A Metabolic Obesity Profile Is Associated With Decreased Gray Matter Volume in Cognitively Healthy Older Adults
暂无分享,去创建一个
A. Villringer | M. Schroeter | S. Riedel-Heller | S. Röhr | J. Kratzsch | S. Kharabian Masouleh | A. Witte | F. Beyer | Shahrzad Kharabian Masouleh
[1] Mark E Bastin,et al. Associations between vascular risk factors and brain MRI indices in UK Biobank , 2019, bioRxiv.
[2] V. Arolt,et al. Variation of HbA1c affects cognition and white matter microstructure in healthy, young adults , 2018, bioRxiv.
[3] R. Ahima,et al. Modulation of Glucose Metabolism in Hippocampal Neurons by Adiponectin and Resistin , 2018, Molecular Neurobiology.
[4] Alan C. Evans,et al. Neuroanatomical differences in obesity: meta-analytic findings and their validation in an independent dataset , 2018, International Journal of Obesity.
[5] Paul M. Thompson,et al. Systemic inflammation as a predictor of brain aging: Contributions of physical activity, metabolic risk, and genetic risk , 2018, NeuroImage.
[6] Leonie Lampe,et al. White matter microstructural variability mediates the relation between obesity and cognition in healthy adults , 2018, NeuroImage.
[7] Kristen N. Warren,et al. Elevated Markers of Inflammation Are Associated With Longitudinal Changes in Brain Function in Older Adults , 2018, The journals of gerontology. Series A, Biological sciences and medical sciences.
[8] Thaddeus J. Haight,et al. White matter microstructure, white matter lesions, and hypertension: An examination of early surrogate markers of vascular-related brain change in midlife , 2018, NeuroImage: Clinical.
[9] S. Aoki,et al. The relationship of waist circumference and body mass index to grey matter volume in community dwelling adults with mild obesity , 2017, Obesity science & practice.
[10] Ben Glocker,et al. Abnormal brain white matter microstructure is associated with both pre-hypertension and hypertension , 2017, PloS one.
[11] Leonie Lampe,et al. Gray matter structural networks are associated with cardiovascular risk factors in healthy older adults , 2017, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[12] Julia M. Huntenburg,et al. Higher body mass index is associated with reduced posterior default mode connectivity in older adults , 2017, Human brain mapping.
[13] P. Rosenstiel,et al. Hypothalamic Inflammation in Human Obesity Is Mediated by Environmental and Genetic Factors , 2017, Diabetes.
[14] M. Colonna,et al. Microglia Function in the Central Nervous System During Health and Neurodegeneration. , 2017, Annual review of immunology.
[15] B. Culver,et al. Exposure to a diet high in fat attenuates dendritic spine density in the medial prefrontal cortex , 2016, Brain Structure and Function.
[16] Heidi M. Bonnici,et al. Obesity and insulin resistance are associated with reduced activity in core memory regions of the brain , 2017, Neuropsychologia.
[17] C. DeCarli,et al. Relation of Dysglycemia to Structural Brain Changes in a Multiethnic Elderly Cohort , 2017, Journal of the American Geriatrics Society.
[18] Marnie E. Shaw,et al. Higher Fasting Plasma Glucose is Associated with Increased Cortical Thinning Over 12 Years: The PATH Through Life Study , 2017, Brain Topography.
[19] Paul C. Fletcher,et al. Obesity associated with increased brain age from midlife , 2016, Neurobiology of Aging.
[20] John Shawe-Taylor,et al. A multiple hold-out framework for Sparse Partial Least Squares , 2016, Journal of Neuroscience Methods.
[21] J. Pantel,et al. Impact of leptin on memory function and hippocampal structure in mild cognitive impairment , 2016, Human brain mapping.
[22] L. Fratiglioni,et al. Physical activity and inflammation: effects on gray‐matter volume and cognitive decline in aging , 2016, Human brain mapping.
[23] Xintao Hu,et al. Network-selective vulnerability of the human cerebellum to Alzheimer's disease and frontotemporal dementia. , 2016, Brain : a journal of neurology.
[24] Annette Horstmann,et al. Higher body mass index in older adults is associated with lower gray matter volume: implications for memory performance , 2016, Neurobiology of Aging.
[25] P. Gonzalez-Alegre,et al. Alzheimer's like brain changes correlate with low adiponectin plasma levels in type 2 diabetic patients. , 2016, Journal of diabetes and its complications.
