scholarly article | Q13442814 |
review article | Q7318358 |
P50 | author | John S Y Chan | Q85472108 |
P2093 | author name string | Jin H Yan | |
Lijie Ren | |||
Chuanming Wang | |||
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Weight status and gross motor skill in kindergarten children | Q47286237 | ||
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Structural brain differences and cognitive functioning related to body mass index in older females | Q48383706 | ||
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Exercise influences hippocampal plasticity by modulating brain-derived neurotrophic factor processing | Q35576197 | ||
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The lighter side of BDNF. | Q35801796 | ||
Aerobic exercise increases hippocampal volume in older women with probable mild cognitive impairment: a 6-month randomised controlled trial | Q35867788 | ||
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An obesity-associated gut microbiome with increased capacity for energy harvest | Q27860515 | ||
The gut microbiota as an environmental factor that regulates fat storage | Q28131676 | ||
Effects of high fat diet on Morris maze performance, oxidative stress, and inflammation in rats: contributions of maternal diet | Q28572572 | ||
Long-term exercise treatment reduces oxidative stress in the hippocampus of aging rats | Q28573875 | ||
Running enhances neurogenesis, learning, and long-term potentiation in mice | Q29391363 | ||
Separable Learning Systems in the Macaque Brain and the Role of Orbitofrontal Cortex in Contingent Learning | Q29399271 | ||
Host-gut microbiota metabolic interactions | Q29615104 | ||
Memory and the hippocampus: a synthesis from findings with rats, monkeys, and humans | Q29615991 | ||
Functional interactions between the gut microbiota and host metabolism | Q29616815 | ||
Normal gut microbiota modulates brain development and behavior | Q29616855 | ||
Mind-altering microorganisms: the impact of the gut microbiota on brain and behaviour | Q29617115 | ||
Leptin levels in human and rodent: Measurement of plasma leptin and ob RNA in obese and weight-reduced subjects | Q29617231 | ||
Impairment of hippocampal-dependent memory induced by juvenile high-fat diet intake is associated with enhanced hippocampal inflammation in rats. | Q30360557 | ||
Obesity and dementia: adipokines interact with the brain. | Q30361051 | ||
Running-induced epigenetic and gene expression changes in the adolescent brain | Q30416582 | ||
Obesity/hyperleptinemic phenotype impairs structural and functional plasticity in the rat hippocampus | Q30460422 | ||
High fat diet increases hippocampal oxidative stress and cognitive impairment in aged mice: implications for decreased Nrf2 signaling | Q30496730 | ||
Does the brain shrink as the waist expands? | Q30809609 | ||
Being overweight in midlife is associated with lower cognitive ability and steeper cognitive decline in late life | Q33552081 | ||
Leptin revisited: its mechanism of action and potential for treating diabetes | Q33602487 | ||
Obesity increases cerebrocortical reactive oxygen species and impairs brain function | Q33684991 | ||
Adiposity and cognitive decline in the cardiovascular health study | Q33709022 | ||
Obesity impact on the attentional cost for controlling posture | Q33781008 | ||
Aerobic exercise effects on cognitive and neural plasticity in older adults | Q33784669 | ||
Insulin action in brain regulates systemic metabolism and brain function | Q33789365 | ||
Adiposity, gut microbiota and faecal short chain fatty acids are linked in adult humans | Q33839250 | ||
High fat diet produces brain insulin resistance, synaptodendritic abnormalities and altered behavior in mice | Q33850466 | ||
Longitudinal examination of obesity and cognitive function: results from the Baltimore longitudinal study of aging | Q33906591 | ||
Serum leptin level and cognition in the elderly: Findings from the Health ABC Study | Q37612838 | ||
Difference in muscle quality over the adult life span and biological correlates in the Baltimore Longitudinal Study of Aging | Q37622719 | ||
BDNF and exercise enhance neuronal DNA repair by stimulating CREB-mediated production of apurinic/apyrimidinic endonuclease 1. | Q37628129 | ||
