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Sökning: WFRF:(Diekmann Kristin)

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1.
  • Diekmann, Kristin, et al. (författare)
  • Impact of comorbidities and co-medication on disease onset and progression in a large German ALS patient group
  • 2020
  • Ingår i: Journal of Neurology. - : Springer. - 0340-5354 .- 1432-1459. ; 267:7, s. 2130-2141
  • Tidskriftsartikel (refereegranskat)abstract
    • Introduction: Amyotrophic lateral sclerosis (ALS) is a progressive neurodegenerative disease with loss of muscle function. The pathogenesis is still unclear and the heterogeneity of ALS phenotypes is huge. We investigated a large population of ALS patients and controls concerning comorbidities and medications to detect specific risk or protective factors regarding onset and progression of ALS.Methods: We investigated a cohort of 200 ALS patients pro- and retrospectively compared to a control group. For comparison of frequencies of comorbidities and medication intake, uni- and multivariate binary logistic regressions were performed. To analyze the influence of comorbidities and medication on the progression of ALS, we used linear regression analysis.Results: ALS patients showed a relevantly higher prevalence of strokes and depression compared to controls. Moreover, ALS patients reported relevantly more often regular physical activity and their BMI was lower. The coexistence of coronary heart disease was associated with a relevantly faster disease progression. Intake of contraceptives was relevantly higher in controls compared with ALS patients.Conclusions: Our results suggest stroke, lower BMI, and regular physical activity as risk factors for ALS. Strokes could be a possible trigger of the pathogenetic pathway of ALS and the lower BMI with consecutively lower rate of hyperlipidemia supports the hypothesis of premorbid hypermetabolism in ALS patients. Coexistence of coronary heart disease possibly has a negative influence on respiratory involvement. Contraceptives could be beneficial due to a protective effect of estrogen. Information on influencing factors can help to elucidate the pathogenesis of ALS or provide approaches for possible therapeutic options.
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2.
  • Mehner, Thomas, et al. (författare)
  • Weak response of animal allochthony and production to enhanced supply of terrestrial leaf litter in nutrient-rich lakes
  • 2016
  • Ingår i: Ecosystems (New York. Print). - : Springer Science and Business Media LLC. - 1432-9840 .- 1435-0629. ; 19:2, s. 311-325
  • Tidskriftsartikel (refereegranskat)abstract
    • Ecosystems are generally linked via fluxes of nutrients and energy across their boundaries. For example, freshwater ecosystems in temperate regions may receive significant inputs of terrestrially derived carbon via autumnal leaf litter. This terrestrial particulate organic carbon (POC) is hypothesized to subsidize animal production in lakes, but direct evidence is still lacking. We divided two small eutrophic lakes each into two sections and added isotopically distinct maize litter to the treatment sections to simulate increased terrestrial POC inputs via leaf litter in autumn. We quantified the reliance of aquatic consumers on terrestrial resources (allochthony) in the year subsequent to POC additions by applying mixing models of stable isotopes. We also estimated lake-wide carbon (C) balances to calculate the C flow to the production of the major aquatic consumer groups: benthic macroinvertebrates, crustacean zooplankton, and fish. The sum of secondary production of crustaceans and benthic macroinvertebrates supported by terrestrial POC was higher in the treatment sections of both lakes. In contrast, total secondary and tertiary production (supported by both autochthonous and allochthonous C) was higher in the reference than in the treatment sections of both lakes. Average aquatic consumer allochthony per lake section was 27–40%, although terrestrial POC contributed less than about 10% to total organic C supply to the lakes. The production of aquatic consumers incorporated less than 5% of the total organic C supply in both lakes, indicating a low ecological efficiency. We suggest that the consumption of terrestrial POC by aquatic consumers facilitates a strong coupling with the terrestrial environment. However, the high autochthonous production and the large pool of autochthonous detritus in these nutrient-rich lakes make terrestrial POC quantitatively unimportant for the C flows within food webs.
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