View clinical trials related to Cognitive Dysfunction.
Filter by:A randomized, double-blind sham-controlled trial of high frequency rTMS treatment for cognitive impairments in 120 chronic schizophrenia patients
Alongside physiological cognitive ageing, nowadays there is an alarming increase in the incidence of dementia that requires communities to invest in its prevention. The engagement in cognitively stimulating activities and strong social networks have been identified among those protective factors promoting successful cognitive ageing. One aspect regarding cognitive stimulation concerns the relevance of the frequency of an external intervention. For these reasons, the aim of this study was to evaluate the efficacy of a 3-month multi-domain cognitive training program, administered once per week in a group of healthy elderly aged over 60 years old. Their results obtained on a series of neuropsychological tests, both pre- (t0) and post-training (t1), were compared with those of a passive control group who did not receive the cognitive training.
In order to tailor interventions, objective assessments of physical function is needed. A limitation of several of today's clinical assessments is that they require too much time and/or space. The Timed Up and Go (TUG) is a commonly used clinical test of physical function in older populations. The TUG is particularly useful due to its short administration time and the little space that is required. The TUG is however of limited value when used in higher-functioning older adults due to ceiling effects. Instrumented versions of TUG (iTUG) computes several outcome measures in addition to the traditional outcome measure which is the total duration. The aim of this study is to evaluate the construct- and discriminative validity of outcomes derived from sensor signals recorded with a smartphone during a five times repeated iTUG (5iTUG).
Older adults often display gait instability, impaired balance control and cognitive decline that lead to falls and fall risks. Approximately 60% of the elderly people with cognitive deficits experience a detrimental fall each year. Such motor and cognitive impairments further decreases physical activity levels in this population leading to restricted community integration, social behavior, depression and long-term disability. With the help of computer technology, studies have employed virtual-reality based interventions to address the above-mentioned concerns including sensori-motor, balance control and cognitive impairments. Previous studies have demonstrated promising results on improving the behavioral outcomes, and have identified such interventions have the potential to improve the underlying neurophysiological outcomes as well. While VR based training studies have demonstrated remarkable improvement in the balance control and gait parameters, physical activity levels and fall risk reduction, the gains on cognitive function is less pronounced. There is little evidence that VR-based training can explicitly address the higher executive cognitive domains associated with balance control and falls. Further, the effect of VR-based training on balance control and cognitive function is unknown among the older adults with mild cognitive impairment. Therefore, to address the cognitive domains explicitly, the current study aims to test the applicability of Wii-Fit Nintendo along with an additional cognitive load delivered via VR-based cognitive-motor training paradigm (VR-CogMoBal) in older adults with mild cognitive impairment. Lastly, the study also aims to identify the effect of such training on the underlying behavioral and neural outcomes. The behavioral outcomes will be assessed via performance on dual-tasking and clinical measures in the laboratory. The underlying neural outcomes will be assessed via fMRI outcomes. In order to determine the generalizing training effect at community level, a pilot sub-study to determine the physical activity levels post 4 weeks of training will also be conducted.
The primary objective of the study is to evaluate the efficacy of BIIB104 in participants with CIAS, using the Working Memory Domain of the MATRICS Consensus Cognitive Battery (MCCB). The secondary objectives of this study are to evaluate the safety and tolerability of BIIB104 in participants with CIAS, and to evaluate the efficacy of BIIB104 in participants with CIAS on measures of cognition, functioning, and psychiatric symptomology.
The purpose of this project is to determine whether restoring the post-prandial metabolic/inflammatory balance via supplementation with raspberries results in improved cognitive performance, and if these enhancements are mediated through improvements in vascular function.
This pilot randomized controlled study evaluates Mindfulness and DASH Diet resting state network and blood pressure in 36 (n=12 intervention; n=12 attention control; n = 12 control) Black and African American older adults with early Alzheimer's disease and related dementia disorders and hypertension.
This ancillary study will determine if early administration of a single high-dose (540,000 IU) oral vitamin D3 (cholecalciferol) treatment improves 12-month global cognition and executive function as determined by comprehensive neuropsychological testing in 140 critically ill patients with Vitamin D deficiency at enrollment.
This research study is developed on an experimental design with randomized controlled intervention were participated 135 subjects with AD including 45 of the control group. It lasted 6 months with pre-post tests (T0-T1) executed before and after six months of treatment. By having in focus the evaluation of GPR therapy effects on cognitive, proprioceptive, depressive, autonomy, gait and life quality of the above mentioned subjects.
This study explores the feasibility of applying an intervention using vegetable oils (coconut and sunflower oils) on individuals diagnosed with Mild Cognitive Impairment. Participants will be divided into two groups and will either receive 30 ml of coconut or sunflower oil to be consumed daily for six months.