| Literature DB >> 23718556 |
Huiqin Yang1, Carl Thompson, Robert M Hamm, Martin Bland, Alison Foster.
Abstract
BACKGROUND: The validity of studies describing clinicians' judgements based on their responses to paper cases is questionable, because - commonly used - paper case simulations only partly reflect real clinical environments. In this study we test whether paper case simulations evoke similar risk assessment judgements to the more realistic simulated patients used in high fidelity physical simulations.Entities:
Mesh:
Year: 2013 PMID: 23718556 PMCID: PMC3674950 DOI: 10.1186/1472-6947-13-62
Source DB: PubMed Journal: BMC Med Inform Decis Mak ISSN: 1472-6947 Impact factor: 2.796
Distributional characteristics of cues: the continuous cue variables for the patient cases (N = 20)
| Systolic BP | 127 (31) | 78 | 127 | 216 | 0.97 | 2.75 |
| Heart rate | 93 (22) | 56 | 93 | 128 | 0.12 | −1.25 |
| Respiration rate | 24.2 (7.9) | 12 | 22 | 40 | 0.97 | 0.12 |
| Temperature | 37.08 (0.90) | 35.60 | 37.00 | 39.60 | 1.33 | 2.85 |
Distributional characteristics of cues: the categorical cue of consciousness level for the patient cases (N = 20)
| Alert | 13 (65%) |
| Reacting to voice | 5 (25%) |
| Reacting to pain | 2 (10%) |
Multicollinearity diagnostics (tolerance) for the patient cases (N = 20)
| Consciousness | 0.18 |
| Systolic BP | 0.25 |
| Temperature | 0.43 |
| Respiration rate | 0.45 |
| Heart rate | 0.47 |
Note: Tolerance is 1 – R2, the complement of the proportion of variance explained in a multiple linear regression predicting the cue from all the other cues.
Figure 1High fidelity physical simulation setting.
Figure 2Experimental design and flow of participants through the study.
The logistic regression Lens Model Equation parameters of paper case simulation based judgements and physical simulation based judgements (N = 97)
| | |||||
|---|---|---|---|---|---|
| ra | 0.552 (0.141) | 0.577*# | 0.502 (0.145) | 0.503# | 2.58 (0.01) |
| G | 0.720 (0.126) | 0.723*# | 0.687 (0.141) | 0.696*# | 1.95 (0.051) |
| C1 | 0.059 (0.189) | 0.000*# | 0.050 (0.165) | 0.000* | 0.32 (0.75) |
| C2 | 0.010 (0.060) | 0.000* | 0.002 (0.073) | 0.000*# | 1.39 (0.17) |
| C3 | 0.075 (0.137) | 0.056*# | 0.054 (0.122) | 0.029*# | 1.26 (0.21) |
| 0.743 (0) | 0.743 | 0.743 (0) | 0.743 | | |
| 0.676 (0) | 0.676 | 0.676 (0) | 0.676 | | |
| 0.880 (0.150) | .999*# | 0.862 (0.173) | 0.999*# | 0.38 (0.70) | |
| 0.309 (0.340) | 0.000# | 0.326 (0.356) | 0.000# | 1.38 (0.17) | |
ra: Judgement accuracy; G: Knowledge; C1, C2, C3: Unmodeled knowledge.
Note: Both environmental criterion and judgement are dichotomous. * Skew significantly different from 0; # Kurtosis significantly different from 3.