Designing or renovating a physical environment for healthcare is a complex process and is critical for both the staff and the patients who rely on the environment to support and facilitate patient care. Conducting a simulation-based mock-up evaluation as part of the design process can enhance patient safety, staff efficiency, as well as user experience, and can yield financial returns. A large urban tertiary care center located in Vancouver, Canada followed a framework to evaluate the proposed design template for 28 universal operating rooms (ORs) included within the OR Renewal Project scope. Simulation scenarios were enacted by nursing staff, surgeons, anesthesiologists, residents, radiology techs, and anesthesia assistants. Video and debriefing data were used to conduct link analyses, as well as analyses of observed behaviors including congestions and bumps to generate recommendations for evidence-based design changes that were presented to the project team. Recommendations incorporated into the design included relocating doors, booms, equipment, and supplies, as well as reconfigurations to workstations. These recommendations were also incorporated into the mock-up and retested to iteratively develop and evaluate the design. Findings suggest that incorporating the recommended design changes resulted in better room utilization, decreased congestion, and enhanced access to equipment.
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http://dx.doi.org/10.1177/1937586719855777 | DOI Listing |
HERD
January 2025
Healthcare Design Program, College of Architecture and Environmental Design, Kent State University, Kent, OH, USA.
Purpose: This study examined the augmented reality (AR) application in design evaluations through an immersive experience of medical task simulations in combination with a full-scale physical mock-up of a trauma room.
Background: Augmented reality technology is emerging in various fields including architectural design. Traditionally, building physical mock-ups has been the most effective tool to involve end-users in design evaluations.
HERD
January 2024
Division of Pediatric Critical Care, Department of Pediatrics, Children's Healthcare of Atlanta, GA, USA.
Objective: This study aimed to identify latent conditions in a pediatric intensive care unit (PICU) by analyzing characteristics of flow disruptions (FD) during a simulation of a three-phased scenario.
Background: The built environment of healthcare facilities contributes to FD that can lead to clinical errors and patient harm. In the facility design process, there is an opportunity to identify built environment features that cause FD and pose safety risks.
Sensors (Basel)
August 2023
Institute for Measurement Systems and Sensor Technology, Technical University of Munich, Theresienstrasse 90, 80333 Munich, Germany.
In this work, we introduce a novel approach to model the rain and fog effect on the light detection and ranging (LiDAR) sensor performance for the simulation-based testing of LiDAR systems. The proposed methodology allows for the simulation of the rain and fog effect using the rigorous applications of the Mie scattering theory on the time domain for transient and point cloud levels for spatial analyses. The time domain analysis permits us to benchmark the virtual LiDAR signal attenuation and signal-to-noise ratio (SNR) caused by rain and fog droplets.
View Article and Find Full Text PDFInt J Environ Res Public Health
October 2021
SimInsights Inc., Irvine, CA 92618, USA.
(1) Background: There are many complexities and trade-offs that design teams consider when designing or renovating a built environment for healthcare. Virtual reality (VR) mock-ups can allow design teams to evaluate the planned design. This study aimed to examine the overall value of using VR mock-ups to conduct a simulation-based mock-up evaluation.
View Article and Find Full Text PDFObjective: The purpose of this study was to compare perceptions and behaviors of end users participating in simulations in a high-fidelity physical mock-up of an operating room (OR) prototype with the perceptions and behaviors of end users in the built out ORs postoccupancy.
Background: Simulation-based evaluations of high-fidelity physical mock-ups of proposed layouts are increasingly being conducted during the facility design process to understand impacts on workflow and potential adverse patient safety outcomes. Nevertheless, it is unclear to what extent user experiences in these simulated healthcare spaces are similar to those in built and occupied healthcare environments.
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