21 results on '"Engelman, Zoar J."'
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2. Splanchnic Nerve Ablation for Volume Management in Heart Failure
3. Early Hemodynamic Changes following Surgical Ablation of the Right Greater Splanchnic Nerve for the Treatment of Heart Failure with Preserved Ejection Fraction
4. Surgical ablation of the right greater splanchnic nerve for the treatment of heart failure with preserved ejection fraction: first‐in‐human clinical trial
5. Splanchnic nerve modulation in heart failure: mechanistic overview, initial clinical experience, and safety considerations
6. Greater Splanchnic Nerve Stimulation in Heart Failure With Preserved Ejection Fraction
7. Endovascular Ablation of the Right Greater Splanchnic Nerve for the Treatment of Heart Failure with Preserved Ejection Fraction - First-in-human Clinical Trial
8. Increasing Blood Pressure by Greater Splanchnic Nerve Stimulation: a Feasibility Study
9. Cardiac intramural electrical mapping reveals focal delays but no conduction velocity slowing in the peri-infarct region
10. Minimally invasive transtracheal cardiac plexus block for sympathetic neuromodulation
11. Carotid body resection for sympathetic modulation in systolic heart failure: results from first-in-man study
12. Effects of selective carotid body stimulation with adenosine in conscious humans
13. Unilateral Carotid Body Resection in Resistant Hypertension
14. Dissociation between blood pressure and heart rate response to hypoxia after bilateral carotid body removal in men with systolic heart failure
15. Carotid body removal for treatment of chronic systolic heart failure
16. Clinical Predictors and Hemodynamic Consequences of Elevated Peripheral Chemosensitivity in Optimally Treated Men With Chronic Systolic Heart Failure
17. Response to Role of the Carotid Body in Obesity-Related Sympathoactivation
18. The Carotid Body as a Therapeutic Target for the Treatment of Sympathetically Mediated Diseases
19. Hypertension is critically dependent on the carotid body input in the spontaneously hypertensive rat
20. Structural Heterogeneity Alone Is a Sufficient Substrate for Dynamic Instability and Altered Restitution
21. Models for mechanistic investigations of pacing arrthymogenesis and cardiac tissue structure
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