Littérature scientifique sur le sujet « Coronary heart disease Molecular aspects »
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Articles de revues sur le sujet "Coronary heart disease Molecular aspects"
Pries, Axel R., Wolfgang M. Kuebler et Helmut Habazettl. « Coronary Microcirculation in Ischemic Heart Disease ». Current Pharmaceutical Design 24, no 25 (8 novembre 2018) : 2893–99. http://dx.doi.org/10.2174/1381612824666180625142341.
Texte intégralCavarretta, Elena, et Giacomo Frati. « MicroRNAs in Coronary Heart Disease : Ready to Enter the Clinical Arena ? » BioMed Research International 2016 (2016) : 1–10. http://dx.doi.org/10.1155/2016/2150763.
Texte intégralSantosa Putra, Iwan Cahyo, et William Kamarullah. « Diving deep into chelation therapy for coronary artery disease : a review ». International Journal of Basic & ; Clinical Pharmacology 8, no 12 (25 novembre 2019) : 2769. http://dx.doi.org/10.18203/2319-2003.ijbcp20195295.
Texte intégralKhaw, Kay-Tee. « Epidemiological aspects of ageing ». Philosophical Transactions of the Royal Society of London. Series B : Biological Sciences 352, no 1363 (29 décembre 1997) : 1829–35. http://dx.doi.org/10.1098/rstb.1997.0168.
Texte intégralMalekmohammad, Khojasteh, Robert D. E. Sewell et Mahmoud Rafieian-Kopaei. « Antioxidants and Atherosclerosis : Mechanistic Aspects ». Biomolecules 9, no 8 (25 juillet 2019) : 301. http://dx.doi.org/10.3390/biom9080301.
Texte intégralSimmonds, Steven J., Ilona Cuijpers, Stephane Heymans et Elizabeth A. V. Jones. « Cellular and Molecular Differences between HFpEF and HFrEF : A Step Ahead in an Improved Pathological Understanding ». Cells 9, no 1 (18 janvier 2020) : 242. http://dx.doi.org/10.3390/cells9010242.
Texte intégralGolukhova, E. Z., O. I. Gromova, R. A. Shomahov, N. I. Bulaeva et L. A. Bockeria. « Monogenec Arrhythmic Syndromes : From Molecular and Genetic Aspects to Bedside ». Acta Naturae 8, no 2 (15 juin 2016) : 62–74. http://dx.doi.org/10.32607/20758251-2016-8-2-62-74.
Texte intégralBastos, Marcelo B., Maarten P. van Wiechen et Nicolas M. Van Mieghem. « PulseCath iVAC2L : next-generation pulsatile mechanical circulatory support ». Future Cardiology 16, no 2 (mars 2020) : 103–12. http://dx.doi.org/10.2217/fca-2019-0060.
Texte intégralVentegodt, Søren, Efrat Merrick et Joav Merrick. « Clinical Holistic Medicine : The Dean Ornish Program (“Opening the Heart”) in Cardiovascular Disease ». Scientific World JOURNAL 6 (2006) : 1977–84. http://dx.doi.org/10.1100/tsw.2006.330.
Texte intégralShi, Qi, Kuo Gao, Huihui Zhao, Juan Wang, Xing Zhai, Peng Lu, Jianxin Chen et Wei Wang. « Phenomics Research on Coronary Heart Disease Based on Human Phenotype Ontology ». BioMed Research International 2014 (2014) : 1–16. http://dx.doi.org/10.1155/2014/240284.
Texte intégralThèses sur le sujet "Coronary heart disease Molecular aspects"
Warner, Anke Sigrid. « The expression, regulation and effects of inducible nitric oxide synthase in hibernating myocardium ». Title page, contents and summary only, 2002. http://web4.library.adelaide.edu.au/theses/09PH/09phw279.pdf.
Texte intégralMakubalo, Zola. « Mutation screening of candidate genes and the development of polymorphic markers residing on chromosome 19q13.3, the progressive familial heart block I gene search area ». Thesis, Stellenbosch : Stellenbosch University, 2000. http://hdl.handle.net/10019.1/51838.
