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Titre : | Development of a Computerized Adaptive Test of Children's Gross Motor Skills (2018) |
Auteurs : | Chien-Yu Huang ; Li-Chen Tung ; Yeh-Tai Chou |
Type de document : | Article |
Dans : | Archives of Physical Medicine and Rehabilitation (Vol. 99, n° 3, 2018) |
Article en page(s) : | p. 512-520 |
Langues: | Anglais |
Descripteurs : |
HE Vinci Enfant (6-12 ans) ; Rééducation et réadaptation ; Systèmes informatiques |
Mots-clés: | Child ; Computer system ; Motor Skills ; Aptitudes motrices |
Résumé : |
Objectives To (1) develop a computerized adaptive test for gross motor skills (GM-CAT) as a diagnostic test and an outcome measure, using the gross motor skills subscale of the Comprehensive Developmental Inventory for Infants and Toddlers (CDIIT-GM) as the candidate item bank; and (2) examine the psychometric properties and the efficiency of the GM-CAT. Design Retrospective study. Setting A developmental center of a medical center. Participants Children with and without developmental delay (N=1738). Interventions Not applicable. Main Outcome Measures The CDIIT-GM contains 56 universal items on gross motor skills assessing children's antigravity control, locomotion, and body movement coordination. Results The item bank of the GM-CAT had 44 items that met the dichotomous Rasch model's assumptions. High Rasch person reliabilities were found for each estimated gross motor skill for the GM-CAT (Rasch person reliabilities =.940-.995, SE=.68-2.43). For children aged 6 to 71 months, the GM-CAT had good concurrent validity (r values =.97-.98), adequate to excellent diagnostic accuracy (area under receiver operating characteristics curve =.80-.98), and moderate to large responsiveness (effect size =.65-5.82). The averages of items administered for the GM-CAT were 7 to 11, depending on the age group. Conclusions The results of this study support the use of the GM-CAT as a diagnostic and outcome measure to estimate children's gross motor skills in both research and clinical settings. |
Disponible en ligne : | Oui |
En ligne : | https://login.ezproxy.vinci.be/login?url=https://www.sciencedirect.com/science/article/pii/S0003999317310213 |