Trans-ancestry genome-wide association meta- analyses of hippocampal and sub eld volumes
暂无分享,去创建一个
[1] Hongbo Liu,et al. Nonenzymatic function of DPP4 in diabetes‐associated mitochondrial dysfunction and cognitive impairment , 2021, Alzheimer's & dementia : the journal of the Alzheimer's Association.
[2] G. Douaud,et al. An expanded set of genome-wide association studies of brain imaging phenotypes in UK Biobank , 2021, Nature neuroscience.
[3] Zhanghua Wu,et al. The roles of liver X receptor α in inflammation and inflammation‐associated diseases , 2020, Journal of cellular physiology.
[4] Stephen C. J. Parker,et al. The Trans-Ancestral Genomic Architecture of Glycemic Traits , 2020, Nature Genetics.
[5] D. Song,et al. Activation of liver X receptor promotes hippocampal neurogenesis and improves long‐term cognitive function recovery in acute cerebral ischemia‐reperfusion mice , 2020, Journal of neurochemistry.
[6] William J. Astle,et al. Trans-ethnic and Ancestry-Specific Blood-Cell Genetics in 746,667 Individuals from 5 Global Populations , 2020, Cell.
[7] Mulin Jun Li,et al. CHIMGEN: a Chinese imaging genetics cohort to enhance cross-ethnic and cross-geographic brain research , 2019, Molecular Psychiatry.
[8] Hongtu Zhu,et al. Genome-wide association analysis of 19,629 individuals identifies variants influencing regional brain volumes and refines their genetic co-architecture with cognitive and mental health traits , 2019, Nature Genetics.
[9] Max W. Y. Lam,et al. Genome-wide Association Studies in Ancestrally Diverse Populations: Opportunities, Methods, Pitfalls, and Recommendations , 2019, Cell.
[10] M. Feldman,et al. Analysis of polygenic risk score usage and performance in diverse human populations , 2019, Nature Communications.
[11] Rebecca C. Knickmeyer,et al. ENIGMA and global neuroscience: A decade of large-scale studies of the brain in health and disease across more than 40 countries , 2019, Biological Psychiatry.
[12] Stephanie A. Bien,et al. Genetic analyses of diverse populations improves discovery for complex traits , 2019, Nature.
[13] Jing Wang,et al. WebGestalt 2019: gene set analysis toolkit with revamped UIs and APIs , 2019, Nucleic Acids Res..
[14] Alicia R. Martin,et al. Clinical use of current polygenic risk scores may exacerbate health disparities , 2019, Nature Genetics.
[15] Jesús Ávila,et al. Adult hippocampal neurogenesis is abundant in neurologically healthy subjects and drops sharply in patients with Alzheimer’s disease , 2019, Nature Medicine.
[16] Michael D. Greicius,et al. A Quarter Century of APOE and Alzheimer’s Disease: Progress to Date and the Path Forward , 2019, Neuron.
[17] S. Pazzaglia,et al. Sonic hedgehog signaling controls dentate gyrus patterning and adult neurogenesis in the hippocampus , 2019, Neural regeneration research.
[18] Helen E. Parkinson,et al. The NHGRI-EBI GWAS Catalog of published genome-wide association studies, targeted arrays and summary statistics 2019 , 2018, Nucleic Acids Res..
[19] P. Donnelly,et al. The UK Biobank resource with deep phenotyping and genomic data , 2018, Nature.
[20] J. Marchini,et al. Genome-wide association studies of brain imaging phenotypes in UK Biobank , 2018, Nature.
[21] Timothy Shin Heng Mak,et al. Tutorial: a guide to performing polygenic risk score analyses , 2018, bioRxiv.
[22] C. K. Lim,et al. Large-Scale Whole-Genome Sequencing of Three Diverse Asian Populations in Singapore , 2018, Cell.
[23] D. Schaid,et al. From genome-wide associations to candidate causal variants by statistical fine-mapping , 2018, Nature Reviews Genetics.
[24] Erlend S. Dørum,et al. Brain scans from 21,297 individuals reveal the genetic architecture of hippocampal subfield volumes , 2018, bioRxiv.
