2 research outputs found

    Dynamical Left-Right Symmetry Breaking

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    We study a left--right symmetric model which contains only elementary gauge boson and fermion fields and no scalars. The phenomenologically required symmetry breaking emerges dynamically leading to a composite Higgs sector with a renormalizable effective Lagrangian. We discuss the pattern of symmetry breaking and phenomenological consequences of this scenario. It is shown that a viable top quark mass can be achieved for the ratio of the VEVs of the bi--doublet tanβκ/κ\tan\beta\equiv\kappa/\kappa' =~ 1.3--4. For a theoretically plausible choice of the parameters the right--handed scale can be as low as 20TeV\sim 20 TeV; in this case one expects several intermediate and low--scale scalars in addition to the \SM Higgs boson. These may lead to observable lepton flavour violation effects including μeγ\mu\to e\gamma decay with the rate close to its present experimental upper bound.Comment: 51 pages, LaTeX and uuencoded, packed Postscript figures. The complete paper, including figures, is also available via WWW at http://www.cip.physik.tu-muenchen.de/tumphy/d/T30d/PAPERS/ TUM-HEP-222-95.ps.g

    Pyridoxine responsive megaloblastic anaemia in pregnancy: a case report of two patients

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    In pregnancy megaloblastic anaemia commonly results from folic acid deficiency partly due to placenta transfer to fetus, but mainly because of increased folate catabolism due to cleavage of folate coenzymes in rapidly proliferating tissues. Cobalamin deficiency causing megaloblastic anaemia has been described in infants born to severely cobalamin deficient mothers, but its deficiency is very rare. Similarly Pyridoxine deficiency is also rare but if it does occur, it is often in association with deficiency in several B- Complex vitamins. We report a case of megaloblastic anaemia in pregnancy which was responsive to pyridoxine with a view to increasing the awareness of pyridoxine deficiency complicating megalobastic anaemia.Keywords: Megaloblastic Anaemia, Pyridoxine Deficiency, Pregnanc
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