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1.
Pediatr Qual Saf ; 9(3): e728, 2024.
Artículo en Inglés | MEDLINE | ID: mdl-38751897

RESUMEN

Background: Despite limited evidence, a high-flow nasal cannula (HFNC) is often used to treat mild to moderate (m/m) bronchiolitis. We aimed to decrease the rate of HFNC use in the pediatric emergency department (PED) for m/m bronchiolitis from a baseline of 37% to less than 18.5%. Methods: A multidisciplinary team created a bronchiolitis pathway and implemented it in December 2019. A respiratory score (RS) in the electronic medical record objectively classified bronchiolitis severity as mild, moderate, or severe. We tracked HFNC utilization in the PED among patients with m/m bronchiolitis as our primary outcome measure between December 2019 and December 2021. We monitored the percentage of patients with an RS as a process measure. Interventions through four plan-do-study-act cycles included updating the hospital oxygen therapy policy, applying the RS to all patients in respiratory distress, modifying the bronchiolitis order set, and developing a bronchiolitis-specific HFNC order. Results: Three hundred twenty-five patients were admitted from the PED with m/m bronchiolitis during the 11-month baseline period and 600 patients during the 25-month intervention period. The mean rate of HFNC utilization decreased from 37% to 17%. Despite a decrease in bronchiolitis encounters after the pandemic, in the spring of 2021, when volumes returned, we had a sustained HFNC utilization rate of 17%. RS entry increased from 60% to 73% in the intervention period. Conclusions: A clinical pathway for bronchiolitis can lead to decreased use of HFNC for m/m bronchiolitis. Consistent RS, order set development with decision support, and education led to sustained improvement despite pandemic-related volumes.

2.
NPJ Precis Oncol ; 8(1): 67, 2024 Mar 09.
Artículo en Inglés | MEDLINE | ID: mdl-38461318

RESUMEN

Genomic tumor testing (GTT) is an emerging technology aimed at identifying variants in tumors that can be targeted with genomically matched drugs. Due to limited resources, rural patients receiving care in community oncology settings may be less likely to benefit from GTT. We analyzed GTT results and observational clinical outcomes data from patients enrolled in the Maine Cancer Genomics Initiative (MCGI), which provided access to GTTs; clinician educational resources; and genomic tumor boards in community practices in a predominantly rural state. 1603 adult cancer patients completed enrollment; 1258 had at least one potentially actionable variant identified. 206 (16.4%) patients received a total of 240 genome matched treatments, of those treatments, 64% were FDA-approved in the tumor type, 27% FDA-approved in a different tumor type and 9% were given on a clinical trial. Using Inverse Probability of Treatment Weighting to adjust for baseline characteristics, a Cox proportional hazards model demonstrated that patients who received genome matched treatment were 31% less likely to die within 1 year compared to those who did not receive genome matched treatment (HR: 0.69; 95% CI: 0.52-0.90; p-value: 0.006). Overall, GTT through this initiative resulted in levels of genome matched treatment that were similar to other initiatives, however, clinical trials represented a smaller share of treatments than previously reported, and "off-label" treatments represented a greater share. Although this was an observational study, we found evidence for a potential 1-year survival benefit for patients who received genome matched treatments. These findings suggest that when disseminated and implemented with a supportive infrastructure, GTT may benefit cancer patients in rural community oncology settings, with further work remaining on providing genome-matched clinical trials.

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