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Stroke clinical trials

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NCT ID: NCT04498429 Completed - Clinical trials for Hemiplegia and/or Hemiparesis Following Stroke

Effect of Integrated Cueing on Functional Transfers in Chronic Stroke Survivors

EOIC
Start date: November 6, 2020
Phase: N/A
Study type: Interventional

Physical therapists frequently use manual cueing as a tool to improve movement quality in persons recovering from stroke but evidence to support its effectiveness is lacking. The purpose of this graduate student research study is to determine the immediate and carryover effects of an integrated verbal and manual facilitation approach used by physical therapists during sit to stand training on the midline alignment, muscle activation and quality of movement in chronic stroke survivors with hemiplegia.

NCT ID: NCT04497545 Completed - Ischemic Stroke Clinical Trials

The Influence of EMG-triggered Robotic Movement on Function and Mobility of Stroke Patients

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

Rehabilitation of lower limbs after a stroke supported by robots aims to return to independence and minimize disability caused by the incident, but the results have been mixed. Objective of the study was to assess the changes in gait capabilities, muscle tone and daily activities in patients after a recent stroke who underwent a 6-week supervised rehabilitation process using exercises on the LUNA EMG neurorehabilitation robot. A total of 60 participants with impaired motor function and gait after subacute stroke were included in the study. Each patient was randomly assigned to an intervention (robot) or control group (RG or CG). All patients, except standard therapy, underwent 1 session of therapy per day, 5 days a week for 6 weeks. People with RG had 30 minutes of training sessions on the Luna EMG robot, while CG received exercises on the lower limb rotor. Patients were evaluated before the start of the study, and then after 2, 4 and 6 weeks of therapy using the Ashworth scale, Rivermead mobility index (RMI), Repty functional index, Time Up and Go test (TUG) and muscle circumference on the thigh.

NCT ID: NCT04496076 Completed - Clinical trials for Traumatic Brain Injury

COVID-19 Brain Injury

Start date: April 2, 2020
Phase:
Study type: Observational

A prospective cohort minimal risk study to determine the impact of the COVID-19 crisis on outcomes of neurologically injured ICU patients.

NCT ID: NCT04494685 Not yet recruiting - Stroke Clinical Trials

Effects of Robotic Rehabilitation in Post-Stroke Patients

Start date: August 1, 2020
Phase: N/A
Study type: Interventional

This study aims to evaluate the effect of robotic rehabilitation through training on a robot-assisted orthostatic board and neuromuscular electrical stimulation (NMES) on functionality in post-stroke patients. In this randomized controlled trial the patients will be allocated to a control group (which will receive conventional physiotherapy) or or to intervention group (which will receive conventional physiotherapy and robotic rehabilitation). Interventions will occur every day in the hospital phase and three times/week after discharge, totaling 18 sessions.The groups will be evaluated prior to any physiotherapy intervention, in the 10h session and at the end of six weeks of treatment (or 18 sessions).The following outcomes will be measured: functionality, peripheral muscle strength, muscle architecture and echogenicity, spasticity, cardiorespiratory repercussions, mobility, disability and dependence, quality of life and time of hospital stay.

NCT ID: NCT04491695 Recruiting - Acute Stroke Clinical Trials

Tirofiban for the Prevention of Neurological Deterioration in Acute Ischemic Stroke

TREND
Start date: September 12, 2020
Phase: Phase 2/Phase 3
Study type: Interventional

Currently, dual antiplatelet therapy with aspirin and clopidogrel (with loading doses) is widely used for patients with acute ischemic stroke. However, immediate, potent and reversible inhibition of platelet aggregation is not possible. Additionally, more than 5% patients have aspirin resistance and more than 15% patients have clopidogrel resistance. Therefore, an intravenously administered GPIIb/IIIa receptor inhibitor (Tirofiban) receptor blocker with fast onset and offset of actions will provide more desired antiplatelet effects in the setting of acute ischemic stroke, especially in patients with high risk of neurological deterioration. This study will measure the anti-platelet effects of Tirofiban in patients with acute ischemic stroke who had high risk of neurological deterioration.

NCT ID: NCT04491279 Not yet recruiting - Stroke Clinical Trials

Neuropilates Compared to General Exercise Classes in Chronic Stroke

Start date: October 30, 2020
Phase: N/A
Study type: Interventional

This is a pilot randomised controlled feasibility study investigating the effects of a neuropilates exercise class compared to a generalised exercise in the post stroke population. This study is being conducted as part of an MSc qualification at the Institute of Technology, Sligo in Ireland. The study will be conducted in conjunction with Sligo University Hospital and it attained ethical approval through the relevant University Hospital Ethics Committee.

NCT ID: NCT04491162 Completed - Stroke Clinical Trials

The Effect of Body Weight Support Treadmill Training on Lower Limb Function in Patients With Chronic Stroke

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

Stroke has severe debilitating neurological consequences for the victim. Within context of this study, gait disturbance is induced by disabilities in muscle weakness, abnormal muscle contraction, or postural control. Gait disturbance has an unfavorable effect on functional independence and prognosis of patients. Due to this reason, recovery in gait ability of stroke patients is considered as a very important goal in rehabilitation. Body weight supported treadmill training (BWSTT) is a task-oriented technique for gait restoration after stroke. The present study focused on the possibility of BWSTT as a special program for improving gait ability. The purpose of this study was to evaluate the effectiveness of a BWSTT intervention useful as a short-term intensive program for chronic stroke survivors.

NCT ID: NCT04490655 Completed - Stroke Clinical Trials

Active Somatosensory Exercise for Chronic Stroke

ActSens
Start date: March 1, 2021
Phase: N/A
Study type: Interventional

The current work aims to examine whether the proposed rehabilitation training or exercise will eventually yield improvements in both motor and somatosensory aspects at one goal. Here, the word 'somatosensory' refers to bodily sensations associated with proprioception or kinesthesia, not the sensation of touch, pain, and temperature. The study focuses on upper limb retraining for community-dwelling stroke survivors using a robotic device. At the end of training, both movement accuracy and somatosensory acuity in chronic stroke survivors are presumed to improve, and such paradigm is expected to provide reliable benefits as compared to conventional intervention alone.

NCT ID: NCT04488692 Completed - Acute Stroke Clinical Trials

Early Functional Training in Acute Stroke Inpatient Ward

Start date: September 1, 2020
Phase: N/A
Study type: Interventional

To investigate the difference between two models of an early intervention program (focused on mobility function) in the functional recovery 3 months post stroke in a group of patients with acute ischemic stroke while in acute inpatient ward hospitalization.

NCT ID: NCT04488250 Active, not recruiting - Stroke Clinical Trials

Robot-Assisted Rehabilitation After HIV-Associated Stroke: Botswana

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

Today, nearly 37 million people are living with HIV (PLHIV) worldwide and 30 to 40% of them will have neurologic complications leading to disability. Our long-term working hypothesis is that an effective solution for increasing rehabilitation access in Botswana and improving functional outcomes of PLHIV having experienced a stroke with or without HIV uses an affordable robot and mobile health technologies to create a cost-effective intervention strategy. For this project, we test the feasibility of affordable robot therapy.