David Cornfield, MD
Publications


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Journal Articles (Peer-Reviewed)

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Book Chapters

1. Abman, S.H., D.N. Cornfield, and J.P. Kinsella: Role of endothelial-derived nitric oxide in perinatal pulmonary vasoregulation. In: E.K. Weir, J.R. Hume, and J.T. Reeves (Eds.): Ion Flux in Pulmonary Vascular Control. New York, NY: Plenum Publishing; 1993.

2. Hampl, V., D.N. Cornfield, J. Huang, P. J. Schultz, E.K. Weir, and S.L Archer: Nitric oxide in the pulmonary circulation: chemistry, physiology, and pathophysiology. In: A.J. Peacock (Ed.): Pulmonary Circulation: A Handbook for Clinicians. London; Chapman and Hall; 1994.

3. Beebe, D.S., D.N. Cornfield, K. Belani: Pediatric Bone Marrow Transplantation. In: J.R. Klink, M.J. Lindop (Eds.) Anesthesia and Intensive Care for Organ Transplantation, London; Chapman and Hall; 1996.

4. Houlton, A.J., C.H. Kehler, M.F. Sweeney, D.N. Cornfield, K. Belani: Pediatric Heart, Heart-Lung, and Lung Transplantation. In: J.R. Klink, M.J. Lindop (Eds.) Anesthesia and Intensive Care for Organ Transplantation, London; Chapman and Hall; 1996.

5. Weir, E.K., D.N. Cornfield, J. Huang, D. Nelson, S.L. Archer: Potassium channels and Pulmonary Vascular Tone. In: P. Vanhoutte (Ed.) Endothelium-Derived Hyperpolarizing Factor, 1996.

6. Weir, E.K., H.L. Reeve, S. Tolarova, D.N. Cornfield, D.P. Nelson, S.L. Archer: Oxygen sensing in the pulmonary vasculature. In: J. Lopez-Barneo and E.K. Weir (Eds.) Oxygen Regulation of Ion Channels and Gene Expression, Future, 1997.

7. Cornfield, D.N., E.K. Weir, H.L. Reeve: Maturational changes in K+ channel activity and oxygen sensing in the ovine pulmonary vasculature. In: E.K. Weir and J.T. Reeves (Eds.): Developing Pulmonary Circulation. New York, NY: Plenum Publishing; 1999.

8. Reeve, H.L. and D.N. Cornfield: Pulmonary vascular and ductus arteriosus K+ channels during development and at birth. In : N. Rusch and S.L. Archer (Eds.) K+ channels in Cardiovascular Biology. New York, NY: Plenum Publishing; 1999.

 

 

Abstracts (* selected for presentation)

*1. Cornfield, D.N., B.A. Chatfield, J.A. McQueston, I.F. McMurtry and S.H. Abman. Effects of EDRF inhibition on birth-related stimuli in the ovine fetal lung. Pediatr Res 29:312A, 1991.

*2. Cornfield, D.N., B.A. Chatfield, I.F. McMurtry and S.H. Abman. Effects of EDRF inhibition on the fetal pulmonary vascular response to partial compression of the ductus arteriosus. Pediatr Res 29:311A, 1991.

*3. Cornfield, D.N., J.A. McQueston, B.A. Chatfield, D.M. Rodman, I.F. McMurtry and S.H. Abman. BRL 34915, an ATP-sensitive potassium channel agonist, causes fetal pulmonary vasodilation. Pediatr Res 29:58A, 1991.

*4. McQueston, J.A., D.N. Cornfield, I.F. McMurtry and S.H. Abman. Role of EDRF in O2-induced fetal pulmonary vasodilation. Pediatr Res 31:316A, 1992.

*5. McQueston, J.A., D.N. Cornfield, I.F. McMurtry and S.H. Abman. Role of endothelium-derived relaxing factor activity in O2-induced fetal pulmonary vasodilation. Clin Res 40:8A, 1992.

*6. Cornfield, D.N., D.M. Rodman, T. Stevens, I.F. McMurtry and S.H. Abman. Hypoxia alters basal and stimulated cytosolic calcium in ovine fetal pulmonary artery smooth muscle cells. Pediatr Res 31:304A, 1992.

*7. Rodman, D.M., D.N. Cornfield, I.F. McMurtry and T. Stevens. Hypoxia increases the peak calcium response to bradykinin and thapsigargin in bovine pulmonary artery endothelial cells. FASEB Journal 7: A405, 1993.

*8. Stevens, T., D.N. Cornfield, I.F. McMurtry, and D.M. Rodman. Hypoxia inhibits calcium influx and basal calcium in bovine pulmonary artery endothelial cells. FASEB Journal 7: A406, 1993.

*9. Cornfield, D.N., T. Stevens, I.F. McMurtry, S.H. Abman, and D.M. Rodman. Hypoxia-induced increase in fetal pulmonary artery smooth muscle cell [Ca2+]i is mediated by entry of Ca2+ through voltage-operated Ca2+ channels. Pediatr Res 33:1902A, 1993.

