Reokardiografia impedancyjna – prosta metoda oceny zmian objętości wyrzutowej serca. Część 1. Podstawy metodyczne Artykuł przeglądowy

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Gerard Cybulski
Wiktor Niewiadomski
Alicja Zielińska
Anna Strasz
Anna Gąsiorowska

Abstrakt

W pracy przedstawiono założenia reokardiografii impedancyjnej jako nieinwazyjnej metody ciągłego pomiaru objętości wyrzutowej serca (SV), pojemności minutowej i podokresów skurczu (okresu przedwyrzutowego i czasu wyrzucania krwi z lewej komory serca). Omówiono sposób powstawania sygnału reograficznego, stosowane wzory obliczeniowe do szacowania SV i ograniczenia metody

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Cybulski , G., Niewiadomski , W., Zielińska , A., Strasz , A., & Gąsiorowska , A. (2011). Reokardiografia impedancyjna – prosta metoda oceny zmian objętości wyrzutowej serca. Część 1. Podstawy metodyczne . Kardiologia W Praktyce, 5(2), 61-69. Pobrano z https://www.journalsmededu.pl/index.php/kwp/article/view/1607
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Bibliografia

1. Kubicek W.G., Karnegis J.N., Patterson R.P., Witsoe D.A. Mattson R.H.: Development and evaluation of an impedance cardiac output system. Aerospace Medicine 1966, 37(12): 1208-1212.
2. Miyamoto Y., Takahashi M., Tamura T., Nakamura T., Hiura T., Mikami T.: Continous determination of cardiac output during exercise by the use of impedance plethysmography. Med. Biol. Eng. & Comput. 1981, 19: 638‑644.
3. Miyamoto Y., Tamura T., Mikami T.: Automatic determination of cardiac output using an impedance plethysmography. Biotelemetry. Patient Monitoring. 1981, 8: 189‑203.
4. Patterson R.P.: Sources of the thoracic cardiogenic electrical impedance signal as determined by a model. Med. Biol. Eng. Comput. 1985, 23: 411‑417.
5. Malmivuo J., Plonsey R.: Impedance Plethysmography (roz. 25). W: Bioelectromagnetism – Principles and Applications of Bioelectric and Biomagnetic Fields. Oxford University Press, New York 1995.
6. Atzler E., Lehmann G.: Uber ein neues Verfahren sur Darstellung der Hertztatigkeit (Dielectrographi). Arbeitsphysiologie 1932, 5: 636-639.
7. Nyboer J., Bango S., Barnett A. et al.: Radiocardiograms. J. Clin. Invest. 1940, 19: 773-778.
8. Nyboer J.: Plethysmography. Impedance. W: Medical Physics, tom 2. Glasser O. (red.). Year Book Pub., Chicago 1950: 736-43.
9. Kubicek W.G., Patterson R.P., Witsoe D.A.: Impedance cardiography as a non-invasive method for monitoring cardiac function and other parameters of the cardiovascular system. Ann. N.Y. Acad. Sci. 1970, 170: 724-32.
10. Geddes L.A., Baker L.E.: Specific resistance of biological material-a compendum of data for biomedical engineer and physiologist. Med. Biol. Engin. 1967, 5(3): 271-293.
11. Boer P., Roos J.C., Geyskes G.G., Mees E.J.D.: Measurement of cardiac output by impedance cardiography under various conditions. Am. J. Physiol. 1979, 237(4): H491-H492.
12. Porter J.M., Swain I.D.: Measurement of cardiac output by electrical impedance plethysmography. J. Biomed. Eng. 1987 Jul, 9(3): 222-31.
13. Ito H., Yamakoshi K.I., Togawa T.: Transthoracic admittance plethysmograph for measuring cardiac output. J. Appl. Physiol. 1976 Mar, 40(3): 451-4.
