Clinical Trials Logo

Filter by:
NCT ID: NCT04415775 Not yet recruiting - Parkinson Disease Clinical Trials

Changes in Metabolic Activity, and Gait Function by Dual-task Cognitive Game-based Treadmill Intervention in Parkinson's Disease.

CMAGDT
Start date: June 1, 2021
Phase: N/A
Study type: Interventional

The present proposal will evaluate the neural underpinnings of (a) the decline of mobility function in Parkinson's disease (PD), and (b) the effects of an innovative computer-guided dual-task (DT) mobility training platform (complementary approach: exercise intervention). Improved mobility functioning in PD, specifically balance, gait and cognition, directly translates to improved community ambulation as well as increased physical activity and social participation. These benefits are known to have a significant preventive and disease-modifying impact that surpasses any currently available pharmacological interventions. Outcomes of this research will provide new insights into brain plasticity mechanisms and will accelerate further optimization and commercialization of multi-modal mobility-cognitive training applications along with accompanying smart electronic monitoring tools. With wider usage of this training platform, rehabilitation specialists will be able to effectively scale services, while still monitoring quality and ensuring accountability. Thus, the study is highly transformative.

NCT ID: NCT04406350 Not yet recruiting - Delirium Clinical Trials

Tight End-tidal Gas Control During Anesthesia to Decrease Postoperative Delirium Anesthetic Management

Start date: June 15, 2020
Phase: N/A
Study type: Interventional

Respiratory end-tidal gas control is a fundamental of anesthetic management. The range of end-tidal (ET) O2 and CO2 during the conduct of anesthesia is far outside that found in the awake state. Recent work has indicated that alterations in end-tidal gases may influence the incidence of postoperative delirium (POD). This study will examine the feasibility of tight end-tidal gas control during anesthesia to decrease the incidence of POD.

NCT ID: NCT04405596 Not yet recruiting - Lewy Body Disease Clinical Trials

Ambroxol as a Novel Disease Modifying Treatment for Lewy Body Dementia

Start date: January 2025
Phase: Phase 1/Phase 2
Study type: Interventional

This is a randomized, placebo-controlled, double-blind study investigating whether the medication Ambroxol is safe,effectiveness and well tolerated for the treatment of Lewy Body Dementia (LBD). Currently the main treatments for patients with LBD target symptom management. However, none of the medications treat the underlying cause of the disease, which includes the accumulation of protein in the brain. Therefore, even if patients respond well to symptomatic treatment, they continue to deteriorate. Therefore, the purpose of the current study is to make sure Ambroxol is safe to take long term and to test the effects of Ambroxol in treating the cognitive impairments associated with LBD by modifying the underlying causes of the disease. There will be a total of 15 people participating this this study, which will last 52 weeks. Over the study period patients will undergo clinical, neuropsychological and neuroimaging assessment to assess changes.

NCT ID: NCT04398147 Not yet recruiting - COVID-19 Clinical Trials

Phase I/II Clinical Trial of Recombinant Novel Coronavirus Vaccine (Adenovirus Type 5 Vector) in Canada

Start date: August 1, 2020
Phase: Phase 1/Phase 2
Study type: Interventional

This study is a phase I /II adaptive clinical trial to evaluate the safety, tolerability and the Immunogenicity of Ad5-nCoV in healthy adults from 18 to <55 and 65 to <85 years of age,with the randomized, observer-blind, dose-escalation design

NCT ID: NCT04382014 Not yet recruiting - Healthy Clinical Trials

Pharmacokinetic Study on Three Formulations of Curcumin With Different Carriers

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

Curcumin is a molecule soluble in fat. It has multiple health benefits. Indeed, it has anti-inflammatory and anti-oxidant properties. Curcumin could play a role in preventing diseases such as cancer, inflammatory, cardiovascular and neurodegenerative diseases. Omega-3 fatty acids are also important for good health, as they have positive effects on the cardiovascular and neurological systems. However, curcumin is poorly absorbed by the body when provided in supplements. In order to improve curcumin's absorption, a natural health product that combines curcumin and omega-3 fatty acids has been developped. The goal of this project is therefore to determine the absorption of curcumin when administered in combination with omega-3 fatty acids esterified in monoacylglycerol (MAG). This combination will be compared with a curcumin extract alone or in rice oil. A pharmacokinetic study will be carried out for each of the formulations. Pharmacokinetics (PK) is defined as monitoring the blood concentrations of curcumin over a 24-hour period after taking one of the three different supplements.