Texte intégralENGLISH ABSTRACT: Progressive familial heart block type I (PFHBI) is a cardiac ventricular conduction disorder of unknown cause associated with risk of sudden death, which has been described in several South African families. Clinically, PFHBI is characterised by right bundle branch block on ECG, which may progress to complete heart block, necessitating pacemaker implantation. The disease shows an autosomal dominant pattern of inheritance with evidence of genetic anticipation. Using genetic linkage analysis, the PFHBI-causative gene was mapped to a 10 eentimorgan (cM) gene-rich area of chromosome (C) 19q13.3, which has, subsequently, been reduced to 7cM by fine mapping with polymorphic dinucleotide (CA)n short tandem repeat (STR) markers. Several attractive candidate genes, including muscle glycogen synthase (GSY 1) and histidine-rich calcium binding protein (HRC), lie within this region. The aim of the present study was two-fold: 1) to identify and characterise tetranucleotide (AAAT)n STRs within the PFHBI critical region that could be developed as polymorphic markers for use in genetic fine mapping and 2) to screen selected regions of GSY 1and HRC, positional candidate genes, for the presence ofPFHBI-causing mutation(s). Cosmids harbouring CI9q13.3 insert DNA were screened for the presence of (AAAT)n STRs by dot blot and Southern blot hybridisation using a radiolabelled (AAAT)lO oligonucleotide probe. To characterise the harboured (AAAT)n STRs, the positively hybridising fragments identified by Southern blot were sub-cloned, sequenced and primers designed from the unique repeat-flanking sequences. These primers were used to genotype the (AAAT)n repeat locus to assess its polymorphic nature in a panel of unrelated individuals. Alternatively, vectorette PCR, a rapid method of identifying repeat sequences and obtaining the flanking sequences in large inserts, was employed to develop polymorphic markers from the positively hybridising clones. Selected exons of GSY1 and HRC were screened for the presence of potentially disease-causing mutations by PCR-SSCP analysis and direct sequencing, respectively, in PFHBI-affected and unaffected family members. Of the available cosmid clones that gave strong signals on dot blot and Southern blot hybridisation, three, 29395, 24493 and 20381, were located within the critical PFHBI area and were used for marker development. An interrupted (AAAT)n repeat motif (n less than 5) was identified in cosmid 29395, however, the repeat locus was not polymorphic in the tested population. No (AAAT)n motif, single or repeated was observed in the partial sequence of the sub-cloned fragment of cosmid 24493. Using vectorette peR, no repeated (AAAT)n motif was identified on sequencing the generated products in either cosmid 24493 or 2038l. However, diffuse single AAAT motifs were detected in both cosmids. Exons 4, 5, 11, 12 and 16 of GSY 1, containing domains that are conserved across species, and the conserved eterminus- encoding exons 2-6 of HRC were selected for screening for potential PFHBI-causing mutation(s). However, no sequence variations were detected. The interrupted (AAAT)n repeat identified in cosmid 29395 was not polymorphic, which confirmed reports that complex repeats, especially those containing AAAT motifs of less than 6 repeats, are not polymorphic. One possible explanation for the absence of a repeated AAAT motif in cosmids 24493 and 20381, which both gave positive hybridisation signals, is that the low annealing temperature of the AfT -rich repeat-anchored primers used in vectorette peR may have resulted in transient annealing to the diffuse single AAAT motifs detected on sequencing. The screened regions of candidate genes GSYI and HRC were excluded from carrying the disease-causing mutation(s). The availability of new sequence data generated by the Human Genome Project will influence future strategies to identify the PFHBI gene. Electronic searches will allow identification of STR sequences for development of polymorphic markers and gene annotation will allow selection of new candidate genes for mutation screening.
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Sarwar, Nadeem. « Emerging molecular and genetic risk factors for coronary heart disease ». Thesis, University of Cambridge, 2009. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.611549.
Texte intégralAshton, Emma Louise, et emma ashton@deakin edu au. « Effects of dietary constituents on coronary heart disease risk factors ». Deakin University. School of Biological and Chemical Sciences, 2000. http://tux.lib.deakin.edu.au./adt-VDU/public/adt-VDU20061207.153511.
Texte intégralAbdul-Majid, Hariyati Shahrima. « Psychological aspects of recovery from coronary heart disease among patients in Malaysia ». Thesis, University of Surrey, 2001. http://epubs.surrey.ac.uk/843015/.
Texte intégralHo, Lai-yi Ada, et 何麗儀. « Does social support influence coronary heart disease prognosis ? : a meta-analysis ». Thesis, The University of Hong Kong (Pokfulam, Hong Kong), 2005. http://hub.hku.hk/bib/B39724116.
Texte intégralJenneke, Cindy A. N. « The effect of dietary patterns on risk factors for CHD : a comparative study of students residing at the Adventist International Institute of Advanced Studies in the Philippines ». Thesis, Link to online version, 2006. http://hdl.handle.net/10019/554.
