Matches in SemOpenAlex for { <https://semopenalex.org/work/W2000883899> ?p ?o ?g. }
- W2000883899 endingPage "801" @default.
- W2000883899 startingPage "795" @default.
- W2000883899 abstract "The study assessed whether hemodynamic parameters of left atrial (LA) systolic function could be estimated noninvasively using Doppler echocardiography.Left atrial systolic function is an important aspect of cardiac function. Doppler echocardiography can measure changes in LA volume, but has not been shown to relate to hemodynamic parameters such as the maximal value of the first derivative of the pressure (LA dP/dt(max)).Eighteen patients in sinus rhythm were studied immediately before and after open heart surgery using simultaneous LA pressure measurements and intraoperative transesophageal echocardiography. Left atrial pressure was measured with a micromanometer catheter, and LA dP/dt(max) during atrial contraction was obtained. Transmitral and pulmonary venous flow were recorded by pulsed Doppler echocardiography. Peak velocity, and mean acceleration and deceleration, and the time-velocity integral of each flow during atrial contraction was measured. The initial eight patients served as the study group to derive a multilinear regression equation to estimate LA dP/dt(max) from Doppler parameters, and the latter 10 patients served as the test group to validate the equation. A previously validated numeric model was used to confirm these results.In the study group, LA dP/dt(max) showed a linear relation with LA pressure before atrial contraction (r = 0.80, p < 0.005), confirming the presence of the Frank-Starling mechanism in the LA. Among transmitral flow parameters, mean acceleration showed the strongest correlation with LA dP/dt(max) (r = 0.78, p < 0.001). Among pulmonary venous flow parameters, no single parameter was sufficient to estimate LA dP/dt(max) with an r2 > 0.30. By stepwise and multiple linear regression analysis, LA dP/dt(max) was best described as follows: LA dP/dt(max) = 0.1 M-AC +/- 1.8 P-V - 4.1; r = 0.88, p < 0.0001, where M-AC is the mean acceleration of transmitral flow and P-V is the peak velocity of pulmonary venous flow during atrial contraction. This equation was tested in the latter 10 patients of the test group. Predicted and measured LA dP/dt(max) correlated well (r = 0.90, p < 0.0001). Numerical simulation verified that this relationship held across a wide range of atrial elastance, ventricular relaxation and systolic function, with LA dP/dt(max) predicted by the above equation with r = 0.94.A combination of transmitral and pulmonary venous flow parameters can provide a hemodynamic assessment of LA systolic function." @default.
- W2000883899 created "2016-06-24" @default.
- W2000883899 creator A5022830903 @default.
- W2000883899 creator A5033275774 @default.
- W2000883899 creator A5038161400 @default.
- W2000883899 creator A5051249938 @default.
- W2000883899 creator A5057680077 @default.
- W2000883899 creator A5061706688 @default.
- W2000883899 creator A5068953564 @default.
- W2000883899 creator A5078646454 @default.
- W2000883899 creator A5091082546 @default.
- W2000883899 date "1999-09-01" @default.
- W2000883899 modified "2023-10-12" @default.
- W2000883899 title "Noninvasive assessment of left atrial maximum dP/dt by a combination of transmitral and pulmonary venous flow" @default.
- W2000883899 cites W1562799989 @default.
- W2000883899 cites W1964417124 @default.
- W2000883899 cites W1983237096 @default.
- W2000883899 cites W1988955704 @default.
- W2000883899 cites W1992924686 @default.
- W2000883899 cites W1996393395 @default.
- W2000883899 cites W1999369965 @default.
- W2000883899 cites W2000820314 @default.
- W2000883899 cites W2005003869 @default.
- W2000883899 cites W2005645732 @default.
- W2000883899 cites W2013060215 @default.
- W2000883899 cites W2015795623 @default.
- W2000883899 cites W2024078260 @default.
- W2000883899 cites W2026757523 @default.
- W2000883899 cites W2026862257 @default.
- W2000883899 cites W2027656266 @default.
- W2000883899 cites W2043979975 @default.
- W2000883899 cites W2057691648 @default.