14. Keim H.J., Wallace J.M., Thurston H., Case D.B., Drayer J.I., Laragh J.H.: Impedance cardiography for determination of stroke index. J. Appl. Physiol. 1976 Nov, 41(5 Pt. 1): 797-9.
15. Bonjer F.H., van den Berg J., Dirken M.N.: The origin of the variations of body impedance occurring during the cardiac cycle. Circulation 1952 Sep, 6(3): 415-20.
16. Sakamoto K., Muto K., Kanai H., Iiuzuka M.: Problems of impedance cardiography. Med. Eng. Comput. 1979, 17: 697‑709.
17. Thomsen A., Fabricius J.: Impedance cardiography in patients with atrial fibrillation. Dan. Med. Bull. 1978, 25: 91.
18. Thomsen A.: Impedance cardiography – Is the output from right or from left ventricle measured? Intensive Care Med. 1979, 6: 206.
19. Anderson Jr. F.A., Penney B.C., Patwardhan N.A., Wheeler H.B.: Impedance plethysmography: the origin of electrical impedance changes measured in the human calf. Med. Biol. Eng. Comput. 1980, 18: 234‑240.
20. Shankar T.M.R., Webster J.G., Shao S.Y.: The contribution of vessel volume change to the electrical impedance pulse. IEEE Trans. Biomed. Eng. 1986, 1: 42‑47.
21. Kosicki J., Chen L., Hobbie R., Patterson R., Ackerman E.: Contributions to the impedance cardiogram waveform. Annals of Biomed. Eng. 1986, 14: 67‑80.
22. Kim D.W., Baker L.E., Pearce J.A., Kim W.K.: Origins of the impedance change in impedance cardiography by a three‑dimensional finite element model. IEEE Trans. Biomed. Eng. 1988, 12: 993‑1000.
23. Penney B.C.: Theory and cardiac applications of electrical impedance measurements. CRC Crit. Rev. Bioeng. 1986, 13: 227-81.
24. Swanson D.K., Webster J.G.: Errors in four‑electrode impedance plethysmography. Med. Biol. Eng. Computing 1983, 21: 674‑680. 25. Geddes L.A., Baker L.E., Moore A.G., Coulter T.W.: Hazards in the use of low frequencies for the measurement of physiological events by impedance. Med. Biol. Engineering 1969, 7: 289‑296.
26. Du Quesnay M.C., Stoute G.J., Hughson R.L.: Cardiac output in exercise by impedance cardiography during breath holding and normal breathing. J. Appl. Physiol. 1987, 62(1): 101‑107.
27. Eiken O., Segerhammar P.: Elimination of breathing artefacts from impedance cardiograms at rest and during exercise. Med. Biol. Eng. Computing 1988, 26: 13‑16.
28. Geddes L.A., Sadler C.: The specific resistance of blood at body temperature. Med. Biol. Engineering 1973, 5: 336‑339.
29. Quail A.W., Traugott F.M., Porges W.L., White S.W.: Thoracic resistivity for stroke volume calculation in impedance cardiography. J. Applied Physiol. 1981, 50: 191‑5.
30. Adamicza A., Tutsek L., Nagy S.: The measurement of cardiac output by the thoracic impedance method. Acta Physiol. Hungarica 1988, 3: 395‑408.
31. Wtorek J., Poliński A.: The contribution of blood-flow-induced conductivity changes to measured impedance. IEEE Trans Biomed. Eng. 2005, 52(1): 41-49.
32. Cybulski G.: Ambulatory Impedance Cardiography. The Systems and their Applications. Series: Lecture Notes in Electrical Engineering, Vol. 76, 1st Edition. Springer-Verlag Berlin and Heidelberg GmbH & Co. KG, 2011: 150.
33. Niewiadomski W., Gąsiorowska A., Cybulski G., Niewiadomski W., Strasz A., Gąsiorowska A., Kwiatkowska D.: Kardiografia impedancyjna w terapii nadciśnienia tętniczego. Kardiologia w Praktyce 2010, 3(15): 131-137.