View clinical trials related to Cognitive Dysfunction.
Filter by:The goal of this study is to create new retinal imaging processing software useful for the development of novel retinal biomarkers of cognitive impairment associated with Alzheimer's disease (AD).
The objective of this study is to assess the effectiveness of an intervention to address both executive function and processing speed changes that contribute to poor driving performance in adults with Mild Cognitive Impairment (MCI). Our hypotheses are that the study intervention will improve performance on a driving simulator and will improve (i) executive function, specifically attention and planning, (ii) useful field of view, (iii) mood, (iv) quality of life, and (v) reported motor vehicle crashes and driving infractions.
The hypothesis tested if the diffusion properties in the base line, such as mean diffusivity or kurtosis, can differentiate two subtypes of MCI and predict the clinical outcome in Patients. The hypothesis further supports the correlation of the measured diffusion properties and the disease severity. We therefore proposed to investigate the potential value of diffusion properties as a possible tool to monitor the disease progression. The disease related changes in neural connectivity will be investigated. 1. The diffusion MRI could provide an improved diagnosis of Alzheimer's Disease and Mild cognitive Impairment. Explanation: The deposition of the macromolecules such as beta amyloid in the brain and the associated neuron death of the patient could lead to observable changes in tissue microenvironment. The related changes would lead to alterations in either the amplitude or distribution of water diffusion. In turn it could be detected in diffusion tensor and kurtosis. 2. aMCI is a preclinical state of AD and dMCI is from a different etiology, which can be differentially diagnosis by MRI. Diffusion Imaging could help to predict the clinical outcome Explanation
Vascular risk factors may account for up to 80% of the memory and thinking problems experienced by our aging population today, by far in excess of that caused by Alzheimer's disease. By doing this study, we hope to learn how vascular risk factors cause memory and thinking changes in the elderly, and whether we can prevent memory and thinking changes by reducing these risk factors. Successful completion of project aims will allow an integrated understanding of mild cognitive impairment caused by vascular risks (MCI-CVD) with the potential for tremendous impact on one of the major healthcare crises facing the nation today. The study will enroll 80 participants with memory and thinking problems (mild cognitive impairment; MCI) and are at risk for stroke and further difficulties with memory and thinking that may eventually lead to disability and a diagnosis of dementia. Each participant will be randomized into one of two groups (40 in each group) and followed over 36 months. One group will be followed to allow us to understand the natural history of memory and thinking impairment, while the other group will receive intensive education and assistance with vascular risk factor (CVD) control.
Currently it is unknown how the human brain reorganizes its network organization to generate conscious experience and cognitive activity after a period of unconsciousness. Therefore, the purpose of this study is to assess how cognitive activity is reconstructed after general anesthesia. The investigators hypothesize that the brain's transition from unconsciousness to consciousness and full cognition is a complex process that occurs over an extended period of time. Specifically, the investigators hypothesize the following order of cognitive reconstitution: responsiveness to command, attention, complex scanning and visual tracking, working memory, and executive function. Volunteers will be healthy participants who are anesthetized with commonly used anesthetic drugs as well as a non-anesthetized group to control for circadian influences. A total of 60 subjects will be recruited for this study. All subjects (male and female) will perform basic tests for cognition on a laptop computer at 30-minute intervals during this study. The testing battery to be administered was assembled to assess multiple cognitive functions in order to determine whether and how cognitive processes return to baseline function. Electroencephalogram (measuring brain electrical activity) data will be monitored and recorded during both anesthesia and cognitive testing, for subsequent analysis. This study is significant because it could lead to a better understanding of the neural correlates of human consciousness, as well as normal and abnormal conscious state transitions (including barriers to such transitions).
The proposed project will evaluate the role of neuroimaging biomarkers of brain aging (i.e., neurodegenerative and vascular brain changes) and mild cognitive impairment in the patterns of treatment response to memantine combined with escitalopram compared to escitalopram and placebo.
Cognitive impairment is a widely reported side effect of many commonly used drugs. Even a mild, untoward effect on an essential function such a linguistic behavior, a directly observable product of complex cognitive processes, is disruptive to daily life. Nevertheless, the mechanisms underlying a drug's impact on cognition are poorly understood. This lack of understanding impedes the ability to predict both the effects of drugs in development and the degree to which an individual is vulnerable to the cognitive impact of a particular agent. Topiramate (TPM, an antiepileptic drug) is, with increasing frequency, being prescribed for a range of conditions including migraine prophylaxis, obesity and pain. It is a prime example of a drug that causes speech and language problems severe enough in some patients to result in discontinuation of therapy. For reasons not well understood, TPM has a poorer cognitive profile than many of the older antiepileptic drugs. The investigators' rational for this study is that it will offer insight into the mechanisms underlying drug-induced cognitive deficits.
This study will adapt Problem Solving Therapy (PST) for individuals with mild cognitive impairment (MCI) as an intervention for preventing major depression (DEP). PST will be modified so as to be provided to both MCI probands as well as their support person. The primary aim is to examine the effectiveness of PST in individuals with MCI and the support person, at preventing DEP over 12 mos. in MCI probands. We also will examine the effect of exercise on preventing depression.
Background: - Parkinson's disease causes slow movements, stiffness, and tremor. It can get worse over time, and in some cases can lead to dementia. Researchers are interested in how dementia affects the brain in people with Parkinson's disease. They will study both people with Parkinson s disease and healthy volunteers. They will give tests of thinking and memory, and look at brain activity using imaging studies. This may provide more information on what parts of the brain are not working well in people who have dementia related to Parkinson's disease. Objectives: - To use imaging studies to see what parts of the brain do not work well in people with dementia caused by Parkinson's disease. Eligibility: - Individuals at least 40 years of age who have Parkinson s disease. - Healthy volunteers at least 40 years of age. Design: - Participants will be screened with a medical history and physical exam. - This study requires two outpatient visits over 2 days. - Participants will have tests of thinking, memory, and concentration. They will answer questions and fill out questionnaires. The tests will also look at how quickly they can move and handle small objects. The tests will take about 3 hours. - Participants will have magnetic resonance imaging to study the brain. Functional MRI (fMRI) can show what parts of the brain are used when performing a task. Participants will respond to images on a computer screen during fMRI. - Treatment will not be provided as part of this study.
Background/Rationale: Cognitive problems are a common symptom in individuals with Multiple Sclerosis (MS). Treatment options are limited, and there is a pressing need for new interventions to treat MS-related cognitive impairment. Glucose (a type of sugar) is used to fuel the cells of the healthy brain. For people with neurological conditions such as MS, glucose is not converted into energy as efficiently as it would be in a healthy brain, which can lead to a decrease in cognitive function. Caprylic Triglyceride may work to bypass this problem by providing an alternative energy source that is metabolized in the liver and used by the brain. Objective: To evaluate the therapeutic effects of 90 days of caprylic triglyceride on cognitive impairment in multiple sclerosis. Design: Randomized, double blinded, placebo controlled trial of 158 subjects. Outcome: Change in Total Learning (Trials 1-5) on the California Verbal Learning Test-2nd Edition-(CVLT-II) AND Change in Symbol Digit Modalities Test (SDMT) (at day 90