Automated Author Profile

Martínez, J.M.

Current S-Index

7.3

Sum of Dataset Indices for all datasets

Average Dataset Index per Dataset

0.4

Average Dataset Index per dataset

Total Datasets

17

Total datasets for this author

Average FAIR Score

63.8%

Average FAIR Score per dataset

Total Citations

2

Total citations to the author's datasets

Total Mentions

0

Total mentions of the author's datasets

S-Index Interpretation

S-Index Over Time

Cumulative Citations Over Time

Cumulative Mentions Over Time

Datasets

Supplementary Material for: Prediction of Perinatal Mortality in Ebstein’s Anomaly Diagnosed in the Second Trimester of Pregnancy

Objectives: Firstly, to describe the outcome of a series of fetuses with Ebstein’s anomaly (EA) and, secondly, to study the utility of different second-trimester echocardiographic parameters to predict fetal and neonatal mortality. Methods: 39 fetuses with EA diagnosed between 18 and 28 weeks of gestation were included. Fetal echocardiography included the cardiothoracic ratio (CTR); right atrial (RA) area index; displacement of the tricuspid valve (TV); tricuspid regurgitation; pulmonary artery; and ductus arteriosus flow characteristics. Additionally, 2 novel parameters were obtained: the relative RA area ratio (RA area/cardiac area) and the TV displacement index (TVDI, TV displacement distance/longi­tudinal diameter of the left ventricle). Correlation between the echocardiographic variables and the primary outcome of perinatal mortality or survival at 1 year of life was evaluated. Results: From the initial cohort, 8 cases were excluded due to complex congenital heart defects. Termination of pregnancy (TOP) was performed in 15 cases, and fetal death was diagnosed in 3 cases. In the live-born cohort of 13 patients, 4 died in the neonatal period, yielding a perinatal survival rate of 29 and 56%, respectively, after excluding TOP cases. Compared with survivors, nonsurvivors showed a significantly higher CTR (56.7 ± 16.2 vs. 42.6 ± 8.6; p = 0.04), relative RA area ratio (0.39 ± 0.13 vs. 0.25 ± 0.05; p = 0.01), and TVDI (0.62 ± 0.17 vs. 0.44 ± 0.12; p = 0.03) at diagnosis. The best model to predict perinatal mortality was obtained by using a scoring system which included the relative RA area ratio and TVDI (AUC 0.905 [95% CI 0.732–1.000]). Conclusions: Fetuses with a relative RA area ratio ≥0.29 and TVDI ≥0.65 at the second trimester have the highest risk of dying in the perinatal stage.

Authors

  • Masoller, N. ;
  • GómezdelRincón, O. ;
  • Herraiz, I. ;
  • Gómez-Montes, E. ;
  • Soveral, I. ;
  • Pérez-Cruz, M. ;
  • Martínez-Biosques, C. ;
  • Granados, M.A. ;
  • Bennasar, M. ;
  • Escobar-Diaz, M.C. ;
  • Martínez, J.M. ;
  • Galindo, A.
1 Citation0 Mentions15% FAIR0.4 Dataset Index
10.6084/m9.figshare.117984962020

Supplementary Material for: Prediction of Perinatal Mortality in Ebstein’s Anomaly Diagnosed in the Second Trimester of Pregnancy

Objectives: Firstly, to describe the outcome of a series of fetuses with Ebstein’s anomaly (EA) and, secondly, to study the utility of different second-trimester echocardiographic parameters to predict fetal and neonatal mortality. Methods: 39 fetuses with EA diagnosed between 18 and 28 weeks of gestation were included. Fetal echocardiography included the cardiothoracic ratio (CTR); right atrial (RA) area index; displacement of the tricuspid valve (TV); tricuspid regurgitation; pulmonary artery; and ductus arteriosus flow characteristics. Additionally, 2 novel parameters were obtained: the relative RA area ratio (RA area/cardiac area) and the TV displacement index (TVDI, TV displacement distance/longi­tudinal diameter of the left ventricle). Correlation between the echocardiographic variables and the primary outcome of perinatal mortality or survival at 1 year of life was evaluated. Results: From the initial cohort, 8 cases were excluded due to complex congenital heart defects. Termination of pregnancy (TOP) was performed in 15 cases, and fetal death was diagnosed in 3 cases. In the live-born cohort of 13 patients, 4 died in the neonatal period, yielding a perinatal survival rate of 29 and 56%, respectively, after excluding TOP cases. Compared with survivors, nonsurvivors showed a significantly higher CTR (56.7 ± 16.2 vs. 42.6 ± 8.6; p = 0.04), relative RA area ratio (0.39 ± 0.13 vs. 0.25 ± 0.05; p = 0.01), and TVDI (0.62 ± 0.17 vs. 0.44 ± 0.12; p = 0.03) at diagnosis. The best model to predict perinatal mortality was obtained by using a scoring system which included the relative RA area ratio and TVDI (AUC 0.905 [95% CI 0.732–1.000]). Conclusions: Fetuses with a relative RA area ratio ≥0.29 and TVDI ≥0.65 at the second trimester have the highest risk of dying in the perinatal stage.

