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Titlebook: Biochemical Regulation of Myocardium; Roland Vetter,Ernst-Georg Krause Book 1996 Kluwer Academic Publishers 1996 ATP.Calcium.Glycogen.Lipi

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發(fā)表于 2025-3-21 18:21:56 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Biochemical Regulation of Myocardium
影響因子2023Roland Vetter,Ernst-Georg Krause
視頻videohttp://file.papertrans.cn/187/186570/186570.mp4
學(xué)科分類Developments in Molecular and Cellular Biochemistry
圖書封面Titlebook: Biochemical Regulation of Myocardium;  Roland Vetter,Ernst-Georg Krause Book 1996 Kluwer Academic Publishers 1996 ATP.Calcium.Glycogen.Lipi
影響因子This special issue of Molecular and Cellular Biochemistry contains original research papers as well as invited reviews dedi- cated, on the occasion of the 40th anniversary of the inauguration of the Heart Research Group in Berlin-Buch that today forms a part there of the Max Delbriick Center for Molecular Medicine, to Professor Albert Wollenberger, founder of the Heart Research Group and for 21 years its head. The papers in this issue are written by researchers working in the field of cardiovascular research who together with Albert Wollenberger share the belief that an integrative application of advances in molecular and cellular biology will lead to new concepts for treatment and prevention of cardiovascular diseases. We hope that this special will serve as a good source of information in this regard. We wish to thank all of the contributors for their help and cooperation. We also wish to thank Mrs. Verona Kuhle for her secretarial help. We are grateful to Dr. Naranjan S. Dhalla, Editor-in-Chief of Molecular and Cellular Biochemistry for his interest and encouragement, and for agreeing to publish this issue in honor of Albert Wollenberger. ROLAND VETTER and ERNST -GEORG KRAUSE Ma
Pindex Book 1996
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Calcium channels and cation transport ATPases in cardiac hypertrophy induced by aortic constriction ance of the left ventricle was assessed by acute load test (ligation of ascending aorta) in open-chest anaesthetized animals. Two subgroups, designated compensated and decompensated hypertrophy (CH and DH), were distinguished on the basis of the functional reserve of left ventricle, which was signif
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Immediate postnatal rat heart development modified by abdominal aortic banding: Analysis of gene explopment. In contrast, cardiomyocyte maturation, as evidenced by cellular hypertrophy, is a long-term process that can occupy the bulk of the life-span of the mature organism. As the newborn myocyte undergoes a ‘transition’ from proliferative to hypertrophic growth, ventricular remodeling of the non-
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Cardiac phosphocreatine deficiency induced by GPA during postnatal development in ratn was studied in the rat heart during the weaning and adolescence period. GPA was given in tap water (1–1.5%) using pair drink controls. The feeding of animals with GPA solution for a six week period resulted in elevation of heart to body weight ratio due to body growth retardation. GPA accumulated
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