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Effects of Exercise-Induced Muscle Damage on Neuromuscular Complexity (EIMD-NMC)

2026年4月27日 更新者:Vassilis Paschalis、National and Kapodistrian University of Athens

Effects of Exercise-Induced Muscle Damage Induced by Eccentric Exercise on Knee Extensor Torque, Oxygenation, and Electromyographic Properties: A Complexity-Based Approach

This study will examine the effects of exercise-induced muscle damage, induced by eccentric exercise, on torque production, muscle oxygenation, and electromyographic activity of the knee extensors in healthy young men. Eleven participants will perform a sustained submaximal isometric contraction before and 48 hours after a muscle-damaging eccentric exercise protocol. It is anticipated that the eccentric exercise will confirm the presence of muscle damage, by decrease in maximal voluntary isometric torque, increase in muscle soreness, and reduction in pain-free range of motion. The effect of eccentric exercise on the complexity of torque output, which could be reflected by decreased Sample Entropy and increased DFA α, will be indicated by a possible shift toward more predictable and less adaptable motor control patterns. Based on these results, the investigators will know about the effect of eccentric exercise induced muscle damage on neuromuscular efficiency, that is greater neural input could be required to maintain the same mechanical output, as well as increased oxygen consumption in the active muscle.

研究概览

详细说明

The present study was designed to investigate the impact of exercise-induced muscle damage , caused by eccentric exercise, on neuromuscular and physiological function of the knee extensor muscles. The research was based on the contemporary theoretical framework of the "loss of complexity," which proposes that physiological signal variability is not merely random noise, but rather an essential characteristic of healthy and adaptable biological systems. According to this approach, greater signal complexity reflects a more flexible and efficient neuromuscular control strategy, whereas reduced complexity indicates impaired adaptability and a more rigid functional state.

A total of eleven healthy young men (N = 11, age 27.8 ± 2.5 years) participated in the study. During the initial session, anthropometric characteristics were recorded and maximal voluntary isometric torque of the knee extensors was measured. The main testing procedure involved a sustained submaximal isometric contraction performed at 50% of maximal voluntary contraction for 60 seconds. During this task, torque output, muscle oxygenation, and electromyographic activity of the vastus lateralis were continuously was recorded in order to assess both mechanical and neuromuscular responses.

Following baseline testing, participants completed a muscle damage induction protocol consisting of five sets of fifteen maximal eccentric contractions performed at an angular velocity of 60°/s. This protocol was designed to induce structural and functional muscle impairment characteristic of exercise induced muscle damage. Forty-eight hours after the intervention, all measurements were repeated to determine the effects of muscle damage on the same variables. Data were processed and analyzed in MATLAB, with statistical significance set at p < .05.

The results are anticipated to confirm the successful induction of muscle damage.

The investigators wanted to show the effect of exercise induced muscle damage on torque complexity through changes in Sample Entropy, and changes on detrended fluctuation analysis exponent, which indicate that torque fluctuations will became more regular, predictable, and less complex.

A possible reduction in complexity it expected to be accompanied by a change in neuromuscular efficiency, meaning that a greater level of neural activation will be needed to produce the same relative mechanical output. A likely explanation is that damage to muscle fibers and sarcomeres would reduce the effectiveness of force transmission, forcing the nervous system to compensate through increased neural drive.

In parallel, it is expected that muscle oxygenation measurements will show increased deoxygenated hemoglobin, indicating higher oxygen extraction and a greater metabolic burden on the remaining functional muscle fibers. This finding would suggest that, after exercise induced muscle damage, fewer intact fibers may be available to share the workload, thereby increasing the relative demand placed on those still functioning effectively.

An additional important observation will be the possible changes in traditional linear variability indices, such as standard deviation and coefficient of variation. This will highlight the limitation of conventional linear measures in detecting subtle but functionally meaningful changes in neuromuscular regulation.

研究类型

介入性

注册 (实际的)

11

阶段

  • 不适用

联系人和位置

本节提供了进行研究的人员的详细联系信息,以及有关进行该研究的地点的信息。

学习地点

    • Attica
      • Athens、Attica、希腊、17234
        • School of Physical Education and Sport Science

参与标准

研究人员寻找符合特定描述的人,称为资格标准。这些标准的一些例子是一个人的一般健康状况或先前的治疗。

资格标准

适合学习的年龄

  • 成人

接受健康志愿者

是的

描述

Inclusion Criteria:

  • No experience of resistance exercise with heavy loads the past 6 months

Exclusion Criteria:

  • History of lower-limb injury
  • Taking any medication
  • Suffered from any pathological condition
  • Participation in a systematic eccentric exercise program during the previous 6 months

学习计划

本节提供研究计划的详细信息,包括研究的设计方式和研究的衡量标准。

研究是如何设计的?

