Anonymous. Aortic distensibility and screening for coronary atheroma.Lancet 1991;338:288.
Asmar R, Benetos A, Brahimi M, Chaouche K, Safar M. Arterial and antihypertensive effects of nitrendipine: A double-blind comparison versus placebo.J Cardiovasc Pharmacol 1992;20:858–863.
Google Scholar
Athanassopoulos G, Olympios C, Foussas S, Cokkinos DV. Atheromatous plaques in the thoracic aorta are associated with decreased aortic distensibility evaluated with transesophageal echocardiography and automatic boundaries detection.J Am Coll Cardiol 1994;23:146A.
Google Scholar
Avolio AP, Deng FQ, Li WQ, et al. Effects of aging on arterial distensibility in populations with high and low prevalance of hypertension: Comparison between urban and rural communities in China.Circulation 1985;71:202–210.
Google Scholar
Bader H. Dependence of wall stress in the human thoracic aorta on age and pressure.Circ Res 1967;20:354–361.
Google Scholar
Bader H. Importance of the gerontology of elastic arteries in the development of essential hypertension.Clin Physiol Biochem 1983;1:36–56.
Google Scholar
Bergel DH. The static elastic properties of the arterial wall.J Physiol (Lond) 1961;156:445–457.
Google Scholar
Blankehorn DH, Kramsch DM. Reversal of atherosis and sclerosis: The two components of atherosclerosis.Circulation 1989;79:1–7.
Google Scholar
Böger A, Wezler K. Zur Wirkung der Muskulatur auf die Elastizität der lebenden Arterienwand.Klin Wschr 1936;559–562.
Bramwell JC, Hill AY. Velocity of transmission of the pulsewave and elasticity of arteries.Lancet 1922;I:891–892.
Google Scholar
Bramwell JC, Downing AC, Hill AY. The effect of blood pressure on the extensibility of the human artery.Heart 1923;10:289–300.
Google Scholar
Breithaupt K, Erb K, Neumann B, Wolf GK, Belz GG. Comparison of four non-invasive techniques to measure stroke volume: Dual-beam Doppler echoaortography, electrical impedance cardiography, mechanospygmography and M-mode echocardiography of the left ventricle.Am J Noninvas Cardiol 1990;225:203–209.
Google Scholar
Breithaupt K, Belz GG, Sinn W. Non-invasive assessments of compliance of the aortic Windkessel in man derived from pulse pressure/storage volume ratio and from pulse wave velocity.Clin Physiol Biochem 1992a;9:18–25.
Google Scholar
Breithaupt K, Leschinger M, de Mey C, Belz GG. Aortic compliance in hypertension—effects of cilazapril and hydrochlorothiazide can be distinguished [letter].Blood Pressure 1992b;1:187.
Google Scholar
Cabrera E, Levenson J, Armentano R, Barra J, Pichel R, Simon A. Aortic pulsatile pressure and diameter response to intravenous perfusions of angiotension, norepinephrine, and epinephrine in conscious dogs.Cardiovasc Pharmacol 1988;12:643–649.
Google Scholar
De Cesaris R, Ranieri G, Filitti V, Adriani A. Large artery compliance in essential hypertension. Effects of calcium antagonism and β-blocking.Am J Hypertens 1992;5:624–628.
Google Scholar
Darne B, Girerd X, Safar M, Cambien F, Guize L. Pulsatile versus steady component of blood pressure: A cross-sectional analysis and a prospective analysis on cardiovascular mortality.Hypertension 1989;13:392–400.
Google Scholar
Dart AM, Lacombe F, Yeoh JK, et al. Aortic distensibility in patients with isolated hypercholesterolaemia, coronary disease, or cardiac transplant.Lancet 1991;338:270–273.
Google Scholar
Dzau VJ. Vascular renin-angiotensin system and vascular protection.J Cardiovasc Pharmacol 1993;22(Suppl 5):S1-S9.
Google Scholar
Emeriau JP. Patients with systolic hypertension.ACE Inhibition 1993;2:24–28.
Google Scholar
Farrar DJ, Bond G, Riley WA, Sawyer JK. Anatomic correlates of aortic pulse wave velocity and carotid artery elasticity during atherosclerosis progression and regression in monkeys.Circulation 1991;83:1754–1763.
Google Scholar
Farrar DJ, Green HD, Wagner WD. Reduction in pulse wave velocity and improvement of aortic distensibility accompanying regression of atherosclerosis in the Rhesus monkey.Circ Res 1980;47:425–432.
