Brain &Cognitive Changes after Reasoning or Physical Training in Cognitively Normal Seniors This application addresses broad Challenge Area (05) Comparative Effectiveness Research;05-AG- 105* Comparative Intervention Trials for Diseases and Syndromes of Aging Including Neurodegenerative Diseases. Background: A significant potential exists to modify the structure and function of the aging human brain given intensive mental stimulation and physical activity. Age-related cognitive decline has consistently been identified on frontal lobe measures of executive control such as reasoning. Concomitantly, a greater vulnerability of frontal brain networks, which subserve executive control functions, has also been identified with aging. Preliminary evidence highlights the potential of reasoning training as well as physical training to modify and strengthen brain and cognitive function in seniors. Evidence from our lab indicates that frontally mediated, gist-based reasoning (defined as the ability to combine detail information to construct abstract meanings) offers a promising cognitive domain to train. Extracting gist meaning from the massive amount of incoming information is one of the most vital mental skills a healthy mind achieves. Purpose: This proposal is an innovative study to obtain data regarding the benefits of a (a) novel gist-based reasoning training program or (b) physical training on frontal-lobe mediated cognitive measures of executive control in cognitively normal seniors. The project will also employ newly developed (a) brain measures to chart changes in brain blood flow and connectivity combined with (b) a cognitive activation task specifically designed to measure brain regions engaged in gist reasoning versus detail processing. The project also examines shorter dose effects, i.e. after 6 weeks and 12 weeks, than previously examined as well as individual differences based on high and low performers for gist and physical training. Methods: 60 cognitively normal seniors between the ages of 60 and 75 years will be recruited for study and randomized into 1 of 3 groups. Each group will consist of 20 participants each: a reasoning-trained, a physical-trained and a wait-listed control group. Participants will be comprehensively screened to insure they are cognitively normal. Prior to intervention, participants'baseline gist and detail processing ability, battery of cognitive functions and fitness measures will be obtained. Structural and functional brain measures will also be obtained. Participants will undergo 12 weeks of gist-based training or physical training with measurement at midpoint, 6 weeks of training, endpoint 12 weeks of training and 4 weeks after training is completed. Training effects will be measured behaviorally in trained areas (reasoning &physical) and untrained cognitive areas. Additionally, structural and functional brain imaging will measure changes in cerebral blood flow, global and regional brain volume, white matter tracts, efficiency, activation patterns, and blood oxygenation with a particular focus on changes to frontal regions. Significance: The current study seeks to discover neuroprotective, nonpharmacological interventions that could prevent mental decline and strengthen cognitive brain health in seniors, with possible societal savings of billions of dollars. This will be one of the first training studies to explore short-term intensive reasoning and physical training, each documented as pivotal to cognitive brain health with the potential to strengthen frontal regions against the losses associated with aging. Brain &Cognitive Changes after Reasoning or Exercise Training in Cognitively Normal Seniors 65 years of age and older represent one of the fastest growing segments of our society with the population doubling within the next 25 years with dramatic rates of mental decline, costing society billions of dollars each year. The proposed research seeks to discover whether relatively short term mental or physical training can enhance gist reasoning, generalize to untrained cognitive areas and modify/strengthen brain function in areas susceptible to aging processes. To identify neuroprotective and non-pharmacological interventions to prevent mental decline and maximize cognitive brain health during the course of the adult lifespan has major public policy implications.

Public Health Relevance

Brain &Cognitive Changes after Reasoning or Exercise Training in Cognitively Normal Seniors Seniors 65 years of age and older represent one of the fastest growing segments of our society with the population doubling within the next 25 years with dramatic rates of mental decline, costing society billions of dollars each year. The proposed research seeks to discover whether relatively short term mental or physical training can enhance gist reasoning, generalize to untrained cognitive areas and modify/strengthen brain function in areas susceptible to aging processes. To identify neuroprotective and non-pharmacological interventions to prevent mental decline and maximize cognitive brain health during the course of the adult lifespan has major public policy implications.

Agency
National Institute of Health (NIH)
Institute
National Institute on Aging (NIA)
Type
NIH Challenge Grants and Partnerships Program (RC1)
Project #
1RC1AG035954-01
Application #
7829242
Study Section
Special Emphasis Panel (ZRG1-RPHB-A (58))
Program Officer
Wagster, Molly V
Project Start
2009-09-30
Project End
2011-08-31
Budget Start
2009-09-30
Budget End
2010-08-31
Support Year
1
Fiscal Year
2009
Total Cost
$500,000
Indirect Cost
Name
University of Texas-Dallas
Department
Other Health Professions
Type
Other Domestic Higher Education
DUNS #
800188161
City
Richardson
State
TX
Country
United States
Zip Code
75080
Motes, Michael A; Yezhuvath, Uma S; Aslan, Sina et al. (2018) Higher-order cognitive training effects on processing speed-related neural activity: a randomized trial. Neurobiol Aging 62:72-81
Chapman, Sandra B; Spence, Jeffrey S; Aslan, Sina et al. (2017) Enhancing Innovation and Underlying Neural Mechanisms Via Cognitive Training in Healthy Older Adults. Front Aging Neurosci 9:314
Gallen, Courtney L; Baniqued, Pauline L; Chapman, Sandra B et al. (2016) Modular Brain Network Organization Predicts Response to Cognitive Training in Older Adults. PLoS One 11:e0169015
Chapman, Sandra B; Aslan, Sina; Spence, Jeffrey S et al. (2016) Distinct Brain and Behavioral Benefits from Cognitive vs. Physical Training: A Randomized Trial in Aging Adults. Front Hum Neurosci 10:338
Mudar, Raksha A; Chiang, Hsueh-Sheng; Eroh, Justin et al. (2016) The Effects of Amnestic Mild Cognitive Impairment on Go/NoGo Semantic Categorization Task Performance and Event-Related Potentials. J Alzheimers Dis 50:577-90
Chapman, Sandra B; Aslan, Sina; Spence, Jeffrey S et al. (2015) Neural mechanisms of brain plasticity with complex cognitive training in healthy seniors. Cereb Cortex 25:396-405
Chiang, Hsueh-Sheng; Mudar, Raksha A; Pudhiyidath, Athula et al. (2015) Altered Neural Activity during Semantic Object Memory Retrieval in Amnestic Mild Cognitive Impairment as Measured by Event-Related Potentials. J Alzheimers Dis 46:703-17
Mudar, Raksha A; Chiang, Hsueh-Sheng; Maguire, Mandy J et al. (2015) Effects of age on cognitive control during semantic categorization. Behav Brain Res 287:285-93
Chiang, Hsueh-Sheng; Mudar, Raksha A; Spence, Jeffrey S et al. (2014) Age-related changes in feature-based object memory retrieval as measured by event-related potentials. Biol Psychol 100:106-14
Anand, Raksha; Chapman, Sandra B; Rackley, Audette et al. (2011) Gist reasoning training in cognitively normal seniors. Int J Geriatr Psychiatry 26:961-8