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Gait Disorders, Neurologic clinical trials

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NCT ID: NCT03662139 Completed - Cerebral Palsy Clinical Trials

Dynamic Gait Index in Hemiplegic Cerebral Palsy

Start date: April 1, 2018
Phase:
Study type: Observational

The purpose of this study is to assess validity and reliability of Dynamic Gait Index (DGI) in patients with unilateral spastic cerebral palsy

NCT ID: NCT03655587 Completed - Clinical trials for Chemotherapy-induced Peripheral Neuropathy

Impact of an Orthotic Intervention in Children With Peripheral Neuropathy

IOPN
Start date: September 20, 2016
Phase: N/A
Study type: Interventional

This research study will investigate the effect of two orthotic (brace) devices for the ankle and foot on walking and ankle flexibility in children with cancer not involving the brain or spinal cord.

NCT ID: NCT03605290 Completed - Surgery Clinical Trials

Comparison Between Two Operational Techniques for Total Knee Replacement

Start date: June 15, 2018
Phase: N/A
Study type: Interventional

Advance Knee osteoarthritis is treated by Total knee replacement. Since the first TKR in 1973 there has been continuous advance in implant technology as well as operative technique, yet current patient satisfaction after the procedure is accepted to be about 80%. There are a few operative techniques to perform TKR. Until recently the most common technique is the anterior approach to the knee and then using mechanical instrumentation to make the bone cuts for the femur and tibia. A second popular technique is the anterior approach to the knee and then using a kinematic alignment to make the bone cuts. The investigators wish to compare short term results of the two operative techniques as evidenced in patient objective functional scores and also by evaluating the gait of the patients by using the REHAGAIT ANALYZER PRO by HASOMED inc. Magdeburg Germany.

NCT ID: NCT03593512 Completed - Clinical trials for Multiple System Atrophy

Deep Brain Stimulation for Autonomic and Gait Symptoms in Multiple System Atrophy

STAG-MSA
Start date: September 9, 2018
Phase: N/A
Study type: Interventional

Patients referred to neurosurgery routinely and safely undergo deep brain stimulation (DBS) for treatment of symptoms related to neurodegenerative conditions, most commonly Parkinson's disease. In the investigators experience, and published evidence shows, that stimulation has effects on the autonomic nervous system. In patients undergoing therapeutic DBS for a particular subtype of Parkinsonism, Multiple System Atrophy, the further effects on autonomic parameters such as blood pressure and bladder symptoms as well as the originally intended indications (gait and movement disorder) will be investigated. The mechanisms of any effects will also be studied by using a number of techniques such as magnetoencephalography (MEG) and Muscle Sympathetic Nerve Activity (MSNA) recording. Key goals are to: 1. Demonstrate that stimulation of the peduculopontine nucleus (PPN) improves autonomic function and has an attendant improvement on patients' quality of life 2. Investigate the role of the PPN and how it interacts with other brain areas. This translational strategy will lead to a larger efficacy study of DBS for MSA as well as revolutionizing neural-based treatments in other autonomic disorders such as orthostatic hypotension and pure autonomic failure.

NCT ID: NCT03588663 Completed - Stroke Clinical Trials

Effect of Using a Bionic Leg on Physiological and Biomechanical Measures in Stroke Patients

Start date: August 10, 2018
Phase: N/A
Study type: Interventional

This study will assess the effect of wearing a wearable bionic leg, on the physiological cost index and biomechanical measures in patients with stroke. Patients will be tested during a range of activities (sit-to-stand, walking) with and without the Bionic Leg, and following a 30-min training program.

NCT ID: NCT03558100 Completed - Obesity Clinical Trials

Reducing Fall Risks for Adults With Obesity

ObesityFalls
Start date: September 1, 2014
Phase: N/A
Study type: Interventional

The objective of the clinical study was to examine if practice could improve walking patterns associated with fall risks before patients with obesity underwent weight loss surgery. We hypothesized that patients would show improvements in their walking after completing the intervention. For the intervention, patients walked under five conditions: on flat ground at the beginning of the study, crossing three obstacle heights, and on flat ground at the end of the study for a total of 25 times.

NCT ID: NCT03554642 Completed - Ischemic Stroke Clinical Trials

Walkbot Robotic Training for Improvement in Gait

Start date: September 2016
Phase: Phase 3
Study type: Interventional

This clinical study will involve up to 30 ischemic stroke inpatients during their stay at Burke Rehabilitation Hospital. Participants will be randomized to receive 30 additional minutes of therapy every day, for a total of 2 weeks (14 days). One group will receive 30 minutes of standard physical therapy focused on pre-gait or gait training activities, while the experimental group will receive 30 minutes of Walkbot with Augmented Reality. Both groups will receive the same time in therapy aimed at gait training.

NCT ID: NCT03548090 Completed - Stroke Clinical Trials

The Effects of Plantar Flexion Training in People With Chronic Stroke

Start date: October 1, 2018
Phase: N/A
Study type: Interventional

This study consists of three phases that aim to develop an exercise intervention to promote maximal activation of ankle plantar flexors in the paretic lower extrimty (LE) in order to restore a more normalized gait pattern in chronic stroke survivors. The aim of the first phase is to determine if there are differences between standing on different levels of inclination on plantar flexion activation during forward movement of the contralateral LE in adults with chronic with stroke. The aim of second phase is to determine if there are differences between different percentages of weight bearing on the paretic LE on plantar flexion activation during forward movement of the contralateral LE in adults with chronic stroke. The aim of the third phase is to determine if there are differences between a 4-week plantar flexion training intervention and conventional physical therapy.

NCT ID: NCT03528993 Completed - Stroke Clinical Trials

The Effect of Exercise by Mechanical Hippotherapy Device on Postural Stability and Balance in Stroke

Start date: April 1, 2018
Phase: N/A
Study type: Interventional

Stroke,one of the leading cause of death, is caused by ischemia or hemorrhage. It results in neurological deficits such as hemiplegia. Hemiplegia show disability characterized loss of motor, sensory and cognitive function. Reduced postural control and balance stability results gait disturbances such as asymmetric weight bearing, risk of falling and imbalances. It also shows increased energy expenditure, decreased independence on quality of life and limited mobility. Physical therapy can be effective method for solving these problems. Hippotherapy, also known as horseback riding therapy, is a form of physical therapy strategy that uses equine movement. The concept of hippotherapy is to use a horse as a therapeutic tool, and it is based on similarities in gait between the human and horse. The horse's gait provides patients having motor disabilities with rhythmic and repetitive movements similar to human walking, thereby giving them training opportunities to improve posture, balance, and strength. Even though it has many effect on solving these problems, hippotherapy centers are not enough. Due to climate and environmental situations, hippotherapy devices were improved and had similar effects on patients with stroke. In literature, these device mostly used on cerebral palsy, but investigator wants to use hippotherapy device on patient with Hemiplegia. For these reasons, the effects of exercises by mechanical hippotherapy device on postural control and balance will be investigated.

NCT ID: NCT03477578 Completed - Parkinson Disease Clinical Trials

Freezing of Gait and Cognition

FOG-As-PD
Start date: December 1, 2017
Phase:
Study type: Observational [Patient Registry]

The study was aimed to investigate the role of cognition n in FoG.