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1997 | 24 | 3 |

Tytuł artykułu

Kalcyfikacja - aktywny proces naczyniowy

Warianty tytułu

Języki publikacji

PL

Abstrakty

Wydawca

-

Rocznik

Tom

24

Numer

3

Opis fizyczny

s.367-373,bibliogr.

Bibliografia

  • 1. Agatston A., Janowitz W.R., Hildner F.J.: Quantification of coronary artery calcium using ultrafast computed tomography. J. Am. Coll. Cardiol., 1990, 15, 827.
  • 2. Babaev V.R., Bobryshev Y.V., Sukhova G.K.: Monocyte/macrophage accumulation and smooth musele cell phenotypes in early lesions of human aorta. Atherosclerosis 1993, 100, 1045.
  • 3. Beadenkopf W.G., Daoud A.S., Love B.M.: Calcification in coronary arteries and its relationship to arteriosclerosis and myocardial infarction. Am. J. Roengenol., 1964, 92, 865.
  • 4. Bobryshev Y.V., Lord R., Warren B.: Calcified deposit formation in intimal thickenings of the human aorta. Atherosclerosis 1995, 118, 9.
  • 5. Bostrom K., Watson K., Horn S.: Bone morphogenetic protein expression in human atherosclerotic lesions. J. Clin. Invest., 1993, 91, 1800.
  • 6. Bostrom K, Watson K.E., Stanford W.P.: Atherosclerotic calcification: relation to developmental osteogenesis. Am. J. Cardiol., 1995, 75, 88.
  • 7. Brighton C.T., Lorich D.G., Kupcha R.: The pericyte as a possible osteoblast progenitor cell. Clin. Orthop., 1992, 275, 287.
  • 8. Browner W.S., Pressman A.R., Nevit N.C.: For the Study of Osteoporotic Fractures Research Group. Association between low bone density and stroke in elderly women: the study of osteoporotic fractures. Stroke 1993, 24, 940.
  • 9. Demer L.L.: A skeleton in the atherosclerosis closet. Circulation 1995, 92, 2029.
  • 10. Demer L.L., Watson K.E., Bostrom K.: Mechanism of calcification in atherosclerosis. Trends Cardiovasc. Med., 1994, 4, 45.
  • 11. Devries S., Wolfkiel Ch., Fusman B.: Influence of age and gender on the presence of coronary calcium detected by ultrafast computed tomography. J. Am. Coll. Cardiol. 1997,25, 76.
  • 12. Dziedzic-Gocławska A.: Tkanka kostna. Histologia. Pod red. K. Ostrowskiego. Warszawa, PZWL, 1995, wyd. II.
  • 13. Fitzgerald P.J., Ports T.A., Yock P.G.: Contribution of localized calcium deposits to dissection after angioplasty: an observational study using intravascular ultrasound. Circulation 1992, 86, 64. 14. Giachelli C.M., Bae N., Almeida M.: Osteopontin is elevated during neointima formation in rat arteries and is a novel component of human atherosclerotic plaques. J. Clin. Invest., 1993, 92, 1686.
  • 15. Gijbers B.L.M.G., van Haarlem J.M., Soute B.A.M.: Characterisation of Glacontaining protein from calcified human atherosclerotic plaques. Arteriosclerosis 1990, 10, 991.
  • 16. Glasgov S., Weisenberg E., Zarins C.K.: Compensatory enlargement of human atherosclerotic coronary arteries. N. Engl. J. Med., 197, 316, 1371.
  • 17. Haddad J.G., Matsuoka L.Y., Hollis B.W.: Human plasma transport of vitamin D after its endogenous synthesis. J. Clin. Invest., 1993, 91, 2552.
  • 18. Hirsch D., Azoury R., Sarig S.: Colocalization of cholesterol and hydroxyapatite in human 1 atherosclerotic lesions. Calcif. Tissue Int., 1993, 52, 94.
