Comparing the Different Sets of Item-Level Diagnostic Criteria of the Coma Recovery Scale-Revised (CRS-R): A Measurement-Based Approach Driven by Rasch Analysis.

Caselli, Serena; Leonardi, Matilde; Magnani, Francesca Giulia; Cacciatore, Martina; Barbadoro, Filippo; Ippoliti, Camilla; Kreiner, Svend; Pellicciari, Leonardo et al. · Arch Phys Med Rehabil · 2025

retrospective_cohort · Level III

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Abstract

(1) To replicate the assessment of the internal construct validity of the Coma Recovery Scale-Revised (CRS-R) within the Rasch Measurement Theory framework using a larger multicenter sample size and (2) to compare the different sets of item-level diagnostic criteria against the measurement ruler constructed from Rasch analysis to understand how those criteria relate to the overall level of persons' consciousness. Multicenter retrospective study. Seven centers. A total of 380 inpatients with a disorder of consciousness with one or more observations, for a total sample of 1460 observations. Not applicable. CRS-R. We created 2 subsamples: a validation subsample of 1 randomized assessment per subject (N=380) and a confirmation subsample using the further available assessments per subject (N=347). The Rasch analyses, conducted on the validation subsample and replicated on the confirmation one, demonstrated adequate satisfaction of all the model's requirements, including monotonicity, unidimensionality, local independence, invariance (χ<sup>2</sup><sub>df</sub>=40.224; P=.020), and absence of significant differential item functioning across all person factors explored, including etiology. The reliability (Person Separation Index>0.870) was sufficient for individual person measurement, with the distinction of five Distinct Levels of Performance Ability. The CRS-R rulers based on the Rasch calibration allowed the visual comparison of the various sets of disorder of consciousness diagnostic criteria available, suggesting the possibility of a further refinement of these criteria. This study improved the results of a previous Rasch analysis published in 2013. It delivered a new stable Rasch calibration of the CRS-R within the largest multicenter sample size available to date and without any differential item functioning by patient's etiology. The adopted measurement-based approach provided further insights into the diagnostic meaning of several score categories of the CRS-R, confirming previous findings and suggesting that "automatic motor response" (item: motor function) and "object recognition" (item: visual function) are likely to represent behavioral manifestations of MCS+ and eMCS, respectively.

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