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Psychometric evaluation of the PCL-5: assessing validity, diagnostic utility, and bifactor structures.

Teodora GeorgescuCătălin NedelceaAdrian GorbănescuClaudiu PapasteriAna Maria CosmoiuDiana Lucia VasileRamona Daniela Letzner
Published in: European journal of psychotraumatology (2024)
Background: The changes DSM-5 brought to the diagnostic criteria for posttraumatic stress disorder (PTSD) resulted in revising the most widely used instrument in assessing PTSD, namely the Posttraumatic Checklist for DSM-5 (PCL-5). Objective: This study examined the psychometric properties of the Romanian version of the PCL-5, tested its diagnostic utility against the Structured Clinical Interview for DSM-5 (SCID-5), and investigated the latent structure of PTSD symptoms through correlated symptom models and bifactor modelling. Method: A total sample of 727 participants was used to test the psychometric properties and underlying structure of the PCL-5 and 101 individuals underwent clinical interviews using SCID-5. Receiver operating characteristic curve (ROC) analyses were performed to test the diagnostic utility of the PCL-5 and identify optimal cut-off scores based on Youden's J index. Confirmatory Factor Analyses (CFAs) and bifactor modelling were performed to investigate the latent structure of PTSD symptoms. Results: Estimates revealed that the PCL-5 is a valuable tool with acceptable diagnostic accuracy compared to SCID-5 diagnoses, indicating a cut-off score of >47. The CFAs provide empirical support for Anhedonia, Hybrid, and bifactor models. The findings are limited by using retrospective, self-report data and the high percentage of female participants. Conclusions: The PCL-5 is a psychometrically sound instrument that can be useful in making provisional diagnoses within community samples and improving trauma-informed practices.
Keyphrases
  • posttraumatic stress disorder
  • psychometric properties
  • healthcare
  • primary care
  • mental health
  • high resolution
  • single cell
  • sleep quality
  • cross sectional
  • mass spectrometry
  • atomic force microscopy
  • single molecule