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Effect of Trigger Point Cryostimulation on Exercise-Induced Tremor in Adolescent Swimmers

Targeted Cryostimulation of Myofascial Trigger Points Attenuates Exercise-Induced Tremor in Adolescent Swimmers

Status
Completed
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT07480200
Enrollment
34
Registered
2026-03-18
Start date
2024-05-01
Completion date
2024-07-01
Last updated
2026-03-24

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Exercise-Induced Neuromuscular Fatigue, Physiological Tremor

Keywords

Cryostimulation, Myofascial Trigger Points, Physiological Tremor, Adolescent Athletes, Swimming, Accelerometry

Brief summary

This study examines whether local cryostimulation of myofascial trigger points can reduce physiological tremor that occurs after intense physical exercise. Thirty-four adolescent competitive swimmers participate in a randomized crossover study comparing two conditions: local ice stimulation of trigger points and a control condition without intervention. Physiological tremor of the lower limbs is measured using accelerometry before and after a 30-second maximal tethered swimming effort. The study aims to determine whether targeted cryostimulation can attenuate exercise-induced neuromuscular tremor and improve post-exercise motor stability in young athletes.

Detailed description

This study investigates whether targeted cryostimulation of myofascial trigger points (MTrPs) can attenuate exercise-induced physiological tremor in adolescent swimmers. The study uses a randomized reversed crossover design in which each participant completes two experimental conditions: local cryostimulation of identified trigger points and a control condition without intervention. Thirty-four competitive adolescent swimmers participate in the study. Physiological tremor of both lower limbs is measured using triaxial accelerometry under standardized conditions before and after a maximal 30-second tethered swimming effort. In the cryostimulation condition, cold packs are applied for 60 seconds to identified myofascial trigger points in the quadriceps and hamstring muscle groups. In the control condition, no cryostimulation is applied prior to exercise. The primary outcome is the change in tremor power in the 2-5 Hz frequency band following exercise. Secondary outcomes include tremor power in the 9-14 Hz frequency band and tremor frequency parameters. Tremor signals are analyzed using frequency-domain analysis based on power spectral density calculations derived from accelerometer data. The aim of the study is to determine whether localized cryostimulation of myofascial trigger points can modulate neuromuscular responses to fatigue and reduce the magnitude of exercise-induced tremor in adolescent athletes.

Interventions

PROCEDURECryostimulation of Myofascial Trigger Points

Local cryostimulation is applied to identified myofascial trigger points in the quadriceps and hamstring muscles using cold packs for 60 seconds before a 30-second maximal tethered swimming effort.

Sponsors

Józef Piłsudski University of Physical Education
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
CROSSOVER
Primary purpose
TREATMENT
Masking
NONE

Intervention model description

This study uses a randomized reversed crossover design. Each participant completes two experimental conditions: local cryostimulation of myofascial trigger points and a control condition without intervention. The order of conditions is counterbalanced across participants to minimize potential order and carryover effects. Physiological tremor is measured at baseline and after a standardized exercise protocol in both conditions.

Eligibility

Sex/Gender
MALE
Age
10 Years to 16 Years
Healthy volunteers
Yes

Inclusion criteria

* \- Competitive adolescent swimmers * Age between 10 and 16 years * Regular participation in swimming training (at least 3 training sessions per week) * No current musculoskeletal injury affecting the lower limbs * Ability to perform maximal swimming effort * Written informed consent from participants and their legal guardians

Exclusion criteria

* \- Current lower limb injury or pain * Neurological disorders affecting motor control * Contraindications to cold exposure or cryotherapy * Participation in other interventions that could affect neuromuscular performance

Design outcomes

Primary

MeasureTime frameDescription
Exercise-Induced Physiological Tremor of the Lower LimbsImmediately before and immediately after the 30-second maximal tethered swimming effort during the experimental session.Physiological tremor of the lower limbs measured using accelerometry before and after a 30-second maximal tethered swimming effort. Tremor amplitude is quantified from accelerometer signals to assess the effect of local cryostimulation of myofascial trigger points.

Countries

Poland

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Jun 28, 2026