[26] Mohamad Habes,et al. Association between waist circumference and gray matter volume in 2344 individuals from two adult community-based samples , 2015, NeuroImage.
[27] Thomas E. Nichols,et al. A positive-negative mode of population covariation links brain connectivity, demographics and behavior , 2015, Nature Neuroscience.
[28] Arno Villringer,et al. The LIFE-Adult-Study: objectives and design of a population-based cohort study with 10,000 deeply phenotyped adults in Germany , 2015, BMC Public Health.
[29] Christos Davatzikos,et al. Vascular risk factors, cerebrovascular reactivity, and the default-mode brain network , 2015, NeuroImage.
[30] M. Carrillo,et al. Summary of the evidence on modifiable risk factors for cognitive decline and dementia: A population-based perspective , 2015, Alzheimer's & Dementia.
[31] Dimitrios Kapogiannis,et al. Does the brain shrink as the waist expands? , 2015, Ageing Research Reviews.
[32] R. Stolwyk,et al. Examining the relationship between obesity and cognitive function: a systematic literature review. , 2015, Obesity research & clinical practice.
[33] Lars T. Westlye,et al. Comparison of variants of canonical correlation analysis and partial least squares for combined analysis of MRI and genetic data , 2015, NeuroImage.
[34] Amanda J Kiliaan,et al. 2003-2013: a decade of body mass index, Alzheimer's disease, and dementia. , 2014, Journal of Alzheimer's disease : JAD.
[35] N Hadjikhani,et al. The 16p11.2 locus modulates brain structures common to autism, schizophrenia and obesity , 2014, Molecular Psychiatry.
[36] J. M. Ruiz-Albusac,et al. Insulin in the Brain: Its Pathophysiological Implications for States Related with Central Insulin Resistance, Type 2 Diabetes and Alzheimer’s Disease , 2014, Front. Endocrinol..
[37] J. Little,et al. Inflammation and insulin/IGF-1 resistance as the possible link between obesity and neurodegeneration , 2014, Journal of Neuroimmunology.
[38] L. Westlye,et al. Differential Longitudinal Changes in Cortical Thickness, Surface Area and Volume across the Adult Life Span: Regions of Accelerating and Decelerating Change , 2014, The Journal of Neuroscience.
[39] Geert Jan Biessels,et al. Brain Changes Underlying Cognitive Dysfunction in Diabetes: What Can We Learn From MRI? , 2014, Diabetes.
[40] Susan M. Resnick,et al. FTO Genotype and Aging: Pleiotropic Longitudinal Effects on Adiposity, Brain function, Impulsivity and Diet , 2014, Molecular Psychiatry.
[41] Anders M. Fjell,et al. Blood markers of fatty acids and vitamin D, cardiovascular measures, body mass index, and physical activity relate to longitudinal cortical thinning in normal aging , 2014, Neurobiology of Aging.
[42] B. Mazoyer,et al. Abdominal obesity and lower gray matter volume: a Mendelian randomization study , 2014, Neurobiology of Aging.
[43] A. Irving,et al. Leptin regulation of hippocampal synaptic function in health and disease , 2014, Philosophical Transactions of the Royal Society B: Biological Sciences.
[44] Christos Davatzikos,et al. Cross‐sectional and longitudinal association of body mass index and brain volume , 2014, Human brain mapping.
[45] A. Venn,et al. Brain Atrophy in Type 2 Diabetes , 2013, Diabetes Care.
[46] D. Rujescu,et al. Higher glucose levels associated with lower memory and reduced hippocampal microstructure , 2013, Neurology.
[47] C. Annweiler,et al. Blood pressure levels and brain volume reduction: a systematic review and meta-analysis , 2013, Journal of hypertension.
[48] B. Klop,et al. Dyslipidemia in Obesity: Mechanisms and Potential Targets , 2013, Nutrients.
[49] C. Jack,et al. Fat-mass-related hormone, plasma leptin, predicts brain volumes in the elderly , 2013, Neuroreport.
[50] D. Konrad,et al. Visceral fat and metabolic inflammation: the portal theory revisited , 2012, Obesity reviews : an official journal of the International Association for the Study of Obesity.
[51] Pramod K. Mishra,et al. C-Reactive Protein Increases BBB Permeability: Implications for Obesity and Neuroinflammation , 2012, Cellular Physiology and Biochemistry.
[52] P. Sachdev,et al. Higher normal fasting plasma glucose is associated with hippocampal atrophy , 2012, Neurology.
