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Post-stroke clinical trials

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NCT ID: NCT06099340 Not yet recruiting - Post-stroke Clinical Trials

Effects of an Eccentric Muscle Strengthening Protocol on Force Moment, Muscle Activation and Plantar Flexor Structure of Patients With Central Nervous System Injuries.

RenfExc
Start date: January 2024
Phase: N/A
Study type: Interventional

Neurological disorders [such as Cerebral Vascular Accident (CVA) or Spinal Cord Injury (SCI)] are among the most costly health problems to society in industrialized countries. For those affected, they generate severe restrictions in mobility, significantly altering their quality of life. Deterioration in motor function after stroke or BM is closely linked to the level of force produced at joint level. This is influenced by adaptations (neurological and tissue) inherent to the pathophysiology of the injury, and characterized by the presence of a spastic paresis syndrome. A great deal of effort is devoted to motor neurorehabilitation (particularly physiotherapy) in the days and weeks following neurological injury. This so-called sub-acute rehabilitation phase is designed to have a positive impact on the patient's motor recovery (to prevent the development of spastic paresis), and to prevent future severe limitations in the long term. Disorders observed in the chronic phase (partial recovery of strength, severe orthopedic deformities) demonstrate the limits of current therapies. In view of the results obtained in healthy subjects, eccentric training now seems to be one of the most promising physiotherapy methods for recovering muscle strength and countering neurological disorders. However, its use in the sub-acute rehabilitation phase has never been evaluated in post-stroke or post-BM patients, either in terms of its effects on the strength developed in the strengthened muscles, or more locally on the neurological and tissue disorders found in these patients in the context of spastic paresis. The aim of this project is to evaluate the effects of an eccentric muscle-strengthening exercise protocol on neurological patients in the sub-acute phase of their neurological impairment. The protocol will be applied to the ankle joint, given its importance for walking and the significant deficits found at this level in neurological populations.We hypothesize that the strengthening protocol will improve muscle strength at the ankle, and generate beneficial adaptations to combat the spastic paresis syndrome (improved muscle activation, increased muscle length, muscle volume, etc.).

NCT ID: NCT06009770 Not yet recruiting - Multiple Sclerosis Clinical Trials

Telerehabilitation Protocols With Digital and Robotic Tools for People With Chronic Neurological Disorders

Start date: September 1, 2023
Phase: N/A
Study type: Interventional

The goal of this clinical trial is to test an innovative telerehabilitation protocol in people with Chronic Neurological Disorders (Parkinson's disease, Multiple Sclerosis, and post-stroke). The main questions it aims to answer are 1)the usability and acceptability of the system; 2)the level of safety of intervention; 3) the efficacy of the telerehabilitation protocol. Participants will be randomized (with an allocation ratio of 1:1) into either the experimental group (20 sessions of motor telerehabilitation with digital and robotic tools) or the active control group (20 motor rehabilitation sessions performed at home according to the usual care treatment procedure). Researchers will compare the experimental group and the active control group to see if the TR protocol with digital and robotic tools is effective in reducing the perceived level of disability.

NCT ID: NCT03751306 Not yet recruiting - Surgery Clinical Trials

Aerobic Exercise and Transcranial Low Laser Therapy in Patients With Central Nervous System Injury

Start date: January 14, 2019
Phase: N/A
Study type: Interventional

Objective of this protocol will be to evaluate the parameters related to the function of the musculoskeletal and cardiorespiratory system, through a rehabilitation and training program for people with acquired central nervous system and multiple sclerosis. The study will consist of volunteers with acquired CNS lesions and multiple sclerosis of both sexes, between 18 and 85 years old, and who wander with or without aid devices, randomly divided into 3 groups: Group 1 (cardiopulmonary treatment), Group 2 (cardiopulmonary treatment and transcranial photobiomodulation application) and Group 3 (cardiopulmonary treatment and placebo laser). All groups will receive aerobic training on a treadmill (Moviment®) with the aid of a suspension equipment (BrainMov® Physical Activity Station). The transcranial photobiomodulation (laser diode, λ = 810 nm, beam area 0.028 cm², power of 100 mW, power density of 3.5 mW / cm², energy of 3 Joules / point and energy density of 107.1 J / cm2) will be applied on the skin / scalp and the International System 10-20 at points F7, F8 and AFz will be used as reference for irradiation. Muscular activation, heart rate variability, lung volumes and capacities, fatigability, exercise tolerance, cognition and quality of life will be evaluated before, during, at the end and after two months of rehabilitation. The treatment proposed in this study, using transcranial photobiomodulation, is expected to improve muscle, sensory, cardiorespiratory, cognitive functions and to interfere positively in the quality of life of the volunteers.

NCT ID: NCT03638570 Not yet recruiting - Stroke Clinical Trials

Altered Connections in the Spinal Cord to Reduce Hand Impairment After Stroke

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

The purpose of the study is to induce plasticity in corticospinal-motoneuronal synapses serving an intrinsic hand muscle of the hemiparetic limb in humans with stroke. Neurologically-intact controls are included to verify that an effect was present in absence of stroke. Outcome measures in controls also provide a reference point that help us to understand the size of the effect and mechanisms mediating the effect in the neurologically-intact system.