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The Gross Motor Function Classification System for Cerebral Palsy: a study of reliability and stability over time

Developmental Medicine & Child Neurology · 2000 · Vol. 42(5) · pp. 292–296
Ellen WoodPeter Rosenbaum

Abstract

Children with cerebral palsy (CP) experience a change in motor function with age and development. It is important to consider this expected change in offering a prognosis, or in assessing differences in motor function after an intervention. The Gross Motor Function Classification System for CP (GMFCS) has been developed for these purposes. This study was based on a retrospective chart review of 85 children with CP followed from < or =2 to > or =12 years of age. The GMFCS was applied to clinical notes by two blinded raters four times throughout the study. Interrater reliability was high (G=0.93). Test-retest reliability was high (G=0.79). The positive predictive value of the GMFCS at 1 to 2 years of age to predict walking by age 12 years was 0.74. The negative predictive value was 0.90. The GMFCS can validly predict motor function for children with CP. The results are discussed in terms of their implications for clinical practice and future research.

Cerebral Palsy and Movement DisordersInfant Development and Preterm CareNeonatal and fetal brain pathologyGross Motor Function Classification SystemCerebral palsyInter-rater reliabilityReliability (semiconductor)Physical therapyPsychologyPhysical medicine and rehabilitationMotor functionPredictive valueMedicine

MeSH terms

Cerebral PalsyChildChild, PreschoolFemaleFollow-Up StudiesHumansMaleNeurologic ExaminationPsychomotor DisordersRetrospective StudiesReproducibility of ResultsObserver VariationOutcome Assessment, Health Care
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References
TERMINOLOGY AND CLASSIFICATION OF CEREBRAL PALSY
Developmental Medicine & Child Neurology · 1964 · 723 citations
THE GROSS MOTOR FUNCTION MEASURE: A MEANS TO EVALUATE THE EFFECTS OF PHYSICAL THERAPY
Developmental Medicine & Child Neurology · 1989 · 1,055 citations
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The Gross Motor Function Classification System for Cerebral Palsy: a study of reliability and stability over time · Scinovex