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临床试验/NCT04987177
NCT04987177已完成不适用

Relationship Among Manual Wheelchair Workload, Speed, Energy Expenditure, and Propulsion Mechanics

University of Alabama at Birmingham1 个研究点 分布在 1 个国家目标入组 11 人开始时间: 2021年8月7日最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
已完成
入组人数
11
试验地点
1
主要终点
Average Rolling Resistance (Newtons)

研究概览

简要总结

The first purpose of this study is to characterize the relationship among propulsion workload, self-selected propulsion speed, and propulsion kinetics/kinematics.

The second purpose is to assess the between days repeatability/reliability of the above outcomes.

There are no hypothesis

This is a repeated measures clinical trial. All participants will complete the following: 1) Acclimation to propelling a manual wheelchair on a wheelchair ergometer; 2) Graded exercise test on the wheelchair ergometer to 80% of age adjusted estimated maximal heart rate; and 3) N=20 one minute propulsion bouts on the wheelchair ergometer.

详细描述

Participants will complete two visits in a 14 day period. Visit 1 will require 3-4 hours. Visit 2 will require 2-3 hours.

During visit 1 participant will complete: 1) Acclimation to propelling a manual wheelchair on a wheelchair ergometer; 2) Graded exercise test on the wheelchair ergometer to 80% of age adjusted estimated maximal heart rate; and 3) N=20 one minute propulsion bouts on the wheelchair ergometer.

During visit 2 participants will repeat the N=20 one minute propulsion bouts on the wheelchair ergometer.

Wheelchair ergometer propulsion acclimation: Participants will complete a minimum of 2 minutes of wheelchair propulsion to acclimate. Additional propulsion time will be completed as needed. Propulsion workload will be varied during the acclimation. Acclimation propulsion may be repeated as needed during study participation.

Submaximal wheelchair ergometer test protocol: Participants will rest quietly in the wheelchair for several minutes. After resting, participants will begin propelling at a comfortable speed at a low initial workload. Workload will be increased every minute. Propulsion speed will remain constant across all workloads. Test will end when participants reach 80% of age adjusted estimated maximum heart rate.

研究设计

研究类型
Interventional
分配方式
Na
干预模型
Single Group
主要目的
Basic Science
盲法
None

入排标准

年龄范围
18 Years 至 —(Adult, Older Adult)
性别
All
接受健康志愿者
是

入选标准

  • •age 18 years or older
  • •cleared to participate in physical activity as determined by the Physical Activity Readiness Questionnaire for Everyone (PAR-Q+)
  • •self-reported ability to propel a manual wheelchair
  • •not currently disabled

排除标准

  • •no additional exclusion criteria if otherwise eligible to participate

研究组 & 干预措施

Workload conditions to be tested

Experimental

The intervention is the external workload a participant propels against. Participants will propel against N=20 different external workloads.External workload will be controlled by the wheelchair ergometer.

干预措施: Workload of Manual Wheelchair Propulsion (Other)

结局指标

主要结局

Average Rolling Resistance (Newtons)

时间窗: Seconds 20 to 40 of each 1 minute propulsion bout

Average rolling resistance during each completed propulsion cycle (i.e. contact+recovery) averaged across all completed propulsion cycles in the specified time frame.

Self-Selected Speed (meters per second)

时间窗: Seconds 20 to 40 of each 1 minute propulsion bout

Average linear propulsion speed during each completed propulsion cycle (i.e. contact+recovery) averaged across all completed propulsion cycles in the specified time frame.

次要结局

  • Number of completed propulsion cycles used to generate the outcomes of interest(Seconds 20 to 40 of each 1 minute propulsion bout)
  • Average push frequency (pushes per minute)(Seconds 20 to 40 of each 1 minute propulsion bout)
  • Average push length (Degrees)(Seconds 20 to 40 of each 1 minute propulsion bout)
  • Average propulsive torque (Newton meter)(Seconds 20 to 40 of each 1 minute propulsion bout)
  • Average external power output (Watts)(Seconds 20 to 40 of each 1 minute propulsion bout)
  • Average resultant force (Newtons)(Seconds 20 to 40 of each 1 minute propulsion bout)
  • Average rate of rise of resultant force (Newtons per second squared)(Seconds 20 to 40 of each 1 minute propulsion bout)
  • Average push power output (Watts)(Seconds 20 to 40 of each 1 minute propulsion bout)
  • Average total work per push (Joules)(Seconds 20 to 40 of each 1 minute propulsion bout)
  • Frequency of each unique propulsion pattern(Seconds 20 to 40 of each 1 minute propulsion bout)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Rachel Cowan

Assistant Professor

University of Alabama at Birmingham

研究点 (1)

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