Effect of the Ultrasound-guided Percutaneous Neuromodulation on the Mean Velocity in Crossfit Practitioners.

NCT07684534 · Status: RECRUITING · Phase: NA · Type: INTERVENTIONAL · Enrollment: 42

Last updated 2026-07-10

No results posted yet for this study

Summary

This randomized controlled blinded clinical trial aims to evaluate the effect of ultrasound-guided percutaneous neuromodulation (US-guided PNM) targeting the innervation of the transversus abdominis muscle on squat performance in CrossFit practitioners.

The transversus abdominis is a deep trunk muscle that contributes to lumbopelvic stability and force transmission during functional and athletic movements. Previous research suggests that improving neuromuscular activation of the trunk musculature may enhance movement efficiency and performance during resistance exercises. Ultrasound-guided percutaneous neuromodulation is a minimally invasive technique that applies electrical stimulation through a needle placed close to a peripheral nerve under ultrasound guidance, with the aim of modulating neuromuscular function.

Healthy male and female CrossFit practitioners aged 18 to 60 years, with at least one year of training experience, will participate in the study. Participants will undergo an initial ultrasound assessment of transversus abdominis activation to classify and distribute the sample into groups. In a second session, mean velocity, mean propulsive velocity, and velocity loss during squat performance will be assessed using a linear velocity transducer. Participants will perform 3 sets of 2 repetitions of the squat exercise at 80% of their one-repetition maximum (1RM).

Following baseline assessment, participants will be randomly assigned to either an experimental group receiving ultrasound-guided percutaneous neuromodulation of the iliohypogastric and ilioinguinal nerves, or a sham group receiving needle insertion without electrical stimulation. The intervention will consist of a TENS-type current applied at 10 Hz for 10 cycles of 10 seconds. Squat performance variables will be reassessed immediately after the intervention.

The purpose of this study is to determine whether US-guided percutaneous neuromodulation can acutely improve squat performance in trained CrossFit practitioners. The study hypothesis is that participants receiving active neuromodulation will demonstrate greater improvements in squat execution velocity and lower velocity loss compared with participants receiving the sham intervention.

Conditions

  • Healthy Adult Participants
  • Crossfit

Interventions

OTHER

ultrasound-guided percutaneous neuromodulation

The intervention will be applied using ultrasound-guided percutaneous neuromodulation of the iliohypogastric and ilioinguinal nerves. The procedure will be performed under ultrasound guidance using a sterile percutaneous needle. In the experimental group, electrical stimulation will be delivered through the needle at a frequency of 10 Hz in 10-second cycles. Stimulation intensity will be adjusted according to participant tolerance, without exceeding the pain threshold.

OTHER

ultrasound-guided percutaneous neuromodulation (sham)

The sham intervention consists of an ultrasound-guided percutaneous needle insertion performed in the same anatomical region as the experimental procedure (iliohypogastric and ilioinguinal nerves), using identical positioning and procedural setup. No electrical stimulation is delivered through the needle at any point during the procedure. The duration and handling of the procedure are matched to the experimental condition to ensure participant blinding.

Sponsors & Collaborators

  • CEU San Pablo University

    lead OTHER

Principal Investigators

  • Francisco N Navarro Pastor, Physiotherapist · CEU San Pablo University

Study Design

Allocation
RANDOMIZED
Purpose
OTHER
Masking
DOUBLE
Model
PARALLEL

Eligibility

Min Age
18 Years
Max Age
60 Years
Sex
ALL
Healthy Volunteers
Yes

Timeline & Regulatory

Start
2026-07-08
Primary Completion
2026-10-01
Completion
2026-11-01

Countries

  • Spain

Study Locations

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Read the full study record

This page highlights key information. For complete eligibility criteria, study locations, investigator contacts, and the full protocol, visit the original record on ClinicalTrials.gov.

View NCT07684534 on ClinicalTrials.gov