Search Results - "Rønningen, K."

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  1. 1

    Low levels of antibodies for the oral bacterium Tannerella forsythia predict cardiovascular disease mortality in men with myocardial infarction: A prospective cohort study by Lund Håheim, Lise, Schwarze, P.E., Thelle, D.S., Nafstad, P., Rønningen, K.S., Olsen, I.

    Published in Medical hypotheses (01-05-2020)
    “…Antibody levels to periodontal pathogens in prediction of cardiovascular disease (CVD) mortality were explored using data from a health survey in Oslo in 2000…”
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  2. 2

    Enterobius vermicularis and allergic conditions in Norwegian children by BØÅS, H., TAPIA, G., RASMUSSEN, T., RØNNINGEN, K. S.

    Published in Epidemiology and infection (01-10-2014)
    “…Studies investigating the association between Enterobius vermicularis and allergic conditions have shown conflicting results. This study was conducted to test…”
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  3. 3

    Joint effects of HLA, INS, PTPN22 and CTLA4 genes on the risk of type 1 diabetes by Bjørnvold, M, Undlien, D. E, Joner, G, Dahl-Jørgensen, K, Njølstad, P. R, Akselsen, H. E, Gervin, K, Rønningen, K. S, Stene, L. C

    Published in Diabetologia (01-04-2008)
    “…Background/hypothesis HLA, INS, PTPN22 and CTLA4 are considered to be confirmed type 1 diabetes susceptibility genes. HLA, PTPN22 and CTLA4 are known to be…”
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  4. 4

    Agriculture as an upholder of cultural heritage? Conceptualizations and value judgements—A Norwegian perspective in international context by Daugstad, Karoline, Rønningen, Katrina, Skar, Birgitte

    Published in Journal of rural studies (2006)
    “…The multifunctional role of agriculture as a producer of collective goods in addition to food and fibre, has been stressed within the context of negotiations…”
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  5. 5

    Correlations between the incidence of childhood-onset type I diabetes in Europe and HLA genotypes by Rønningen, K S, Keiding, N, Green, A

    Published in Diabetologia (01-10-2001)
    “…There are large variations in the incidence of Type I (insulin-dependent) diabetes mellitus within Europe, ranging from 3.2 cases per 100,000 person-years in…”
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  6. 6

    A genome scan for quantitative trait loci affecting milk production in Norwegian dairy cattle by Olsen, H G, Gomez-Raya, L, Våge, D I, Olsaker, I, Klungland, H, Svendsen, M, Adnøy, T, Sabry, A, Klemetsdal, G, Schulman, N, Krämer, W, Thaller, G, Rønningen, K, Lien, S

    Published in Journal of dairy science (01-11-2002)
    “…An autosomal genome scan for quantitative trait loci (QTL) affecting milk production traits was carried out on the Norwegian Dairy Cattle population. Six…”
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  7. 7

    The relation between size at birth and risk of type 1 diabetes is not influenced by adjustment for the insulin gene (-23Hphl) polymorphism or HLA-DQ genotype by STENE, L. C, THORSBY, P. M, BERG, J. P, RØNNINGEN, K. S, UNDLIEN, D. E, JONER, G

    Published in Diabetologia (01-09-2006)
    “…Associations have been described between higher birthweight and increased risk of type 1 diabetes, and of insulin (INS) and human leucocyte antigen (HLA)…”
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  8. 8

    HLA-DRB1, -DQA1 and -DQB1 Alleles and Haplotypes in First-Generation Pakistani Immigrants in Norway by Rønningen, K. S., Yap, S. E., Brandal, K., Stormyr, A., Lie, B. A., Rasmussen, T., Stray-Pedersen, B., Akselsen, H. E.

    Published in Scandinavian journal of immunology (01-04-2012)
    “…Human leucocyte antigen (HLA) polymorphisms among immigrants from Pakistan have not been well investigated. Immigration to Norway started in the late 1960s for…”
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  9. 9

    Particular HLA-DQ molecules play a dominant role in determining susceptibility or resistance to Type 1 (insulin-dependent) diabetes mellitus by THORSBY, E, RØNNINGEN, K. S

    Published in Diabetologia (01-05-1993)
    “…Genes in the HLA complex are by far the most important in determining genetic predisposition or resistance to Type 1 (insulin-dependent) diabetes mellitus. In…”
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  10. 10

    Genetic and functional evaluation of an interleukin-12 polymorphism (IDDM18) in families with type 1 diabetes by Bergholdt, R, Ghandil, P, Johannesen, J, Kristiansen, O P, Kockum, I, Luthman, H, Rønningen, K S, Nerup, J, Julier, C, Pociot, F

    Published in Journal of medical genetics (01-04-2004)
    “…Many cell types express the p35 chain, while the p40 subunit is expressed principally by activated macrophages and B cells. 2 The heterodimer, p70 or p75, is…”
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  11. 11

