Skip to main content
Clinical Trials/NCT07659561
NCT07659561Not yet recruitingNot Applicable

Assessment of Electromyographic Activity in the Quadriceps and Hamstrings of the Operated Limb Versus the Unaffected Limb in Patients Who Have Undergone ACL Surgery, With and Without Post-operative AMI - an Exploratory Study

GCS Ramsay Santé pour l'Enseignement et la Recherche1 site in 1 country40 target enrollmentStarted: September 1, 2026Last updated:
Conditions
Interventions

Trial Snapshot

Phase
Not Applicable
Status
Not yet recruiting
Sponsor
Enrollment
40
Locations
1
Primary Endpoint
EMG activity

Study Overview

Brief Summary

Traumatic injuries to the knee joint, such as an anterior cruciate ligament tear, can compromise the ability of the muscle at the front of your thigh-known as the quadriceps-to contract voluntarily, despite the anatomical integrity of the nerve and muscle structures responsible for contraction. This phenomenon, commonly known as 'arthrogenic motor inhibition' (AMI), is a major limiting factor for recovery and rehabilitation following an anterior cruciate ligament tear, as well as a potential cause of functional disability if left undiagnosed and untreated. Indeed, motor inhibition that persists during the early months of rehabilitation could lead to under-activation of the quadriceps and over-activation of the hamstrings (the muscles at the back of your thigh).

It is of interest to assess, during the rehabilitation phase, the contraction capacity of the various quadriceps and hamstring muscles in the operated limb compared with the unaffected limb in patients who have undergone anterior cruciate ligament surgery and who experience post-operative motor inhibition, and in patients who have undergone anterior cruciate ligament surgery but do not experience post-operative motor inhibition. This is why this study has been initiated.

Detailed Description

An ACL tear and reconstruction can lead to a neurophysiological dysfunction commonly known as 'arthrogenic muscle inhibition' (AMI). This phenomenon impairs the ability to voluntarily activate the quadriceps, despite the anatomical integrity of the nerve and muscle structures responsible for contraction.

AMI is responsible for the quadriceps deficits observed following an ACL rupture and thus appears to be a major limiting factor in the patient's rehabilitation and functional recovery. Consequently, its diagnosis and treatment are imperative. The diagnosis of AMI (post-rupture and post-operative) is based on a classification system that categorises AMI diagnoses according to the identification of a deficit in activation of the vastus medialis (VM) alone (grade 1) or in combination with an extension deficit due to a grade 2 hamstring contracture (grade 2) (Sonnery-Cottet et al, 2022).

During the clinical examination, normal VM contraction (during relaxation) can be achieved without the recruitment of all motor units (minimal VM activation), and full knee extension (i.e. without reflex contraction of the hamstrings) can be restored without a return to adequate hamstring activation for the required task. Deficits in activation (inadequate activation) of the quadriceps and over-activation of the hamstrings (Hamstrings) during movements involving greater forces could be the consequences of an AMI still present in the early months of rehabilitation. This AMI could then disrupt the electromyographic (EMG) activation patterns of the quadriceps and hamstrings and contribute to long-term quadriceps deficits.

In this context, it is of interest to assess, during the rehabilitation phase, the EMG activity of the different muscle heads of the quadriceps and hamstrings in the operated limb versus the healthy limb in patients who have undergone ACL surgery and experienced post-operative IMA, and in patients who have undergone ACL surgery without post-operative IMA.

No studies have been published on this topic. This is why this research has been initiated.

Study Design

Study Type
Interventional
Allocation
Na
Intervention Model
Single Group
Primary Purpose
Basic Science
Masking
None

Eligibility Criteria

Ages
18 Years to 45 Years (Adult)
Sex
All
Accepts Healthy Volunteers
No

Inclusion Criteria

  • Patient who has undergone ACL surgery at least 3 weeks ago
  • Patient with no severe knee inflammation: stroke test ≤ 1+ and pain ≤ 3/10 (EN) at rest
  • Patient with a Tegner score ≥ 5
  • Patient with a Marx score ≥ 8
  • Patient with or without a diagnosis of subjective AMI (Sonnery-Cottet et al. classification)
  • French-speaking patients who do not object to the use of their data

Exclusion Criteria

  • Patient with a previous injury or surgery to the same or opposite knee
  • Patient with a multi-ligament injury
  • Patient with an AMI > grade 2b (Sonnery-Cottet et al. classification)
  • Patient with a BMI > 30
  • Pregnant or breastfeeding woman
  • Patient with previous or current neurological and cardiovascular disorders or diseases
  • Patient under legal protection: adult under guardianship, curatorship or other legal protection, deprived of liberty by judicial or administrative decision

Arms & Interventions

ACL Arm

Experimental

Patient with ACL rupture

Intervention: Electromyography (Behavioral)

Outcomes

Primary Outcomes

EMG activity

Time Frame: Month 3

The average amplitude of EMG activity in the VM (Vastus Medialis) is assessed using the Root Mean Square (RMS) value, which is expressed in millivolts (mV). The RMS is recorded using surface electrodes placed on the vastus medialis. The primary outcome measure (activation deficit) is the absolute difference in RMS between the operated leg and the unaffected leg.

Secondary Outcomes

No secondary outcomes reported

Investigators

Sponsor
GCS Ramsay Santé pour l'Enseignement et la Recherche
Sponsor Class
Other
Responsible Party
Sponsor

Study Sites (1)

Loading locations...

Similar Trials

Assessment of Electromyographic Activity... | Clinical Trial