Google Scholar
Ferguson JJ III, Randall OS. Hemodynamic correlates of arterial compliance.Cathet Cardiovasc Diagn 1986;12:376–380.
Google Scholar
Frank O. Die Grundform des arteriellen Pulses.Z Biol 1899;37:483–526.
Google Scholar
Frank O. Die Elastizität der Blutgefäße.Z Biol 1920;71:255–272.
Google Scholar
Fry DL. Responses of the arterial wall to certain physical factors. In: Porter R, Knight J, eds.Atherogenesis: Initiating Factors. Ciba Foundation Symposium 12 (New Series). Amsterdam: Elsevier, 1973:93–125.
Google Scholar
Gebert G.Physiologie als Grundlage der klinischen Medizin. Stuttgart, Schattauer: 1987:67–68.
Gobrecht H, Bergmann-Schäfer.Lehrbuch der Experimentalphysik Band I Mechanik, Akustik, Wärme. Berlin: W de Gruyter, 1974:230, 241.
Google Scholar
Gudbrandsson T, Julius S, Krause L, et al. Correlates of the estimated arterial compliance in the population of Tecumseh, Michigan.Blood Pressure 1992;1:27–34.
Google Scholar
Hamazaki T, Urakaze M, Sawazakis S, Yamazaki K, Taki H, Yano S. Comparison of pulse wave velocity of the aorta between inhabitants of fishing and farming villages in Japan.Atherosclerosis 1988;73:157–160.
Google Scholar
Handler CE, Child A, Light ND, Dorrance DE. Mitral valve prolapse, aortic compliance, and skin collagen in joint hypermobility syndrome.Br Heart J 1985;54:501–508.
Google Scholar
Hirata K, Triposkiadis F, Sparks E, Bowen J, Wooley CF, Boudoulas H. The Marfan syndrome: Abnormal aortic elastic properties.J Am Coll Cardiol 1991;18:57–63.
Google Scholar
Hopkins KD, Lehmann ED, Gosling RG, Parker JR, Sönksen PH. Biochemical correlates of aortic distensibility in vivo in normal subjects.Clin Sci 1993;84:593–597.
Google Scholar
Isnard RN, Pannier BM, Laurent S, London GM, Diebold B, Safar ME. Pulsatile diameter and elastic modulus of the aortic arch in essential hypertension: A noninvasive study.J Am Coll Cardiol 1989;13:399–405.
Google Scholar
Kannel WB, Wolf PA, McGee DL, Dawber TR, McNamara P, Castelli WP. Systolic blood pressure, arterial rigidity, and risk of stroke.JAMA 1981;245:125–129.
Google Scholar
Kannel WB, Dawber TR, McGee DL. Perspectives on systolic hypertension: The Framingham study.Circulation 1986;61:1179–1182.
Google Scholar
Kohno M, Kumada T, Ozaki M, et al. Evaluation of aortic wall distensibility by aortic pressure-dimension relation: Effects of nifedipine on aortic wall.Cardiovasc Res 1987;21:305–312.
Google Scholar
Laogun AA, Gosling RG. In vivo arterial compliance in man.Clin Phys Physiol Meas 1982;3:201–212.
Google Scholar
Learoyd BM, Taylor MG. Alterations with age in the viscoelastic properties of human arterial walls.Circ Res 1966;18:278–292.
Google Scholar
Lehmann ED, Gosling RG. Measuring aortic distensibility.Lancet 1991;338:1075.
Google Scholar
Lehmann ED, Gosling RG, Fatemi-Langroudi B, Taylor MG. Noninvasive Doppler ultrasound technique for the in vivo assessment of aortic compliance.J Biomed Eng 1992a;14:250–256.
Google Scholar
Lehmann ED, Gosling RG, Sönksen PH. Arterial wall compliance in diabetes.Diabet Med 1992b;9:114–119.
Google Scholar
Lehmann ED, Watts GF, Fatemi-Langroudi B, Gosling RG. Aortic compliance in young patients with heterozygous familial hypercholesterolaemia.Clin Sci 1992c;83:717–721.
Google Scholar
Lehmann ED, Watts GF, Gosling RG. Aortic distensibility and hypercholesterolemia.Lancet 1992d;340:1171–1172.
Google Scholar
Lehmann ED, Gosling RG, Parker JR, deSilva T, Taylor MG. A blood pressure independent index of aortic distensibility.Br J Radiol 1993a;66:126–131.
Google Scholar
Lehmann ED, Hopkins KD, Weissberger AJ, Gosling RG, Sönksen PH. Aortic distensibility in growth hormone deficient adults.Lancet 1993b;341:309.
