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1. Pulmonary arterial banding in mice may be a suitable model for studies on ventricular mechanics in pediatric pulmonary arterial hypertension

2. Correction to: Eplerenone attenuates pathological pulmonary vascular rather than right ventricular remodeling in pulmonary arterial hypertension

3. The left ventricle undergoes biomechanical and gene expression changes in response to increased right ventricular pressure overload

4. Eplerenone attenuates pathological pulmonary vascular rather than right ventricular remodeling in pulmonary arterial hypertension

5. Targeting Wnt-ß-Catenin-FOSL Signaling Ameliorates Right Ventricular Remodeling

6. Improving Right Ventricular Function by Increasing BMP Signaling with FK506

7. Targeting Jak–Stat Signaling in Experimental Pulmonary Hypertension

8. Mining the Plasma Proteome for Insights into the Molecular Pathology of Pulmonary Arterial Hypertension

9. Kinases as potential targets for treatment of pulmonary hypertension and right ventricular dysfunction

10. Abstract 11271: Three-Dimensional Deep-Tissue Imaging of the Right Ventricle Reveals Decreased Capillary-Cardiomyocyte Contact Surface in Decompensated Right Heart Failure

12. Delineating the molecular and histological events that govern right ventricular recovery using a novel mouse model of pulmonary artery de-banding

13. FHIT, a Novel Modifier Gene in Pulmonary Arterial Hypertension

15. Pulmonary arterial banding in mice may be a suitable model for studies on ventricular mechanics in pediatric pulmonary arterial hypertension

17. sGC stimulation lowers elevated blood pressure in a new canine model of resistant hypertension

18. A Notch3-Marked Subpopulation of Vascular Smooth Muscle Cells Is the Cell of Origin for Occlusive Pulmonary Vascular Lesions

20. The left ventricle undergoes biomechanical and gene expression changes in response to increased right ventricular pressure overload

22. ASK1 Inhibition Halts Disease Progression in Preclinical Models of Pulmonary Arterial Hypertension

23. p38 MAPK Inhibition Improves Heart Function in Pressure-Loaded Right Ventricular Hypertrophy

24. Maintained right ventricular pressure overload induces ventricular-arterial decoupling in mice

25. Nitric Oxide Synthase 2 Induction Promotes Right Ventricular Fibrosis

26. Maintained right ventricular pressure overload induces ventricular-arterial decoupling in mice

27. Effects of apoptosis signal- regulating kinase 1 (ASK1) inhibition in experimental pressure overload-induced right ventricular dysfunction

28. 5-HT2B Receptor Antagonists Inhibit Fibrosis and Protect from RV Heart Failure

29. Room temperature synthesis of indium tin oxide nanotubes with high precision wall thickness by electroless deposition

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