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Methodological considerations for kinematic analysis of upper limbs in healthy and poststroke adults Part II: a systematic review of motion capture systems and kinematic metrics.
Mesquita, Inês Albuquerque; Fonseca, Pedro Filipe Pereira da; Pinheiro, Ana Rita Vieira; Velhote Correia, Miguel Fernando Paiva; Silva, Cláudia Isabel Costa da.
Afiliação
  • Mesquita IA; a Department of Functional Sciences and Center for Rehabilitation Research (CIR), School of Health of Polytechnic Institute of Porto (ESS-P.Porto) , Porto , Portugal.
  • Fonseca PFPD; b LABIOMEP: Porto Biomechanics Laboratory, University of Porto , Porto , Portugal.
  • Pinheiro ARV; c School of Health Sciences, University of Aveiro , Aveiro , Portugal.
  • Velhote Correia MFP; d Department of Physiotherapy and Center for Rehabilitation Research (CIR), School of Health of Polytechnic Institute of Porto (ESS-P.Porto) , Porto , Portugal.
  • Silva CICD; e Department of Electrical and Computer Engineering, Faculty of Engineering of the University of Porto (FEUP) , Porto , Portugal.
Top Stroke Rehabil ; 26(6): 464-472, 2019 09.
Article em En | MEDLINE | ID: mdl-31064281
ABSTRACT
Background and

purpose:

To review the methods used to analyze the kinematics of upper limbs (ULs) of healthy and poststroke adults, namely the motion capture systems and kinematic metrics. Summary of review A database of articles published in the last decade was compiled using the following search terms combinations ("upper extremity" OR "upper limb" OR arm) AND (kinematic OR motion OR movement) AND (analysis OR assessment OR measurement). The articles included in this review (1) had the purpose to analyze objectively three-dimension kinematics of ULs, (2) studied functional movements or activities of daily living involving ULs, and (3) studied healthy and/or poststroke adults. Fourteen articles were included (four studied a healthy sample, three analyzed poststroke patients, and seven examined both poststroke and healthy participants).

Conclusion:

Most articles used optoelectronic systems with markers; however, the presentation of laboratory and task-specific errors is missing. Markerless systems, used in some studies, seem to be promising alternatives for implementation of kinematic analysis in hospitals and clinics, but the literature proving their validity is scarce. Most articles analyzed "joint kinematics" and "end-point kinematics," mainly related with reaching. The different stroke locations of the samples were not considered in their analysis and only three articles described their psychometric properties. Implication of key

findings:

Future research should validate portable motion capture systems, document their specific error at the acquisition place and for the studied task, include grasping and manipulation analysis, and describe psychometric properties.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Fenômenos Biomecânicos / Acidente Vascular Cerebral / Extremidade Superior / Monitorização Fisiológica Tipo de estudo: Systematic_reviews Limite: Humans Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Fenômenos Biomecânicos / Acidente Vascular Cerebral / Extremidade Superior / Monitorização Fisiológica Tipo de estudo: Systematic_reviews Limite: Humans Idioma: En Ano de publicação: 2019 Tipo de documento: Article