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Cerebrovascular Accident clinical trials

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NCT ID: NCT06391632 Recruiting - Clinical trials for Postoperative Complications

Construction of a Prediction Model for MACCE in Elderly Patients After Elective Non-cardiac Surgery

Start date: March 1, 2023
Phase:
Study type: Observational

Severe cardiovascular and cerebrovascular complications, including cardiac death, non-fatal angina/myocardial infarction, non-fatal heart failure, stroke, severe arrhythmia, etc., are one of the main types of postoperative complications in elderly patients, and are also the main causes of perioperative death in elderly patients. With the aging population and the large proportion of elderly patients undergoing non-cardiac surgery, it is increasingly important to establish a prediction model for postoperative severe cardiovascular and cerebrovascular events in elderly patients undergoing noncardiac surgery.

NCT ID: NCT06371937 Recruiting - Heart Failure Clinical Trials

iPSC Biobank of Biomarkers Diversity in Cardiovascular Disease

INFERENCE
Start date: May 1, 2024
Phase:
Study type: Observational [Patient Registry]

The Investigators will create a clinical database and a Biobank of stem cells derived from the blood of participants with cardiovascular disease. The Investigators will recruit participants from diverse racial and ethnic backgrounds with equal representation from both sexes. The Investigators expect to create stem cells and analyze the blood for protein biomarkers and genetic causes of cardiovascular disease. The stem cell biobank and clinical data will be a powerful tool for studying cardiovascular disease.

NCT ID: NCT06312306 Recruiting - Stroke Clinical Trials

Transcranial Direct Current Stimulation vs Pilates Core Training in Stroke

Start date: February 25, 2024
Phase: N/A
Study type: Interventional

The goal of this clinical trial is to compare the effects of transcranial direct current stimulation and pilates based core stability training on gait and balance in stroke patients. The main question[s] it aims to answer are: - is there an effect of transcranial direct current stimulation and pilates based core training on gait and balance - Is there a significant effect of tDCS over Pilates-based core training Participants will be assigned to three groups: - Group 1: will receive 18 sessions(3 sessions/week 20 minutes each) of anodal tDCS in addition to conventional physical therapy exercises - Group 2: Will receive 18 Pilates exercise sessions over a period of 6 weeks (3 sessions / week) in addition to conventional physical therapy exercises. - Group 3: Will receive conventional physiotherapy program Researchers will compare the transcranial direct current stimulation group with the pilates exercise group to see if one of them is superior to the other on balance and gait.

NCT ID: NCT06212219 Recruiting - Clinical trials for Cerebrovascular Accident

Neurofeedback-EEG Rehabilitation Protocol on Motor Recovery in the Subacute Phase Post-stroke (CUSTOM-NF-STROKE)

Start date: January 8, 2024
Phase: N/A
Study type: Interventional

Neurofeedback (NF) is a procedure for providing direct sensory feedback (in the form of visual, auditory or tactile stimulation) to a patient about their brain activity when performing a cognitive or motor task. This NF aims to allow the patient to become aware of this brain activity and thus learn to modulate it voluntarily in order to improve the performance obtained on the task. The aim of the study is to compare a "standard NF" procedure to a "personalized NF" procedure designed to optimize the level of patient acceptability based on the results obtained through these questionnaires.

NCT ID: NCT06107010 Recruiting - Stroke, Acute Clinical Trials

Effects of Atalante Exoskeleton on Gait Recovery in Non- or Poorly Ambulatory Patients With Hemiparesis in the Acute/Subacute Phase (Month 1 to 4)

EarlyExo
Start date: June 12, 2023
Phase: N/A
Study type: Interventional

The present clinical investigation - EarlyExo, is an interventional, international, multicentric, prospective, single-blinded randomized controlled trial. This clinical investigation is designed to test the hypothesis that early and intense introduction of walking sessions assisted by the Atalante exoskeleton, in a sample of hemiparetic patients with still non or poor ambulatory capacities (FAC 0 or 1) between one- and four-months post stroke, would result in a better recovery of functional walking compared to a control group only receiving conventional therapy. Improved recovery will be measured through the proportion of patients reaching a FAC score of 4 or higher at the end of the intervention period. The tested hypothesis is that this proportion will be higher in the Exo group. The duration of the intervention period in both groups is 6 weeks. - For the Exo group: 3 sessions per week (i.e., 18 one-hour sessions) with the Atalante device and 2 sessions per week (i.e., 12 one-hour sessions) of conventional therapy. - For the Control group: 5 sessions per week of conventional therapy (i.e., 30 one-hour sessions). The study will include 66 patients (33 in each arm) and takes place in two French centers, two German centers and one Spanish center.

