Skip to content

IMU-based Assessment of Motor Control in a Population of Young Subjects With Paramorphisms and Dysmorphisms

Evaluation of Motor Control During Developmental Age in Young Patients With Paramorphisms and Dysmorphisms Using Inertial Measurement Units

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05763901
Acronym
MOTOR-CHILD
Enrollment
151
Registered
2023-03-10
Start date
2021-04-01
Completion date
2024-12-20
Last updated
2025-12-23

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

Conditions

Angular Limb Deformity, Cavus Foot, Flat Feet, Genu Valgus, Genu Varum, Hyperkyphosis, Hyperlordosis, Laxity of Ligament, Scoliosis Idiopathic, Valgus, Talipes, Varus; Talipes

Brief summary

While various complex pathologies of the developmental age, such as Infantile Cerebral Palsy or Neuromuscular Diseases, are notoriously considered causes of alteration of locomotor development, it is scarcely known whether conditions much more frequent in the pediatric population, the so-called Paramorphisms or Dysmorphisms, may be associated with more or less noticeable changes in locomotor development. On a few studies, flat feet and hyperlaxity has been correlated with a motor control delay or poorer motor performance, based on complex clinical tests or on stereophotogrammetry movement analysis. Although promising, these preliminary studies, in addition to not providing information on the possible influence of other paramorphisms, such as varus and valgus of the knees, do not provide conclusive indications. The aim of this study is to investigate, through clinical tests and wearable inertial units, the motor control of a pediatric population affected by Paramorphisms or Dysmorphisms and to compare them with a population of healthy controls, matched by age, taken from the recently developed control data set from Bisi and Stagni.

Interventions

DIAGNOSTIC_TESTClinical tests and motor control evaluation using Inertial Measurement Units

Each patient is evaluated using clinical tests (Movement ABC2, Test of Motor Competence), a screening questionnaire (DCD-Q), and wearable Inertial Measurement Units to assess balance and motor control during a Natural Walking and Tandem Walking test.

Sponsors

Istituto Ortopedico Rizzoli
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
DIAGNOSTIC
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
6 Years to 17 Years
Healthy volunteers
No

Inclusion criteria

* Born at term * Without known delay in motor development * Finding of one or more paramorphisms or dysmorphisms of the developmental age (flat or cavus foot, valgus or varus talipes, valgus or varus knee, scoliotic attitude or scoliosis, hyperkyphosis or hyperlordosis, generalized or focused hyperlaxity, heterometry of the AAII, torsional defects AAII)

Exclusion criteria

* Preterm birth * Diagnosis of pathologies compromising motor control (Infantile Cerebral Palsy, Neuromuscular Diseases, Spina Bifida, Arthrogryposis, Genetic Syndromes)

Design outcomes

Primary

MeasureTime frameDescription
Evaluation and measurement of balanceBaselineEvaluation of balance using clinical tests ( Movement ABC2).
Evaluation and measurement motor competenceBaselineEvaluation of motor competence using clinical tests (Test of Motor Competence, ).
Measurement of balanceBaselineMeasurement of balance assessing synchronicity from data obtained with Inertial Measurement Units.
Measurement of motor competenceBaselineMeasurement motor competence assessing automaticity from data obtained with Inertial Measurement Units.

Countries

Italy

Outcome results

None listed

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