Using Simulation to Test Validity and Reliability of I-BIDS: A New Handoff Tool

Author:

Guido-Sanz Frank1ORCID,Anderson Mindi1ORCID,Talbert Steven1,Diaz Desiree A.1ORCID,Welch Gregory1ORCID,Tanaka Alyssa2

Affiliation:

1. College of Nursing, University of Central Florida, Orlando, FL, USA

2. Alyssa Tanaka, SoarTech, Inc. Orlando, FL, USA

Abstract

Background Patient safety and improved outcomes are core priorities in healthcare, and effective handoffs are essential to these priorities. Validating handoff tools using simulation is a novel approach. Methods The construct validity and instrument reliability of the I-BIDS© tool were tested. In Phase I, construct validity was substantiated with a convenience sample of 21 healthcare providers through an electronic survey. Content Validity Ratio (CVR) was tabulated using Lawshe’s CVR. Interrater reliability was tested in a simulated handoff scenario, in Phase II, with graduate nursing students and two raters, and simulation effectiveness was assessed by students. Results Construct validity was evaluated, and 17 of the 25 items were found significant at the critical level (0.42). Items scoring below were removed, and the tool was reduced by one category. Weighted kappa (Kw) with quadratic weights was run from the scenario data to determine if there was an agreement between raters of handoff performance. There was a statistically significant agreement between the two raters, Kw = .627 (95% CI: .549–.705), p < .001) with good strength of the agreement. SET-M Total mean was 55.64 ( SD = 2.46). Discussion The tool showed beginning validity and interrater reliability. The SET-M Learning subscale showed the widest range of scores which suggests the most opportunity for improvement. Use of the tool in simulated scenarios may be one way to test the items further. Conclusions Simulation was effective in facilitating the evaluation of the tool.

Funder

United States Army Medical Research and Materiel Command

Publisher

SAGE Publications

Subject

Computer Science Applications,General Social Sciences

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Effects of Environmental Noise Levels on Patient Handoff Communication in a Mixed Reality Simulation;28th ACM Symposium on Virtual Reality Software and Technology;2022-11-29

2. Augmented Reality (AR) as a Prebrief for Acute Care Simulation;Clinical Simulation in Nursing;2022-08

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