跳至主要内容
临床试验/NCT05892497
NCT05892497招募中不适用

Effectiveness of Tecarterapy on the Performance of Amateur Athletes

Maxim Canet Vintró2 个研究点 分布在 1 个国家目标入组 60 人开始时间: 2023年8月1日最近更新:
适应症

试验速览

阶段
不适用
状态
招募中
发起方
入组人数
60
试验地点
2
主要终点
Changes in electromyographic activity during sprint (μ/v)

研究概览

简要总结

Physical therapies based on electrical or electromagnetic stimulation have been used in rehabilitation, in some cases combining electrical therapy with radiofrequency. Specifically, resistive capacitive electrical transfer therapy (CRet) has been used in physical rehabilitation and sports medicine to treat muscle, bone, ligament and tendon injuries. CRet is a non-invasive electrothermal therapy classified as deep thermotherapy, which is based on the application of electrical currents within the radiofrequency range of 300 kHz - 1.2 MHz. While the heat conducted by surface thermotherapy cannot reach the muscle due to the electrical resistance of the tissues, the capacitive-resistive electrical currents in CRet therapy can generate heating of deep muscle tissues, which in turn improves haemoglobin saturation. In Europe, CRet is widely used in various medical rehabilitation processes. The physiological effects of this type of physiotherapy are generated by the application of an electromagnetic field with a frequency of approximately 0.5 MHz to the human body. The effects attributed to this technique include increased deep and superficial blood circulation, vasodilatation, increased temperature, removal of excess fluid and increased cell proliferation.

Some of these reactions, such as increased blood perfusion, are known to be related to the increase in temperature, but others, such as increased cell proliferation, appear to be primarily related to the passage of current.

It is also true that this increase in tissue temperature, generated through the application of the device, is a physical reaction to the passage of current (Joule effect). Although there is already clinical literature supporting this mechanism, the amount of energy and current that must be transferred to obtain the desired temperature rise is unknown. Moreover, the control of these reactions, by adjusting parameters such as absorbed power and electrode position, is still largely based on the empirical experience of therapists .

Recently, new cadaveric publications have been generated, which support the mechanisms of current flow and thermal changes in this situation.

Against this background, in which thermal effects, current passage and symptomatic improvements have been demonstrated in patients with pathology, the possibility that these treatments may improve functional sporting abilities is raised. This hypothesis arises from the fact that current flow and thermal changes have been directly related to viscoelastic changes in capsular and muscle tissue.

To date, there is no study that has assessed whether this therapy generates any change in functional variables related to sports performance in professional athletes.

详细描述

Physical therapies based on electrical or electromagnetic stimulation have been used in rehabilitation, in some cases combining electrical therapy with radiofrequency. Specifically, resistive capacitive electrical transfer therapy (CRet) has been used in physical rehabilitation and sports medicine to treat muscle, bone, ligament and tendon injuries. CRet is a non-invasive electrothermal therapy classified as deep thermotherapy, which is based on the application of electrical currents within the radiofrequency range of 300 kHz - 1.2 MHz. While the heat conducted by surface thermotherapy cannot reach the muscle due to the electrical resistance of the tissues, the capacitive-resistive electrical currents in CRet therapy can generate heating of deep muscle tissues, which in turn improves haemoglobin saturation. In Europe, CRet is widely used in various medical rehabilitation processes. The physiological effects of this type of physiotherapy are generated by the application of an electromagnetic field with a frequency of approximately 0.5 MHz to the human body. The effects attributed to this technique include increased deep and superficial blood circulation, vasodilatation, increased temperature, removal of excess fluid and increased cell proliferation.

Some of these reactions, such as increased blood perfusion, are known to be related to the increase in temperature, but others, such as increased cell proliferation, appear to be primarily related to the passage of current.

It is also true that this increase in tissue temperature, generated through the application of the device, is a physical reaction to the passage of current (Joule effect). Although there is already clinical literature supporting this mechanism, the amount of energy and current that must be transferred to obtain the desired temperature rise is unknown. Moreover, the control of these reactions, by adjusting parameters such as absorbed power and electrode position, is still largely based on the empirical experience of therapists .

Recently, new cadaveric publications have been generated, which support the mechanisms of current flow and thermal changes in this situation.

Against this background, in which thermal effects, current passage and symptomatic improvements have been demonstrated in patients with pathology, the possibility that these treatments may improve functional sporting abilities is raised. This hypothesis arises from the fact that current flow and thermal changes have been directly related to viscoelastic changes in capsular and muscle tissue.

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
Double (Participant, Outcomes Assessor)

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

  • Athletes between 18 and 30 years of age (athletics and field sports such as soccer, basketball, rugby... that may involve sprinting) federated and competing in university or national amateur leagues that perform sprinting and jumping in their sports practice.
  • Active participation in regional, national or international competitions.
  • Study participants must have signed the informed consent form in order to evaluate their inclusion in the study.

排除标准

  • Volunteers who have suffered a sports injury during the last two months or are unable to perform physical activity.
  • Not understanding the information provided by the therapist.
  • Participate in other research studies.
  • Being under a pharmacological medical treatment that may interfere with the measures, such as treatment with anticonvulsants, antidepressants, etc.

结局指标

主要结局

Changes in electromyographic activity during sprint (μ/v)

时间窗: Baseline(immediately before intervention) and post intervention (immediately after intervention)

The mean electromyographic activity of the quadriceps musculature during sprint will be measured with The mDurance® system device (mDurance Solutions SL, Granada, Spain).

Change in 30 meters sprint (seconds)

时间窗: Baseline(immediately before intervention) and post intervention (immediately after intervention)

Photoelectric cells will be used to measure the time required to complete a 30-meter sprint.

次要结局

  • Changes in electromyographic activity during countermovement jump (μ/v)(Baseline(immediately before intervention) and post intervention (immediately after intervention))
  • Changes in isometric leg extension (Newtons)(Baseline(immediately before intervention) and post intervention (immediately after intervention))
  • Countermovement jump (cm)(Baseline(immediately before intervention) and post intervention (immediately after intervention))
  • Changes in electromyographic activity during isometric leg extension (μ/v)(Baseline(immediately before intervention) and post intervention (immediately after intervention))

研究者

发起方
Maxim Canet Vintró
申办方类型
Other
责任方
Sponsor Investigator
主要研究者

Maxim Canet Vintró

Principal investigator

Universitat Internacional de Catalunya

研究点 (2)

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