171 research outputs found

    First Foods Nutrition Curriculum for New Immigrant Families: A Pilot Study

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    Background: Immigrant families arrive in the US from a variety of nutritional landscapes and educational experiences. Early childhood is a key time to intervene to set children on a healthy path. Creating nutritional education programs tailored for immigrant families may improve nutrition and health outcomes. Objective: To evaluate the First Foods curriculum as a tool for knowledge and behavior change for new immigrant families of young children. Methods: Immigrant caregivers of children less than 2 years old were invited to attend First Foods, a 4-class series. Each series was offered in 1 of 5 different languages (Arabic, Dari, Somali, Burmese, and Nepali). Recruitment occurred through community organizations, primary care clinics and Women, Infants, and Children (WIC), and classes were held in King County, Washington. The curriculum was developed and taught by a registered pediatric dietitian with input from general pediatricians, all experienced in the care of immigrant families. Classes were interpreted in the relevant language and course materials were translated. The classes were based on 4 themes -- 1) Child Eating and Development, 2) Eating Together, 3) Food Safety, and 4) Health Living -- and incorporated positive parenting and child development. Attendees completed pre- and post-surveys in their respective languages or in English. Descriptive statistics, chi-squared analyses, t-tests, and a multi-level linear regression model were conducted in Stata v14.0. Results: Participants in the classes included 47 caregivers (91% mothers). Nearly one-third had previously lived in a refugee camp. They had lived in the US a mean 5.5 years (95% CI: 3.8-7.2 years), attended a mean 8.6 years of school (95% CI: 7.1-10.1 years), and had a mean of 2.8 children (95% CI: 2.3-3.3 children). Classes ranged in size from 5 to 14 caregivers. Caregivers reported an improved understanding of 2 out of 4 methods to decrease risk of dental caries (drinking tap water, p = \u3c0.001; going to the dentist, p=0.02). They reported a decreased use of food as a reward from the pre- to the post-survey (p=0.027). Additionally, the caregivers reported increased frequency of considering sugar content in family foods (p=0.033), and decreased frequency of purchasing food at a convenience store, after participating in the curriculum (p=0.001). Conversely, there were several domains where caregivers did not show a change in their response. Conclusion: First Foods, a community-tailored, early childhood feeding curriculum for immigrant parents of young children, improved knowledge and behavior among caregivers from a variety of immigrant communities in some domains. In the other domains, there may be opportunities to further optimize the educational messages and approach

    Widespread nitrogen fixation in sediments from diverse deep-sea sites of elevated carbon loading

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    Nitrogen fixation, the biological conversion of N_2 to NH_3, is critical to alleviating nitrogen limitation in many marine ecosystems. To date, few measurements exist of N_2 fixation in deep‐sea sediments. Here, we conducted > 400 bottle incubations with sediments from methane seeps, whale falls and background sites off the western coast of the United States from 600 to 2893 m water depth to investigate the potential rates, spatial distribution and biological mediators of benthic N_2 fixation. We found that N2 fixation was widespread, yet heterogeneously distributed with sediment depth at all sites. In some locations, rates exceeded previous measurements by > 10×, and provided up to 30% of the community anabolic growth requirement for nitrogen. Diazotrophic activity appeared to be inhibited by pore water ammonium: N_2 fixation was only observed if incubation ammonium concentrations were ≤ 25 μM, and experimental additions of ammonium reduced diazotrophy. In seep sediments, N_2 fixation was dependent on CH_4 and coincident with sulphate reduction, consistent with previous work showing diazotrophy by microorganisms mediating sulphate‐coupled methane oxidation. However, the pattern of diazotrophy was different in whale‐fall and associated reference sediments, where it was largely unaffected by CH_4, suggesting catabolically different diazotrophs at these sites

    The EBV-Encoded Oncoprotein, LMP1, Recruits and Transforms Fibroblasts via an ERK-MAPK-Dependent Mechanism

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    open access articleLatent membrane protein 1 (LMP1), the major oncoprotein encoded by Epstein–Barr virus (EBV), is expressed at widely variable levels in undifferentiated nasopharyngeal carcinoma (NPC) biopsies, fueling intense debate in the field as to the importance of this oncogenic protein in disease pathogenesis. LMP1-positive NPCs are reportedly more aggressive, and in a similar vein, the presence of cancer-associated fibroblasts (CAFs) surrounding “nests” of tumour cells in NPC serve as indicators of poor prognosis. However, there is currently no evidence linking LMP1 expression and the presence of CAFs in NPC. In this study, we demonstrate the ability of LMP1 to recruit fibroblasts in vitro in an ERK-MAPK-dependent mechanism, along with enhanced viability, invasiveness and transformation to a myofibroblast-like phenotype. Taken together, these findings support a putative role for LMP1 in recruiting CAFs to the tumour microenvironment in NPC, ultimately contributing to metastatic disease