设计细节

  • 主要用途:其他
  • 分配:非随机化
  • 介入模型:单组作业
  • 屏蔽:无(打开标签)

武器和干预

参与者组/臂
干预/治疗
实验性的:Eccentric exercise
All the parameters that was assessed 48 hours post isokinetic eccentric exercise
Isokinetic eccentric exercise consisted of 5 sets of 15 repetitions using the knee extensors. The intensity of the exercise was the maximal voluntary and an interval of 1 minute was applied between sets.

研究衡量的是什么?

主要结果指标

结果测量
措施说明
大体时间
Isokinetic sub maximal exercise
大体时间:From enrollment to the end of the treatment at 48 hours
Isokinetic exercise of 60 seconds using the sub maximal intensity of 50% MVC. The knee joint will be set at 90 degrees and the values will be in Nm.
From enrollment to the end of the treatment at 48 hours
Electromyography
大体时间:From enrollment to the end of treatment at 48 hours
Continuous recording of EMG during the 60 seconds isometric exercise. Patches will be placed in vastus laterals and the recording will be at 100 Hz
From enrollment to the end of treatment at 48 hours
Muscle oxygenation
大体时间:rom enrollment to the end of treatment at 48 hours
Muscle oxygenation measured using near infrared spectroscopy (NIRS) of the knee extensors during the 60 seconds isometric exercise. The main parameters that will be recored are the oxygenated haemoglobin, the deoxygenated haemoglobin, the total haemoglobin and the difference between oxygenated and deoxygenated haemoglobin.
rom enrollment to the end of treatment at 48 hours

次要结果测量

结果测量
措施说明
大体时间
Delayed onset muscle soreness
大体时间:From enrollment to the end of treatment at 48 hours
Assessment of subjective pain feeling assessed by palpation of knee extensors muscle belly. The scale was set between 1 (no pain at all) to 10 (extreme pain).
From enrollment to the end of treatment at 48 hours
Range of Motion
大体时间:From enrollment to the end of treatment at 48 hours
The angles the knee joint may be flexed without the feeling of any pain. The starting position was set at full extension.
From enrollment to the end of treatment at 48 hours
Peak torque output
大体时间:From enrollment to the end of treatment at 48 hours
Isometric peak torque output was assessed at 90 degrees knee joint angle (0 degrees was set at full extension). The assessments was consisted of 3 set of 5 seconds each. The higher performance was recorded for the data analysis
From enrollment to the end of treatment at 48 hours

合作者和调查者

在这里您可以找到参与这项研究的人员和组织。

调查人员

  • 首席研究员:Vassilis Paschalis, Dr.、National and Kapodistrian Univesity of Athens

研究记录日期

这些日期跟踪向 ClinicalTrials.gov 提交研究记录和摘要结果的进度。研究记录和报告的结果由国家医学图书馆 (NLM) 审查,以确保它们在发布到公共网站之前符合特定的质量控制标准。

研究主要日期

学习开始 (实际的)

2025年8月20日

初级完成 (实际的)

2026年1月20日

研究完成 (实际的)

2026年3月30日

研究注册日期

首次提交

2026年4月19日

首先提交符合 QC 标准的

2026年4月27日

首次发布 (实际的)

2026年5月4日

研究记录更新

最后更新发布 (实际的)

2026年5月4日

上次提交的符合 QC 标准的更新

2026年4月27日

最后验证

2026年4月1日

更多信息

与本研究相关的术语

其他研究编号

  • 1731/19-12-2024

计划个人参与者数据 (IPD)

计划共享个人参与者数据 (IPD)?

不

IPD 计划说明

Individual Participant Data (IPD) will not be shared with other researchers in order to protect participant confidentiality and privacy, and because no data-sharing plan was included in the study protocol or consent process.

药物和器械信息、研究文件

研究美国 FDA 监管的药品

不

研究美国 FDA 监管的设备产品

不

此信息直接从 clinicaltrials.gov 网站检索,没有任何更改。如果您有任何更改、删除或更新研究详细信息的请求,请联系 register@clinicaltrials.gov. clinicaltrials.gov 上实施更改,我们的网站上也会自动更新.

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