Javascript must be enabled to continue!
Generalized Joint Laxity Associated With Increased Medial Foot Loading in Female Athletes
View through CrossRef
Abstract
The relationship between generalized joint laxity and plantar pressure distribution of the foot and the potential implications for lower extremity injury have not been studied.Context:
To determine the relationship between generalized joint laxity and dynamic plantar pressure distribution. We hypothesized that individuals with greater generalized joint laxity, or hypermobility, would have greater dynamic medial midfoot pressure and loading during walking than nonhypermobile individuals.Objective:
Case control.Design:
Institutional biomechanics laboratory.Setting:
Participants included 112 female soccer players between 11 and 21 years of age.Patients or Other Participants:
Each participant was tested for generalized joint laxity using the Beighton and Horan Joint Mobility Index (BHJMI; range, 0–9) and was categorized as having either high (BHJMI score ≥4) or low (BHJMI score <4) generalized joint laxity. Peak pressure and maximum force were calculated from a dynamic, barefoot plantar pressure distribution system.Main Outcome Measure(s):
Peak pressure and maximum force were greater in the 27 participants categorized as having high generalized joint laxity than in the 85 participants categorized as having low generalized joint laxity. The midfoot region exhibited greater loading in participants with high generalized joint laxity than in the other participants. We found an effect of BHJMI classification in the medial midfoot; peak pressure in the dominant (F1,109 = 11.262, P = .001) and nondominant (F1,109 = 14.32, P < .001) sides and maximum force in the dominant (F1,109 = 7.88, P = .006) and nondominant (F1,109 = 9.18, P = .003) sides were greater in the high generalized joint laxity group than in the low generalized joint laxity group.Results:
Athletes classified as having high generalized joint laxity demonstrated increased midfoot loading. Delineation of risk factors for medial collapse of the foot, which include hypermobility in athletes, may help clinicians evaluate and prevent lower extremity injury with treatments, such as orthoses.Conclusions:
National Athletic Trainers' Association
Title: Generalized Joint Laxity Associated With Increased Medial Foot Loading in Female Athletes
Description:
Abstract
The relationship between generalized joint laxity and plantar pressure distribution of the foot and the potential implications for lower extremity injury have not been studied.
Context:
To determine the relationship between generalized joint laxity and dynamic plantar pressure distribution.
We hypothesized that individuals with greater generalized joint laxity, or hypermobility, would have greater dynamic medial midfoot pressure and loading during walking than nonhypermobile individuals.
Objective:
Case control.
Design:
Institutional biomechanics laboratory.
Setting:
Participants included 112 female soccer players between 11 and 21 years of age.
Patients or Other Participants:
Each participant was tested for generalized joint laxity using the Beighton and Horan Joint Mobility Index (BHJMI; range, 0–9) and was categorized as having either high (BHJMI score ≥4) or low (BHJMI score <4) generalized joint laxity.
Peak pressure and maximum force were calculated from a dynamic, barefoot plantar pressure distribution system.
Main Outcome Measure(s):
Peak pressure and maximum force were greater in the 27 participants categorized as having high generalized joint laxity than in the 85 participants categorized as having low generalized joint laxity.
The midfoot region exhibited greater loading in participants with high generalized joint laxity than in the other participants.
We found an effect of BHJMI classification in the medial midfoot; peak pressure in the dominant (F1,109 = 11.
262, P = .
001) and nondominant (F1,109 = 14.
32, P < .
001) sides and maximum force in the dominant (F1,109 = 7.
88, P = .
006) and nondominant (F1,109 = 9.
18, P = .
003) sides were greater in the high generalized joint laxity group than in the low generalized joint laxity group.
Results:
Athletes classified as having high generalized joint laxity demonstrated increased midfoot loading.
Delineation of risk factors for medial collapse of the foot, which include hypermobility in athletes, may help clinicians evaluate and prevent lower extremity injury with treatments, such as orthoses.
Conclusions:.
Related Results
Benefits of Physiotherapy on Urinary Incontinence in High-Performance Female Athletes. Meta-Analysis
Benefits of Physiotherapy on Urinary Incontinence in High-Performance Female Athletes. Meta-Analysis
Introduction: High performance female athletes may be a risk group for the development of urinary incontinence due to the imbalance of forces between the abdomen and the pelvis. Pe...
GENERALIZED LIGAMENTOUS LAXITY MAY BE A PREDISPOSING FACTOR FOR MUSCULOSKELETAL INJURIES
GENERALIZED LIGAMENTOUS LAXITY MAY BE A PREDISPOSING FACTOR FOR MUSCULOSKELETAL INJURIES
BackgroundGeneralized ligamentous laxity has been implicated with musculoskeletal injuries. Little evidence has emerged from the Asia-Pacific regarding the epidemiology of generali...
Teniste Maç Analizi
Teniste Maç Analizi
Bu araştırmanın amacı, elit tenis sporcuların maç sırasında fizyolojik-kinematik aksiyonlarını, oyunun zamansal karakteristiğini ve servis atış performanslarını analiz etmektir. Ar...
Differential Diagnosis of Neurogenic Thoracic Outlet Syndrome: A Review
Differential Diagnosis of Neurogenic Thoracic Outlet Syndrome: A Review
Abstract
Thoracic outlet syndrome (TOS) is a complex and often overlooked condition caused by the compression of neurovascular structures as they pass through the thoracic outlet. ...
A 4D ULTRASOUND SYSTEM TO DETECT JOINT LAXITY IN BASAL THUMB OSTEOARTHRITIS
A 4D ULTRASOUND SYSTEM TO DETECT JOINT LAXITY IN BASAL THUMB OSTEOARTHRITIS
Hypermobility, or joint laxity, has been hypothesized to be a risk factor for thumb osteoarthritis (OA) [1]. Previous studies assessing thumb biomechanics in thumb OA patients have...
Concomitant Medial Meniscal Root Repair with Extrusion Repair (Centralization Technique)
Concomitant Medial Meniscal Root Repair with Extrusion Repair (Centralization Technique)
Background:
Meniscal extrusion is a phenomenon in which a degenerative posterior horn tear, radial tear, or root tear results in displacement of the body of the meniscu...
Analysis of the performances of the Ukrainian national freestyle wrestling team at the U23 World and European Championships
Analysis of the performances of the Ukrainian national freestyle wrestling team at the U23 World and European Championships
Purpose: to analyze the performances of the Ukrainian national team at the U23 World and European Championships. Material and Methods. The following methods were used in the resear...
Can Foot Exercises Alter Foot Posture, Strength, and Walking Foot Pressure Patterns in People with Severe Flat Foot?
Can Foot Exercises Alter Foot Posture, Strength, and Walking Foot Pressure Patterns in People with Severe Flat Foot?
Category:
Midfoot/Forefoot, Sports
Introduction/Purpose:
Muscle training muscle co...