Dietary lipids are differentially associated with hippocampal-dependent relational memory in prepubescent children | Q37700594 | ||
Neurodevelopmental actions of leptin. | Q37732857 | ||
Metabolic-cognitive syndrome: a cross-talk between metabolic syndrome and Alzheimer's disease | Q37742828 | ||
Ten years of leptin replacement therapy | Q37853659 | ||
Intranasal administration of insulin to the brain impacts cognitive function and peripheral metabolism | Q37924942 | ||
Insulin resistance and pathological brain ageing | Q37942690 | ||
A review of the relation of aerobic fitness and physical activity to brain structure and function in children. | Q37951177 | ||
Adiposity and cognitive decline: underlying mechanisms | Q38006383 | ||
Exercise counteracts declining hippocampal function in aging and Alzheimer's disease | Q38023090 | ||
Neuroprotective and anti-ageing role of leptin. | Q38042488 | ||
Multiple effects of physical activity on molecular and cognitive signs of brain aging: can exercise slow neurodegeneration and delay Alzheimer's disease? | Q38060941 | ||
Obesity and cognitive aging | Q38069099 | ||
The role of leptin in obesity and the potential for leptin replacement therapy | Q38070350 | ||
The longer-term impacts of Western diet on human cognition and the brain | Q38071830 | ||
Effect of intestinal microbial ecology on the developing brain | Q38080723 | ||
Obesity as a risk factor for Alzheimer's disease: the role of adipocytokines | Q38189680 | ||
Leptin and the brain: influences on brain development, cognitive functioning and psychiatric disorders. | Q38236965 | ||
Body mass index in dementia | Q38255757 | ||
Gut brain axis: diet microbiota interactions and implications for modulation of anxiety and depression | Q38275301 | ||
Leptin enhances NMDA receptor function and modulates hippocampal synaptic plasticity. | Q38294210 | ||
The effects of acute aerobic exercise on the primary motor cortex. | Q38309748 | ||
Effect of leptin replacement on brain structure in genetically leptin-deficient adults | Q38330581 | ||
Is there any relationship between obesity and mental flexibility in children? | Q38396865 | ||
Examining the relationship between obesity and cognitive function: a systematic literature review | Q38428073 | ||
Obesity-related differences in neural correlates of force control. | Q39320176 | ||
Fine and gross motor skills differ between healthy-weight and obese children | Q39350263 | ||
Fundamental movement skills and self-concept of children who are overweight | Q39744356 | ||
Evidence of executive dysfunction in extremely obese adolescents: a pilot study | Q39945711 | ||
Relationship between body mass index and gray matter volume in 1,428 healthy individuals | Q40130382 | ||
Exercise but not (-)-epigallocatechin-3-gallate or β-alanine enhances physical fitness, brain plasticity, and behavioral performance in mice | Q40531168 | ||
Diet-Induced Weight Loss Alters Functional Brain Responses during an Episodic Memory Task | Q40772211 | ||
Exercise-induced hippocampal anti-inflammatory response in aged rats | Q40814528 | ||
Effect of high-fat diet on metabolic indices, cognition, and neuronal physiology in aging F344 rats | Q41880535 | ||
Childhood and adolescent obesity and long-term cognitive consequences during aging. | Q42185326 | ||
A high-fat diet impairs neurogenesis: Involvement of lipid peroxidation and brain-derived neurotrophic factor | Q42952281 | ||
Intranasal insulin: from nose to brain | Q43214804 | ||
Treadmill exercise and wheel exercise enhance expressions of neutrophic factors in the hippocampus of lipopolysaccharide-injected rats | Q43522882 | ||
BDNF-stimulated intracellular signalling mechanisms underlie exercise-induced improvement in spatial memory in the male Wistar rat. | Q43705382 | ||
Effect of six weeks of endurance exercise and following detraining on serum brain derived neurotrophic factor and memory performance in middle aged males with metabolic syndrome | Q43709179 | ||
Complementary roles of basal ganglia and cerebellum in learning and motor control. | Q33937172 | ||
Trk receptors: mediators of neurotrophin action | Q33950703 | ||
