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Definition of Biomechanical Indices Measurable During Sport Movements for the Prevention of Primary and Secondary ACL Injury

Definition of a Set of Biomechanical Indices Non-invasively Measurable During Basic Sport Movements Test Analysis Aimed to the Prevention of Primary and Secondary Anterior Cruciate Ligament Injury

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT03840551
Acronym
BIOS-ACL
Enrollment
34
Registered
2019-02-15
Start date
2018-12-15
Completion date
2020-10-01
Last updated
2021-02-10

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

Conditions

Anterior Cruciate Ligament Injury, Biomechanical; Lesion, Sport Injury

Keywords

injury prevention, biomechanical indices, inertial sensors

Brief summary

The aim of the study is to define a set of quantitative parameters related to articular biomechanics, which will be evaluated during some specific motor tasks. The goal is the prevention of primary and secondary anterior cruciate ligament injury in athletes. Specifically, the validation of a new comparative methodology of biomechanics analysis will be performed, based on inertial sensors and musculoskeletal models. This way, brief but exhaustive description of functional characteristics of athletes could be created and easily used in ambulatory environment.

Interventions

OTHERBiomechanical analysis with inertial sensors (XSENS) and motion capture (BTS)

The kinematics of lower limbs, trunk and upper limbs will be calculated both with inertial sensors (XSENS) and motion capture marker-based system (BTS ). Inertial sensors and markers will be placed on the subjects clothes and on the skin (totally non-invasive) to identify body segments. Then subjects will perform their motor tasks normally. Lately, through the data post-processing, the kinematics evaluated with both the systems will be used to describe how well the task is performed in terms of ACL prevention, through derived biomechanical parameters.

Sponsors

Isokinetic
CollaboratorUNKNOWN
Istituto Ortopedico Rizzoli
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
HEALTH_SERVICES_RESEARCH
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to 50 Years
Healthy volunteers
Yes

Inclusion criteria

* Healthy subjects, men of women, 18 years old minimum and 50 maximum, which read and signed the informed consent

Exclusion criteria

* evidence of any kind of musculoskeletal disease or impairment * evidence of past surgical intervention to either lower or upper limbs * age out of the inclusion range * cardiac or pulmonary diseases * inability to read and sign the informed consent * inability to perform the motor tasks required

Design outcomes

Primary

MeasureTime frameDescription
Lower limbs angles (extracted by inertial sensors/motion capture marker-based analysis): Hip, Knee, Ankle joint angles (all in degrees °)10 monthsThese quantitative parameters are the output of the inertial sensor and marker-based motion capture dedicated softwares, and will be then post processed and analyzed to find the range of motion, the maximum and the minimum angles for each joint. Every outcome angle is expressed in degrees (°) * Hip angles (flexion/extension, ab/adduction and intra/extra rotation) in degrees (°); * Knee angles (flexion/extension, varus/valgus and intra/extra rotation) in degrees (°); * Ankle angles (flexion/extension, ab/adduction and intra/extra rotation) in degrees (°).
Upper limbs angles (extracted by inertial sensors/motion capture marker-based analysis): Elbow, Wrist and Shoulder joint angles (all in degrees °)10 monthsThese quantitative parameters are the output of the inertial sensor and marker-based motion capture dedicated softwares, and will be then post processed and analyzed to find the range of motion, the maximum and the minimum angles for each joint, and the interaction with lower limbs joint angles. Every outcome angle is expressed in degrees (°) * Elbow angles (flexion/extension, intra/extra rotation) in degrees (°); * Wrist angles (flexion/extension) in degrees (°); * Shoulder angles (flexion/extension, ab/adduction) in degrees (°).
Trunk angles (extracted by inertial sensors/motion capture marker-based analysis): Trunk sway and Trunk tilt (all in degrees °)10 monthsThese quantitative parameters are the output of the inertial sensor and marker-based motion capture dedicated softwares, and will be then post processed and analyzed to find the range of motion, the maximum and the minimum angles for each joint, and the interaction with lower limbs joint angles. Every outcome angle is expressed in degrees (°) * Trunk sway in degrees (°) ; * Trunk tilt in degrees (°) .
Trunk velocity (in m/s) extracted by inertial sensors/motion capture marker-based analysis10 monthsTrunk velocity in all 3 directions (x,y,z). Expressed in m/s
Trunk acceleration (in m/s^2) extracted by inertial sensors/motion capture marker-based analysis10 monthsTrunk Acceleration in all 3 directions (x,y,z). Expressed in m/s\^2

Countries

Italy

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026