7 research outputs found

    Understanding gaze and scrolling strategies in text consumption tasks

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    Scrolling is an integral part of our everyday computing experience, and many techniques and devices have been developed to enhance scrolling. We have conducted an 18 participant user study to understand how users' gaze position and scrolling strategies are coordinated. Our data showed that people scrolled within preferred reading regions of the screen. Scrolling patterns were also influenced by document structure, with most scrolling occurring at the intersection between paragraphs, in order to bring new text into the preferred reading region. We conclude with the implications of our findings with a new gaze-enhanced scrolling technique aimed to support behaviors evident in manual scrolling

    How do you look at what you touch?:a study of touch interaction and gaze correlation on tablets

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    The comprehension of the correlation between hand and gaze is important in HCI as it provides foundations to build rich and natural user experiences on devices. Despite the interest in describing this correlation in Internet-related activities, notably search activities, the studies that have been done so far only focus on the mouse as the proxy for the hand. Thanks to the touchscreen, tablets allow us to investigate the hand-eye correlation with direct touch input instead. We designed a gaze and touch data collection via a user study involving Internet-based tasks on a tablet in order to explore the data, detail the correlation between touch input and gaze, and in a further step, use these results to suggest a gaze prediction model based on touch and context

    Mutations in ionotropic AMPA receptor 3 alter channel properties and are associated with moderate cognitive impairment in humans

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    Ionotropic alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptors (iGluRs) mediate the majority of excitatory synaptic transmission in the CNS and are essential for the induction and maintenance of long-term potentiation and long-term depression, two cellular models of learning and memory. We identified a genomic deletion (0.4 Mb) involving the entire GRIA3 (encoding iGluR3) by using an X-array comparative genomic hybridization (CGH) and four missense variants (G833R, M706T, R631S, and R450Q) in functional domains of iGluR3 by sequencing 400 males with X-linked mental retardation (XLMR). Three variants were found in males with moderate MR and were absent in 500 control males. Expression studies in HEK293 cells showed that G833R resulted in a 78% reduction of iGluR3 due to protein misfolding. Whole-cell recording studies of iGluR3 homomers in HEK293 cells revealed that neither iGluR3-M706T (S2 domain) nor iGluR3-R631S (near channel core) had substantial channel function, whereas R450Q (S1 domain) was associated with accelerated receptor desensitization. When forming heteromeric receptors with iGluR2 in HEK293 cells, all four iGluR3 variants had altered desensitization kinetics. Our study provides the genetic and functional evidence that mutant iGluR3 with altered kinetic properties is associated with moderate cognitive impairment in humans.status: publishe

    Mutations in ionotropic AMPA receptor 3 alter channel properties and are associated with moderate cognitive impairment in humans

    No full text
    Ionotropic α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptors (iGluRs) mediate the majority of excitatory synaptic transmission in the CNS and are essential for the induction and maintenance of long-term potentiation and long-term depression, two cellular models of learning and memory. We identified a genomic deletion (0.4 Mb) involving the entire GRIA3 (encoding iGluR3) by using an X-array comparative genomic hybridization (CGH) and four missense variants (G833R, M706T, R631S, and R450Q) in functional domains of iGluR3 by sequencing 400 males with X-linked mental retardation (XLMR). Three variants were found in males with moderate MR and were absent in 500 control males. Expression studies in HEK293 cells showed that G833R resulted in a 78% reduction of iGluR3 due to protein misfolding. Whole-cell recording studies of iGluR3 homomers in HEK293 cells revealed that neither iGluR3-M706T (S2 domain) nor iGluR3-R631S (near channel core) had substantial channel function, whereas R450Q (S1 domain) was associated with accelerated receptor desensitization. When forming heteromeric receptors with iGluR2 in HEK293 cells, all four iGluR3 variants had altered desensitization kinetics. Our study provides the genetic and functional evidence that mutant iGluR3 with altered kinetic properties is associated with moderate cognitive impairment in humans

    Mutations in CUL4B, which encodes a ubiquitin E3 ligase subunit, cause an X-linked mental retardation syndrome associated with aggressive outbursts, seizures, relative macrocephaly, central obesity, hypogonadism, pes cavus, and tremor

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    We have identified three truncating, two splice-site, and three missense variants at conserved amino acids in the CUL4B gene on Xq24 in 8 of 250 families with X-linked mental retardation (XLMR). During affected subjects' adolescence, a syndrome emerged with delayed puberty, hypogonadism, relative macrocephaly, moderate short stature, central obesity, unprovoked aggressive outbursts, fine intention tremor, pes cavus, and abnormalities of the toes. This syndrome was first described by Cazebas et al., in a family that was included in our study and that carried a CUL4B missense variant. CUL4B is a ubiquitin E3 ligase subunit implicated in the regulation of several biological processes, and CUL4B is the first XLMR gene that encodes an E3 ubiquitin ligase. The relatively high frequency of CUL4B mutations in this series indicates that it is one of the most commonly mutated genes underlying XLMR and suggests that its introduction into clinical diagnostics should be a high priority

    Mutations in UPF3B, a member of the nonsense-mediated mRNA decay complex, cause syndromic and nonsyndromic mental retardation

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    Nonsense-mediated mRNA decay (NMD) is of universal biological significance1, 2, 3. It has emerged as an important global RNA, DNA and translation regulatory pathway4. By systematically sequencing 737 genes (annotated in the Vertebrate Genome Annotation database) on the human X chromosome in 250 families with X-linked mental retardation, we identified mutations in the UPF3 regulator of nonsense transcripts homolog B (yeast) (UPF3B) leading to protein truncations in three families: two with the Lujan-Fryns phenotype5, 6 and one with the FG phenotype7. We also identified a missense mutation in another family with nonsyndromic mental retardation. Three mutations lead to the introduction of a premature termination codon and subsequent NMD of mutant UPF3B mRNA. Protein blot analysis using lymphoblastoid cell lines from affected individuals showed an absence of the UPF3B protein in two families. The UPF3B protein is an important component of the NMD surveillance machinery8, 9. Our results directly implicate abnormalities of NMD in human disease and suggest at least partial redundancy of NMD pathways.Patrick S Tarpey, F Lucy Raymond, Lam S Nguyen, Jayson Rodriguez, Anna Hackett, Lucianne Vandeleur, Raffaella Smith, Cheryl Shoubridge, Sarah Edkins, Claire Stevens, Sarah O'Meara, Calli Tofts, Syd Barthorpe, Gemma Buck, Jennifer Cole, Kelly Halliday, Katy Hills, David Jones, Tatiana Mironenko, Janet Perry, Jennifer Varian, Sofie West, Sara Widaa, John Teague, Ed Dicks, Adam Butler, Andrew Menzies, David Richardson, Andrew Jenkinson, Rebecca Shepherd, Keiran Raine, Jenny Moon, Yin Luo, Josep Parnau, Shambhu S Bhat, Alison Gardner, Mark Corbett, Doug Brooks, Paul Thomas, Emma Parkinson-Lawrence, Mary E Porteous, John P Warner, Tracy Sanderson, Pauline Pearson, Richard J Simensen, Cindy Skinner, George Hoganson, Duane Superneau, Richard Wooster, Martin Bobrow, Gillian Turner, Roger E Stevenson, Charles E Schwartz, P Andrew Futreal, Anand K Srivastava, Michael R Stratton & Jozef Géc
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