*10. Stevens, T., D.M.F. Cooper, D.N. Cornfield, I.F. McMurtry, and D.M. Rodman. Adenylyl cyclase activity in pulmonary artery endothelial cells is inhibited by calcium. FASEB Journal, 1994.

*11. Cornfield, D.N., T. Stevens, I.F. McMurtry, S.H. Abman, and D.M. Rodman. Hypoxia causes membrane depolarization in fetal pulmonary artery smooth muscle cells. Pediatr Res., 1994.

*12. Stevens, T., B. Fouty, D.N. Cornfield, and D.M. Rodman. Hypoxia alters the behavior of Fura-2 and Indo-1 in bovine pulmonary artery endothelial cells. American Thoracic Society, May, 1994.

*13. Cornfield, D.N., J. Lohr, A. Rozenberg, T.A. Williams, A.P. Rocchini, and T.P. Green. Inhalational nitric oxide causes pulmonary vasodilation in patients with congenital heart disease and pulmonary hypertension. Clinical Res, 1994.

14. Lohr, J.L., A. Rozenberg, T.A. Williams, A.P. Rocchini, T.P. Green, and D.N. Cornfield. Inhaled nitric oxide causes pulmonary vasodilation in patients with congenital heart disease and pulmonary hypertension. Peds Res, 1995.

*15. Cornfield, D.N., S.Tolarova, E.K. Weir, and S.L. Archer. Oxygen causes fetal pulmonary vasodilation through activation of a protein sensitive kinase. Peds Res, 1995.

*16. Tristani-Firouzi, M., S. Tolarova, E.K. Weir, S.L. Archer, D.N. Cornfield. Potassium channel inhibition attenuates the pulmonary vasodilation associated with birth. Circ Res, 1995.

*17. Reeve, H.L., S.L. Archer, E.K. Weir, and D.N. Cornfield. Oxygen causes activation of a Ca2+-dependent potassium channel in fetal pulmonary artery smooth muscle cells. Peds Res 1996.

*18. Martin, E.B., S. Tolarova, E.K. Weir, S.L. Archer, D.N. Cornfield. Aerosol delivery of DeTANO, a nitric oxide adduct, causes selective and sustained perinatal pulmonary vasodilation. Peds Res 1996.

*19. Cornfield, D.N., S. Tolarova, E.K. Weir, S.H. Abman, and S.L. Archer. Maturational changes in potassium channel activity in ovine pulmonary arteries in vitro. Circ Res, 1996.*

*20. Weir, E.K., H.L. Reeve, D.N. Cornfield, D.A. Peterson, and S.L. Archer. The influence of changes in oxygen tension on vascular smooth muscle cells.

*21. Tristani-Firouzi, M., S. Tolarova, H.L. Reeve, D.N. Cornfield, E.K. Weir, and S.L. Archer. O2-induced constriction of the ductus arteriosus is dependent upon calcium influx through L-type calcium channels. Circ Res, 1996.

*22. Reeve, H.L., S. Tolarova, D.N. Cornfield, M. Tristani-Firouzi, S.L. Archer, and E.K. Weir. Developmental changes in K+ channel expression may determine the O2 response of the ductus arteriosus. Experimental Biology, 1997.

*23. Cornfield, D.N., S. Guiang, R.O. deRegnier, J. Barbato, A. Rozenberg, R.C. Maynard. Randomized, controlled trial of inhalational nitric oxide in persistent pulmonary hypertension of the newborn (PPHN). Peds Res, 1997.

*24. Reeve, H.L., S.L. Archer, E.K.Weir, D.N. Cornfield. Developmental regulated changes in pulmonary channels controls the resting membrane potential and oxygen sensing. Peds Res, 1997.

*25. Dobyns, E.L., N.G. Anas, D.N. Cornfield, J. Fortenberry, R. Tasker, J. Deshpande, P. Liu, P.L. Eells, J. Griebel, T. Mackenzie, J.P. Kinsella, S.H. Abman. Multicenter randomized trial of the effects of inhaled nitric oxide therapy on gas exchange in children with acute hypoxemic respiratory failure. Ped Res, 1998.

*26. Cornfield, D.N., J.M. Herron, C.B. Saqueton, I.Y. Haddad. Pulmonary vascular voltage-sensitive K+ channel expression is developmentally regulated. Ped Res, 1998.

*27. Storme, L., R. L. Rairigh, D.N. Cornfield, T.A. Parker, J.P. Kinsella, S.H. Abman. Potassium channel blockade inhibits shear stress-induced pulmonary vasodilation in the ovine fetus. Ped Res, 1998.

*28. Kulick, D.M., S.J. Park, C.T. Salerno, K. Savik, D.N. Cornfield, R.M. Bolman III. Nitric oxide improves oxygenation in human bilateral single lung transplantation. J Heart Lung Transplantation 17 (1):85-86, 1998.

*29. Saqueton, C.B., R.B. Miller, V. Porter, D.N. Cornfield. Nitric oxide causes perinatal pulmonary vasodilation through ryanodine-sensitive K+ channel activation. Peds Res, 1998.

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This page last updated on July 24, 2000