>
Fa   |   Ar   |   En
   Revisiting the mechanics and energetics of walking in individuals with chronic hemiparesis following stroke: From individual limbs to lower limb joints  
   
نویسنده farris d.j. ,hampton a. ,lewek m.d. ,sawicki g.s.
منبع journal of neuroengineering and rehabilitation - 2015 - دوره : 12 - شماره : 1
چکیده    Background: previous reports of the mechanics and energetics of post-stroke hemiparetic walking have either not combined estimates of mechanical and metabolic energy or computed external mechanical work based on the limited combined limbs method. here we present a comparison of the mechanics and energetics of hemiparetic and unimpaired walking at a matched speed. methods: mechanical work done on the body centre of mass (com) was computed by the individual limbs method and work done at individual leg joints was computed with an inverse dynamics analysis. both estimates were converted to average powers and related to simultaneous estimates of net metabolic power,determined via indirect calorimetry. efficiency of positive work was calculated as the ratio of average positive mechanical power p+ to net metabolic power. results: total p+ was 20% greater for the hemiparetic group (h) than for the unimpaired control group (c) (0.49 vs. 0.41 w · kg-1). the greater p+ was partly attributed to the paretic limb of hemiparetic walkers not providing appropriately timed push-off p+ in the step-to-step transition. this led to compensatory non-paretic limb hip and kneep+ which resulted in greater total mechanical work. efficiency of positive work was not different between h and c. conclusions: increased work,not decreased efficiency,explains the greater metabolic cost of hemiparetic walking post-stroke. our results highlighted the need to target improving paretic ankle push-off via therapy or assistive technology in order to reduce the metabolic cost of hemiparetic walking. © 2015 farris et al.
کلیدواژه Individual limbs method; Inverse dynamics; Joint power; Locomotion; Mechanical power; Metabolic power; Stroke
آدرس joint department of biomedical engineering,university of north carolina - chapel hill,north carolina state university,eb 3,911 oval drive,raleigh,27965-7115,united states,school of human movement and nutrition sciences,university of queensland,human movement studies bldg,blair drive,st lucia,qld 4072, United States, joint department of biomedical engineering,university of north carolina - chapel hill,north carolina state university,eb 3,911 oval drive,raleigh,27965-7115, United States, division of physical therapy,department of allied health sciences,university of north carolina,3043 bondurant hall,cb# 7135,chapel hill,nc 27599-7135,united states,human movement science program,university of north carolina chapel hill,chapel hill, United States, joint department of biomedical engineering,university of north carolina - chapel hill,north carolina state university,eb 3,911 oval drive,raleigh,27965-7115, United States
 
     
   
Authors
  
 
 

Copyright 2023
Islamic World Science Citation Center
All Rights Reserved