View clinical trials related to Cognitive Dysfunction.
Filter by:The main purpose of this study is to investigate the safety and efficacy of Yi-Zhi-An-Shen Granules in participants with amnestic mild cognitive impairment (aMCI).
Dexmedetomidine is a drug with sedative, anxiolytic, and analgesic properties. Benefits of its use covers good sedations without respiratory suppression, reduced circulating catecholamines due to decreased sympathetic transmission and nociceptive transmission blocking resulting in lower needs for postoperative pain management. All these features are beneficial for cardiac surgery patients. What is more, it was find as an anesthesia agent. Recently some protective effects were find, like reduced postoperative delirium occurrence with cardiac surgery dexmedetomidine sedated patients. Other study revealed that patient receiving dexmedetomidine during cardiac surgery and in the first 24 h postoperatively showed significant reductions in in-hospital and 30-day mortality as well as postsurgical delirium. Although dexmedetomidine appears to reduce postoperative delirium, its role in prevention of neurological injury has not been well studied. To fulfil this gap we designed the study to investigate effects of dexmedetomidine use during cardiac surgery (with cardiopulmonary bypass - CPB) and in the first hours postoperatively on biomarkers of brain injury and cognitive function.
This study evaluates the benefits of exoskeleton-based exercise for improving mood and cognition in people with Parkinson's disease (PD). Participants with PD will be assigned one of three treatments delivered over 8-weeks: exoskeleton exercise (experimental intervention), non-exoskeleton exercise (active comparator), and wait-list control (no treatment).
This is a single-center, randomized, double-blinded placebo for the first 6 months of treatment in subjects with mild cognitive impairment. Open-label treatment, with all subjects receiving active treatment, for the next 6 months of study.
The primary aim of our study is to investigate the specificity, the sensitivity, and the overall diagnostic accuracy of the MoCA for mild and major NCD in a German-speaking population. Secondary aims are: (1) to study the MoCA performance in different patient groups and (2) to compare the diagnostic properties of the MoCA with the ones of the MMSE (i.e., the current reference standard for screening of MCI).
This randomized controlled trial is aimed at studying the effects of an eHealth intervention on improving metabolic control and other cardiovascular risk factors (obesity, lipidic profile and hypertension) as the approach to prevent or delay the process of cognitive impairment, and to reduce conversion rates to Alzheimer's disease (AD) in a sample of patients diagnosed of type 2 diabetes mellitus (T2D) and with mild cognitive impairment (MCI). For these purposes, the standard clinical treatment for this type of patients will be compared with two types of interventions (parallel groups): one aimed at promoting adherence to treatment through the use of a smart pillbox; and the other intervention will be based on the use of the smart pillbox plus and interactive digital platform allowing communication between patients and caregivers with healthcare professionals. Both interventions are targeted to improve adherence to treatment. The hypothesis is that the rate of conversion from MCI to AD will be higher in the control group than in the intervention groups (higher conversion rates are expected in control group, followed by the smart pillbox group, and lower conversion rates are expected in the group using the interactive digital platform and the smart pillbox).
Vascular cognitive impairment (VCI) is one of the most frequent causes of cognitive impairment associated with aging. So far, there is no approved treatment for VCI. Recent studies have suggested a protective effect from physical activity but adequate studies are lacking in this field. The AFIVASC study - a Portuguese acronym for "physical activity in vascular cognitive impairment" is a randomized controlled study, single-blinded, nonpharmacological which aims to explore the benefits of physical activity in vascular cognitive impairment (VCI)
A DIGITAL THERAPEUTIC TO IMPROVE THINKING IN MULTIPLE SCLEROSIS WHO: 65 participants with a confirmed diagnosis of Multiple Sclerosis (MS) WHY: Purpose of the study is to compare the effect of 2 tablet-based brain training digital tools on important components of thinking (cognition). WHAT: Complete a set of tests (physical and cognitive) at baseline, 6 weeks and 14 weeks, and use one of two brain training tools on an iPad in your home, for 25 minutes a day, 5 days a week, for 6 weeks. WHERE: UCSF WEILL INSTITUTE FOR NEUROSCIENCES (675 Nelson Rising Lane, San Francisco, CA)
It is estimated that 30% of Alzheimer's disease cases globally are associated with changeable risk factors, such as diet and physical activity. In particular, a Mediterranean diet (MD) has been associated with reduced risk of cognitive decline and improved brain function. The investigators developed educational resources on the Mediterranean diet and lifestyle (THINK-MED) in accordance with the Medical Research Council guidance for developing and evaluating complex interventions, based on a systematic literature review and informed by qualitative work with patients with mild memory problems.The feedback gathered informed refinements and tailoring of the resource and overall MD intervention. This study aims to evaluate feasibility of the "THINK-MED" Mediterranean lifestyle educational intervention to encourage dietary behaviour change among community-dwelling people with subjective cognitive impairment.
The aim of the project is to examine whether children's sleep and cognition are affected by exposure to CO2 and other bio effluents during sleep. The participants of the study are 36 children recruited from local schools in Aarhus, Denmark. The study takes place in the climate chambers at the Department of Public Health, Aarhus University. These chambers allow for experimental testing on humans with advanced exposure generation while avoiding contamination from other sources and controlling temperature, humidity, noise, odor, and light. The children will be sleeping in the chambers under three different conditions: - One night of good ventilation with a CO2 level of maximum 800 ppm - One night of good ventilation with high levels of CO2 (3,000 ppm) - One night of poor ventilation with high concentrations of CO2 (3000 ppm) and other bio effluents. The study is a within-group design, and groups of six children will be sleeping in the chambers for three nights (separated by seven days). The different groups of children are exposed to the conditions in a randomized order. The study is double-blinded (of security reasons the persons responsible for CO2 concentrations in the chambers are not blinded). The study takes place on schools nights. The children arrive at 6 pm and leave for school the morning after. In the evening the children are tested for approximately 30-40 minutes to measure their cognitive performance using CANTAB (Cambridge Neuropsychological Test Automated Battery) on iPads. After completing the test, dinner is served and the children have some spare time before going to bed. During night, the quality of sleep (awake time and different sleep stages) will be monitored using Fitbit devices. Sleep quality will also be evaluated using a short sleep questionnaire. The next morning the cognitive performance of the children will be tested again using CANTAB before the children leave for school. Our primary hypothesis is that children will perform worse on the cognitive test when exposed to high levels of CO2 and other bio effluents than compared to low levels of CO2 and bio effluents in a well-ventilated room. In addition to that our secondary hypotheses are: - Children will perform worse on the cognitive test when exposed to high levels of CO2 and other bio effluents than compared to CO2 alone. - Children will sleep less well in an environment with poor ventilation and high levels of CO2 and other bio effluents compared to sleeping in a well-ventilated room with low levels of CO2. - Children will sleep less well in an environment with poor ventilation and high levels of CO2 and other bio effluents compared to sleeping in a room with high levels of CO2 alone. - Children will sleep less well and perform worse on the cognitive test when exposed to high levels of CO2 compared to low levels of CO2.