Skip to main content
OpenTrials
Completed

NCT Number: NCT05832970

Cooling Induces Motor Facilitation With Sympathetic Activation

Cryotherapy has beneficial effects such as motor facilitation, increase isometric force generation, and reduce spasticity.

It is known that the muscle spindle has sympathetic innervation. Muscle spindle sensitivity increase with sympathetic activity. This research has three hypotheses: First, short-term cold application to the skin increases sympathetic activity. Second, there is an increase in muscle spindle sensitivity with increased sympathetic activity. Third, the effect of short-term cold on muscle spindle sensitivity continues until the skin temperature returns to normal. The purpose of this research is to test these hypotheses.

Completed

Looking for future studies?

Notify Me

Key information

Conditions

Age range

20 year–45 year

Sex eligibility

Male

Study type

Interventional

Phase

Not applicable

Primary location

Istanbul Physical Medicine Rehabilitation Training & Research Hospital

Istanbul, 34173, Turkey (Türkiye)

About this study

Cryotherapy is a frequently used treatment method in sports medicine and rehabilitation due to its beneficial neuromuscular effects. Its main beneficial effects are motor facilitation, increase isometric force generation, and reduce spasticity. The motor effects of cryotherapy may differ depending on the duration of application, the coolant used agent (ice, ice water, coolant spray, etc.), and the thickness of the subcutaneous adipose tissue. The short-term cold application increases the force of contraction with motor facilitation. As the cold application period gets longer, the effects of the cold that inhibit motor functions such as gamma motor neuron inhibition, muscle spindle inhibition, and muscle conduction block come to the fore.

It is known that the muscle spindle has sympathetic innervation. It has been reported in recent studies that mental arithmetic, cold application to the skin, isometric contraction of remote muscles, and ischemia increase muscle spindle sensitivity through increased sympathetic activity. However, there are very limited studies showing that cold application increases muscle spindle sensitivity through increased sympathetic activity. On the other hand, in terms of determining treatment and rehabilitation strategies, it is important to know how long the effect of the cold application on muscle spindle sensitivity continues. However, it is not clear how long the effect of the cold application on muscle spindle sensitivity lasts after the cold application ends. There is a widespread belief that the motor facilitation effect of cryotherapy can occur with the stimulation of cutaneous cold receptors. Considering this view, it can be thought that the effect of the short-term cold application on muscle spindle sensitivity continues until the skin temperature returns to normal. This research has three hypotheses: First, short-term cold application to the skin increases sympathetic activity. Second, there is an increase in muscle spindle sensitivity with increased sympathetic activity. Third, the effect of short-term cold on muscle spindle sensitivity continues until the skin temperature returns to normal. The purpose of this research is to test these hypotheses.

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Being healthy
  • Being a young adult (20-45 years old)
  • Volunteer

Exclusion criteria

  • Scar, dermatitis, etc. in the skin tissue where the superficial electromyography electrode will be placed
  • Upper extremity bone and joint disease, history of neuromuscular disease
  • Heart disease, Hypertension
  • Cold intolerance

Treatment and study plan

Brief skin cooling

Other

Brief skin cooling will be applied to the hand using the cold-bath immersion

Primary outcomes

  1. Change from baseline in Heart rate

    Time frame: Baseline (pre-cold pressor test) and 0, 3, 6, 9, 12, 15 minutes post-cold pressor test

    Heart rate will be monitored with DII derivation electrocardiographic recording.Heart rate will be reported as beats per minute.

  2. Change from baseline in Soleus H-reflex

    Time frame: Baseline (pre-cold pressor test) and 0, 3, 6, 9, 12, 15 minutes post-cold pressor test

    By stimulating the tibial nerve with an electrical current, the Soleus H-reflex will be obtained. Its peak to peak amplitude will be measured in microvolts.

  3. Change from baseline in T-reflex

    Time frame: Baseline (pre-cold pressor test) and 0, 3, 6, 9, 12, 15 minutes post-cold pressor test

    Soleus T-reflex will be obtained by hitting the Achilles tendon with the electronic reflex hammer. Its peak to peak amplitude will be measured in microvolts.

Secondary outcomes

  1. Skin temperature

    Time frame: Baseline (pre-cold pressor test) and 0, 3, 6, 9, 12, 15 minutes post-cold pressor test

    The skin temperature of the back of the hand exposed to the cold application will be measured with an infrared thermometer and the results will be reported in degrees Celsius.

Sponsors and collaborators

Lead sponsor

Istanbul Physical Medicine Rehabilitation Training and Research Hospital

Other Gov

Registry information

Official study title

Brief Skin Cooling Induces Muscle Spindle Sensitivity With Heightened Sympathetic Outflow

Important dates

Study start
2023
Primary completion
2023
Study completion
2023
First posted
Apr 27, 2023
Registry last updated
Apr 27, 2023

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

Published trials that share one or more normalized conditions with this study.