[25] D. Posthuma,et al. Functional mapping and annotation of genetic associations with FUMA , 2017, Nature Communications.
[26] L. Nadel,et al. Viewpoints: how the hippocampus contributes to memory, navigation and cognition , 2017, Nature Neuroscience.
[27] Nicola J. Rinaldi,et al. Genetic effects on gene expression across human tissues , 2017, Nature.
[28] Ragini Verma,et al. Harmonization of multi-site diffusion tensor imaging data , 2017, NeuroImage.
[29] C. Takayama,et al. Tescalcin is a potential target of class I histone deacetylase inhibitors in neurons. , 2017, Biochemical and biophysical research communications.
[30] J. Gonçalves,et al. Adult Neurogenesis in the Hippocampus: From Stem Cells to Behavior , 2016, Cell.
[31] R. Visser,et al. Evaluation of LD decay and various LD-decay estimators in simulated and SNP-array data of tetraploid potato , 2016, Theoretical and Applied Genetics.
[32] P. Matthews,et al. Multimodal population brain imaging in the UK Biobank prospective epidemiological study , 2016, Nature Neuroscience.
[33] J. E. Iglesias,et al. Progression from selective to general involvement of hippocampal subfields in schizophrenia , 2016, Molecular Psychiatry.
[34] Gabor T. Marth,et al. A global reference for human genetic variation , 2015, Nature.
[35] A. Brickman,et al. Structural MRI Predictors of Late-Life Cognition Differ Across African Americans, Hispanics, and Whites. , 2015, Current Alzheimer research.
[36] B. Pasaniuc,et al. Leveraging Functional-Annotation Data in Trans-ethnic Fine-Mapping Studies. , 2015, American journal of human genetics.
[37] A. Sinning,et al. Disruption of Slc4a10 augments neuronal excitability and modulates synaptic short-term plasticity , 2015, Front. Cell. Neurosci..
[38] Warren W. Kretzschmar,et al. Sparse whole genome sequencing identifies two loci for major depressive disorder , 2015, Nature.
[39] Wei Xu,et al. Risk factors for predicting progression from mild cognitive impairment to Alzheimer’s disease: a systematic review and meta-analysis of cohort studies , 2015, Journal of Neurology, Neurosurgery & Psychiatry.
[40] Koenraad Van Leemput,et al. A computational atlas of the hippocampal formation using ex vivo, ultra-high resolution MRI: Application to adaptive segmentation of in vivo MRI , 2015, NeuroImage.
[41] P. Elliott,et al. UK Biobank: An Open Access Resource for Identifying the Causes of a Wide Range of Complex Diseases of Middle and Old Age , 2015, PLoS medicine.
[42] Avni Santani,et al. Actionable exomic incidental findings in 6503 participants: challenges of variant classification , 2015, Genome research.
[43] Jing Zhang,et al. ATG14 promotes membrane tethering and fusion of autophagosomes to endolysosomes , 2015, Nature.
[44] Thomas E. Nichols,et al. Common genetic variants influence human subcortical brain structures , 2015, Nature.
[45] K. Ohi,et al. Failure of replicating the association between hippocampal volume and 3 single-nucleotide polymorphisms identified from the European genome-wide association study in Asian populations , 2014, Neurobiology of Aging.
[46] Chang Hoon Cho,et al. Wnt signaling in neuropsychiatric disorders: Ties with adult hippocampal neurogenesis and behavior , 2014, Neuroscience & Biobehavioral Reviews.
[47] Y. Li,et al. Trans-ethnic genome-wide association studies: advantages and challenges of mapping in diverse populations , 2014, Genome Medicine.
[48] Y. Shinkai,et al. Selenium-Based S-Adenosylmethionine Analog Reveals the Mammalian Seven-Beta-Strand Methyltransferase METTL10 to Be an EF1A1 Lysine Methyltransferase , 2014, PloS one.
[49] M. Mallar Chakravarty,et al. Illness Progression, Recent Stress, and Morphometry of Hippocampal Subfields and Medial Prefrontal Cortex in Major Depression , 2014, Biological Psychiatry.