  • 19. Hoeg J.M., Feuerstein I.M., Tucker E.E.: Detection and quantitation of calcific atherosclerosis by ultrafast computed tomography in children and young adults with homozygous familial hypercholesterolemia. Arteriose. Thromb., 1994, 14, 1066.
  • 20. Honye J., Mahon D.J., Jain A.: Morphological effects of coronary balloon angioplasty in vivo assessed by intravascular ultrasound imaging. Circulation 1992, 85, 1012.
  • 21. Kopieczna-Grzebieniak E., Piskorska D.: Kalcyfikacja, kostnienie ściany naczyniowej i udział hiperwitaminozy D w rozwoju miażdżycy. Czyn. Ryz., 1995, 4, 27.
  • 22. Lee R.T., Richardson S.G., Loree H.M.: Prediction of mechanical properties of human atherosclerotic tissue by high-frequency intravascular ultrasound imaging: an in vitro study. Arteriose. Thromb., 1992, 12, 1.
  • 23. Majewski Sł: Układ krążenia. Histologia. Pod red. K. Ostrowskiego. Warszawa, PZWL, 1995, wyd. II.
  • 24. Marcinowska-Suchowierska E.: Witamina D - aktualny stan wiedzy. Zaburzenia gospodarki wapniowo-fosforanowo-mag- nezowej i witaminy D. Pod red. E. Marcinowskiej-Suchowierskiej. Warszawa, Wyd. CMKP, 1995.
  • 25. Mohtai M., Yamamoto T.: Smooth muscle cell proliferation in the rat coronary artery induced by vitamin D. Atherosclerosis 1987, 63, 193.
  • 26. Moon J., Bandy B., Davison A.J.: Hypothesis: etiology of atherosclerosis and osteoporosis: are imbalances in the calciferol endocrine system implicated? J. Am. Coll. Nutr., 1992, 11, 567.
  • 27. O'Brien E., Bennet K., Garvin M.: Big-h3 a transforming growth factor - B - inducible gene is overexpressed in atherosclerotic and restenotic human vascular lesions. Arterioscler. Thromb. Vase. Biol., 1996, 16, 576.
  • 28. O'Brien K.D., Kuusisto J., Reichenbach D.D.: Osteopontin is expressed in human aortic valvular lesions. Circulation 1995, 92, 2163.
  • 29. Ozeki S., Ohtsuru A., Seto S.: Evidence that implicates the parathyroid hormone-related peptide in vascular stenosis. Increased gene expression in the intima of injured rat carotid arteries and human restenotic coronary lesions. Arteriose. Thromb. Vase. Biol. 1995,16, 565
  • 30. Qiao J.H., Xie P.Z., Fishbein M.C.: Pathology of atheromatous lesions in inbred and genetically engineered mice: genetic determination of arterial calcification. Arteriose. Thromb., 1994, 14, 1480.
  • 31. Scragg R., Jackson R., Holdaway I.M.: Myocardial infarction is inversley associated with plasma 25-hydroxyvitamin D3 levels: a community-based study. Int. J. Epidem., 1990, 19, 559.
  • 32. Seyama Y., Horiuch M., Hayashi M.: Effect of vitamin K2 on experimental calcinosis induced by vitamin D2 in rat soft tissue. Inter. J. Vit. Nutr. Res., 1996, 66, 36.
  • 33. Sharma S.K., Israel D.H., Ramean J.L.: Clinical, angiographic and procedural determinants of major and minor coronary dissection during angioplasty. Am. Heart. J. 1993, 126, 49.
  • 34. Termine J.D.: Bone matrix proteins and mineralization process. In: Primer on the Metabolic Bone Diseases and Disorders of Mineral Metabolism, Second Edition, Raven Press.
  • 35. Watson K.E., Bostrom K., Ravindranath R: TGF-B1 and 25- hydroxycholesterol stimulate osteoblast-like vascular cells to calcify.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-18b76b98-dfc7-4069-84e9-16564ecb5408
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