174 research outputs found

    Evaluating the Waterfowl Breeding Population and Habitat Survey for Scaup

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    Potential bias in breeding population estimates of certain duck species from the Waterfowl Breeding Population and Habitat Survey (WBPHS) has been a concern for decades. The WBPHS does not differentiate between lesser (Aythya affinis) and greater (A. marila) scaup, but lesser scaup comprise 89% of the combined scaup population and their population estimates are suspected to be biased. We marked female lesser scaup (i.e., marked scaup) in the Mississippi and Atlantic Flyways, Canada and United States, with implantable satellite transmitters to track their spring migration through the traditional and eastern survey areas of the WBPHS, 2005–2010. Our goal was to use data independent of the WBPHS to evaluate whether breeding population estimates for scaup were biased and identify variables that might be used in the future to refine population estimates. We found that the WBPHS estimates of breeding scaup are biased because, across years, only 30% of our marked scaup had settled for the breeding period when the strata in which they settled were surveyed, 43% were available to be counted in multiple survey strata as their migration continued during the WBPHS, 32% settled outside the WBPHS area, the number of times a marked scaup was available to be counted by survey crews varied positively with the latitude that a marked scaup settled on breeding areas, the probability of a marked scaup being in a stratum while it was surveyed varied among years, and these probabilities were positively correlated with the traditional and eastern breeding population estimates for scaup. Annual population estimates derived from banding data provide a less biased and preferable method of monitoring scaup population status and trend. Development of models that include metrics such as survey stratum latitude and annual spring environmental conditions might potentially be used to improve scaup breeding population estimates derived from the WBPHS, but independent estimates from banding data would be important to evaluate such models

    Assessment of health‐related family role functioning in systemic lupus erythematosus: Preliminary validation of a new measure

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    Objective Individuals with systemic lupus erythematosus (SLE) often experience symptoms that affect family relationships, which are important components of quality of life. To assess the impact of SLE on family role functioning, we developed a 6‐domain (Fatigue, Activity participation, Mental health, Isolation, Love and intimacy, and You/fulfilling family roles [FAMILY]) measure. The objectives of this study were to pilot test and achieve preliminary validation for the SLE‐FAMILY questionnaire. Methods This was a 3‐phase study. In phase 1 (development), domains were identified and items were generated for evaluation. During phase 2 (pilot test), a pilot test was conducted to assess the performance of candidate items. In phase 3 (initial validation), 52 individuals with SLE completed questionnaires, including the 6‐item SLE‐FAMILY. Data were analyzed for internal consistency reliability, and validity was assessed using correlations between the SLE‐FAMILY questionnaire and well‐validated measures. Results The SLE‐FAMILY had good test–retest reliability (0.82) and internal consistency (0.67). Reliability analysis of individual items revealed weakness in the performance of item 5. We reviewed raw data and determined that 9 individuals likely overlooked the reverse scoring of item 5, thus explaining its poor reliability. When these 9 individuals were excluded from analysis, Cronbach's alpha increased to 0.71, while test–retest reliability remained acceptable (0.75). Spearman's rho correlations supported the validity of the SLE‐FAMILY measure. A pilot test of the SLE‐FAMILY questionnaire without the reverse‐scored item was conducted; results suggested that the modified version is superior to the initial form. Conclusion The SLE‐FAMILY questionnaire is a promising new instrument for robust measurement of family role functioning.Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/93567/1/21676_ftp.pd

    Unsupplemented Artemia Diet Results in Reduced Growth and Jaw Dysmorphogenesis in Zebrafish

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    The number of laboratories using zebrafish as an experimental animal model has risen tremendously over the past two decades (Craig et al., 2006). As a result, the number of zebrafish facilities around the world has dramatically increased to meet the elevated demand for proper animal care and maintenance. In order to meet this demand, aquaculture facilities must employ husbandry protocols designed to produce a constant supply of healthy, viable eggs. Surprisingly, many husbandry strategies, particularly feeding protocols, are frequently passed down from members of one lab to another in a colloquial fashion without rigorous experimental validation. An ideal diet should consist of a minimal variety of foodstuffs designed to be nutritionally complete, simple to prepare, non-fouling, and cost-effective. Previous studies aimed at streamlining adult zebrafish feeding strategies in large aquaculture facilities have emphasized cost-effective, single-food models, but such diets lead to diminished survivorship and reproductive capacity (Goolish et al., 1999; Meinelt et al., 1999; Barnard & Bagatto, 2002), suggesting that these diets are lacking in some key nutritional component(s). Restricting adult fish diets to single foodstuffs, while desirable from a time and cost perspective, may not provide the trace mineral balance needed for adequate hormone and enzyme production, proper skeletal formation, and other biochemical or physiological needs. Nonetheless, given the intense breeding schedules many facilities are forced to adopt to meet research needs, a sin

    Efficiency of Milk Production and Feed Efficiency FH Cross Breed Fed Rice Straw during Dry Season

