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Gait Analysis clinical trials

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NCT ID: NCT06264999 Not yet recruiting - Arthroplasty Clinical Trials

Robotic Assisted Knee Arthroplasty - Retain the Anterior Cruciate Ligament or Not

Start date: March 2024
Phase: N/A
Study type: Interventional

The goal of this clinical trial is to compare the function of the knee after retaining or sacrificing the anterior cruciate ligament in robotic assisted knee arthroplasty. The main questions it aims to answer are: Does retaining the anterior cruciate ligament improve postoperative gait? Participants will perform - Gait analysis - Stair performance test - CT based Micromotion analysis of the implant micromovement

NCT ID: NCT05855577 Not yet recruiting - Parkinson Disease Clinical Trials

Motor Function Efficacy of Pharmacological Treatments Targeting Energy Metabolism, in Parkinson's Patients

Start date: December 2023
Phase: Phase 4
Study type: Interventional

Consistent evidence suggests that mitochondrial dysfunction plays a crucial role in Parkinson¿s disease pathogenesis. Inhibition of complex I of the mitochondrial electron transport chain is sufficient to reproduce biochemical and pathological features of Parkinson¿s Disease in animal models (PD). Alterations of mitochondrial energy metabolism may intervene in PD pathogenesis by inducing inflammation, generation of reactive oxygen species (ROS), and neurodegeneration. The Nuclear factor erythroid 2-related factor 2 (Nrf2) is a regulator both of mitochondrial function and biogenesis, and of cellular resistance to oxidative stress, and may represent a novel target of PD disease-modifying therapies. The aims of the present study are to validate indicators of energy metabolism as biomarkers in PD patients and to evaluate the efficacy of drugs and natural food supplements acting on the Nrf2 pathway in improving motor impairment and Gait in PD patients.

NCT ID: NCT05305755 Not yet recruiting - Gait Analysis Clinical Trials

Reliability of a Gait Analysis System

Start date: May 2022
Phase:
Study type: Observational

Gait disturbances can be observed in all age groups, and may be due to different conditions, such as advanced age, stroke, head trauma, spinal cord injury, cerebral palsy, myelomeningocele, among others. The aforementioned gait disorders are associated with an increased risk of falls (which can cause major fractures or head trauma), decreased mobility, loss of independence, cardiovascular pathology, and decreased quality of life. In order to improve a given abnormal gait pattern, an objective assessment of gait is necessary. There are several methods to carry out gait evaluations, like Instrumented Gait Analysis (High cost, time-consuming, qualified professionals needed) and the ones based on observation (limited reliability and validity). An alternative, is the use of video-based systems. SILEMA (Computer System for Gait Study Laboratories in Argentina) is a video-based low-cost gait analysis system that measures temporo-spatial (speed, step length, cadence, stance and swing times) and joint kinematic (Hip, Knee, Ankle) parameters. Its reliability has not been reported yet; thus the primary aim of this study is to determine both the "intra-evaluator" (same evaluator, different sessions) and "inter-evaluator" (same session, different evaluators) reliability.