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临床试验/NCT06656052
NCT06656052已完成不适用

To Determine the Effects of Different Types of Cognitive Loading on Gait With Growing Age

Riphah International University1 个研究点 分布在 1 个国家目标入组 150 人开始时间: 2024年10月24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
150
试验地点
1
主要终点
Walking speed

研究概览

简要总结

The goal of this study is to determine how different types of cognitive loading affect the gait of an individual and its association with growing age. The main aim is to find out if:

  1. There is a significant difference in the effect of three different methods of cognitive loading on gait parameters across age groups.
  2. There is an association of cognitive loading with different age groups.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Health Services Research
盲法
Triple (Participant, Investigator, Outcomes Assessor)

入排标准

年龄范围
21 Years 至 70 Years(Adult, Older Adult)
性别
All
接受健康志愿者
是

入选标准

  • •Both male and female genders.
  • •Age between 21-70 years.
  • •Healthy individuals with normal systemic history.
  • •Individuals with normal cognitive level (score between 0-7 on 6CIT test)

排除标准

  • •Individuals having any comorbidities.
  • •Individuals having diagnosed gait disorders/deviations.
  • •Non-cooperative participants

研究组 & 干预措施

First Age Group

Experimental

Participants with Age 21-30 years. All members of group number 1 who fall in the eligibility criteria will undergo three different types of cognitive loading. Three types of cognitive loading will be applied randomly to eliminate any bias. Each Method will be used three times with pre and post-recordings to ensure reliability.

干预措施: 1. working memory task. (Other)

First Age Group

Experimental

Participants with Age 21-30 years. All members of group number 1 who fall in the eligibility criteria will undergo three different types of cognitive loading. Three types of cognitive loading will be applied randomly to eliminate any bias. Each Method will be used three times with pre and post-recordings to ensure reliability.

干预措施: 2. Visual and Verbal Fluency Task (Other)

First Age Group

Experimental

Participants with Age 21-30 years. All members of group number 1 who fall in the eligibility criteria will undergo three different types of cognitive loading. Three types of cognitive loading will be applied randomly to eliminate any bias. Each Method will be used three times with pre and post-recordings to ensure reliability.

干预措施: 3. Motor Task (Other)

Second Age Group

Experimental

Participants with age 31-40 years. All members of group number 2 who fall in the eligibility criteria will undergo three different types of cognitive loading. Three types of cognitive loading will be applied randomly to eliminate any bias. Each Method will be used three times with pre and post-recordings to ensure reliability.

干预措施: 1. working memory task. (Other)

Second Age Group

Experimental

Participants with age 31-40 years. All members of group number 2 who fall in the eligibility criteria will undergo three different types of cognitive loading. Three types of cognitive loading will be applied randomly to eliminate any bias. Each Method will be used three times with pre and post-recordings to ensure reliability.

干预措施: 2. Visual and Verbal Fluency Task (Other)

Second Age Group

Experimental

Participants with age 31-40 years. All members of group number 2 who fall in the eligibility criteria will undergo three different types of cognitive loading. Three types of cognitive loading will be applied randomly to eliminate any bias. Each Method will be used three times with pre and post-recordings to ensure reliability.

干预措施: 3. Motor Task (Other)

Third Age Group

Experimental

Participants with Age 41-50 years. All members of group number 3 who fall in the eligibility criteria will undergo three different types of cognitive loading. Three types of cognitive loading will be applied randomly to eliminate any bias. Each Method will be used three times with pre and post-recordings to ensure reliability.

干预措施: 1. working memory task. (Other)

Third Age Group

Experimental

Participants with Age 41-50 years. All members of group number 3 who fall in the eligibility criteria will undergo three different types of cognitive loading. Three types of cognitive loading will be applied randomly to eliminate any bias. Each Method will be used three times with pre and post-recordings to ensure reliability.

干预措施: 2. Visual and Verbal Fluency Task (Other)

Third Age Group

Experimental

Participants with Age 41-50 years. All members of group number 3 who fall in the eligibility criteria will undergo three different types of cognitive loading. Three types of cognitive loading will be applied randomly to eliminate any bias. Each Method will be used three times with pre and post-recordings to ensure reliability.

干预措施: 3. Motor Task (Other)

Fourth Age Group

Experimental

Participants with age 51-60 years. All members of group number 4 who fall in the eligibility criteria will undergo three different types of cognitive loading. Three types of cognitive loading will be applied randomly to eliminate any bias. Each Method will be used three times with pre and post-recordings to ensure reliability.

干预措施: 1. working memory task. (Other)

Fourth Age Group

Experimental

Participants with age 51-60 years. All members of group number 4 who fall in the eligibility criteria will undergo three different types of cognitive loading. Three types of cognitive loading will be applied randomly to eliminate any bias. Each Method will be used three times with pre and post-recordings to ensure reliability.

干预措施: 2. Visual and Verbal Fluency Task (Other)

Fourth Age Group

Experimental

Participants with age 51-60 years. All members of group number 4 who fall in the eligibility criteria will undergo three different types of cognitive loading. Three types of cognitive loading will be applied randomly to eliminate any bias. Each Method will be used three times with pre and post-recordings to ensure reliability.

