English Polski
Tom 10, Nr 1 (2015)
Młoda kardiologia
Opublikowany online: 2015-03-02

dostęp otwarty

Wyświetlenia strony 415
Wyświetlenia/pobrania artykułu 1188
Pobierz cytowanie

Eksport do Mediów Społecznościowych

Eksport do Mediów Społecznościowych

Komentarz

Krzysztof Narkiewicz
Folia Cardiologica 2015;10(1):8.

Streszczenie

Brak

Artykuł dostępny w formacie PDF

Pokaż PDF (angielski) Pobierz plik PDF

Referencje

  1. Failla M, Grappiolo A, Carugo S, et al. Effects of cigarette smoking on carotid and radial artery distensibility. J Hypertens. 1997; 15(12 Pt 2): 659–664.
  2. Arnett DK, Boland LL, Evans GW, et al. Hypertension and arterial stiffness: the Atherosclerosis Risk in Communities Study. ARIC Investigators. Am J Hypertens. 2000; 13(4 Pt 1): 317–323.
  3. Benetos A, Waeber B, Izzo J, et al. Influence of age, risk factors, and cardiovascular and renal disease on arterial stiffness: clinical applications. Am J Hypertens. 2002; 15(12): 1101–1108.
  4. Mahmud A, Feely J. Divergent effect of acute and chronic alcohol on arterial stiffness. Am J Hypertens. 2002; 15(3): 240–243.
  5. Mancia G, Fagard R, Narkiewicz K, et al. 2013 ESH/ESC Guidelines for the management of arterial hypertension. Journal of Hypertension. 2013; 31(7): 1281–1357.
  6. Siebert J, Poliński A. The four-electrode impedance plethysmography — model study [Badania modelowe zastosowania pletyzmografii impedancyjnej do badania przepływu krwi w kończynach]. Folia Cardiol. 1999; 6: 417–422.
  7. Packer M, Abraham WT, Mehra MR, et al. Prospective Evaluation and Identification of Cardiac Decompensation by ICG Test (PREDICT) Study Investigators and Coordinators. Utility of impedance cardiography for the identification of short-term risk of clinical decompensation in stable patients with chronic heart failure. J Am Coll Cardiol. 2006; 47(11): 2245–2252.
  8. Krzesiński P, Gielerak GG, Kowal JJ. A "patient-tailored" treatment of hypertension with use of impedance cardiography: a randomized, prospective and controlled trial. Med Sci Monit. 2013; 19: 242–250.
  9. Lang RM, Bierig M, Devereux RB, et al. American Society of Echocardiography's Nomenclature and Standards Committee, Task Force on Chamber Quantification, American College of Cardiology Echocardiography Committee, American Heart Association, European Association of Echocardiography, European Society of Cardiology. Recommendations for chamber quantification. Eur J Echocardiogr. 2006; 7(2): 79–108.
  10. Nagueh SF, Appleton CP, Gillebert TC, et al. Recommendations for the Evaluation of Left Ventricular Diastolic Function by Echocardiography. European Journal of Echocardiography. 2008; 10(2): 165–193.
  11. Antonini-Canterin F, Carerj S, Di Bello V, et al. Research Group of the Italian Society of Cardiovascular Echography (SIEC). Arterial stiffness and ventricular stiffness: a couple of diseases or a coupling disease? A review from the cardiologist's point of view. Eur J Echocardiogr. 2009; 10(1): 36–43.
  12. Korpas D, Hálek J, Dolezal L. Parameters describing the pulse wave. Physiol Res. 2009; 58(4): 473–479.
  13. Boduła A, Małecki R, Adamiec R. Comparative evaluation of pentoxyphylline and sulodexide effectiveness in the treatment of symptomatic arteriosclerosis obliterans. Acta Angiol. 2010; 16: 18–29.
  14. Irzmańska E, Charłusz M, Kujawa J, et al. Using impedance plethysmography to evaluate antidecubital underlay systems for chronically immobilized patients. Adv Clin Exp Med. 2010; 19: 637–651.
  15. London GM, Pannier B. Arterial functions: how to interpret the complex physiology. Nephrol Dial Transplant. 2010; 25(12): 3815–3823.
  16. Albaladejo P, Laurent P, Pannier B, et al. Influence of sex on the relation between heart rate and aortic stiffness. J Hypertens. 2003; 21(3): 555–562.
  17. Ng K, Hildreth CM, Phillips JK, et al. Aortic stiffness is associated with vascular calcification and remodeling in a chronic kidney disease rat model. Am J Physiol Renal Physiol. 2011; 300(6): F1431–F1436.
  18. Cecelja M, Jiang B, Bevan L, et al. Arterial stiffening relates to arterial calcification but not to noncalcified atheroma in women. A twin study. J Am Coll Cardiol. 2011; 57(13): 1480–1486.
  19. McEniery CM, McDonnell BJ, So A, et al. Anglo-Cardiff Collaboration Trial Investigators. Aortic calcification is associated with aortic stiffness and isolated systolic hypertension in healthy individuals. Hypertension. 2009; 53(3): 524–531.
  20. Bhatt SP, Cole AG, Wells JM, et al. Determinants of arterial stiffness in COPD. BMC Pulm Med. 2014; 14: 1.
  21. Cecelja M, Chowienczyk P. Dissociation of aortic pulse wave velocity with risk factors for cardiovascular disease other than hypertension: a systematic review. Hypertension. 2009; 54(6): 1328–1336.
  22. Zheng D, Murray A. Peripheral arterial volume distensibility: significant differences with age and blood pressure measured using an applied external pressure. Physiol Meas. 2011; 32(5): 499–512.
  23. Millasseau SC, Stewart AD, Patel SJ, et al. Evaluation of carotid-femoral pulse wave velocity: influence of timing algorithm and heart rate. Hypertension. 2005; 45(2): 222–226.
  24. Langham MC, Li C, Wehrli FW. Non-triggered quantification of central and peripheral pulse-wave velocity. J Cardiovasc Magn Reson. 2011; 13: 81.
  25. Hsu PC, Lin TH, Lee CS, et al. Impact of a systolic parameter, defined as the ratio of right brachial pre-ejection period to ejection time, on the relationship between brachial-ankle pulse wave velocity and left ventricular diastolic function. Hypertens Res. 2011; 34(4): 462–467.
  26. Su HM, Lin TH, Hsu PC, et al. Impact of systolic time intervals on the relationship between arterial stiffness and left ventricular hypertrophy. Atherosclerosis. 2012; 223(1): 171–176.
  27. Su HM, Hsu PC, Lee WH, et al. Association of Brachial-Ankle Pulse Wave Velocity, Ankle-Brachial Index and Ratio of Brachial Pre-Ejection Period to Ejection Time With Left Ventricular Hypertrophy. The American Journal of the Medical Sciences. 2014; 347(4): 289–294.