Google Scholar
Lehmann ED, Parker JR, Hopkins KD, Taylor MG, Gosling RG. Validation and reproducibility of pressure-corrected aortic distensibility measurements using pulse-wave-velocity Doppler ultrasound.J Biomed Eng 1993c;15:221–228.
Google Scholar
London GM, Marchais SJ, Safar ME, et al. Aortic and large artery compliance in end-stage renal failure.Kidney Int 1990;37:137–142.
Google Scholar
London GM, Guerin A, Pannier B, Marchais SJ, Benetos A, Safar M. Increased systolic pressure in chronic uremia. Role of arterial wave reflections.Hypertension 1992;20:10–19.
Google Scholar
Mohiaddin RH, Underwood SR, Bogren HG, et al. Regional aortic compliance studied by magnetic resonance imaging: The effects of age, training, and coronary artery disease.Br Heart J 1989;62:90–96.
Google Scholar
Neutel JM, Smith HG, Graettinger F, Weber MA. Dependency of arterial compliance on circulating neuroendocrine and metabolic factors in normal subjects.Am J Cardiol 1992;69:1340–1344.
Google Scholar
Nichols WW, O'Rourke MF.McDonald's Blood Flow in Arteries: Theoretical, Experimental and Clinical Principles, 3rd ed. Philadelphia: Edward Arnold, Lea and Febiger, 1990.
Google Scholar
Ochi H, Shimada T, Ikuma I, Morioka S, Moriyama K. Effect of decrease in aortic compliance on the isovolumic relaxation period of the left ventricle in man.Am J Noninvas Cardiol 1991;5:149–154.
Google Scholar
Opie L.Angiotensin Converting Enzyme Inhibitors. Scientific Basis for Clinical Use. New York: Wiley-Liss, 1992.
Google Scholar
O'Rourke MF.Arterial Function in Health and Disease. Edinburgh: Churchill Livingstone, 1982.
Google Scholar
O'Rourke MF. Arterial stiffness, systolic blood pressure and logical treatment of arterial hypertension.Hypertension 1990;15:339–347.
Google Scholar
O'Rourke MF. Pulse wave mechanics revisited: Relevance to therapy of cardiovascular disease with calcium antagonists.Heart Vessels 1992;7:113–122.
Google Scholar
Perret F, Mooser V, Hayoz D, et al. Evaluation of arterial compliance pressure curves. Effect of antihypertensive drugs.Hypertension 1991;18(Suppl II):II77-II83.
Google Scholar
Randall OS, Westerhof N, Van den Bos GC, Alexander BS. Reliability of stroke volume to pulse pressure rate for estimating and detecting changes in arterial compliance.J Hypertens 1986;4:S293-S296.
Google Scholar
Rutan GH, Kuller LH, Neaton JD, Wentworth DN, McDonald RH, McFate-Smith W. Mortality associated with diastolic hypertension among men screened for Multiple Risk Factor Intervention Trial.Circulation 1988;77:504–514.
Google Scholar
Safar ME, Pannier B, Laurent S, London GM. Calcium entry blockers and arterial compliance in hypertension.J Cardiovasc Pharmacol 1989;14(Suppl 10):S1-S6.
Google Scholar
Safar ME, Levy BI, Laurent S, London GM. Hypertension and the arterial system: Clinical and therapeutic aspects.J Hypertens 1990;8(Suppl 7):S113-S119.
Google Scholar
Safar ME, Boutouyrie P, Tual JL, Safavian T. A critical review of ischemic heart disease and therapeutic trials of hypertension.Cor Art Dis 1992;3:149–156.
Google Scholar
Schimmler W. Untersuchungen zu Elastizitätsproblemen der Aorta. Statistische Korrelation der Pulswellengeschwindigkeit zu Alter, Geschlecht und Blutdruck.Arch Kreislauf-forschung 1965a;47:189–233.
Google Scholar
Schimmler W. Uber die Altersumwandlung der elastischen Eigenschaften des Aorta-Iliaca Rohres beim Menschen.Klin Wschr 1965b;43:587–590.
Google Scholar
Seely S. Aortic distensibility.Lancet 1991;338:696–697.
Google Scholar
Simon AC, Levenson J, Bouthier JD, Safar M. Effects of chronic administration of enalapril and propranolol on the large arteries in essential hypertension.J Cardiovasc Pharmacol 1985;7:856–861.