Authors

  • Masoller, N. ;
  • GómezdelRincón, O. ;
  • Herraiz, I. ;
  • Gómez-Montes, E. ;
  • Soveral, I. ;
  • Pérez-Cruz, M. ;
  • Martínez-Biosques, C. ;
  • Granados, M.A. ;
  • Bennasar, M. ;
  • Escobar-Diaz, M.C. ;
  • Martínez, J.M. ;
  • Galindo, A.
1 Citation0 Mentions15% FAIR0.4 Dataset Index
10.6084/m9.figshare.11798496.v12020

Supplementary Material for: Nomograms of Fetal Cardiac Dimensions at 18–41 Weeks of Gestation

Objective: There is a need for standardized reference values for cardiac dimensions in prenatal life. The objective of the present study was to construct nomograms for fetal cardiac dimensions using a well-defined echocardiographic methodology in a low-risk population. Methods: This is a prospective cohort study including 602 low-risk singleton pregnancies undergoing a standardized fetal echocardiography to accurately assess fetal cardiac, ventricular, and atrial dimensions. Parametric regressions were tested to model each measurement against gestational age from 18 to 41 weeks of gestation. Results: Nomograms were constructed for fetal cardiac dimensions (transverse and longitudinal diameters and areas) of the whole heart, atria, and ventricles, as well as myocardial wall thicknesses. All dimensions showed a progressive increase with gestational age. The best model for most parameters was a second-degree linear polynomial. Fetal cardiac, ventricular, and atrial diameters and areas were successfully obtained in 98.6% of the fetuses, while myocardial wall thicknesses could be obtained in 96.5% of the population. The results showed excellent interobserver and intraobserver reproducibility (intraclass correlation coefficient, ICC > 0.811 and ICC > 0.957, respectively). Conclusions: We provide standardized and comprehensively evaluated reference values for fetal cardiac morphometric parameters across gestation in a low-risk population. These no mograms would enable the early identification of different patterns of fetal cardiac remodeling.

Authors

  • García-Otero, L. ;
  • Gómez, O. ;
  • Rodriguez-López, M. ;
  • Torres, X. ;
  • Soveral, I. ;
  • Sepúlveda-Martínez Á. ;
  • Guirado, L. ;
  • Valenzuela-Alcaraz, B. ;
  • López, M. ;
  • Martínez, J.M. ;
  • Gratacós, E. ;
  • Crispi, F.
0 Citations0 Mentions15% FAIR0.1 Dataset Index
10.6084/m9.figshare.7546592.v52019

Supplementary Material for: Nomograms of Fetal Cardiac Dimensions at 18–41 Weeks of Gestation

Objective: There is a need for standardized reference values for cardiac dimensions in prenatal life. The objective of the present study was to construct nomograms for fetal cardiac dimensions using a well-defined echocardiographic methodology in a low-risk population. Methods: This is a prospective cohort study including 602 low-risk singleton pregnancies undergoing a standardized fetal echocardiography to accurately assess fetal cardiac, ventricular, and atrial dimensions. Parametric regressions were tested to model each measurement against gestational age from 18 to 41 weeks of gestation. Results: Nomograms were constructed for fetal cardiac dimensions (transverse and longitudinal diameters and areas) of the whole heart, atria, and ventricles, as well as myocardial wall thicknesses. All dimensions showed a progressive increase with gestational age. The best model for most parameters was a second-degree linear polynomial. Fetal cardiac, ventricular, and atrial diameters and areas were successfully obtained in 98.6% of the fetuses, while myocardial wall thicknesses could be obtained in 96.5% of the population. The results showed excellent interobserver and intraobserver reproducibility (intraclass correlation coefficient, ICC > 0.811 and ICC > 0.957, respectively). Conclusions: We provide standardized and comprehensively evaluated reference values for fetal cardiac morphometric parameters across gestation in a low-risk population. These no mograms would enable the early identification of different patterns of fetal cardiac remodeling.