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    This study was done to assess the milk efficiency in dairy cows using straw as forage in dry season. Treatments of feed in this study refered to the pattern of feed given by farmers in Cibungbulang smallholder dairy farm with different feed ingredients formula i.e (T1, 59.54% hijauan + 40.46% konsentrat; T2, 26.38% hijauan + 41.42% konsentrat + 32.19% jerami; T3, 28.42% hijauan + 40.22% konsentrat + 31.36% jerami). The variables measured were dry matter intake (DMI), crude protein intake (CPI), total digestible nutrients (TDN), milk yield, milk quality and milk efficiency. Results showed that DMI did not met the requirement of dairy cows except for cows received T1 and T3, while the protein requirements of cows met except for cows received T1 and TDN requirement only met for cows received T2 and T3. The highest milk yield was for cows received T2. Group T2 showed the best feed formula for the dairy cows in Cibungbulang. Efficiency of feed and milk production of all feed formulas were inefficient to increase milk productions

    Elucidating the selenium and arsenic metabolic pathways following exposure to the non-hyperaccumulating Chlorophytum comosum, spider plant

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    Although many studies have investigated the metabolism of selenium and arsenic in hyperaccumulating plants for phytoremediation purposes, few have explored non-hyperaccumulating plants as a model for general contaminant exposure to plants. In addition, the result of simultaneous supplementation with selenium and arsenic has not been investigated in plants. In this study, Chlorophytum comosum, commonly known as the spider plant, was used to investigate the metabolism of selenium and arsenic after single and simultaneous supplementation. Size exclusion and ion-pairing reversed phase liquid chromatography were coupled to an inductively coupled plasma mass spectrometer to obtain putative metabolic information of the selenium and arsenic species in C. comosum after a mild aqueous extraction. The chromatographic results depict that selenium and arsenic species were sequestered in the roots and generally conserved upon translocation to the leaves. The data suggest that selenium was directly absorbed by C. comosum roots when supplemented with SeVI, but a combination of passive and direct absorption occurred when supplemented with SeIV due to the partial oxidation of SeIV to SeVI in the rhizosphere. Higher molecular weight selenium species were more prevalent in the roots of plants supplemented with SeIV, but in the leaves of plants supplemented with SeVI due to an increased translocation rate. When supplemented as AsIII, arsenic is proposed to be passively absorbed as AsIII and partially oxidized to AsV in the plant root. Although total elemental analysis demonstrates a selenium and arsenic antagonism, a compound containing selenium and arsenic was not present in the general aqueous extract of the plant

    Trapping redox partnerships in oxidant-sensitive proteins with a small, thiol-reactive cross-linker

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    A broad range of redox-regulated proteins undergo reversible disulfide bond formation on oxidation-prone cysteine residues. Heightened reactivity of the thiol groups in these cysteines also increases susceptibility to modification by organic electrophiles, a property that can be exploited in the study of redox networks. Here, we explored whether divinyl sulfone (DVSF), a thiol-reactive bifunctional electrophile, cross-links oxidant-sensitive proteins to their putative redox partners in cells. To test this idea, previously identified oxidant targets involved in oxidant defense (namely, peroxiredoxins, methionine sulfoxide reductases, sulfiredoxin, and glutathione peroxidases), metabolism, and proteostasis were monitored for cross-link formation following treatment of Saccharomyces cerevisiae with DVSF. Several proteins screened, including multiple oxidant defense proteins, underwent intermolecular and/or intramolecular cross-linking in response to DVSF. Specific redox-active cysteines within a subset of DVSF targets were found to influence cross-linking; in addition, DVSF-mediated cross-linking of its targets was impaired in cells first exposed to oxidants. Since cross-linking appeared to involve redox-active cysteines in these proteins, we examined whether potential redox partners became cross-linked to them upon DVSF treatment. Specifically, we found that several substrates of thioredoxins were cross-linked to the cytosolic thioredoxin Trx2 in cells treated with DVSF. However, other DVSF targets, like the peroxiredoxin Ahp1, principally formed intra-protein cross-links upon DVSF treatment. Moreover, additional protein targets, including several known to undergo S-glutathionylation, were conjugated via DVSF to glutathione. Our results indicate that DVSF is of potential use as a chemical tool for irreversibly trapping and discovering thiol-based redox partnerships within cells

    Burden of childhood-onset arthritis

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    Juvenile arthritis comprises a variety of chronic inflammatory diseases causing erosive arthritis in children, often progressing to disability. These children experience functional impairment due to joint and back pain, heel pain, swelling of joints and morning stiffness, contractures, pain, and anterior uveitis leading to blindness. As children who have juvenile arthritis reach adulthood, they face possible continuing disease activity, medication-associated morbidity, and life-long disability and risk for emotional and social dysfunction. In this article we will review the burden of juvenile arthritis for the patient and society and focus on the following areas: patient disability; visual outcome; other medical complications; physical activity; impact on HRQOL; emotional impact; pain and coping; ambulatory visits, hospitalizations and mortality; economic impact; burden on caregivers; transition issues; educational occupational outcomes, and sexuality
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