Texte intégralCao, Fei. « Chlamydia pneumoniae, toll-like receptors and pathogenesis of atherosclerotic heart disease ». View the abstract Download the full-text PDF version (on campus access only), 2007. http://etd.utmem.edu/ABSTRACTS/2007-022-Cao-index.html.
Texte intégralTitle from title page screen (viewed on May 16, 2008 ). Research advisor: Gerald I. Byrne, Ph.D. Document formatted into pages (xi, 114 p. : ill.). Vita. Abstract. Includes bibliographical references (p. 65-107).
Buri, Robert J. (Robert John). « The Role of Anger/Hostility on Physiological and Behavioral Risk Factors for Coronary Heart Disease ». Thesis, University of North Texas, 1995. https://digital.library.unt.edu/ark:/67531/metadc278222/.
Texte intégralPepe, Salvatore. « The influence of dietary fatty acids on cardiac function / ». Title page, table of contents and abstract only, 1991. http://web4.library.adelaide.edu.au/theses/09PH/09php4201.pdf.
Texte intégralLivres sur le sujet "Coronary heart disease Molecular aspects"
Vlodaver, Zeev. Coronary Heart Disease : Clinical, Pathological, Imaging, and Molecular Profiles. Boston, MA : Springer US, 2012.
Trouver le texte intégralS, Leon Arthur, dir. Coronary heart disease : A behavorial perspective. Champaign, Ill : Research Press, 1992.
Trouver le texte intégralBudnick, Herbert N. Heart to heart : A guide to the psychological aspects of heart disease. Santa Fe, NM : Health Press, 1991.
Trouver le texte intégralThompson, David R. Counselling the coronary patient and partner. Harrow : Scutari Press, 1990.
Trouver le texte intégralKris-Etherton, P. M. Trans fatty acids and coronary heart disease risk. Washington, D.C : ILSI Press, 1995.
Trouver le texte intégralMogadam, Michael. Choosing foods for a healthy heart. Yonkers, N.Y : Consumer Reports Books, 1993.
Trouver le texte intégralMangiapane, E. H. Diet, lipoproteins and coronary heart disease : A biochemical perspective. Nottingham : Nottingham University Press, 1998.
Trouver le texte intégral1919-, Hallgren Bo, et Svenska läkaresällskapet, dir. Diet and prevention of coronary heart disease and cancer. New York : Raven Press, 1986.
Trouver le texte intégralHealthy heart handbook : How to prevent and reverse heart disease ... Makaha, Hawaii : Healing Heart Foundation, 1994.
Trouver le texte intégralFriedman, Meyer. Treating type A behavior and your heart. New York : Fawcett Crest, 1985.
Trouver le texte intégralChapitres de livres sur le sujet "Coronary heart disease Molecular aspects"
Lemmer, Björn, et Klaus Witte. « Chronopharmacological aspects of coronary heart disease ». Dans Developments in Cardiovascular Medicine, 295–308. Dordrecht : Springer Netherlands, 1996. http://dx.doi.org/10.1007/978-94-009-1577-0_19.
Texte intégralGalton, David J. « Molecular Genetics of Coronary Heart Disease ». Dans Advances in Experimental Medicine and Biology, 95–105. Boston, MA : Springer US, 1988. http://dx.doi.org/10.1007/978-1-4613-0733-4_13.
Texte intégralAssmann, G., A. von Eckardstein et H. Funke. « Apolipoproteins, Reverse Cholesterol Transport and Coronary Heart Disease ». Dans Cellular and Molecular Biology of Atherosclerosis, 159–66. London : Springer London, 1992. http://dx.doi.org/10.1007/978-1-4471-1909-8_15.
Texte intégralHeusch, Gerd, et B. D. Guth. « New aspects on the pathophysiology of coronary heart disease ». Dans Treatment with Gallopamil, 65–84. Heidelberg : Steinkopff, 1989. http://dx.doi.org/10.1007/978-3-642-85376-0_7.
Texte intégralPatsch, J. R., et G. Miesenboeck. « High-Density Lipoprotein Cholesterol, Triglycerides and Coronary Heart Disease ». Dans Cellular and Molecular Biology of Atherosclerosis, 153–57. London : Springer London, 1992. http://dx.doi.org/10.1007/978-1-4471-1909-8_14.
Texte intégralSoubrier, F., X. Jeunemaître, B. Rigat, F. Cambien et P. Corvol. « Molecular Genetics and Familial Arterial Hypertension ». Dans Genetic Approaches to Coronary Heart Disease and Hypertension, 27–37. Berlin, Heidelberg : Springer Berlin Heidelberg, 1991. http://dx.doi.org/10.1007/978-3-642-76891-0_4.
