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临床试验/NCT07491432
NCT07491432已完成不适用

Acute Effects of Lower Extremity Neural Mobilization on Gait Biomechanics and Spinal Alignment: A Comparison of Neural Slider and Neural Tensioner Techniques

Izmir Democracy University1 个研究点 分布在 1 个国家目标入组 60 人开始时间: 2024年2月1日最近更新:
适应症

试验速览

阶段
不适用
状态
已完成
发起方
入组人数
60
试验地点
1
主要终点
Gait Speed

研究概览

简要总结

This randomized controlled single-blinded trial aimed to compare the immediate effects of lower extremity neural slider and neural tensioner exercises on gait parameters and spinal alignment in sedentary young adults. Sixty healthy sedentary individuals aged 18-30 years were randomly assigned to receive either a neural slider or neural tensioner intervention. Spatiotemporal gait parameters were assessed using a validated smartphone-based gait analysis application, and spinal alignment angles were measured with a bubble inclinometer before and immediately after a single exercise session. The primary outcome was the acute change in gait-related parameters, and secondary outcomes included changes in spinal alignment and pelvic inclination angles.

详细描述

This randomized controlled, single-blinded experimental study was conducted between February and April 2024 to investigate the acute effects of lower extremity neural mobilization techniques on gait biomechanics and spinal alignment in sedentary individuals.

Sixty healthy sedentary participants (30 females, 30 males) aged 18-30 years were enrolled. Participants were randomly allocated to either a neural slider group or a neural tensioner group using a sealed-envelope randomization method. Allocation concealment was ensured by an independent researcher, and all outcome assessments were performed by a blinded physiotherapist.

Each participant underwent baseline (pre-test) assessments followed by a single session of neural mobilization exercise (3 minutes total, 3 sets of 30 repetitions). Post-intervention measurements were performed five minutes after completion of the exercise.

The primary outcome was the immediate change in spatiotemporal gait parameters, including gait speed, cadence, step length, step length asymmetry, base of support, single and double support times, and gait score. Gait was assessed using the OneStep smartphone application, which has demonstrated high validity compared to laboratory-based gait analysis systems.

Secondary outcomes included changes in spinal alignment and pelvic inclination angles, measured using a bubble inclinometer. Cervical lordosis, thoracic kyphosis, lumbar lordosis, total spinal mobility, and pelvic tilt angles were evaluated in neutral standing position.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Treatment
盲法
Single (Outcomes Assessor)

盲法说明

Outcome assessments were performed by a physiotherapist who was blinded to group allocation

入排标准

年龄范围
18 Years 至 30 Years(Adult)
性别
All
接受健康志愿者

入选标准

  • Age between 18 and 30 years
  • Sedentary lifestyle (no regular structured exercise within the past 6 months)
  • No history of lower extremity or spinal surgery
  • No diagnosed neurological disorder
  • No diagnosed musculoskeletal disorder
  • No current lower extremity pain or functional limitation
  • Willingness to participate and provide written informed consent

排除标准

  • History of hamstring injury
  • Current low back, hip, or knee pain
  • Known peripheral nerve injury or neurological condition
  • Any condition limiting safe participation in neural mobilization exercises
  • Inability to complete the intervention protocol
  • Withdrawal from the study before post-intervention assessment

结局指标

主要结局

Gait Speed

时间窗: baseline and 5 minutes after the intervention

Gait speed expressed in meters per second (m/s), calculated as total walking distance divided by time during a 1-minute walk on a straight, level surface. Measurements were obtained using the OneStep smartphone application, with the smartphone securely attached to the lateral aspect of the thigh to capture inertial motion data. Speed was derived from step detection and stride timing algorithms. The outcome represents the change from pre- to post-intervention.

Gait Cadence

时间窗: baseline and 5 minutes after the interventio

Cadence expressed in steps per minute (steps/min), calculated as the total number of detected steps divided by walking time. Step events were identified through thigh-mounted inertial sensor data captured by the OneStep application during a 1-minute walking trial. The outcome represents the change from pre- to post-intervention.

Step Length

时间窗: baseline and 5 minutes after the intervention

Step length expressed in centimeters (cm), defined as the linear distance between the initial contact of one foot and the subsequent initial contact of the contralateral foot. Step length was estimated using validated gait algorithms based on stride time and thigh kinematics recorded by the OneStep application. The outcome represents the change from baseline to post-intervention.

Stride Length

时间窗: baseline and 5 minute after interventions.

Stride length expressed in centimeters (cm), defined as the linear distance between two successive initial contacts of the same foot. Stride length was derived from inertial sensor data captured from the thigh during standardized walking. The outcome represents the change between pre- and post-intervention.

Step Length Asymmetry

时间窗: baseline and 5 minute later interventions

ep length asymmetry expressed as a percentage (%), calculated as the normalized difference between right and left step lengths during walking. Values were automatically derived from spatiotemporal gait data recorded by the thigh-mounted smartphone. The outcome represents the change from pre- to post-intervention.

Step Width

时间窗: baseline and 5 minutes later interventions

step width expressed in centimeters (cm), defined as the mediolateral distance between the center points of the heels during consecutive foot contacts. This parameter was estimated using validated spatial gait algorithms within the OneStep application. The outcome represents the change from baseline to post-intervention.

Single Support Time

时间窗: baseline and 5 minutes after interventions

Right single support time expressed as a percentage of the gait cycle (%), defined as the duration during which only the investigated limb is in contact with the ground. Gait cycle phases were automatically detected using thigh-based inertial motion data. The outcome represents the change from pre- to post-intervention.

Double Support Time

时间窗: baseline and 5 minutes after interventions

Double support time expressed as a percentage of the gait cycle (%), defined as the duration during which both feet are simultaneously in contact with the ground. This parameter was calculated using gait phase detection algorithms from inertial sensor data recorded during walking. The outcome represents the change between pre- and post-intervention assessments.

次要结局

  • Pelvic Inclination Angle(baseline and 5 minutes after interventions)
  • Cervical Lordosis Angle(baseline and 5 minutes later interventions)
  • Thoracic Kyphosis Angle(baseline and 5 minutes after interventions)
  • Lumbar Lordosis Angle(baseline and 5 minutes after interventions)

研究者

发起方
Izmir Democracy University
申办方类型
Other
责任方
Principal Investigator
主要研究者

Ezgi Ünüvar Yüksel

Assist. Prof.

Izmir Democracy University

研究点 (1)

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