[53] M. Kivimäki,et al. Obesity phenotypes in midlife and cognition in early old age. The Whitehall II cohort study , 2012, BDJ.
[54] Samantha J. Brooks,et al. Impaired Insulin Sensitivity as Indexed by the HOMA Score Is Associated With Deficits in Verbal Fluency and Temporal Lobe Gray Matter Volume in the Elderly , 2012, Diabetes Care.
[55] W. Banks,et al. Neuroinflammation: A Common Pathway in CNS Diseases as Mediated at the Blood-Brain Barrier , 2012, Neuroimmunomodulation.
[56] J. Trollor,et al. A review of the association between obesity and cognitive function across the lifespan: implications for novel approaches to prevention and treatment , 2011, Obesity reviews : an official journal of the International Association for the Study of Obesity.
[57] Rory Wolfe,et al. The number of years lived with obesity and the risk of all-cause and cause-specific mortality. , 2011, International journal of epidemiology.
[58] C. DeCarli,et al. Midlife vascular risk factor exposure accelerates structural brain aging and cognitive decline , 2011, Alzheimer's & Dementia.
[59] Marisa O. Hollinshead,et al. The organization of the human cerebral cortex estimated by intrinsic functional connectivity. , 2011, Journal of neurophysiology.
[60] Anthony Randal McIntosh,et al. Partial Least Squares (PLS) methods for neuroimaging: A tutorial and review , 2011, NeuroImage.
[61] Bruce Fischl,et al. Thickness of the human cerebral cortex is associated with metrics of cerebrovascular health in a normative sample of community dwelling older adults , 2011, NeuroImage.
[62] J Licinio,et al. The procognitive effects of leptin in the brain and their clinical implications , 2010, International journal of clinical practice.
[63] C. Rosano,et al. Physical activity predicts gray matter volume in late adulthood , 2010, Neurology.
[64] P. Wolf,et al. Visceral fat is associated with lower brain volume in healthy middle‐aged adults , 2010, Annals of neurology.
[65] H. Markus,et al. The clinical importance of white matter hyperintensities on brain magnetic resonance imaging: systematic review and meta-analysis , 2010, BMJ : British Medical Journal.
[66] Sterling C. Johnson,et al. Low HDL Cholesterol is Associated with Lower Gray Matter Volume in Cognitively Healthy Adults , 2010, Front. Ag. Neurosci..
[67] Sudha Seshadri,et al. Association of plasma leptin levels with incident Alzheimer disease and MRI measures of brain aging. , 2009, JAMA.
[68] J. Danesh,et al. Major lipids, apolipoproteins, and risk of vascular disease. , 2009, JAMA.
[69] Hirotaka Kosaka,et al. Relationship Between Plasma Leptin Level and Brain Structure in Elderly: A Voxel-Based Morphometric Study , 2009, Biological Psychiatry.
[70] L. Kappelle,et al. Type 2 diabetes mellitus, hypertension, dyslipidemia and obesity: A systematic comparison of their impact on cognition. , 2009, Biochimica et biophysica acta.
[71] L. Ferrucci,et al. Sarcopenic obesity: definition, cause and consequences , 2008, Current opinion in clinical nutrition and metabolic care.
[72] Ahmad R. Hariri,et al. Interleukin-6 Covaries Inversely with Hippocampal Grey Matter Volume in Middle-Aged Adults , 2008, Biological Psychiatry.
[73] R. Petersen,et al. Detecting dementia with the mini-mental state examination in highly educated individuals. , 2008, Archives of neurology.
[74] Mark Woodward,et al. Indices of abdominal obesity are better discriminators of cardiovascular risk factors than BMI: a meta-analysis. , 2008, Journal of clinical epidemiology.
[75] R. Ramasamy,et al. Mechanisms of Disease: advanced glycation end-products and their receptor in inflammation and diabetes complications , 2008, Nature Clinical Practice Endocrinology &Metabolism.
[76] V. Somers,et al. Accuracy of body mass index in diagnosing obesity in the adult general population , 2008, International Journal of Obesity.
[77] Heike Münzberg,et al. Mechanisms of leptin action and leptin resistance. , 2008, Annual review of physiology.
[78] Hiroshi Fukuda,et al. Relationship Between Body Mass Index and Gray Matter Volume in 1,428 Healthy Individuals , 2008, Obesity.
