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Titlebook: Vessel Wall in Athero- and Thrombogenesis; Studies in the USSR Eugene I. Chazov (Director General),Vladimir N. Sm Book 1982 Springer-Verlag

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Functional Characteristics of the Endothelium in the Dynamics of Experimental Atherosclerosis Develond deposition of excess amounts of low density lipoproteins (LDL) and very low density lipoproteins (VLDL) in the subendothelial layer, in many respects condition the further development of the process up to atherosclerotic plaque formation.
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Structural Changes of the Vascular Wall in Regional Hemodynamic Disturbances1]. The ideas on which these studies are based proceed from the concepts of Thoma [2, 3], an outstanding pathoanatomist and biophysicist who at one time worked in Tartu, Russia [4], and then in Heidelberg. He was the first to indicate that the vessel structure reflects the tangential tension intensity of its wall.
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The Role of Apoproteins in Determination of Atherogeneity or Antiatherogeneity of Blood Plasma Lipop]. The results of experimental studies permit connection of these data with the ability of LDL and YLDL to transport cholesterol to the arterial wall cells, and the property of HDL to accept cholesterol from the cell membranes [8–11].
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A Biochemical and Morphological Study of Arterial Wall and Blood Plasma Lipids in Human Atheroscleroshared by all scientists. Some research workers believe that fatty streaks and fibrous plaques appear independently of each other in the human arterial wall and that each of these atherosclerotic lesions follows its own pathway of development [7–10].
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The Collagen-Elastic Framework of Major Arteriesranes of the artery consist of an unordered network of thin fibers immersed in homogeneous matter with specific fenestrae. Authors using the transmission electron microscopy (TEM) technique have noted the homogeneous structure of membranes [2, 3, 4]. Seifert [5] has found that pig aorta membranes consist of parallelly arranged elastic fibers.
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