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Plant Physiology|April 1, 1992
Metabolism of 1-Aminocyclopropane-1-Carboxylic Acid in Etiolated Maize Seedlings Grown under Mechanical ImpedanceJ I Sarquis, P W Morgan, W R JordanPlant Physiology|May 1, 1992
Structural Changes and Associated Reduction of Hydraulic Conductance in Roots of Sorghum bicolor L. following Exposure to Water DeficitR T Cruz, W R Jordan, M C DrewPlant Physiology|November 1, 1975
Leaf Age as a Determinant in Stomatal Control of Water Loss from Cotton during Water StressW R Jordan, K W Brown, J C ThomasPlant Physiology|March 1, 1997
Growth, Water Relations, and Accumulation of Organic and Inorganic Solutes in Roots of Maize Seedlings during Salt StressH. G. Rodriguez, JKM. Roberts, W. R. Jordan, et al.Plant Molecular Biology|August 12, 1998
Gene expression induced by physical impedance in maize rootsY F Huang, W R Jordan, R A Wing, et al.Plant Physiology|April 1, 1977
Abscission responses to moisture stress, auxin transport inhibitors, and ethephonP W Morgan, W R Jordan, T L Davenport, et al.Plant Physiology|December 1, 1996
Ethylene Biosynthesis during Aerenchyma Formation in Roots of Maize Subjected to Mechanical Impedance and HypoxiaCj. He, S. A. Finlayson, M. C. Drew, et al.The Journal of Urology|August 1, 1987
Hemophilia and extracorporeal shock wave lithotripsy: a case reportK L Partney, R L Hollingsworth, W R Jordan, et al.The Journal of Urology|February 1, 1995
Pediatric low energy lithotripsy with the LithostarD A Myers, T B Mobley, J M Jenkins, et al.The Journal of Urology|July 1, 1994
Effects of stents on lithotripsy of ureteral calculi: treatment results with 18,825 calculi using the Lithostar lithotriptorT B Mobley, D A Myers, J M Jenkins, et al.Pageof 3