Authors

  • García-Otero, L. ;
  • Gómez, O. ;
  • Rodriguez-López, M. ;
  • Torres, X. ;
  • Soveral, I. ;
  • Sepúlveda-Martínez Á. ;
  • Guirado, L. ;
  • Valenzuela-Alcaraz, B. ;
  • López, M. ;
  • Martínez, J.M. ;
  • Gratacós, E. ;
  • Crispi, F.
0 Citations0 Mentions15% FAIR0.1 Dataset Index
10.6084/m9.figshare.7546592.v82019

Supplementary Material for: Nomograms of Fetal Cardiac Dimensions at 18–41 Weeks of Gestation

Objective: There is a need for standardized reference values for cardiac dimensions in prenatal life. The objective of the present study was to construct nomograms for fetal cardiac dimensions using a well-defined echocardiographic methodology in a low-risk population. Methods: This is a prospective cohort study including 602 low-risk singleton pregnancies undergoing a standardized fetal echocardiography to accurately assess fetal cardiac, ventricular, and atrial dimensions. Parametric regressions were tested to model each measurement against gestational age from 18 to 41 weeks of gestation. Results: Nomograms were constructed for fetal cardiac dimensions (transverse and longitudinal diameters and areas) of the whole heart, atria, and ventricles, as well as myocardial wall thicknesses. All dimensions showed a progressive increase with gestational age. The best model for most parameters was a second-degree linear polynomial. Fetal cardiac, ventricular, and atrial diameters and areas were successfully obtained in 98.6% of the fetuses, while myocardial wall thicknesses could be obtained in 96.5% of the population. The results showed excellent interobserver and intraobserver reproducibility (intraclass correlation coefficient, ICC > 0.811 and ICC > 0.957, respectively). Conclusions: We provide standardized and comprehensively evaluated reference values for fetal cardiac morphometric parameters across gestation in a low-risk population. These no mograms would enable the early identification of different patterns of fetal cardiac remodeling.

Authors

  • García-Otero, L. ;
  • Gómez, O. ;
  • Rodriguez-López, M. ;
  • Torres, X. ;
  • Soveral, I. ;
  • Sepúlveda-Martínez Á. ;
  • Guirado, L. ;
  • Valenzuela-Alcaraz, B. ;
  • López, M. ;
  • Martínez, J.M. ;
  • Gratacós, E. ;
  • Crispi, F.
0 Citations0 Mentions81% FAIR0.5 Dataset Index
10.6084/m9.figshare.7546592.v92019

Supplementary Material for: Nomograms of Fetal Right Ventricular Fractional Area Change by 2D Echocardiography

Objectives: Fetal right ventricular (RV) function assessment is challenging due to the RV geometry and limitations of in utero assessment. Postnatally, 2D echocardiographic RV fractional area change (FAC) is used to assess RV global systolic function by calculating the percentage of change in RV area from systole to diastole. Reports on FAC are scarce in prenatal life, and nomograms throughout pregnancy are not available. Our aims were (1) to study prenatal RV FAC feasibility and reproducibility and (2) to construct nomograms for RV FAC and end-diastolic (ED) and end-systolic (ES) RV areas from 18 to 41 weeks of gestation. Methods: Prospective cohort study including 602 low-risk singleton pregnancies undergoing a fetal echocardiography from 18 to 41 weeks of gestation. RV ED and ES areas were measured following standard recommendations for ventricular dimensions and establishing strict landmarks to identify the different phases of the cardiac cycle. RV FAC was calculated as: ([ED area – ES area]/ED area) × 100. RV FAC intra- and inter-observer reproducibility was evaluated in 45 fetuses by calculating the intraclass correlation coefficient (ICC). Parametric regressions were tested to model each parameter against gestational age (GA) and estimated fetal weight (EFW). Results: RV areas and FAC were successfully obtained in ∼99% of fetuses with acceptable reproducibility throughout gestation (RV ED area inter-observer ICC [95% CI] 0.96 [0.93–0.98], RV ES area 0.97 [0.94–0.98], and FAC 0.69 [0.44–0.83]). Nomograms were constructed for RV ED and ES areas and FAC. RV areas showed a quadratic and logarithmic increase with GA and EFW, respectively. In contrast, RV FAC showed a slight quadratic decrease throughout gestation (mean RV FAC ranged from 36% at 18 weeks of gestation [10–90th centiles: 25–47%, respectively] to 29% at 41 weeks [10–90th centiles: 18–40%, respectively]). The best models for RV areas and FAC were a second-degree polynomial. Conclusions: RV FAC is a feasible and reproducible parameter to assess RV global systolic function in fetal life. We provide reference ranges adjusted by GA and EFW that can be used as normal references for the assessment of RV function in prenatal conditions.