干预措施: 3. Motor Task (Other)

Fifth Age Group

Experimental

Participants with age 61-70 years. All members of group number 5 who fall in the eligibility criteria will undergo three different types of cognitive loading. Three types of cognitive loading will be applied randomly to eliminate any bias. Each Method will be used three times with pre and post-recordings to ensure reliability.

干预措施: 1. working memory task. (Other)

Fifth Age Group

Experimental

Participants with age 61-70 years. All members of group number 5 who fall in the eligibility criteria will undergo three different types of cognitive loading. Three types of cognitive loading will be applied randomly to eliminate any bias. Each Method will be used three times with pre and post-recordings to ensure reliability.

干预措施: 2. Visual and Verbal Fluency Task (Other)

Fifth Age Group

Experimental

Participants with age 61-70 years. All members of group number 5 who fall in the eligibility criteria will undergo three different types of cognitive loading. Three types of cognitive loading will be applied randomly to eliminate any bias. Each Method will be used three times with pre and post-recordings to ensure reliability.

干预措施: 3. Motor Task (Other)

结局指标

主要结局

Walking speed

时间窗: Immediately after Cognitive loading tests

A smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the walking speed of the participant. A decrease in walking speed is the usual effect of cognitive loading on this gait parameter.

Gait Symmetry

时间窗: Immediately after Cognitive loading tests

A smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the gait symmetry of the participant. A decrease in gait symmetry is the usual effect of cognitive loading on this gait parameter.

Step length

时间窗: Immediately after Cognitive loading tests

A smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the step length of the participant. An increase in step length is the usual effect of cognitive loading on this gait parameter.

Step length variability

时间窗: Immediately after Cognitive loading tests

A smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the step length variability of the participant. An increase in step length variability is the usual effect of cognitive loading on this gait parameter.

Step time

时间窗: Immediately after Cognitive loading tests

A smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the step time of the participant. An increase in step time is the usual effect of cognitive loading on this gait parameter.

Step length asymmetry

时间窗: Immediately after Cognitive loading tests

A smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the step length asymmetry of the participant. An increase in step length asymmetry is the usual effect of cognitive loading on this gait parameter.

Step time variability

时间窗: Immediately after Cognitive loading tests

Smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the step time variability of the participant. An increase in step time variability is the usual effect of cognitive loading on this gait parameter.

Step time asymmetry

时间窗: Immediately after Cognitive loading tests

A smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the step time asymmetry of the participant. An increase in step time asymmetry is the usual effect of cognitive loading on this gait parameter.

Gait Symmetry

时间窗: Baseline

A smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the gait symmetry of the participant. A decrease in gait symmetry is the usual effect of cognitive loading on this gait parameter.

Walking speed

时间窗: Baseline

A smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the walking speed of the participant. A decrease in walking speed is the usual effect of cognitive loading on this gait parameter.

Walking speed

时间窗: During three cognitive tasks

A smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the walking speed of the participant. A decrease in walking speed is the usual effect of cognitive loading on this gait parameter.

Gait Symmetry

时间窗: During Cognitive loading tests

A smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the gait symmetry of the participant. A decrease in gait symmetry is the usual effect of cognitive loading on this gait parameter.

Step length

时间窗: Baseline

A smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the step length of the participant. An increase in step length is the usual effect of cognitive loading on this gait parameter.

Step length

时间窗: During Cognitive loading tests

A smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the step length of the participant. An increase in step length is the usual effect of cognitive loading on this gait parameter.

Step length variability

时间窗: Baseline

A smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the step length variability of the participant. An increase in step length variability is the usual effect of cognitive loading on this gait parameter.

Step length variability

时间窗: During Cognitive loading tests

A smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the step length variability of the participant. An increase in step length variability is the usual effect of cognitive loading on this gait parameter.

Step time

时间窗: Baseline

A smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the step time of the participant. An increase in step time is the usual effect of cognitive loading on this gait parameter.

Step time

时间窗: During Cognitive loading tests

A smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the step time of the participant. An increase in step time is the usual effect of cognitive loading on this gait parameter.

Step time variability

时间窗: Baseline

Smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the step time variability of the participant. An increase in step time variability is the usual effect of cognitive loading on this gait parameter.

Step time variability

时间窗: During Cognitive loading tests

Smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the step time variability of the participant. An increase in step time variability is the usual effect of cognitive loading on this gait parameter.

Step length asymmetry

时间窗: Baseline

A smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the step length asymmetry of the participant. An increase in step length asymmetry is the usual effect of cognitive loading on this gait parameter.

Step length asymmetry

时间窗: During Cognitive loading tests

A smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the step length asymmetry of the participant. An increase in step length asymmetry is the usual effect of cognitive loading on this gait parameter.

Step time asymmetry

时间窗: Baseline

A smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the step time asymmetry of the participant. An increase in step time asymmetry is the usual effect of cognitive loading on this gait parameter.

Step time asymmetry

时间窗: During Cognitive loading tests

A smartphone-based accelerometer through a mobile app named Gait \& Balance (G\&B app) will be used to detect the step time asymmetry of the participant. An increase in step time asymmetry is the usual effect of cognitive loading on this gait parameter.

次要结局

未报告次要终点

研究者

申办方类型
Other
责任方
Sponsor

研究点 (1)

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