View clinical trials related to Mild Cognitive Impairment.
Filter by:The study involved Information and Communication Technologies (ICT) and more specifically computer exercises blended with game activities. It was hypothesized that ICT facilitated, game blended combined cognitive and physical exercise improves global cognition when compared to a control group; and that the number of sessions within exercising participants predict cognitive benefits. In addition, we explored the impact of potential moderators on combined exercise-induced cognitive benefits.
The potential long-term effects of Traumatic Brain Injury (TBI) are poorly understood. Repeated concussions have been associated with an elevated incidence of Alzheimer's disease (AD) along with a reduced age of onset. As repetitive TBI has been studied, a syndrome has now been identified: chronic traumatic encephalopathy (CTE). There are growing concerns about the long-term neurologic consequences of head impact exposure from routine participation in contact sports (e.g., boxing, football). Brain autopsies of athletes with confirmed CTE have demonstrated tau-immunoreactive neurofibrillary tangles and neuropil threads (known as tauopathy). The relationship between exposure to repetitive head impact and the subsequent development of chronic neurodegenerative disease has not been established. Further, as the diagnosis of CTE (defined by the presence of tauopathy) is presently made after death at autopsy, clinical tools and biomarkers for detecting it remain to be defined. With the advent of FDA-approved PET amyloid imaging, clinicians and researchers are now able to estimate plaque density in the brains of living patients. However, there are critical limitations to amyloid imaging. Current evidence suggests that markers of the presence and severity of tauopathy may be able to address these limitations. The study will utilize both [18F] Florbetapir and [18F]-T807 PET imaging to investigate amyloid and tau accumulation in subjects with a history of concussions. In order to determine whether problems with cognition and memory are seen within the populations defined for the study, the researchers will administer a core battery of neurocognitive testing. This battery will assess cognitive abilities commonly affected by TBI, including processing speed, reaction time, new problem-solving, executive functions, attention and concentration, and learning and memory. These tests, in conjunction with the imaging, will be able to determine whether regional brain activity is associated with specific cognitive problems. The researchers will obtain PET and neurocognitive data in 3 cohorts: subjects with a history of TBIs, subjects with mild cognitive impairment (MCI) and no TBI history, and healthy controls. The investigators aim to determine whether individuals with TBI are on the same trajectory of neurodegenerative disease seen in AD or in CTE. Because of the overlap in clinical/cognitive and some behavioral symptoms in AD and CTE, an additional biomarker tool is needed to prevent misdiagnosis. Accurate diagnosis is crucial in order to provide patients with appropriate treatment.
This study will compare the effectiveness of different combinations of 5 types of behavioral interventions across patient-centered outcomes. It will also evaluate which outcomes (e.g. quality of life, cognition, function, mood) matter most to people at risk for dementia and their care partners. The results of this study have the potential to direct patients, families, and health care providers as to which combinations of behavioral interventions provide the greatest potential impact on which dementia prevention outcomes. Greater use of behavioral strategies that are targeted to the outcomes of most important to the patient will likely improve patient compliance and treatment adherence. This, in turn, can lessen the need for medication, health care, and long term care utilization.
The purpose of this study is to determine specific changes in muscle secretory profile (myokines, miRNA) in association with neurodegenerative disease progression and metabolic dysfunction. Next the investigators would like to determine the shift in the muscle secretory activity induced by regular exercise intervention, which the investigators think could be translated into the beneficial changes in clinical phenotypes, determined by neuroimaging, cognitive function tests and metabolic phenotyping.
The purpose of this study is to assess the effects of fesoterodine at 4mg and 8mg doses versus a placebo and oxybutynin 5mg bid versus placebo on cognitive abilities in older people with overactive bladder and mild cognitive impairment.
NMDA neurotransmission plays an important role in learning and memory. NMDA receptors were found to decrease in the frontal lobe and hippocampus of mild cognitive impairment. This study is a randomized, double-blind, placebo-controlled drug trial. All subjects will be allocated randomly to 2 groups: (1) NMDA-enhancer: DAOIB group (starting dose: 250-500 mg/d); (2) placebo group. The study period is 24 weeks. The investigators hypothesize that DAOIB may yield better efficacy than placebo for cognitive function in patients with mild cognitive impairment.
The purpose of this study is to clarify the benefits to brain health and thinking processes that result from different forms of exercise. This study will examine the effectiveness of cybercycling (virtual reality enhanced stationary cycling) for persons at risk for and with MCI, and compare this with the individual cognitive, behavioral, and physiological effects of physical and mental exercise alone. The Investigators hypothesis that cognitive benefit will be greatest for combined aerobic and cognitive exercise compared to physical and mental exercise alone.
The principal aim of this study is to verify whether a program of supervised, multimodal physical exercise improves cognitive function and/or reduces the rate of cognitive decline in older adults
The primary objective is to examine the efficacy of 8-weeks of a locally developed brain-computer interface based system intervention for improving attention and memory in healthy elderly and those with age related cognitive decline. We hypothesize that elderly who have completed the training program will have significant improvement in their attention and memory compared to the controls, based on the Repeatable Battery for the Assessment of Neuropsychological Status.
This study is to find out the imaging marker and the changing laws of the marker during the course of the disease. The final purpose is to provide scientific evidence for new prevention, diagnosis and treatment of Alzheimer's disease.