    Immersive-360° theatre: user experience in the virtual auditorium and platform efficacy for current and underserved audiences

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    The present study explores the efficacy and social potential of immersive-360° theater—live-captured theater performances filmed for virtual reality (VR) viewing—as a remote platform for audiences to view theater. We obtained survey and structured interview responses from 166 and 30 participants, respectively, self-categorized as regular theatergoers, novices, or underserved audiences. We measured immersion, presence, and emotional arousal in the virtual auditorium, technology acceptance, and social perceptions including platform compatibility with traditional theater and use as a psychosocial and accessibility promotion tool. Findings show that in the immersive-360° theater auditorium ratings for presence and immersion are mixed, and the latter is likely to be influenced by external factors including hardware quality and environmental distractors. For most, immersive-360° theater is regarded as a positive tool for psychosocial aspects and accessibility, but many highlighted the absence of social aspects which are central to the traditional theater experience and cannot be replicated in remote conditions. Despite this, the experience was enjoyable for most participants, and crucially, the majority of participants do not perceive immersive-360° theater as a “threat” to its traditional counterpart. Rather, with certain improvements it is seen as a compatible and complementary offering that has potential for use as a digital pipeline for underserved audiences and recruiting new patrons. Suggestions for improving the quality of the VR theater experience and its potential as an accessibility tool included improving headset quality and resolution, additional accessibility and user controls, and the ability to share the experience with somebody else in real time

    fMRI reveals reciprocal inhibition between social and physical cognitive domains

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    Two lines of evidence indicate that there exists a reciprocal inhibitory relationship between opposed brain networks. First, most attention-demanding cognitive tasks activate a stereotypical set of brain areas, known as the task-positive network and simultaneously deactivate a different set of brain regions, commonly referred to as the task negative or defaultmode network. Second, functional connectivity analyses show that these same opposed networks are anti-correlated in the resting state. Wehypothesize that these reciprocally inhibitory effects reflect two incompatible cognitive modes, each of which may be directed towards understanding the external world. Thus, engaging onemode activates one set of regions and suppresses activity in the other.Wetest this hypothesis by identifying two types of problem-solving task which, on the basis of prior work, have been consistently associated with the task positive and task negative regions: tasks requiring social cognition, i.e., reasoning about the mental states of other persons, and tasks requiring physical cognition, i.e., reasoning about the causal/mechanical properties of inanimate objects. Social and mechanical reasoning tasks were presented to neurologically normal participants during fMRI. Each task type was presented using both text and video clips. Regardless of presentation modality, we observed clear evidence of reciprocal suppression: social tasks deactivated regions associated with mechanical reasoning and mechanical tasks deactivated regions associated with social reasoning. These findings are not explained by self-referential processes, task engagement, mental simulation,mental time travel or external vs. internal attention, all factors previously hypothesized to explain default mode network activity. Analyses of resting state data revealed a close match between the regions our tasks identified as reciprocally inhibitory and regions of maximal anti-correlation in the resting state. These results indicate the reciprocal inhibition is not attributable to constraints inherent in the tasks, but is neural in origin. Hence, there is a physiological constraint on our ability to simultaneously engage two distinct cognitive modes. Furtherwork is needed tomore precisely characterize these opposing cognitive domains

    Methanotrophic bacterial symbionts fuel dense populations of deep-sea feather duster worms (Sabellida, Annelida) and extend the spatial influence of methane seepage

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    Deep-sea cold seeps are dynamic sources of methane release and unique habitats supporting ocean biodiversity and productivity. Here, we describe newly discovered animal-bacterial symbioses fueled by methane, between two species of annelid (a serpulid Laminatubus and sabellid Bispira) and distinct aerobic methane-oxidizing bacteria belonging to the Methylococcales, localized to the host respiratory crown. Worm tissue δ¹³C of −44 to −58‰ are consistent with methane-fueled nutrition for both species, and shipboard stable isotope labeling experiments revealed active assimilation of ¹³C-labeled methane into animal biomass, which occurs via the engulfment of methanotrophic bacteria across the crown epidermal surface. These worms represent a new addition to the few animals known to intimately associate with methane-oxidizing bacteria and may further explain their enigmatic mass occurrence at 150–million year–old fossil seeps. High-resolution seafloor surveys document significant coverage by these symbioses, beyond typical obligate seep fauna. These findings uncover novel consumers of methane in the deep sea and, by expanding the known spatial extent of methane seeps, may have important implications for deep-sea conservation
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