Showing 641 - 660 results of 105,810 for search '(( 5 ((((we decrease) OR (nn decrease))) OR (a decrease)) ) OR ( 3 points decrease ))', query time: 1.70s Refine Results
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    The Type 2 Diabetes Risk Allele of <i>TMEM154</i>-rs6813195 Associates with Decreased Beta Cell Function in a Study of 6,486 Danes by Marie Neergaard Harder (232759)

    Published 2015
    “…Significant associations between <i>TMEM154</i>-rs6813195 and the beta cell measures insulinogenic index and disposition index and between <i>FAF1</i>-rs17106184 and 2-hour serum insulin levels were selected for further investigation in additional Danish studies and results were combined in meta-analyses including up to 6,486 Danes.</p><p>Results</p><p>We confirmed associations with type 2 diabetes for five of the seven SNPs (<i>TMEM154</i>-rs6813195, <i>FAF1</i>-rs17106184, <i>POU5F1/TCF19</i>-rs3130501, <i>ARL15</i>-rs702634 and <i>ABCB9/MPHOSPH9</i>-rs4275659). …”
  3. 643

    Data and code from: Continental declines in North American small mammal populations by Alec Medd (20968740)

    Published 2025
    “…To test this idea, we assembled from small mammal researchers 818 time series of small mammal abundances, containing a total of 5,317 individual abundance data points, for 66 species in 21 genera. …”
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    DataSheet2_Treatment of wild-type mice with 2,3-butanediol, a urinary biomarker of Fmo5−/− mice, decreases plasma cholesterol and epididymal fat deposition.pdf by Sunil Veeravalli (5074115)

    Published 2022
    “…<p>We previously showed that Fmo5<sup>−/−</sup> mice exhibit a lean phenotype and slower metabolic ageing. …”
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    DataSheet1_Treatment of wild-type mice with 2,3-butanediol, a urinary biomarker of Fmo5−/− mice, decreases plasma cholesterol and epididymal fat deposition.PDF by Sunil Veeravalli (5074115)

    Published 2022
    “…<p>We previously showed that Fmo5<sup>−/−</sup> mice exhibit a lean phenotype and slower metabolic ageing. …”
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    Fig 7 - by Jan Maleček (17396660)

    Published 2023
    Subjects:
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    Fig 4 - by Jan Maleček (17396660)

    Published 2023
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    The Transition from a Compensatory Increase to a Decrease in C-peptide During the Progression to Type 1 Diabetes and Its Relation to Risk by Heba M Ismail (9568748)

    Published 2022
    “…Conclusions</p> <p>A transition from an increase to a decrease in AUC C-peptide approximately 1.5 years pre-diagnosis was validated in two independent cohorts. …”
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