- W2000883899 cites W2065146506 @default.
- W2000883899 cites W2088941787 @default.
- W2000883899 cites W2130411902 @default.
- W2000883899 cites W2169095784 @default.
- W2000883899 doi "https://doi.org/10.1016/s0735-1097(99)00263-6" @default.
- W2000883899 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/10483962" @default.
- W2000883899 hasPublicationYear "1999" @default.
- W2000883899 type Work @default.
- W2000883899 sameAs 2000883899 @default.
- W2000883899 citedByCount "47" @default.
- W2000883899 countsByYear W20008838992012 @default.
- W2000883899 countsByYear W20008838992014 @default.
- W2000883899 countsByYear W20008838992015 @default.
- W2000883899 countsByYear W20008838992016 @default.
- W2000883899 countsByYear W20008838992020 @default.
- W2000883899 countsByYear W20008838992022 @default.
- W2000883899 crossrefType "journal-article" @default.
- W2000883899 hasAuthorship W2000883899A5022830903 @default.
- W2000883899 hasAuthorship W2000883899A5033275774 @default.
- W2000883899 hasAuthorship W2000883899A5038161400 @default.
- W2000883899 hasAuthorship W2000883899A5051249938 @default.
- W2000883899 hasAuthorship W2000883899A5057680077 @default.
- W2000883899 hasAuthorship W2000883899A5061706688 @default.
- W2000883899 hasAuthorship W2000883899A5068953564 @default.
- W2000883899 hasAuthorship W2000883899A5078646454 @default.
- W2000883899 hasAuthorship W2000883899A5091082546 @default.
- W2000883899 hasBestOaLocation W20008838991 @default.
- W2000883899 hasConcept C126322002 @default.
- W2000883899 hasConcept C146556889 @default.
- W2000883899 hasConcept C164705383 @default.
- W2000883899 hasConcept C178853913 @default.
- W2000883899 hasConcept C2775914520 @default.
- W2000883899 hasConcept C2777953023 @default.
- W2000883899 hasConcept C2779161974 @default.
- W2000883899 hasConcept C2780346441 @default.
- W2000883899 hasConcept C35207712 @default.
- W2000883899 hasConcept C57900726 @default.
- W2000883899 hasConcept C71924100 @default.
- W2000883899 hasConcept C84393581 @default.
- W2000883899 hasConceptScore W2000883899C126322002 @default.
- W2000883899 hasConceptScore W2000883899C146556889 @default.
- W2000883899 hasConceptScore W2000883899C164705383 @default.
- W2000883899 hasConceptScore W2000883899C178853913 @default.
- W2000883899 hasConceptScore W2000883899C2775914520 @default.
- W2000883899 hasConceptScore W2000883899C2777953023 @default.
- W2000883899 hasConceptScore W2000883899C2779161974 @default.
- W2000883899 hasConceptScore W2000883899C2780346441 @default.
- W2000883899 hasConceptScore W2000883899C35207712 @default.
- W2000883899 hasConceptScore W2000883899C57900726 @default.
- W2000883899 hasConceptScore W2000883899C71924100 @default.
- W2000883899 hasConceptScore W2000883899C84393581 @default.
- W2000883899 hasIssue "3" @default.
- W2000883899 hasLocation W20008838991 @default.
- W2000883899 hasLocation W20008838992 @default.
- W2000883899 hasOpenAccess W2000883899 @default.
- W2000883899 hasPrimaryLocation W20008838991 @default.
- W2000883899 hasRelatedWork W1506290887 @default.
- W2000883899 hasRelatedWork W1967563212 @default.
- W2000883899 hasRelatedWork W1967641769 @default.
- W2000883899 hasRelatedWork W1970306183 @default.
- W2000883899 hasRelatedWork W2014041871 @default.
- W2000883899 hasRelatedWork W2019402916 @default.
- W2000883899 hasRelatedWork W202525648 @default.
- W2000883899 hasRelatedWork W2072342070 @default.
- W2000883899 hasRelatedWork W2077493546 @default.
- W2000883899 hasRelatedWork W2883409386 @default.