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Dongyue Zhou; Zhimei Liu; Guanyu Gong; Yunge Zhang; Lin Lin; Kelong Cai; Huashuai Xu; Fengyu Cong; Huanjie Li; Aiguo Chen – Journal of Autism and Developmental Disorders, 2024
Exercise intervention has been proven helpful to ameliorate core symptoms of Autism Spectrum Disorder (ASD). However, the underlying mechanisms are not fully understood. In this study, we carried out a 12-week mini-basketball training program (MBTP) on ASD children and examined the changes of brain functional and structural networks before and…
Descriptors: Exercise, Intervention, Symptoms (Individual Disorders), Autism Spectrum Disorders
Tarr, Christopher W.; Rineer-Hershey, Ashlea; Larwin, Karen – Focus on Autism and Other Developmental Disabilities, 2020
Physical exercise has shown the potential to reduce stereotypic behaviors. The current investigation conducted three meta-analyses on the effects of physical exercise on stereotypic behaviors in individuals with autism. Study 1 produced four aggregate score studies (n = 54) that included nine effect sizes ranging from d = -0.85 to 0.31. Study 1…
Descriptors: Exercise, Behavior Problems, Autism, Pervasive Developmental Disorders
Nauer, Rachel K.; Schon, Karin; Stern, Chantal E. – Learning & Memory, 2020
With a rising aging population, it is important to develop behavioral tasks that assess and track cognitive decline, and to identify protective factors that promote healthy brain aging. Mnemonic discrimination tasks that rely on pattern separation mechanisms are a promising metric to detect subtle age-related memory impairments. Behavioral…
Descriptors: Mnemonics, Physical Fitness, Cognitive Ability, Aging (Individuals)
Zheng, Fei; Zhang, Ming; Ding, Qi; Sethna, Ferzin; Yan, Lily; Moon, Changjong; Yang, Miyoung; Wang, Hongbing – Learning & Memory, 2016
Mental health and cognitive functions are influenced by both genetic and environmental factors. Although having active lifestyle with physical exercise improves learning and memory, how it interacts with the specific key molecular regulators of synaptic plasticity is largely unknown. Here, we examined the effects of voluntary running on long-term…
Descriptors: Memory, Physical Activities, Molecular Structure, Neurological Organization
Patten, Anna R.; Sickmann, Helle; Hryciw, Brett N.; Kucharsky, Tessa; Parton, Roberta; Kernick, Aimee; Christie, Brian R. – Learning & Memory, 2013
Exercise can have many benefits for the body, but it also benefits the brain by increasing neurogenesis, synaptic plasticity, and performance on learning and memory tasks. The period of exercise needed to realize the structural and functional benefits for the brain have not been well delineated, and previous studies have used periods of exercise…
Descriptors: Neurological Organization, Brain Hemisphere Functions, Exercise, Animals
Gomes da Silva, Sérgio; de Almeida, Alexandre Aparecido; Fernandes, Jansen; Lopim, Glauber Menezes; Cabral, Francisco Romero; Scerni, Débora Amado; de Oliveira-Pinto, Ana Virgínia; Lent, Roberto; Arida, Ricardo Mario – Online Submission, 2016
Clinical evidence has shown that physical exercise during pregnancy may alter brain development and improve cognitive function of offspring. However, the mechanisms through which maternal exercise might promote such effects are not well understood. The present study examined levels of brain-derived neurotrophic factor (BDNF) and absolute cell…
Descriptors: Mothers, Pregnancy, Exercise, Brain Hemisphere Functions
Zelazo, Philip David; Blair, Clancy B.; Willoughby, Michael T. – National Center for Education Research, 2016
Executive function (EF) skills are the attention-regulation skills that make it possible to sustain attention, keep goals and information in mind, refrain from responding immediately, resist distraction, tolerate frustration, consider the consequences of different behaviors, reflect on past experiences, and plan for the future. As EF research…
Descriptors: Executive Function, Attention Control, Educational Research, Learning Processes
Parker, Beth A.; Thompson, Paul D.; Jordan, Kathryn C.; Grimaldi, Adam S.; Assaf, Michal; Jagannathan, Kanchana; Pearlson, Godfrey D. – Research Quarterly for Exercise and Sport, 2011
The hippocampus is the primary site of memory and learning in the brain. Both normal aging and various disease pathologies (e.g., alcoholism, schizophrenia, and major depressive disorder) are associated with lower hippocampal volumes in humans and hippocampal atrophy predicts progression of Alzheimers disease. In animals, there is convincing…
Descriptors: Evidence, Exercise, Schizophrenia, Alzheimers Disease