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001-es BibID:BIBFORM097169
035-os BibID:(WoS)001083297700001 (Scopus)85170582604
Első szerző:Csippa Benjamin
Cím:Simplified coronary flow reserve calculations based on three-dimensional coronary reconstruction and intracoronary pressure data / Csippa Benjamin, Üveges Áron, Gyürki Dániel, Jenei Csaba, Tar Balázs, Bugarin-Horváth Balázs, Szabó Gábor Tamás, Komócsi András, Paál György, Kőszegi Zsolt
Dátum:2023
ISSN:1897-5593
Megjegyzések:Background: Measurements of fractional flow reserve (FFR) and/or coronary flow reserve (CFR) are widely used for hemodynamic characterization of coronary lesions. The frequent combination of the epicardial and microvascular disease may indicate a need for complex hemodynamic evaluation of coronary lesions. This study aims at validating the calculation of CFR based on a simple hemodynamic model to detailed computational fluid dynamics (CFD) analysis. Methods: Three-dimensional (3D) morphological data and pressure values from FFR measurements were used to calculate the target vessel. Nine patients with one intermediate stenosis each, measured by pressure wire, were included in this study. Results: A correlation was found between the determined CFR from simple equations and from a steady flow simulation (r = 0.984, p < 10-5). There was a significant correlation between the CFR values calculated by transient and steady flow simulations (r = 0.94, p < 10(-3)). Conclusions: Feasibility was demonstrated of a simple hemodynamic calculation of CFR based on 3D-angiography and intracoronary pressure measurements. A simultaneous determination of both the FFR and CFR values provides the capability to diagnose microvascular dysfunction: the CFR/FFR ratio characterizes the microvascular reserve.
Tárgyszavak:Orvostudományok Klinikai orvostudományok idegen nyelvű folyóiratközlemény külföldi lapban
folyóiratcikk
Megjelenés:Cardiology Journal. - 30 : 4 (2023), p. 516-525. -
További szerzők:Üveges Áron Gyürki Dániel Jenei Csaba (1976-) (kardiológus) Tar Balázs (1970-) (orvos) Bugarin-Horváth Balázs Szabó Gábor Tamás (1982-) (kardiológus) Komócsi András Paál György Kőszegi Zsolt (1962-) (kardiológus, belgyógyász)
Pályázati támogatás:ÚNKP-20-03
Egyéb
BME NC TKP2020
NKFIH
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2.

001-es BibID:BIBFORM091241
Első szerző:Jenei Csaba (kardiológus)
Cím:High shear stress on the background of clinical restenosis at the site of step-down phenomenon after drug eluting stent implantation / Jenei Csaba, Závodszky Gábor, Paál György, Tar Balázs, Kőszegi Zsolt
Dátum:2016
ISSN:0010-8650
Megjegyzések:A retrospective modeling was performed in a case with restenosis after 6 months of a DES implantation to investigate the effect of the step-down at the distal edge of the stent on the wall shear stress (WSS) using 3D coronary angiography reconstruction and the intracoronary pressure traces during a cardiac cycle. The kinetics of the WSS was calculated through the cardiac cycle along the reconstructed vessel by fluid dynamic analysis. Contrary to the previous reports the greatest amplitude and average of the arterial WSS was detected where the restenosis developed later at the site of the step-down.
Tárgyszavak:Orvostudományok Klinikai orvostudományok esettanulmány
folyóiratcikk
Megjelenés:Cor et Vasa. - 58 : 5 (2016), p. e518-e511. -
További szerzők:Závodszky Gábor Paál György Tar Balázs (1970-) (orvos) Kőszegi Zsolt (1962-) (kardiológus, belgyógyász)
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3.

001-es BibID:BIBFORM102029
Első szerző:Tar Balázs (orvos)
Cím:Pressure- and 3D-Derived Coronary Flow Reserve with Hydrostatic Pressure Correction : comparison with Intracoronary Doppler Measurements / Balázs Tar, András Ágoston, Áron Üveges, Gábor Tamás Szabó, Tibor Szűk, András Komócsi, Dániel Czuriga, Benjamin Csippa, György Paál, Zsolt Kőszegi
Dátum:2022
ISSN:2075-4426
Megjegyzések:Purpose: To develop a method of coronary flow reserve (CFR) calculation derived from three-dimensional (3D) coronary angiographic parameters and intracoronary pressure data during fractional flow reserve (FFR) measurement. Methods: Altogether 19 coronary arteries of 16 native and 3 stented vessels were reconstructed in 3D. The measured distal intracoronary pressures were corrected to the hydrostatic pressure based on the height differences between the levels of the vessel orifice and the sensor position. Classical fluid dynamic equations were applied to calculate the flow during the resting state and vasodilatation based on morphological data and intracoronary pressure values. 3D-derived coronary flow reserve (CFRp-3D) was defined as the ratio between the calculated hyperemic and the resting flow and was compared to the CFR values simultaneously measured by the Doppler sensor (CFRDoppler). Results: Haemodynamic calculations using the distal coronary pressures corrected for hydrostatic pressures showed a strong correlation between the individual CFRp-3D values and the CFRDoppler measurements (r = 0.89, p < 0.0001). Hydrostatic pressure correction increased the specificity of the method from 46.1% to 92.3% for predicting an abnormal CFRDoppler < 2. Conclusions: CFRp-3D calculation with hydrostatic pressure correction during FFR measurement facilitates a comprehensive hemodynamic assessment, supporting the complex evaluation of macro-and microvascular coronary artery disease.
Tárgyszavak:Orvostudományok Klinikai orvostudományok idegen nyelvű folyóiratközlemény külföldi lapban
folyóiratcikk
stable angina
fractional flow reserve (FFR)
coronary flow reserve (CFR)
quantitative coronary angiography
coronary microvascular disease
microvascular resistance reserve (MRR)
Megjelenés:Journal of Personalized Medicine. - 12 : 5 (2022), p. 1-13. -
További szerzők:Ágoston András Üveges Áron Szabó Gábor Tamás (1982-) (kardiológus) Szűk Tibor (1967-) (kardiológus) Komócsi András Czuriga Dániel (1982-) (kardiológus) Csippa Benjamin Paál György Kőszegi Zsolt (1962-) (kardiológus, belgyógyász)
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Intézményi repozitóriumban (DEA) tárolt változat
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