of optimal antimicrobial treatment is paramount for the treatment of bloods...
Bloodstream infections (BSI) are associated with high mortality rates, especially in immunocompromis...
Objectives: To compare the performance of the Accelerate Pheno™ system with that of the conventional...
BACKGROUND: Early administration of appropriate antibiotic therapy in bacteraemia patients dramatica...
Rapid pathogen identification (ID) and antimicrobial susceptibility testing (AST) in bacteremia case...
We evaluated a rapid bacterial identification (rID) and a rapid antimicrobial susceptibility testing...
Background: Early administration of appropriate antibiotic therapy in bacteraemia patients dramatica...
BACKGROUND: Rapid antimicrobial susceptibility tests are expected to reduce the time to clinically i...
Objectives To compare the performance and time-to-result (TTR) for antimicrobial susceptibility tes...
Background: Rapid identification (ID) and antimicrobial susceptibility testing (AST) of microorganis...
The Accelerate Pheno™ System (APS), a new platform that combines rapid identification (ID) of bacter...
BACKGROUND: A bacteremia diagnosis with speeded-up identification and antimicrobial susceptibility t...
Rapid pathogen identification (ID) and antimicrobial susceptibility testing (AST) of bacteria-causin...
BACKGROUND: Rapid antimicrobial susceptibility testing (rAST) has the potential to improve care of b...
Background: Rapid identification and antimicrobial susceptibility testing (AST) of the causative age...
The rapid administration of optimal antimicrobial treatment is paramount for the treatment of bloods...
Bloodstream infections (BSI) are associated with high mortality rates, especially in immunocompromis...
Objectives: To compare the performance of the Accelerate Pheno™ system with that of the conventional...
BACKGROUND: Early administration of appropriate antibiotic therapy in bacteraemia patients dramatica...
Rapid pathogen identification (ID) and antimicrobial susceptibility testing (AST) in bacteremia case...
We evaluated a rapid bacterial identification (rID) and a rapid antimicrobial susceptibility testing...
Background: Early administration of appropriate antibiotic therapy in bacteraemia patients dramatica...
BACKGROUND: Rapid antimicrobial susceptibility tests are expected to reduce the time to clinically i...
Objectives To compare the performance and time-to-result (TTR) for antimicrobial susceptibility tes...
Background: Rapid identification (ID) and antimicrobial susceptibility testing (AST) of microorganis...
The Accelerate Pheno™ System (APS), a new platform that combines rapid identification (ID) of bacter...