Google Scholar
Simon A, O'Rourke M, Levenson J. Arterial distensibility and its effect on wave reflection and cardiac loading in cardiovascular disease.Cor Art Dis 1991;2:1111–1120.
Google Scholar
Sinn W. Die Elastizität der Arterien und ihre Bedeutung für die Dynamik des arteriellen Systems. Akademie der Wissenschaften und der Literatur Mainz 1956;11:642–832.
Google Scholar
Slama MA, Benetos A, Pannier B, et al. Study of non-invasive methods of investigating the elastic properties of the thoracic aorta.Arch Mal Coeur Vaiss 1992;85(SI1):47–50.
Google Scholar
Spence JD. Effects of antihypertensive drugs and blood velocity. In: Schettler G, Nerem RM, Schmid-Schönbein H, Mörl H, Diehm C, eds.Fluid Dynamics as a Localizing Factor for Atherosclerosis. Berlin: Springer-Verlag, 1983:141–144.
Google Scholar
Stratos C, Stefanidis C, Kallikazaros I, Boudoulas H, Toutouzas P. Ascending aorta distensibility abnormalities in hypertensive patients and response to nifedipine administration.Am J Med 1992;93:505–512.
Google Scholar
Stefanidis C, Karayannacos PE, Boudoulas H, et al. Medial necrosis and acute aortic distensibility following removal of the vasa vasorum of canine ascending aorta.Cardiovasc Res 1993;27:951–956.
Google Scholar
Stefanidis C, Wooley CF, Bush CA, Kolibash AJ, Boudoulas H. Aortic distensibility in coronary artery disease.Am J Cardiol 1987;59:1300–1304.
Google Scholar
Stefanidis C, Stratos C, Boudoulas H, Kourouklis C, Toutouzas P. Distensibility of the ascending aorta: Comparison of invasive and non-invasive techniques in healthy men and in men with coronary artery disease.Eur Heart J 1990;11:990–996.
Google Scholar
Thomas JR, Asmar RG, Safar ME. Effects of perindopril on structural and functional changes in hypertensive arteries.South Afr Med J 1991(Suppl):6–9.
Vaitkevicius PV, Fleg JL, Engel JH, et al. Effects of age and aerobic capacity on arterial stiffness in healthy adults.Circulation 1993;88:1456–1462.
Google Scholar
Wahlquist ML, Lo CS, Myers KA. Fish intake and arterial wall characteristics in healthy people and diabetic patients.Lancet 1989;ii:944–946.
Google Scholar
Watanabe H, Ohtsuka S, Kakihana M, Sugishita Y. Coronary circulation in dogs with an experimental decrease in aortic compliance.J Am Coll Cardiol 1993;21:1497–1506.
Google Scholar
Watkins RW, Sybertz EJ, Antonellis A, Pula K. Effects of spiraprilic acid, an angiotensin converting enzyme inhibitor, on large artery compliance in anestethized dogs.Arch Intern Pharmacodyn Ther 1987;290:222–234.
Google Scholar
Watkins RW, Sybertz EJ, Antonellis A, Pula K, Rivelli M. Effects of the antihypertensive dilevalol on aortic compliance in anesthetized dogs.J Cardiovasc Pharmacol 1988a;12:42–50.
Google Scholar
Watkins RW, Sybertz EJ, Pula K, Antonellis A. Comparative effects of verapamil, diltiazem and nifedipine on aortic compliance in anesthetized dogs.Arch Intern Pharmacodyn Ther 1988b;293:134–142.
Google Scholar
Wezler K. Abhängigkeit der Arterienelastizität von Alter und dem Zustand der Wandmuskulatur (Untersuchungen am Lebenden).Z Kreislaufforschg 1935;27:721–745.
Google Scholar
Wezler K. Zur Windkessel theorie von E.H. Weber und O. Frank. In: Stauch M, ed.Konzeptionswandel in 50 Jahren Kreislaufphysiologie. Baden-Baden: G. Witzstrock, 1980:8–26.
Google Scholar
Wezler K, Böger A. Die Dynamik des arteriellen Systems.Ergebn Physiol 1939;41:291–606.
Google Scholar
Wiggers CJ. The circulation and circulation research in perspective. In: Hamilton WF, ed.Handbook of Physiology, Section 2 Circulation, Volume 1. American Society of Physiology, Washington, D.C.; 1962:1–10.
Google Scholar
Zanchetti A, Chalmers JP, Arakawa K, et al. The 1993 guide-lines for the management of mild hypertension: Memorandum from a WHO/ISH meeting.Blood Pressure 1993;2:86–100.
Google Scholar