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Your search keyword '"CARRILLO, CARLOS"' showing total 16 results

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16 results on '"CARRILLO, CARLOS"'

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1. Antifungal resistance in Candida spp within the intra-abdominal cavity: study of resistance acquisition in patients with serial isolates.

2. In vitro activity of ibrexafungerp against Candida species isolated from blood cultures. Determination of wild-type populations using the EUCAST method.

3. Lack of relationship between genotype and virulence in Candida species.

4. Susceptibility of uncommon Candida species to systemic antifungals by the EUCAST methodology.

5. Candida guilliermondii Complex Is Characterized by High Antifungal Resistance but Low Mortality in 22 Cases of Candidemia.

6. Frequency of the Paradoxical Effect Measured Using the EUCAST Procedure with Micafungin, Anidulafungin, and Caspofungin against Candida Species Isolates Causing Candidemia.

7. Scope and frequency of fluconazole trailing assessed using EUCAST in invasive Candida spp. isolates.

8. Non-Candida isolates from blood cultures and intra-abdominal samples: data derived from a multicentre prospective study conducted in Madrid.

9. The Gastrointestinal Tract Is Pinpointed as a Reservoir of Candida albicans , Candida parapsilosis , and Candida tropicalis Genotypes Found in Blood and Intra-Abdominal Samples.

10. Yeasts from blood cultures in the wake of the COVID-19 pandemic in a tertiary care hospital: Shift in species epidemiology, steady low antifungal resistance and full in vitro ibrexafungerp activity.

11. Candidemia Candida albicans clusters have higher tendency to form biofilms than singleton genotypes.

12. Genotyping Reveals High Clonal Diversity and Widespread Genotypes of Candida Causing Candidemia at Distant Geographical Areas.

13. Correction: Díaz-García et al. Candida Genotyping of Blood Culture Isolates from Patients Admitted to 16 Hospitals in Madrid: Genotype Spreading during the COVID-19 Pandemic Driven by Fluconazole-Resistant C. parapsilosis. J. Fungi 2022, 8 , 1228

14. Is heparinized 40% ethanol lock solution efficient for reducing bacterial and fungal biofilms in an in vitro model?

16. Isavuconazole is highly active in vitro against Candida species isolates but shows trailing effect.

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