scholarly journals Association of Endotracheal Aspirate Culture Variability and Antibiotic Use in Mechanically Ventilated Pediatric Patients

2021 ◽  
Vol 4 (12) ◽  
pp. e2140378
Author(s):  
Andrea Prinzi ◽  
Sarah K. Parker ◽  
Cary Thurm ◽  
Meghan Birkholz ◽  
Anna Sick-Samuels
Critical Care ◽  
2009 ◽  
Vol 13 (5) ◽  
pp. R164 ◽  
Author(s):  
Tarek A Abdel-Gawad ◽  
Mostafa A El-Hodhod ◽  
Hanan M Ibrahim ◽  
Yousef W Michael

2016 ◽  
Vol 60 (4) ◽  
pp. 142-143
Author(s):  
Martha A. Q. Curley ◽  
David Wypij ◽  
R. Scott Watson ◽  
Mary Jo C. Grant ◽  
Lisa A. Asaro ◽  
...  

2021 ◽  
Vol Publish Ahead of Print ◽  
Author(s):  
Enid E. Martinez ◽  
Hongxing Dang ◽  
Jennifer Franks ◽  
Charles G. Callif ◽  
Robert C. Tasker ◽  
...  

PLoS ONE ◽  
2021 ◽  
Vol 16 (3) ◽  
pp. e0247360
Author(s):  
Nao Okuda ◽  
Miyako Kyogoku ◽  
Yu Inata ◽  
Kanako Isaka ◽  
Kazue Moon ◽  
...  

Background It is important to evaluate the size of respiratory effort to prevent patient self-inflicted lung injury and ventilator-induced diaphragmatic dysfunction. Esophageal pressure (Pes) measurement is the gold standard for estimating respiratory effort, but it is complicated by technical issues. We previously reported that a change in pleural pressure (ΔPpl) could be estimated without measuring Pes using change in CVP (ΔCVP) that has been adjusted with a simple correction among mechanically ventilated, paralyzed pediatric patients. This study aimed to determine whether our method can be used to estimate ΔPpl in assisted and unassisted spontaneous breathing patients during mechanical ventilation. Methods The study included hemodynamically stable children (aged <18 years) who were mechanically ventilated, had spontaneous breathing, and had a central venous catheter and esophageal balloon catheter in place. We measured the change in Pes (ΔPes), ΔCVP, and ΔPpl that was calculated using a corrected ΔCVP (cΔCVP-derived ΔPpl) under three pressure support levels (10, 5, and 0 cmH2O). The cΔCVP-derived ΔPpl value was calculated as follows: cΔCVP-derived ΔPpl = k × ΔCVP, where k was the ratio of the change in airway pressure (ΔPaw) to the ΔCVP during airway occlusion test. Results Of the 14 patients enrolled in the study, 6 were excluded because correct positioning of the esophageal balloon could not be confirmed, leaving eight patients for analysis (mean age, 4.8 months). Three variables that reflected ΔPpl (ΔPes, ΔCVP, and cΔCVP-derived ΔPpl) were measured and yielded the following results: -6.7 ± 4.8, − -2.6 ± 1.4, and − -7.3 ± 4.5 cmH2O, respectively. The repeated measures correlation between cΔCVP-derived ΔPpl and ΔPes showed that cΔCVP-derived ΔPpl had good correlation with ΔPes (r = 0.84, p< 0.0001). Conclusions ΔPpl can be estimated reasonably accurately by ΔCVP using our method in assisted and unassisted spontaneous breathing children during mechanical ventilation.


2021 ◽  
Vol 1 (S1) ◽  
pp. s15-s15
Author(s):  
Daniel Dodson ◽  
Matthew Kronman ◽  
Sarah Parker ◽  
Christopher Czaja

Background: Adherence to core elements of antimicrobial stewardship programs (ASPs) is increasing nationally but the robustness of programs and inclusion of pediatrics is poorly understood. We describe the details of ASP in Colorado hospitals and identify steps by which academic centers and public health departments can assist community ASPs. Methods: We invited ASP leaders at the 102 acute-care hospitals (ACHs) and critical-access hospitals (CAHs) in Colorado to participate in a web-based survey regarding their ASPs. Questions related to adherence to Centers for Disease Control and Prevention (CDC) core elements, barriers to improvement, desired resources, and extension to pediatrics. Enrollment began in August 2020. Hospital types were compared using the Fisher exact test. Results: As of January 1, 2021, 31 hospitals (30% of targeted hospitals) completed the web-based survey including 19 ACH and 12 CAH. Hospitals were distributed across the state. Median number of beds was 52 (range, 11–680). Of the responding hospitals, 87% were adherent to all CDC core elements. However, if action was defined as prospective audit and feedback or prior authorization, tracking was defined as measuring antibiotic use in days of therapy (DOT) or defined daily dose (DDD) quarterly, and reporting was defined as providing unit- or provider-specific antibiotic use reports annually. Overall adherence fell to 35% including 81% for action, 58% for tracking, and 58% for reporting. CAHs were less likely to adhere to these strict criteria than ACHs (Figure 1). In the 27 hospitals (87% of hospitals) caring for pediatric patients, adherence to a strict action for at least 1 pediatric population was 59%. Reported barriers to improved ASP were available time and personnel, information technology support, perceived concerns about provider attitudes, and education gaps (Figure 2). CAHs were less likely to use the NHSN antibiotic use or resistance modules or have a data analyst than ACHs (Figure 3). Pediatric pharmacy expertise and guidelines were often not available in hospitals caring for pediatric patients. Desired ASP resources included assistance with data analysis, access to stewardship expertise and education, and treatment guidelines, including for pediatrics. Conclusions: Adherence to CDC core elements of an ASP was excellent but fell dramatically when stricter criteria were used and was worse in pediatric patients. Academic centers and public health departments can assist community hospitals by providing educational resources, assistance in analyzing data including using the NHSN ED: /AR modules, and ASP expertise and clinical care guidelines including those for pediatrics.Funding: NoDisclosures: None


2018 ◽  
Vol 53 (1) ◽  
pp. 17-23 ◽  
Author(s):  
Ayse Betul Ergul ◽  
◽  
Ikbal Gokcek ◽  
Taylan Celik ◽  
Yasemin Altuner Torun ◽  
...  

Author(s):  
Katherine A. Hargreaves ◽  
Victoria M. Pratt ◽  
Elizabeth B. Medeiros ◽  
Ty C. Lynnes ◽  
Caitlin A. Granfield ◽  
...  

Author(s):  
Capan Konca ◽  
Mehmet Tekin ◽  
Fatih Uckardes ◽  
Samet Benli ◽  
Ahmet Kucuk

AbstractIn the follow-up of ventilation, invasive blood gas analysis and noninvasive monitoring of end-tidal carbon dioxide (ETCO2) are used. We aimed to investigate the relationship between capillary partial pressure of carbon dioxide (PcCO2) levels and ETCO2 and also to investigate ETCO2's predictive feature of PcCO2 levels. This study included 28 female and 30 male pediatric patients; 28 patients were type-1 respiratory failure (RF), 16 patients were acute respiratory distress syndrome, and 14 patients were type-2 RF. Our results showed a significant correlation between ETCO2 and PcCO2. Although the strength of the correlation was weak throughout the measurements, the strength of this correlation increased significantly in type-2 RF.


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