Authors

  • Guirado, L. ;
  • Crispi, F. ;
  • Soveral, I. ;
  • Valenzuela-Alcaraz, B. ;
  • Rodriguez-López, M. ;
  • García-Otero, L. ;
  • Torres, X. ;
  • Sepúlveda-Martínez Á. ;
  • Escobar-Diaz, M.C. ;
  • Martínez, J.M. ;
  • Friedberg, M.K. ;
  • Gratacós, E. ;
  • Gómez, O.
0 Citations0 Mentions85% FAIR0.5 Dataset Index
10.6084/m9.figshare.113466352019

Supplementary Material for: Nomograms of Fetal Right Ventricular Fractional Area Change by 2D Echocardiography

Objectives: Fetal right ventricular (RV) function assessment is challenging due to the RV geometry and limitations of in utero assessment. Postnatally, 2D echocardiographic RV fractional area change (FAC) is used to assess RV global systolic function by calculating the percentage of change in RV area from systole to diastole. Reports on FAC are scarce in prenatal life, and nomograms throughout pregnancy are not available. Our aims were (1) to study prenatal RV FAC feasibility and reproducibility and (2) to construct nomograms for RV FAC and end-diastolic (ED) and end-systolic (ES) RV areas from 18 to 41 weeks of gestation. Methods: Prospective cohort study including 602 low-risk singleton pregnancies undergoing a fetal echocardiography from 18 to 41 weeks of gestation. RV ED and ES areas were measured following standard recommendations for ventricular dimensions and establishing strict landmarks to identify the different phases of the cardiac cycle. RV FAC was calculated as: ([ED area – ES area]/ED area) × 100. RV FAC intra- and inter-observer reproducibility was evaluated in 45 fetuses by calculating the intraclass correlation coefficient (ICC). Parametric regressions were tested to model each parameter against gestational age (GA) and estimated fetal weight (EFW). Results: RV areas and FAC were successfully obtained in ∼99% of fetuses with acceptable reproducibility throughout gestation (RV ED area inter-observer ICC [95% CI] 0.96 [0.93–0.98], RV ES area 0.97 [0.94–0.98], and FAC 0.69 [0.44–0.83]). Nomograms were constructed for RV ED and ES areas and FAC. RV areas showed a quadratic and logarithmic increase with GA and EFW, respectively. In contrast, RV FAC showed a slight quadratic decrease throughout gestation (mean RV FAC ranged from 36% at 18 weeks of gestation [10–90th centiles: 25–47%, respectively] to 29% at 41 weeks [10–90th centiles: 18–40%, respectively]). The best models for RV areas and FAC were a second-degree polynomial. Conclusions: RV FAC is a feasible and reproducible parameter to assess RV global systolic function in fetal life. We provide reference ranges adjusted by GA and EFW that can be used as normal references for the assessment of RV function in prenatal conditions.

Authors

  • Guirado, L. ;
  • Crispi, F. ;
  • Soveral, I. ;
  • Valenzuela-Alcaraz, B. ;
  • Rodriguez-López, M. ;
  • García-Otero, L. ;
  • Torres, X. ;
  • Sepúlveda-Martínez Á. ;
  • Escobar-Diaz, M.C. ;
  • Martínez, J.M. ;
  • Friedberg, M.K. ;
  • Gratacós, E. ;
  • Gómez, O.
0 Citations0 Mentions85% FAIR0.4 Dataset Index
10.6084/m9.figshare.11346635.v12019

Supplementary Material for: Nomograms of Fetal Cardiac Dimensions at 18–41 Weeks of Gestation

Objective: There is a need for standardized reference values for cardiac dimensions in prenatal life. The objective of the present study was to construct nomograms for fetal cardiac dimensions using a well-defined echocardiographic methodology in a low-risk population. Methods: This is a prospective cohort study including 602 low-risk singleton pregnancies undergoing a standardized fetal echocardiography to accurately assess fetal cardiac, ventricular, and atrial dimensions. Parametric regressions were tested to model each measurement against gestational age from 18 to 41 weeks of gestation. Results: Nomograms were constructed for fetal cardiac dimensions (transverse and longitudinal diameters and areas) of the whole heart, atria, and ventricles, as well as myocardial wall thicknesses. All dimensions showed a progressive increase with gestational age. The best model for most parameters was a second-degree linear polynomial. Fetal cardiac, ventricular, and atrial diameters and areas were successfully obtained in 98.6% of the fetuses, while myocardial wall thicknesses could be obtained in 96.5% of the population. The results showed excellent interobserver and intraobserver reproducibility (intraclass correlation coefficient, ICC > 0.811 and ICC > 0.957, respectively). Conclusions: We provide standardized and comprehensively evaluated reference values for fetal cardiac morphometric parameters across gestation in a low-risk population. These no mograms would enable the early identification of different patterns of fetal cardiac remodeling.

