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Showing 1–13 of 13 results
Advanced filters: Author: Benjamin Jan Andersson Clear advanced filters
  • The authors defined a roadmap for investigating the genetic covariance between structural or functional brain phenotypes and risk for psychiatric disorders. Their proof-of-concept study using the largest available common variant data sets for schizophrenia and volumes of several (mainly subcortical) brain structures did not find evidence of genetic overlap.

    • Barbara Franke
    • Jason L Stein
    • Patrick F Sullivan
    Research
    Nature Neuroscience
    Volume: 19, P: 420-431
  • Genome-wide analysis identifies variants associated with the volume of seven different subcortical brain regions defined by magnetic resonance imaging. Implicated genes are involved in neurodevelopmental and synaptic signaling pathways.

    • Claudia L. Satizabal
    • Hieab H. H. Adams
    • M. Arfan Ikram
    Research
    Nature Genetics
    Volume: 51, P: 1624-1636
  • The hippocampus in mammalian brain varies in size across individuals. Here, Hibar and colleagues perform a genome-wide association meta-analysis to find six genetic loci with significant association to hippocampus volume.

    • Derrek P. Hibar
    • Hieab H. H. Adams
    • M. Arfan Ikram
    ResearchOpen Access
    Nature Communications
    Volume: 8, P: 1-12
  • In a GWAS study of 32,438 adults, the authors discovered five novel loci for intracranial volume and confirmed two known signals. Variants for intracranial volume were also related to childhood and adult cognitive function and to Parkinson's disease, and enriched near genes involved in growth pathways, including PI3K-AKT signaling.

    • Hieab H H Adams
    • Derrek P Hibar
    • Paul M Thompson
    Research
    Nature Neuroscience
    Volume: 19, P: 1569-1582
  • Forward models predict and attenuate the sensory feedback of voluntary movement yet their involvement in motor imagery has only been theorized. Here the authors show that motor imagery recruits forward models to elicit sensory attenuation to the same extent as real movements.

    • Konstantina Kilteni
    • Benjamin Jan Andersson
    • H. Henrik Ehrsson
    ResearchOpen Access
    Nature Communications
    Volume: 9, P: 1-9
  • A diverse, multidisciplinary panel of 386 experts in COVID-19 response from 112 countries provides health and social policy actions to address inadequacies in the pandemic response and help to bring this public health threat to an end.

    • Jeffrey V. Lazarus
    • Diana Romero
    • Anne Øvrehus
    ResearchOpen Access
    Nature
    Volume: 611, P: 332-345
  • Genome-wide association studies are used to identify common genetic variants that affect the structure of selected subcortical regions of the human brain; their identification provides insight into the causes of variability in brain development and may help to determine mechanisms of neuropsychiatric dysfunction.

    • Derrek P. Hibar
    • Jason L. Stein
    • Sarah E. Medland
    Research
    Nature
    Volume: 520, P: 224-229
  • Exposing spider silk to wet conditions can cause supercontraction. Here, tyrosine amino acid residues within the amorphous regions are found to contribute to supercontraction, which can be controlled by protein engineering.

    • Gabriele Greco
    • Tina Arndt
    • Anna Rising
    ResearchOpen Access
    Communications Materials
    Volume: 2, P: 1-10
  • Rachel Freathy and colleagues report results of a large-scale genome-wide association study of birth weight. They identify four loci newly associated with this trait and find overlap between birth weight–associated loci and those influencing adult height and metabolism.

    • Momoko Horikoshi
    • Hanieh Yaghootkar
    • Rachel M Freathy
    Research
    Nature Genetics
    Volume: 45, P: 76-82
  • Richard Houlston and colleagues report a genome-wide association study for colorectal cancer. They report three loci newly associated with colorectal cancer, bringing the total number of common susceptibility loci to 20.

    • Malcolm G Dunlop
    • Sara E Dobbins
    • Richard S Houlston
    Research
    Nature Genetics
    Volume: 44, P: 770-776