[79] Philipp E. Scherer,et al. Visceral Fat Adipokine Secretion Is Associated With Systemic Inflammation in Obese Humans , 2007, Diabetes.
[80] P. Wolf,et al. Relation of obesity to cognitive function: importance of central obesity and synergistic influence of concomitant hypertension. The Framingham Heart Study. , 2007, Current Alzheimer research.
[81] C. Block,et al. Mechanisms linking obesity with cardiovascular disease , 2006, Nature.
[82] J. Després,et al. Abdominal obesity and metabolic syndrome , 2006, Nature.
[83] Kaarin J. Anstey,et al. Effects of cerebrovascular risk factors on gray matter volume in adults aged 60–64 years: A voxel-based morphometric study , 2006, Psychiatry Research: Neuroimaging.
[84] Richard N Bergman,et al. Why Visceral Fat is Bad: Mechanisms of the Metabolic Syndrome , 2006, Obesity.
[85] Suzanne Craft,et al. Insulin resistance syndrome and Alzheimer's disease: Age- and obesity-related effects on memory, amyloid, and inflammation , 2005, Neurobiology of Aging.
[86] P. Matthews,et al. Risk factors for progression of brain atrophy in aging , 2005, Neurology.
[87] B. Richelsen,et al. Adiponectin: action, regulation and association to insulin sensitivity , 2005, Obesity reviews : an official journal of the International Association for the Study of Obesity.
[88] Anthony Randal McIntosh,et al. Partial least squares analysis of neuroimaging data: applications and advances , 2004, NeuroImage.
[89] C. Björkelund,et al. A 24-year follow-up of body mass index and cerebral atrophy , 2004, Neurology.
[90] A. Newman,et al. The metabolic syndrome, inflammation, and risk of cognitive decline. , 2004, JAMA.
[91] Suzanne Craft,et al. Insulin and neurodegenerative disease: shared and specific mechanisms , 2004, The Lancet Neurology.
[92] P. Havel. Control of energy homeostasis and insulin action by adipocyte hormones: leptin, acylation stimulating protein, and adiponectin , 2002, Current opinion in lipidology.
[93] A. Astrup,et al. Obesity : Preventing and managing the global epidemic , 2000 .
[94] S. Klein,et al. Relation between plasma leptin concentration and body fat, gender, diet, age, and metabolic covariates. , 1996, The Journal of clinical endocrinology and metabolism.
[95] J. V. Haxby,et al. Spatial Pattern Analysis of Functional Brain Images Using Partial Least Squares , 1996, NeuroImage.
[96] R. Considine,et al. Serum immunoreactive-leptin concentrations in normal-weight and obese humans. , 1996, The New England journal of medicine.
[97] Robert Tibshirani,et al. Bootstrap Methods for Standard Errors, Confidence Intervals, and Other Measures of Statistical Accuracy , 1986 .
[98] A. Gautier,et al. C-reactive protein , 2005 .
[99] V. Arolt,et al. Prefrontal gray matter volume mediates genetic risks for obesity , 2017, Molecular Psychiatry.
[100] N. Beckett,et al. The risk of overweight/obesity in mid-life and late life for the development of dementia: a systematic review and meta-analysis of longitudinal studies. , 2016, Age and ageing.
[101] N. Beckett,et al. Corrigenda: Corrigendum to 'The risk of overweight/obesity in mid-life and late life for the development of dementia: a systematic review and meta-analysis of longitudinal studies'. , 2016, Age and ageing.
[102] G. Watts,et al. Dyslipidemia in Obesity , 2015 .
[103] Zhong-Lin Lu,et al. Gray and white matter structures in the midcingulate cortex region contribute to body mass index in Chinese young adults , 2013, Brain Structure and Function.
[104] H. David Sheets,et al. Partial least squares analysis , 2012 .
[105] Christopher L. Asplund,et al. The organization of the human cerebellum estimated by intrinsic functional connectivity. , 2011, Journal of neurophysiology.
[106] M. Roizen,et al. Visceral Fat Is Associated with Lower Brain Volume in Healthy Middle-Aged Adults , 2011 .
[107] L. Ferrucci,et al. Sarcopenic obesity - definition, etiology and consequences , 2009 .
[108] W A Rowe,et al. Limits of body mass index to detect obesity and predict body composition. , 2001, Nutrition.
[109] R. Tracy,et al. Variability in the measurement of C-reactive protein in healthy subjects: implications for reference intervals and epidemiological applications. , 1997, Clinical chemistry.