    Susceptibility to human type 1 diabetes at IDDM2 is determined by tandem repeat variation at the insulin gene minisatellite locus by Bouzekri, N, Pritchard, L.E, Undlien, D.E, Pociot, F, Merriman, M.E, Bennett, S.T, Kawaguchi, Y, Bain, S.C, Cambon-Thomsen, A, Barnett, A.H, Powell, E.E, Todd, J.A, Nerup, J, Gough, S.C.L, Dronsfield, M.J, Rønningen, K.S, Lucassen, A.M

    Published in Nature genetics (01-03-1995)
    “…The IDDM2 locus encoding susceptibility to type 1 diabetes was mapped previously to a 4.1-kb region spanning the insulin gene and a minisatellite or variable…”
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  12. 12

    The Predisposition to Type 1 Diabetes Linked to the Human Leukocyte Antigen Complex Includes at Least One Non–Class II Gene by Lie, Benedicte A., Todd, John A., Pociot, Flemming, Nerup, Jørn, Akselsen, Hanne E., Joner, Geir, Dahl-Jørgensen, Knut, Rønningen, Kjersti S., Thorsby, Erik, Undlien, Dag E.

    Published in American journal of human genetics (01-03-1999)
    “…The human leukocyte antigen (HLA) complex, encompassing 3.5 Mb of DNA from the centromeric HLA-DPB2 locus to the telomeric HLA-F locus on chromosome 6p21,…”
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  13. 13

    Genetic variants of the HLA-A, HLA-B and AIF1 loci show independent associations with type 1 diabetes in Norwegian families by Eike, M C, Olsson, M, Undlien, D E, Dahl-Jørgensen, K, Joner, G, Rønningen, K S, Thorsby, E, Lie, B A

    Published in Genes and immunity (01-03-2009)
    “…The main genetic predisposition to type 1 diabetes (T1D) is known to be conferred by the HLA-DRB1 , -DQA1 and -DQB1 genes in the major histocompatibility…”
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  14. 14

    Linkage disequilibrium mapping of a type 1 diabetes susceptibility gene ( IDDM7 ) to chromosome 2q31-q33 by Hearne, C.M, Undlien, D.E, Cornélis, F, Pociot, F, Nisticò, L, Bain, S.C, Cucca, F, Buzzetti, R, Barnett, A.H, Copeman, J.B, Todd, J.A, Tosi, R, Nerup, J, Rønningen, K.S, Reed, P.W, Cornall, R.J

    Published in Nature genetics (01-01-1995)
    “…The role of human chromosome 2 in type 1 diabetes was evaluated by analysing linkage and linkage disequilibrium at 21 microsatellite marker loci, using 348…”
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  15. 15

    HLA-encoded genetic predisposition in IDDM: DR4 subtypes may be associated with different degrees of protection by Undlien, D. E., Friede, T., Rammensee, H. G., Joner, G., Dahl-Jorgensen, K., Sovik, O., Akselsen, H. E., Knutsen, I., Ronningen, K. S., Thorsby, E.

    Published in Diabetes (New York, N.Y.) (01-01-1997)
    “…HLA-encoded genetic predisposition in IDDM: DR4 subtypes may be associated with different degrees of protection. D E Undlien , T Friede , H G Rammensee , G…”
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  16. 16

    Polymorphic analysis of the human MHC-linked heat shock protein 70 (HSP70-2) and HSP70-Hom genes in insulin-dependent diabetes mellitus (IDDM) by Pociot, F, Rønningen, K S, Nerup, J

    Published in Scandinavian journal of immunology (01-11-1993)
    “…In the present study we characterized the frequencies of two polymorphisms within the MHC-linked heat shock protein (HSP) 70 genes in patients with…”
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  17. 17

    A Genomewide Scan for Type 1–Diabetes Susceptibility in Scandinavian Families: Identification of New Loci with Evidence of Interactions by Nerup, J, Pociot, F

    Published in American journal of human genetics (01-12-2001)
    “…Type 1 diabetes mellitus (TIDM) has a multifactorial etiology, with major genetic-susceptibility determinants located in the HLA and insulin-gene ( INS)…”
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  18. 18

    Expression of Mhc class I and II mRNA in a macrophage-like cell line (SHK-1) derived from Atlantic salmon, Salmo salar L., head kidney by KOPPANG, E.O., DANNEVIG, B.H., LIE, Ø., RØNNINGEN, K., PRESS, C.McL

    Published in Fish & shellfish immunology (01-08-1999)
    “…A cell-line derived from Atlantic salmon (Salmo salar L.) head kidney (SHK-1) consisting of macrophage-like cells was investigated for major histocompatibility…”
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  19. 19
  20. 20

    Mapping of the bovine genes of the de novo AMP synthesis pathway1 by Bønsdorff, T., Gautier, M., Farstad, W., Rønningen, K., Lingaas, F., Olsaker, I.

    Published in Animal genetics (01-12-2004)
    “…Summary The purine nucleotides adenosine monophosphate (AMP) and guanosine monophosphate (GMP) are critical for energy metabolism, cell signalling and cell…”
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