Related Experiment Video
Updated: Jun 22, 2026

Therapy Interventions for Upper Limb Amputees Undergoing Selective Nerve Transfers
Published on: October 29, 2021
Assessment of capacity for myoelectric control: evaluation of construct and rating scale
Helen Y N Lindner1, John M Linacre, Liselotte M Norling Hermansson
1School of Health and Medical Sciences, Orebro University, Box 1613, SE-701 16Orebro, Sweden. helen.lindner@orebroll.se
Objective:
To examine the construct and rating scale of the Assessment of Capacity for Myoelectric Control, an assessment to evaluate ability in using a prosthetic hand.
Design:
Cross-sectional study.
Subjects:
Upper limb prosthesis users with different prosthetic levels/sides and prosthetic experience were included (n = 96).
Methods:
Subjects' assessments with the Assessment of Capacity for Myoelectric Control were collected by 6 raters during their regular hospital visits. Rasch analysis was used, since it allowed an analysis of the data at the item and category levels. Dimension, item hierarchy and item fit statistics were used to examine the construct. Different Rasch parameters were used to examine rating scale structure and its use.
Results:
The consistency of item difficulties with clinical knowledge and the unidimensionality confirmed that the construct is valid. Two items functioned unexpectedly (misfit), but the misfit was idiosyncratic to the sample, not systematic to the items. The 4-point rating scale usefully differentiated the subjects on the basis of their abilities. The use of category 2 was somewhat redundant.
Conclusion:
The Assessment of Capacity for Myoelectric Control is a valid assessment that evaluates ability in using a prosthetic hand. Revision of the category 2 definition would improve the functioning of the rating scale.
More Related Videos
09:37Evaluation of Respiratory Muscle Activation Using Respiratory Motor Control Assessment (RMCA) in Individuals with Chronic Spinal Cord Injury
Published on: July 19, 2013
05:21Characterization of the Sense of Agency over the Actions of Neural-machine Interface-operated Prostheses
Published on: January 7, 2019