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Strategies for Reducing Access Block and Waiting Time for Patients Seeking Emergency Hospital Care: Results of a Ward‐Level Discrete Event Simulation at Queensland's Largest Public Hospitals

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4Institutions déclarées
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Résumé fourni par la source

OBJECTIVE: To assess the impact of strategies to improve public hospital emergency access using a detailed ward-level simulation modelling approach. DESIGN AND SETTING: Discrete event simulation was used to simulate patient flow at three principal referral Australian hospitals from 1 September 2021 to 31 August 2022. Models were developed and validated using every emergency department (ED) presentation, inpatient episode of care and patient ward movement at the study hospitals. MAIN OUTCOME MEASURES: Mean and total ED length of stay, mean waiting time, access block rate, 4-h rule compliance and bed utilisation for patients admitted from the ED. RESULTS: Reducing ED demand via arrangements that accommodate the same proportion and types of admissions from the ED as the existing ED presenting population reduces access block, with larger impacts in winter than in summer. However, reducing 'general practitioner-type patients' in EDs has negligible impact on access block. Tangible impacts on improving patient flow can be achieved by removing maintenance care patients from hospitals (reducing the percentage of access block by up to a third) and reducing elective admissions. Strategies that emphasised morning, midday and early afternoon discharges led to large flow improvements. The strategy already practised by most hospitals of sharing patients among wards greatly improves emergency access, and gains are the same order of magnitude as reducing overall ED demand. CONCLUSIONS: The study provides support to policymakers looking for evidence regarding strategies to improve emergency access to public hospital care.

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DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Strategies for Reducing Access Block and Waiting Time for Patients Seeking Emergency Hospital Care: Results of a Ward‐Level Discrete Event Simulation at Queensland's Largest Public Hospitals
Date Crossref
01/02/2026
Éditeur
Wiley
Type
journal-article

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Institutions déclarées

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Sujets associés

Healthcare Operations and Scheduling OptimizationEmergency and Acute Care StudiesTrauma and Emergency Care Studies

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