[50] A. Saykin,et al. APOE genotype and neuroimaging markers of Alzheimer's disease: systematic review and meta-analysis , 2014, Journal of Neurology, Neurosurgery & Psychiatry.
[51] M. Fornage,et al. Allelic differences between Europeans and Chinese for CREB1 SNPs and their implications in gene expression regulation, hippocampal structure and function, and bipolar disorder susceptibility , 2014, Molecular Psychiatry.
[52] J. Shendure,et al. A general framework for estimating the relative pathogenicity of human genetic variants , 2014, Nature Genetics.
[53] Jin-A Lee,et al. Neuronal Autophagy and Neurodevelopmental Disorders , 2013, Experimental neurobiology.
[54] P. Calabresi,et al. New experimental and clinical links between the hippocampus and the dopaminergic system in Parkinson's disease , 2013, The Lancet Neurology.
[55] Jake K. Byrnes,et al. Bayesian refinement of association signals for 14 loci in 3 common diseases , 2012, Nature Genetics.
[56] I. Liberzon,et al. Biological studies of post-traumatic stress disorder , 2012, Nature Reviews Neuroscience.
[57] J. LaSalle,et al. Investigation of modifier genes within copy number variations in Rett syndrome , 2012, Journal of Human Genetics.
[58] Paul M. Thompson,et al. Common variants at 12q14 and 12q24 are associated with hippocampal volume , 2012, Nature Genetics.
[59] Menno P. Witter,et al. A pathophysiological framework of hippocampal dysfunction in ageing and disease , 2011, Nature Reviews Neuroscience.
[60] Eleazar Eskin,et al. Random-effects model aimed at discovering associations in meta-analysis of genome-wide association studies. , 2011, American journal of human genetics.
[61] S. Gygi,et al. An OBSL1-Cul7Fbxw8 Ubiquitin Ligase Signaling Mechanism Regulates Golgi Morphology and Dendrite Patterning , 2011, PLoS biology.
[62] Deanna Greenstein,et al. Hippocampal volume development in healthy siblings of childhood-onset schizophrenia patients. , 2011, The American journal of psychiatry.
[63] H. Hakonarson,et al. ANNOVAR: functional annotation of genetic variants from high-throughput sequencing data , 2010, Nucleic acids research.
[64] Hong-wei Dong,et al. Are the Dorsal and Ventral Hippocampus Functionally Distinct Structures? , 2010, Neuron.
[65] Juha Voipio,et al. Mice with targeted Slc4a10 gene disruption have small brain ventricles and show reduced neuronal excitability , 2008, Proceedings of the National Academy of Sciences.
[66] Manuel A. R. Ferreira,et al. PLINK: a tool set for whole-genome association and population-based linkage analyses. , 2007, American journal of human genetics.
[67] Carol A. Miller,et al. Down-regulation of DENN/MADD, a TNF receptor binding protein, correlates with neuronal cell death in Alzheimer's disease brain and hippocampal neurons , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[68] David M. Diamond,et al. The stressed hippocampus, synaptic plasticity and lost memories , 2002, Nature Reviews Neuroscience.
[69] A. Dale,et al. Whole Brain Segmentation Automated Labeling of Neuroanatomical Structures in the Human Brain , 2002, Neuron.
[70] R. Morris,et al. Place navigation impaired in rats with hippocampal lesions , 1982, Nature.
[71] W. Scoville,et al. LOSS OF RECENT MEMORY AFTER BILATERAL HIPPOCAMPAL LESIONS , 1957, Journal of neurology, neurosurgery, and psychiatry.
[72] Kai-Uwe Eckardt,et al. Novel genetic loci associated with hippocampal , 2017 .
[73] I. Melle,et al. In Vivo Hippocampal Sub fi eld Volumes in Schizophrenia and Bipolar Disorder , 2015 .
[74] O. Delaneau,et al. Supplementary Information for ‘ Improved whole chromosome phasing for disease and population genetic studies ’ , 2012 .