NCT ID: NCT04378946 Not yet recruiting - Muscle Spasticity Clinical Trials

Error Augmentation Motor Learning Training Approach in Stroke Patients

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

Deficits in upper limb (UL) functional recovery persist in a large proportion of stroke survivors. Understanding how to obtain the best possible UL recovery is a major scientific, clinical and patient priority. We propose that UL motor recovery may be improved by training that focuses on remediating an individual's specific motor impairment. Our approach is based on evidence that deficits in the control of muscle activation thresholds (spatial thresholds) of the elbow in stroke underlie impairments such as disordered movement and spasticity. Our novel training program focuses on improving the individual's active elbow control range using error augmentation (EA) feedback. Since training intensity and lesion load are key factors in motor recovery that lack guidelines, we will also investigate effects of exercise dose and corticospinal tract (CST) injury on UL recovery. In this multicenter, double-blind, parallel-group, randomized controlled trial (RCT), patients with stroke will participate in an individualized intensive technology-assisted reaching training program, based on error augmentation (EA), in order to improve voluntary elbow function. They will practice robot-assisted reaching in a virtual reality (VR) game setting. We will identify if intensive training with feedback aimed at expanding the range of spatial threshold (ST) control at the elbow (experimental group) is better than intensive training with general feedback about task success (control group). We will also determine the patient-specific optimal therapy dose by comparing kinematic and clinical outcomes after 3, 6 and 9 weeks of intensive training, and again at 4 weeks after training to determine carry-over effects. We will quantify the severity of the participant's motor deficit, as the amount of cortico spinal tract (CST) injury due to the stroke (%CST injury) and relate training gains to their %CST injury. Results of this pragmatic trial will provide essential information for optimizing individualized post-stroke training programs and help determine optimal patient-specific training dosing to improve motor recovery in people with different levels of stroke severity. This type of research involving personalized, impairment-based feedback and dose-effective training has the potential to significantly improve rehabilitation for a greater number of post-stroke individuals and improve the health and quality of life of Canadians.

NCT ID: NCT04354623 Not yet recruiting - Clinical trials for Fall Injury Prevention

Developing a Falls Prediction Tool Using Both Accelerometer and Video Gait Analysis Data in Older Adults

APDM system
Start date: September 2024
Phase:
Study type: Observational

Our group, consisting of academic clinicians and research engineers, seeks to create a database of stability measures (accelerometers, gyroscopes and altitude sensor data) in older adults monitored longitudinally. This Stability Measures (SM) database will allow us to use new machine learning methods to develop and then validate algorithms that predict future falls, allowing for better targeting of vulnerable patients.

NCT ID: NCT04345484 Not yet recruiting - Hiv Clinical Trials

Action for Brain Health Now: Ready, Set, Go

Start date: July 2020
Phase: N/A
Study type: Interventional

HIV (human immunodeficiency virus) can have subtle but important effects on the brain, leading to difficulties in memory, concentration, or problem solving. Goal-setting interventions have been shown to help individuals maintain their physical activity in order to improve brain health. The study objective is to estimate the extent to which goal management training before a personalized healthy lifestyle program is associated with greater adherence to health recommendations, achievement of health-related goals, and better brain health and general health outcomes compared to the healthy lifestyle program alone. Participants will be randomized to either Goal Management Training (GMT) and a Healthy Lifestyle Program (HLP) or the control group (HLP alone).

NCT ID: NCT04325269 Not yet recruiting - Lung Cancer Clinical Trials

Continuous Ambulatory ECG Monitoring for Detection of Postoperative Atrial Fibrillation Following Thoracic Surgery

Start date: April 1, 2020
Phase:
Study type: Observational

Atrial fibrillation (AF) is a common and serious complication after lung resection. The incidence is likely underestimated, and risk may persist after leaving hospital. Recent development of simple wearable patch ECG devices may provide sensitive detection of AF in the extended postoperative period. Specific biomarkers may allow us to predict which patients are at risk of developing postoperative AF.

NCT ID: NCT04323085 Not yet recruiting - Parkinson Disease Clinical Trials

Speech-in-Noise Treatments for Hypophonia in Parkinson's Disease

Start date: July 2020
Phase: Phase 2
Study type: Interventional

Hypophonia, or reduced speech intensity, is the most prevalent speech symptom in Parkinson's disease (PD) and often leads to significant difficulty communicating in most social situations. Behavioural treatments for hypophonia can be temporarily effective but many individuals fail to retain and transfer improvements beyond the context of the speech clinic. The present study will address the transfer of treatment problem using two new treatment programs. Both treatments focus on improving speech intensity during conversations in different social contexts and a wide range of background noise conditions. The Speech-in-Noise (SIN) treatment program involves training higher speech intensity during variable levels of background noise while receiving real-time intensity feedback from a speech therapist. The second treatment, the Speech-to-Noise Feedback (SNF) device treatment program, involves using a wearable SNF device to provide feedback about an ideal target speech-to-noise level in a wide range of background noise conditions. Forty individuals with PD and their communication partners (i.e. spouse) will be randomly assigned to one of the two treatment programs. To evaluate the effectiveness of the treatments, a wearable recording device will measure daily conversational speech intensity and background noise for 7 consecutive days before, 1 week after, and 12 weeks after treatment.