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Gait Disorders, Neurologic clinical trials

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NCT ID: NCT04013971 Recruiting - Stroke Clinical Trials

Innovative Biofeedback Interface for Enhancing Stroke Gait Rehabilitation

Start date: April 4, 2022
Phase: N/A
Study type: Interventional

This study will conduct a preliminary evaluation of and obtain user data on a novel game-based visual interface for stroke gait training. Study participants will complete one session comprising exposure to gait biofeedback systems in an order determined by randomization. Participants will be exposed to 2 types of biofeedback interfaces: - newly developed game-based interface (projector screen display) - traditional, non-game interface

NCT ID: NCT04000373 Completed - Multiple Sclerosis Clinical Trials

Pilot Study of Powered Exoskeleton Use for Gait Rehabilitation in Individuals With Multiple Sclerosis

Start date: July 23, 2019
Phase: N/A
Study type: Interventional

The investigator plans to test the use of the Ekso Bionics® Gait Training (Ekso GT™) exoskeleton for gait training in MS patients. The device will solely be used in the clinic under direct supervision from a physical therapist. This is a small PI-initiated uncontrolled pilot study to gather safety and feasibility data on the exoskeleton in individuals with MS and walking impairment.

NCT ID: NCT03974490 Completed - Stroke Clinical Trials

Effect of RAS on Balance and Gait After Stroke

Start date: April 1, 2019
Phase: N/A
Study type: Interventional

A rhythmic auditory stimulation intervention may be beneficial in order to improve movement parameters after stroke. Reviews argue that more randomized controlled trials with a control group are needed. Main objective: Evaluate the effect of a rhythmic auditory stimulation on the quality of balance and gait parameters in people with stroke. Methodology: quasi-experimental study. The study has been approved by the hospital ethics committee.

NCT ID: NCT03957785 Completed - Gait, Hemiplegic Clinical Trials

Lower Body Positive Pressure Treadmill Training in Post-Stroke Gait Impairment

Start date: June 1, 2017
Phase: N/A
Study type: Interventional

Lower body positive pressure (LBPP) decreases weight bearing and ground reaction forces, with potentially positive effects on qualitative gait indices. However, which gait features are shaped by LBPP gait training in post-stroke patients is still poorly predictable. A pilot study on the effects of LBPP gait training on qualitative and quantitative gait indices in patients with hemiparesis due to stroke in the chronic phase was carried out. Twenty-five patients who suffered from a first, single, ischemic, supra-tentorial stroke occurred at least 6 months before study inclusion were provided with 24 daily sessions of LBPP treadmill gait training using AlterG device. These patients were compared with 25 age-matched healthy controls (HC), who were formerly provided with the same amount of AlterG training, and 25 patients with the same clinical-demographic characteristics of the first group of patients, who previously underwent conventional treadmill gait training (TGT). Qualitative and quantitative gait features, including Functional Ambulation Categories, gait cycle features, and muscle activation patterns were analyzed before and after the training (AlterG or TGT).

NCT ID: NCT03913663 Completed - Hemiplegic Gait Clinical Trials

Microsoft Kinect, Gait Function,Hemineglect, Vestibulo-ocular Training

Start date: May 22, 2019
Phase: N/A
Study type: Interventional

Gait problems in hemineglect patient post stroke , vestibuloocular training plays a role in improving gait function, gait assessment using a model based study (Microsoft Kinect) for pre and post training assesment.

NCT ID: NCT03906032 Recruiting - Hip Fractures Clinical Trials

Comparison of Sliding Hip Screw to Intra Medullary Nailing in the Treatment of Intertrochanteric Hip Fracture

Start date: April 2, 2019
Phase: N/A
Study type: Interventional

Shortening of the abductor lever arm is a particular concern with the SHS, and the resultant biomechanical alterations impairs gait, including decreased cadence and increased double support time on the injured side. The use of a IM nail device may stop this shortening and improve functional parameters in this patient cohort

NCT ID: NCT03869879 Recruiting - Stroke Clinical Trials

Mobility Rehab, a Therapist-assisted System for Gait Rehabilitation

Start date: July 24, 2019
Phase: N/A
Study type: Interventional

Phase II of this study includes a pragmatic clinical trial which will take place at Northwest Rehabilitation Associates (NWRA) in Salem, OR to verify the efficacy of the system in a physical therapy clinic.

NCT ID: NCT03839836 Completed - Child, Only Clinical Trials

Variation of Spatiotemporal Parameters in School Children Carrying Different Backpack Loads

SCBP
Start date: November 2, 2018
Phase: N/A
Study type: Interventional

Backpacks (BP) represent the method most used by students to transport external cargo. Previous studies cite that between 4.7% and 38% of children carry daily BP loads greater than 20% of their body mass. The purpose of this study was to analyze spatiotemporal parameters of gait in children using varyingly loaded BPs.

NCT ID: NCT03805009 Completed - Clinical trials for Cardiovascular Diseases

Efficacy of End-Effector Robot-Assisted Gait Training in Subacute Stroke Patients

Start date: March 19, 2013
Phase: N/A
Study type: Interventional

To date, no studies seems to compare conventional gait rehabilitation program with end-effector RAGT in subacute stroke patients by analysing the variations of gait kinematics beyond clinical multi prospective outcomes. The aim of this pilot study is to evaluate the efficacy of end-effector RAGT in subacute stroke patients in terms of clinical outcomes and gait kinematics, comparing them with conventional gait rehabilitation program.

NCT ID: NCT03787199 Completed - Stroke Clinical Trials

Feasibility of the Overground Bodyweight Supporting Walking System Andago

Start date: May 28, 2018
Phase: N/A
Study type: Interventional

The overall aim of this project is to investigate the clinical utility of the Andago System, a CE certified mobile bodyweight supporting walking robot, in children with neuromotor disorders. Clinical utility encompasses practicability, acceptability, appropriateness, and accessibility. In this study, the investigators would like to investigate several aspects of clinical utility that belong to the first three components.