NCT ID: NCT05720156 Recruiting - Stroke Clinical Trials

Immunomodulatory Effects of PCSK9 Inhibition

INSPIRAR
Start date: April 4, 2024
Phase:
Study type: Observational

Cardiovascular disease (CVD) represents the leading cause of death worldwide. While medications, such as statins, significantly reduce atherosclerotic CVD (ASCVD) risk by lowering low density lipoprotein levels, they may also have pleiotropic effects on inflammation. The immunomodulatory effects of these medications are relevant to ASCVD risk reduction given that inflammation plays a central role in atherosclerotic plaque formation (atherogenesis) and influences the development of vulnerable plaque morphology. Patients on statins, however, may have residual inflammation contributing to incident ASCVD despite the potent LDL-lowering effects of statins. While new therapies, such as proprotein convertase subtilisin/kexin type 9 (PSCK9) inhibitors, further reduce incident ASCVD and drastically reduce LDL-C below that achieved by statin therapy alone, PCSK9 inhibitors may also have pleiotropic effects on inflammation. Thus, PCSK9 inhibitors may help reduce arterial inflammation to a level closer to that of patients without ASCVD. This study will apply a novel targeted molecular imaging approach, technetium 99m (99mTc)-tilmanocept SPECT/CT, to determine if residual macrophage-specific arterial inflammation is present with statin therapy and the immunomodulatory effects of PSCK9 inhibition. Given the continued high mortality and morbidity attributable to ASCVD, strong imperatives exist to better understand the immunomodulatory effects of lipid lowering therapies and residual inflammatory risk. This understanding, in turn, will inform the development of new ASCVD preventative and treatment strategies as well as elucidate other indications for established therapies.

NCT ID: NCT05651945 Recruiting - Stroke Clinical Trials

Cardiac Rehabilitation of Stroke Survivors (SRP-CROSS)

SRP-CROSS
Start date: January 20, 2023
Phase: N/A
Study type: Interventional

This study examines the effectiveness of the cardiac rehabilitation program for stroke patients. The study will examine if patients with stroke, who receive cardiac rehabilitation in addition to their standard of care treatments, demonstrate improved recovery of function. It will also examine if these patients have reduced hospital readmission, reduced rate of recurrent stroke, and mortality.

NCT ID: NCT05644522 Recruiting - Multiple Sclerosis Clinical Trials

Nomad P-KAFO Study

Start date: March 1, 2024
Phase: N/A
Study type: Interventional

The goal of this clinical trial is to evaluate the impact of using the Nomad powered KAFO in people who have had a musculoskeletal or neurological injury that has affected their ability to walk. The main questions it aims to answer are to quantify the effectiveness of the Nomad in improving mobility, balance, frequency of falls, and quality of life in individuals with lower-extremity impairments compared to their own brace, over three months of daily home and community use. Participants will: - Wear a sensor that records everyday activities and mobility. - Perform measures of mobility and different activities of participation using their own brace. - Perform measures of mobility and different activities of participation using the Nomad powered KAFO

NCT ID: NCT05241457 Recruiting - Stroke Clinical Trials

Achieving Meaningful Clinical Benchmarks With Ekso Gait Training During Acute Stroke Inpatient Rehabilitation.

Start date: March 11, 2022
Phase:
Study type: Observational

The Ekso (Ekso Bionics) is a wearable exoskeleton that provides robotic support and walking assistance for patients with lower extremity paralysis. Research suggests that exoskeleton-assisted gait training is as effective as conventional gait training at improving walking outcomes and balance during both the chronic and subacute period following stroke (Goffredo et al., 2019; Molteni et al., 2017; Molteni et al., 2021; Nam et al., 2019; Rojek, 2019). Exoskeleton-assisted gait training during acute inpatient rehabilitation provides a means for patients to actively participate in gait training during the early and most severe stages of stroke recovery. Most acute inpatient rehabilitation facilities (IRFs) report a feasibility of 5-8 Ekso sessions during inpatient stays and demonstrate significant improvement from baseline (Nolan et al., 2020; Swank, 2020). Nolan et al. (2020) demonstrated that stroke patients receiving Ekso ambulated 1640 feet more than patients undergoing more conventional gait training techniques during inpatient rehabilitation, suggesting that the exoskeleton may offer additional benefit during this phase of recovery. Despite promising evidence, there have been no randomized controlled trials within the IRF setting. Because Ekso-gait training increases the number of steps patients can take, during acute inpatient physical therapy (PT), the investigators hypothesize that patients who participate in Ekso-gait training will demonstrate quicker improvements in balance, gait speed, endurance and independence in functional ambulation during their stay in the IRF. In this study, eligible patients admitted to Sunnyview Rehabilitation Hospital (SRH) for rehabilitation following stroke will be randomized to receive conventional or Ekso-gait training therapy. Meaningful clinical benchmarks for balance and walking will be assessed using the Berg Balance Scale (BBS) (Alghadir, 2018; Moore, 2018), the 10 Meter Walk Test (10MWT) (Bowden, 2008; Moore, 2018), the Six Minute Walk Test (6MWT) (Kubo et al., 2020; Moore, 2018), and Functional Ambulation Category (FAC) (Mehrholz, 2007). Achieving these benchmark scores are associated with several positive outcomes, including increased ability to ambulate in the community and reduced risk of falling (Alghadir, 2018; Bowden, 2008; Kubo et al., 2020). The investigators also hypothesize that patients in the Ekso cohort will report greater value/usefulness when compared to patients receiving standard care.

NCT ID: NCT05238272 Recruiting - Clinical trials for Cerebrovascular Accident

Novel Brain Neurotechnology for Optimizing Precision Mirror Therapy in Stroke

Start date: March 1, 2022
Phase: N/A
Study type: Interventional

The primary aim of this project will be to determine the effects of the tRNS-augmented unilateral and bilateral MT, and their effects relative to the control interventions (sham tRNS with unilateral or bilateral MT) on restoring health outcomes including motor function, daily function, quality of life and self-efficacy, and motor control strategy as well as brain activities (electroencephalography, EEG) in stroke patients.