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15,376 results on '"Ventricular pressure"'

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1. Stromal Cell-SLIT3/Cardiomyocyte-ROBO1 Axis Regulates Pressure Overload-Induced Cardiac Hypertrophy

2. Urocortin 2 Gene Transfer for Systolic and Diastolic Dysfunction Due to Chronically Increased Left Ventricular Pressure.

3. Identifying Discordance of Right- and Left-Ventricular Filling Pressures in Patients With Heart Failure by the Clinical Examination.

4. An exploratory assessment of stretch-induced transmural myocardial fiber kinematics in right ventricular pressure overload

5. Regional variations in ex-vivo diffusion tensor anisotropy are associated with cardiomyocyte remodeling in rats after left ventricular pressure overload

6. Hemoglobin β93 Cysteine Is Not Required for Export of Nitric Oxide Bioactivity From the Red Blood Cell

8. Ex Situ Left Ventricular Pressure-Volume Loop Analyses for Donor Hearts: Proof of Concept in an Ovine Experimental Model.

9. Exercise Hemodynamics and Mitochondrial Oxidative Capacity in Disease Stages of Wild-Type Transthyretin Amyloid Cardiomyopathy.

10. Noninvasive pressure-strain loop quantitative assessment of left ventricular function in anemic preterm infants with different modes of respiratory support.

12. Study Findings from McMaster University Advance Knowledge in Aortic Valve Stenosis (Ventricular pressure-volume loop and other heart function metrics can elucidate etiology of failure of TAVI and interventions).

13. Researchers Submit Patent Application, "Cardiac Valve Leaflet Enhancer Devices and Systems", for Approval (USPTO 20240245512).

14. Recent Findings in Right Ventricular Described by Researchers from Columbia University Medical Center (Impact of Interventricular Interaction On Ventricular Function Insights From Right Ventricular Pressure-volume Analysis).

15. Biomechanical and Hemodynamic Measures of Right Ventricular Diastolic Function: Translating Tissue Biomechanics to Clinical Relevance

16. S- and P-type cobra venom cardiotoxins differ in their action on isolated rat heart

17. HIF2α-arginase axis is essential for the development of pulmonary hypertension.

18. The impact of unilateral pulmonary artery stenosis on right ventricular to pulmonary arterial coupling in patients with transposition of the great arteries.

19. Echocardiographic estimation of right ventricular diastolic stiffness based on pulmonary regurgitant velocity waveform analysis in precapillary pulmonary hypertension.

20. Echocardiographic Evaluation of Left Ventricular Filling Pressure in Patients With Pulmonary Hypertension.

21. Role of macrophages in regression of myocardial fibrosis following alleviation of left ventricular pressure overload.

22. Large animal models of pressure overload-induced cardiac left ventricular hypertrophy to study remodelling of the human heart with aortic stenosis.

23. Evaluating left atrial strain and left ventricular diastolic strain rate as markers for diastolic dysfunction in patients with mitral annular calcification.

24. Non-invasive assessment of left ventricular filling pressure in aortic stenosis.

25. Mechano-energetic efficiency in patients with hypertrophic cardiomyopathy with and without sarcomeric mutations.

26. Flux rétrograde de la circulation extracorporelle avec oxygénateur à membrane: Conséquences, prévention et prise en charge.

27. Comments on Defining the Contribution of Diastolic Vortex Ring to Left Ventricular Filling

28. RV-pulmonary arterial coupling predicts outcome in patients referred for pulmonary hypertension

29. Structural and Mechanical Adaptations of Right Ventricle Free Wall Myocardium to Pressure Overload

30. Caveolae in ventricular myocytes are required for stretch-dependent conduction slowing

31. University of Navarra Researchers Update Current Study Findings on Science and Technology (Patient-specific closed-loop model of the fontan circulation: Calibration and validation).

32. Extracellular Matrix Instability and Chronic Inflammation Underlie Maladaptive Right Ventricular Pressure Overload Remodeling and Failure in Male Mice.

33. Real-Time Magnetic Resonance Imaging Technique for Determining Left Ventricle Pressure-Volume Loops

34. Adaptive right ventricular performance in response to acutely increased afterload in a lamb model of congenital heart disease: evidence for enhanced Anrep effect

35. Left–Ventricular Pressure Relaxation and Diastolic Function of Isolated Working Mammalian Hearts at Hypothermia

36. A Noninvasive Circulating Signature of Combined Right Ventricular Pressure and Volume Overload in Tetralogy of Fallot/Pulmonary Atresia/Major Aortopulmonary Collateral Arteries.

37. Non-invasive left ventricular pressure-strain loop study on cardiac fibrosis in primary aldosteronism: a comparative study with cardiac magnetic resonance imaging.

38. The SGLT2i Dapagliflozin Reduces RV Mass Independent of Changes in RV Pressure Induced by Pulmonary Artery Banding.

39. Assessment of anthracycline-induced cardiotoxicity in childhood cancer survivors during long-term follow-up using strain analysis and intraventricular pressure gradient measurements.

40. Unravelling the intricacies of left ventricular haemodynamic forces: age and gender-specific normative values assessed by cardiac MRI in healthy adults.

41. Non-invasive myocardial work in aortic stenosis: validation and improvement in left ventricular pressure estimation.

42. The value of using left ventricular pressure-strain loops to evaluate myocardial work in predicting heart failure with improved ejection fraction.

43. Hyperamylinemia Contributes to Cardiac Dysfunction in Obesity and Diabetes

44. Noninvasive Assessment of Left Ventricular Pressure-Volume Relations: Inter- and Intraobserver Variability and Assessment Across Heart Failure Subtypes

45. Urocortin 2 Gene Transfer for Systolic and Diastolic Dysfunction Due to Chronically Increased Left Ventricular Pressure

46. The Association of Severe Tricuspid Regurgitation with Poor Survival Is Modified by Right Ventricular Pressure and Function: Insights from SHEBAHEART Big Data

47. Subendocardial Viability Ratio in Hypertension.

49. Patent Application Titled "Left Ventricular Volume And Cardiac Output Estimation Using Machine Learning Model" Published Online (USPTO 20240006078).

50. Researchers Submit Patent Application, "Cardiac Pump With Speed Adapted for Ventricle Unloading", for Approval (USPTO 20230414923).

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