Authors

  • García-Otero, L. ;
  • Gómez, O. ;
  • Rodriguez-López, M. ;
  • Torres, X. ;
  • Soveral, I. ;
  • Sepúlveda-Martínez Á. ;
  • Guirado, L. ;
  • Valenzuela-Alcaraz, B. ;
  • López, M. ;
  • Martínez, J.M. ;
  • Gratacós, E. ;
  • Crispi, F.
0 Citations0 Mentions85% FAIR0.5 Dataset Index
10.6084/m9.figshare.7546592.v12019

Supplementary Material for: Nomograms of Fetal Cardiac Dimensions at 18–41 Weeks of Gestation

Objective: There is a need for standardized reference values for cardiac dimensions in prenatal life. The objective of the present study was to construct nomograms for fetal cardiac dimensions using a well-defined echocardiographic methodology in a low-risk population. Methods: This is a prospective cohort study including 602 low-risk singleton pregnancies undergoing a standardized fetal echocardiography to accurately assess fetal cardiac, ventricular, and atrial dimensions. Parametric regressions were tested to model each measurement against gestational age from 18 to 41 weeks of gestation. Results: Nomograms were constructed for fetal cardiac dimensions (transverse and longitudinal diameters and areas) of the whole heart, atria, and ventricles, as well as myocardial wall thicknesses. All dimensions showed a progressive increase with gestational age. The best model for most parameters was a second-degree linear polynomial. Fetal cardiac, ventricular, and atrial diameters and areas were successfully obtained in 98.6% of the fetuses, while myocardial wall thicknesses could be obtained in 96.5% of the population. The results showed excellent interobserver and intraobserver reproducibility (intraclass correlation coefficient, ICC > 0.811 and ICC > 0.957, respectively). Conclusions: We provide standardized and comprehensively evaluated reference values for fetal cardiac morphometric parameters across gestation in a low-risk population. These no mograms would enable the early identification of different patterns of fetal cardiac remodeling.

Authors

  • García-Otero, L. ;
  • Gómez, O. ;
  • Rodriguez-López, M. ;
  • Torres, X. ;
  • Soveral, I. ;
  • Sepúlveda-Martínez Á. ;
  • Guirado, L. ;
  • Valenzuela-Alcaraz, B. ;
  • López, M. ;
  • Martínez, J.M. ;
  • Gratacós, E. ;
  • Crispi, F.
0 Citations0 Mentions85% FAIR0.5 Dataset Index
10.6084/m9.figshare.7546592.v22019

Supplementary Material for: Nomograms of Fetal Cardiac Dimensions at 18–41 Weeks of Gestation

Objective: There is a need for standardized reference values for cardiac dimensions in prenatal life. The objective of the present study was to construct nomograms for fetal cardiac dimensions using a well-defined echocardiographic methodology in a low-risk population. Methods: This is a prospective cohort study including 602 low-risk singleton pregnancies undergoing a standardized fetal echocardiography to accurately assess fetal cardiac, ventricular, and atrial dimensions. Parametric regressions were tested to model each measurement against gestational age from 18 to 41 weeks of gestation. Results: Nomograms were constructed for fetal cardiac dimensions (transverse and longitudinal diameters and areas) of the whole heart, atria, and ventricles, as well as myocardial wall thicknesses. All dimensions showed a progressive increase with gestational age. The best model for most parameters was a second-degree linear polynomial. Fetal cardiac, ventricular, and atrial diameters and areas were successfully obtained in 98.6% of the fetuses, while myocardial wall thicknesses could be obtained in 96.5% of the population. The results showed excellent interobserver and intraobserver reproducibility (intraclass correlation coefficient, ICC > 0.811 and ICC > 0.957, respectively). Conclusions: We provide standardized and comprehensively evaluated reference values for fetal cardiac morphometric parameters across gestation in a low-risk population. These no mograms would enable the early identification of different patterns of fetal cardiac remodeling.

Authors

  • García-Otero, L. ;
  • Gómez, O. ;
  • Rodriguez-López, M. ;
  • Torres, X. ;
  • Soveral, I. ;
  • Sepúlveda-Martínez Á. ;
  • Guirado, L. ;
  • Valenzuela-Alcaraz, B. ;
  • López, M. ;
  • Martínez, J.M. ;
  • Gratacós, E. ;
  • Crispi, F.
0 Citations0 Mentions85% FAIR0.5 Dataset Index
10.6084/m9.figshare.7546592.v32019