23 research outputs found

    Accessible and reliable neurometric testing in humans using a smartphone platform

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    Tests of human brain circuit function typically require fixed equipment in lab environments. We have developed a smartphone-based platform for neurometric testing. This platform, which uses AI models like computer vision, is optimized for at-home use and produces reproducible, robust results on a battery of tests, including eyeblink conditioning, prepulse inhibition of acoustic startle response, and startle habituation. This approach provides a scalable, universal resource for quantitative assays of central nervous system function.</p

    Why My Classmates Drink Drinking Motives of Classroom Peers as Predictors of Individual Drinking Motives and Alcohol Use in Adolescence-a Mediational Model

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    Contains fulltext : 77130.pdf (publisher's version ) (Closed access)A structural equation model was estimated based on a Swiss national sample of 5649 12- to 18-year-olds to test whether individual drinking motives mediate the link between classmates' motives and individual alcohol use. Results showed that the social, enhancement, coping and conformity motives of individual students are associated with the corresponding motive dimension of other students in the class. No direct effect of the four classmates' motives on individual drinking, but an indirect effect via individual motives was observed. It appears that drinking motives within the adolescent social environment exert their influence on drinking by way of shaping individual motives

    Subdiffraction-Limit Two-Photon Fluorescence Microscopy for GFP-Tagged Cell Imaging

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    We report applications of two-photon excitation fluorescence (2PEF) microscopy with subdiffraction-limit resolution for green-fluorescent-protein-tagged cell imaging. The microscope integrates 2PEF microscopy and stimulated emission depletion microscopy in one microscope that has the benefits of both techniques: intrinsic three-dimensional resolution, confined photobleaching, and subdiffraction-limit resolution. The subdiffraction-limit resolution was demonstrated by resolving green-fluorescent-protein-tagged caveolar vesicles located within a distance shorter than the diffraction limit of a regular 2PEF microscope, which is ∼250 nm even with the best optics. The full width at half-maximum of the effective point-spread function for the 2PEF microscope was estimated to be ∼54 nm

    Cosmological Distance Indicators

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