The effect of kidney transplantation on left ventricular remodeling and global diastolic strain rate in end‐stage renal disease

Diastolic dysfunction is an early marker of cardiac pathology in end‐stage kidney disease (ESKD) patients. The ratio of transmitral filling velocity (E) to early diastolic strain rate (E/e'sr) is a novel non‐invasive marker of early left ventricular (LV) filling pressure obtained using two‐dimensional speckle tracking echocardiography (2DSTE).

[1]  T. Biering-Sørensen,et al.  Prognostic value of ratio of transmitral early filling velocity to early diastolic strain rate in patients with Type 2 diabetes. , 2019, European heart journal cardiovascular Imaging.

[2]  T. Biering-Sørensen,et al.  Ratio of Transmitral Early Filling Velocity to Early Diastolic Strain Rate as a Predictor of Cardiovascular Morbidity and Mortality Following Acute Coronary Syndrome. , 2019, The American journal of cardiology.

[3]  T. Biering-Sørensen,et al.  Ratio of transmitral early filling velocity to early diastolic strain rate predicts long-term risk of cardiovascular morbidity and mortality in the general population , 2019, European heart journal.

[4]  J. Kojuri,et al.  The effect of kidney transplantation on speckled tracking echocardiography findings in patients on hemodialysis , 2018, Journal of cardiovascular and thoracic research.

[5]  G. Cho,et al.  Normal reference values of diastolic strain rate in healthy individuals: Chronological trends and the comparison according to genders , 2018, Echocardiography.

[6]  O. Gulel,et al.  The effect of different treatment strategies on left ventricular myocardial deformation parameters in patients with chronic renal failure , 2018, The International Journal of Cardiovascular Imaging.

[7]  L. García-Covarrubias,et al.  Cardiac Remodeling in Structure and Function Six Months After Kidney Transplantation. , 2018, Transplantation proceedings.

[8]  Patrizio Lancellotti,et al.  Recommendations for the Evaluation of Left Ventricular Diastolic Function by Echocardiography: An Update from the American Society of Echocardiography and the European Association of Cardiovascular Imaging. , 2016, European heart journal cardiovascular Imaging.

[9]  G. Baumann,et al.  Improved Left Ventricular Structure and Function After Successful Kidney Transplantation , 2016, Kidney and Blood Pressure Research.

[10]  L. Onuchic,et al.  Cardiac dysfunction in Pkd1-deficient mice with phenotype rescue by galectin-3 knockout. , 2016, Kidney international.

[11]  P. Pellikka,et al.  Early Diastolic Strain Rate in Relation to Systolic and Diastolic Function and Prognosis in Aortic Stenosis. , 2016, JACC. Cardiovascular imaging.

[12]  J. Cheatham,et al.  Correlations Between Echocardiographic Systolic and Diastolic Function with Cardiac Catheterization in Biventricular Congenital Heart Patients , 2016, Pediatric Cardiology.

[13]  W. Tang,et al.  Reverse Remodeling and Prognosis Following Kidney Transplantation in Contemporary Patients With Cardiac Dysfunction. , 2015, Journal of the American College of Cardiology.

[14]  M. Haberal,et al.  Assessment of myocardial mechanics in patients with end-stage renal disease and renal transplant recipients using speckle tracking echocardiography. , 2015, Experimental and clinical transplantation : official journal of the Middle East Society for Organ Transplantation.

[15]  T. Yoo,et al.  Diastolic Dysfunction Is an Independent Predictor of Cardiovascular Events in Incident Dialysis Patients with Preserved Systolic Function , 2015, PloS one.

[16]  M. Tonelli,et al.  Cause of Death in Patients with Reduced Kidney Function. , 2015, Journal of the American Society of Nephrology : JASN.

[17]  B. Bijnens,et al.  Predictive Value of Assessing Diastolic Strain Rate on Survival in Cardiac Amyloidosis Patients with Preserved Ejection Fraction , 2014, PloS one.

[18]  H. Trivedi,et al.  Significant benefits after renal transplantation in patients with chronic heart failure and chronic kidney disease , 2014, Renal failure.

[19]  S. Qiao,et al.  Evaluation of Left Ventricular Diastolic Function by Global Strain Rate Imaging in Patients with Obstructive Hypertrophic Cardiomyopathy: A Simultaneous Speckle Tracking Echocardiography and Cardiac Catheterization Study , 2014, Echocardiography.

[20]  L. Køber,et al.  Early diastolic strain rate in relation to systolic and diastolic function and prognosis in acute myocardial infarction: a two-dimensional speckle-tracking study. , 2014, European heart journal.

[21]  J. Kaski,et al.  Echocardiographic abnormalities in patients on kidney transplant waiting list. , 2012, Journal of nephrology.

[22]  R. Nagai,et al.  Speckle Tracking Global Strain Rate E/E′ Predicts LV Filling Pressure More Accurately Than Traditional Tissue Doppler E/E′ , 2012, Echocardiography.

[23]  M. Vargas-Machuca,et al.  Prevalence of cardiovascular disease in kidney transplant candidates: outpatient cardiac evaluation. , 2010, Transplantation proceedings.

[24]  L. Køber,et al.  Left ventricular filling pressure estimation at rest and during exercise in patients with severe aortic valve stenosis: comparison of echocardiographic and invasive measurements. , 2009, Journal of the American Society of Echocardiography : official publication of the American Society of Echocardiography.

[25]  James D. Thomas,et al.  Tissue Doppler Imaging in the Estimation of Intracardiac Filling Pressure in Decompensated Patients With Advanced Systolic Heart Failure , 2009, Circulation.

[26]  N. Lakkis,et al.  Usefulness of new diastolic strain and strain rate indexes for the estimation of left ventricular filling pressure. , 2008, The American journal of cardiology.

[27]  Mathias Meine,et al.  Practical and conceptual limitations of tissue Doppler imaging to predict reverse remodelling in cardiac resynchronisation therapy , 2008, European journal of heart failure.

[28]  Jianwen Wang,et al.  Global Diastolic Strain Rate for the Assessment of Left Ventricular Relaxation and Filling Pressures , 2007, Circulation.

[29]  R. Foley,et al.  Clinical epidemiology of cardiovascular disease in chronic renal disease. , 1998, American journal of kidney diseases : the official journal of the National Kidney Foundation.

[30]  Victor Mor-Avi,et al.  Recommendations for cardiac chamber quantification by echocardiography in adults: an update from the American Society of Echocardiography and the European Association of Cardiovascular Imaging. , 2015, Journal of the American Society of Echocardiography : official publication of the American Society of Echocardiography.