Exercise: a behavioral intervention to enhance brain health and plasticity | Q33959877 | ||
Cognitive and emotional alterations are related to hippocampal inflammation in a mouse model of metabolic syndrome. | Q34031315 | ||
Not only cardiovascular, but also coordinative exercise increases hippocampal volume in older adults | Q34038459 | ||
A BDNF autocrine loop in adult sensory neurons prevents cell death. | Q34058587 | ||
Reversal of glial and neurovascular markers of unhealthy brain aging by exercise in middle-aged female mice | Q34064705 | ||
Diabetes impairs hippocampal function through glucocorticoid-mediated effects on new and mature neurons | Q34083053 | ||
Effect of weight loss, exercise, or both on cognition and quality of life in obese older adults | Q34087171 | ||
NGF and BDNF: from nerves to adipose tissue, from neurokines to metabokines. | Q34092282 | ||
Plasticity of brain networks in a randomized intervention trial of exercise training in older adults | Q34165808 | ||
Adipokines: a treasure trove for the discovery of biomarkers for metabolic disorders. | Q34244082 | ||
Physical activity, brain plasticity, and Alzheimer's disease | Q34307347 | ||
Physical exercise and environment exploration affect synaptogenesis in adult-generated neurons in the rat dentate gyrus: possible role of BDNF. | Q34366425 | ||
Adiponectin, an adipocyte-derived protein. | Q34367725 | ||
Gut microbiota and developmental programming of the brain: from evidence in behavioral endophenotypes to novel perspective in obesity | Q34389761 | ||
Inflammation and insulin/IGF-1 resistance as the possible link between obesity and neurodegeneration | Q34426691 | ||
A meta-analytic review of the effects of exercise on brain-derived neurotrophic factor | Q34451182 | ||
Obesity and cognitive decline: role of inflammation and vascular changes | Q34540572 | ||
Demographic, cognitive, affective, and behavioral variables associated with overweight and obesity in low-active girls | Q34613803 | ||
Physical exercise modulates peripheral levels of brain-derived neurotrophic factor (BDNF): a systematic review of experimental studies in the elderly | Q34639814 | ||
Obesity elicits interleukin 1-mediated deficits in hippocampal synaptic plasticity | Q34659655 | ||
A narrative review of physical activity, nutrition, and obesity to cognition and scholastic performance across the human lifespan | Q34729860 | ||
Aerobic fitness is associated with hippocampal volume in elderly humans | Q34771482 | ||
Exercise, experience and the aging brain | Q34977033 | ||
Obesity/hyperleptinemic phenotype adversely affects hippocampal plasticity: effects of dietary restriction | Q34990300 | ||
The role of insulin resistance in the pathogenesis of Alzheimer's disease: implications for treatment | Q35017640 | ||
The microbiome: stress, health and disease | Q35054658 | ||
Midlife vascular risk factor exposure accelerates structural brain aging and cognitive decline. | Q35135883 | ||
Fitness, fatness, cognition, behavior, and academic achievement among overweight children: do cross-sectional associations correspond to exercise trial outcomes? | Q35188052 | ||
Running is the neurogenic and neurotrophic stimulus in environmental enrichment | Q35195837 | ||
Health consequences of obesity | Q35205689 | ||
Adverse Associations between Visceral Adiposity, Brain Structure, and Cognitive Performance in Healthy Elderly | Q35209676 | ||
P275 | copyright license | Creative Commons Attribution 4.0 International | Q20007257 |
P6216 | copyright status | copyrighted | Q50423863 |
P407 | language of work or name | English | Q1860 |
P921 | main subject | obesity | Q12174 |
neuroplasticity | Q849491 | ||
cognition | Q2200417 | ||
lifetime | Q22675021 | ||
body size | Q66711810 | ||
physiological phenomenon | Q66615932 | ||
P5008 | on focus list of Wikimedia project | ScienceSource | Q55439927 |
P304 | page(s) | 2473081 | |
P577 | publication date | 2016-01-12 | |
P1433 | published in | Neural Plasticity | Q15716605 |
P1476 | title | Obesity Reduces Cognitive and Motor Functions across the Lifespan | |
P478 | volume | 2016 |
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