Texte intégralCalabresi, Laura, et Guido Francheschini. « Genetic LCAT Deficiency : Molecular Diagnosis, Plasma Lipids, and Atherosclerosis ». Dans High Density Lipoproteins, Dyslipidemia, and Coronary Heart Disease, 89–93. New York, NY : Springer New York, 2010. http://dx.doi.org/10.1007/978-1-4419-1059-2_11.
Texte intégralBerg, Kåre. « Genetics of Coronary Heart Disease and its Risk Factors ». Dans Ciba Foundation Symposium 130 - Molecular Approaches to Human Polygenic Disease, 14–33. Chichester, UK : John Wiley & Sons, Ltd., 2007. http://dx.doi.org/10.1002/9780470513507.ch3.
Texte intégralter Keurs, Henk E. D. J. « Macroscopic and Microscopic Aspects of Cardiac Dysfunction in Congestive Heart Failure ». Dans Molecular Defects in Cardiovascular Disease, 95–107. New York, NY : Springer New York, 2011. http://dx.doi.org/10.1007/978-1-4419-7130-2_8.
Texte intégralInagaki, Tadakatsu, Hirotsugu Tsuchimochi, James T. Pearson, Daryl O. Schwenke, Keiji Umetani, Mikiyasu Shirai et Yoshikazu Nakaoka. « Impaired Right Coronary Vasodilator Function in Pulmonary Hypertensive Rats Assessed by In Vivo Synchrotron Microangiography ». Dans Molecular Mechanism of Congenital Heart Disease and Pulmonary Hypertension, 193–95. Singapore : Springer Singapore, 2020. http://dx.doi.org/10.1007/978-981-15-1185-1_25.
Texte intégralActes de conférences sur le sujet "Coronary heart disease Molecular aspects"
Tao, Weiye, Laiyou Wang, Guohua Cheng, Jun Liu et Langping Tang. « Mechanism of Sini Decoction on Coronary Heart Disease in Molecular Level ». Dans 2nd International Conference on Computer and Information Applications (ICCIA 2012). Paris, France : Atlantis Press, 2012. http://dx.doi.org/10.2991/iccia.2012.144.
Texte intégralUzbekova, Nelly, Sergey Kityan et Nodira Badalbaeva. « USE OF PLETHYSMOGRAPHY IN THE ASSESSMENT OF THE ARTERIAL WALL IN PERSONS WITH CORONARY HEART DISEASE ». Dans THEORETICAL AND PRACTICAL ASPECTS OF MODERN SCIENTIFIC RESEARCH. European Scientific Platform, 2021. http://dx.doi.org/10.36074/logos-30.04.2021.v2.43.
Texte intégralFalk, E. A. « UNSTABLE ANGINA PECTORIS : PATHOLOGIC ASPECTS ». Dans XIth International Congress on Thrombosis and Haemostasis. Schattauer GmbH, 1987. http://dx.doi.org/10.1055/s-0038-1643711.
Texte intégralDenisova, Tatyana P., Lidia I. Malinova et Igor A. Malinov. « Physical and mathematical aspects of blood-glucose- and insulin-level kinetics in patients with coronary heart disease and high risk of its development ». Dans Saratov Fall Meeting 2000, sous la direction de Valery V. Tuchin. SPIE, 2001. http://dx.doi.org/10.1117/12.431540.
Texte intégralZhang, Song, John A. Crow, Robert C. Cooper, Ronald M. McLaughlin, Shane Burgess, Ali Borazjani et Jun Liao. « Detection of Myocardial Fiber Disruption in Artificial Lesions With 3D DT-MRI Tract Models ». Dans ASME 2008 Summer Bioengineering Conference. American Society of Mechanical Engineers, 2008. http://dx.doi.org/10.1115/sbc2008-193121.
Texte intégralPoniewierski, M., M. Barthels et H. Poliwoda. « THE SAFETY AND EFFICACY OF A LOW MOLECULAR WEIGHT HEPARIN (FRAGMIN) IN THE PREVENTION OF DEEP VEIN THROMBOSIS IN MEDICAL PATIENTS : A RANDOMIZED DOUBLE-BLIND TRIAL ». Dans XIth International Congress on Thrombosis and Haemostasis. Schattauer GmbH, 1987. http://dx.doi.org/10.1055/s-0038-1643224.
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